Operation of Swimming Pools and Spa Pools in South Australia
|
|
|
- Antonia McDonald
- 9 years ago
- Views:
Transcription
1 S O U T H A U S T R A L I A N H E A L T H C O M M I S S I O N C O D E S T A N D A R D F O R T H E Operation of Swimming Pools and Spa Pools in South Australia ( SOUTH AUSTRALIAN HEALTH COMMISSION )
2 S T A N D A R D First printed December 1991 Reprinted August 1993 incorporating Corrigendum gazetted 14 May Reprinted April Standard for the Operation of Swimming Pools and Spa Pools in South Australia Prepared by: Environmental Surveillance Section, Environmental Health Branch Department of Human Services South Australian Government ISBN
3 O P E R A T I O N O F S W I M M I N G P O O L S & S P A P O O L S FOREWORD Under the Public and Environmental Health Act, the Public and Environmental Health Council can initiate measures to promote public and environmental health standards and has the responsibility to keep the operation and administration of the Act under review. To assist local councils in the administration of the legislation the Council has requested that a code be prepared that takes into account the provisions of Section 47 (5) of the Act and Regulations 3, 6 (1) and 7 (1) relating to swimming pools and spa pools. This code has been prepared to address the issue of water quality in relation to the operation of a swimming pool and a spa pool. It details measures necessary to ensure that water quality within a pool is of a standard that does not prejudice the health or well-being of pool users. It describes in detail the disinfection of pool water with reference to other important parameters such as ph, water clarity and total alkalinity that need to be maintained in balance as part of the total water treatment process. Other areas covered by the code include an explanation of the chemistry of the disinfection processes, pool water pollutants and health effects as a consequence of inadequate pool water treatment. This code is aimed primarily for use by agencies responsible for the administration of the Public and Environmental Health Act and Regulations. It should also be useful to the operators of swimming pool and spa pool facilities. Public and Environmental Health Regulation 3 details the facilities to which the provisions of this code apply and defines the circumstances of application. As provided for under Section 47 (5) of the Act, Regulation 6 (1) (a) and 7 (1) (a), this code is a prescribed code and non compliance with the provisions applicable to the disinfection process, including the maintenance of pool water so that it is chemically balanced, is deemed to be a breach of the legislation and subject to penalty as indicated in Regulation 6 (3) and 7 (3). 3
4 S T A N D A R D CONTENTS FOREWORD 3 1. INTRODUCTION 5 2. DEFINITIONS 5 3. MANAGEMENT 7 4. DISINFECTING AGENTS CHLORINE CHLORINE STABILIZED WITH CYANURIC ACID ULTRAVIOLET LIGHT PLUS HYDROGEN PEROXIDE Ultraviolet light plus hydrogen peroxide operating criteria 9 5. WATER CLARITY 9 6. ph AND TOTAL ALKALINITY SPA POOLS WATER TEMPERATURE POTENTIAL HEALTH EFFECTS BATHER WARNING NOTICE DISINFECTION & TREATMENT OF WATER SWIMMING POOLS SPA POOLS BREAKPOINT CHLORINATION EXPLANATION CHLORAMINES POOL POLLUTION ALGAE AMOEBAE BACTERIA CORROSION PRODUCTS ORGANIC NITROGEN VIRUSES TABLES ACKNOWLEDGEMENTS REFERENCES 18 4
5 O P E R A T I O N O F S W I M M I N G P O O L S & S P A P O O L S 1. INTRODUCTION This code applies to swimming pools and spa pools as defined by the Public and Environmental Health Regulations. The growing popularity of swimming and other in-the-water activities for sport, fitness, therapy or just enjoyable relaxation has led to the increased use of swimming pools and the establishment of a variety of specific-use pools such as spa pools, waterslides, and more recently, hydrotherapy and wave pools. These pools are used by a variety of people of various ages, health status and standards of hygiene. Bathers introduce a range of pollutants to the pool water such as micro-organisms, body secretions including saliva, fat, urine and other foreign matter including skin, hair and sunscreen lotions. In the interest of user satisfaction and ongoing patronage, pool owners should look to provide a facility that is attractive, safe, hygienic and caters for bather comfort. Disease-causing organisms live and multiply in pool water that has not been properly treated and give rise to eye, ear, skin and intestinal infection. In South Australia fatal cases of Primary amoebic meningo-encephalitis have been associated with poorly maintained pools. Inadequate chemical balance of pool water can also cause skin rashes and conjunctivitis. This code indicates the essential requirements to maintain a balanced water chemistry within a swimming or spa pool and ensure safe, clean and sparkling water. Spa pools can create a higher infection risk than swimming pools if poorly maintained. The warm aerated water provides an ideal environment for the rapid growth of many undesirable organisms. With large numbers of people entering the relatively small volume of water in a spa the organic and microbial loading may be high. This can have a dramatic and deleterious effect on the quality of water in the spa and put the health of users at risk. Poorly maintained spa pools have been implicated as a source of skin infection and Legionellosis, but well balanced and operated, they can provide a safe, relaxing and enjoyable experience. This code sets out the approved methods of disinfection and treatment for swimming and spa pool waters. It has been prepared as a guide to assist local councils with the administration of the legislation. Additionally it is a useful guide for pool owners and operators and will assist them to comply with the provisions of the Public and Environmental Health Act and Regulations and provide a facility that is of a high standard, safe, hygienic, and enjoyable for the users. All legislation, codes of practice, standards or guidelines referred to in this code include amendments made from time to time, unless otherwise stated. The provisions of this code do not derogate from the need to comply with other laws of the State. 2. DEFINITIONS acidic water with a ph between 0 and 7. algicide chlorine combined chlorine disinfecting agent free chlorine a chemical that is capable of killing algae. hypochlorous acid/hypochlorite ion (irrespective of the mode of addition or formation). chlorine that has combined with ammonia, ammonium compounds or organic matter containing nitrogen to form chloramines. a compound or substance which, when applied as instructed to swimming or spa pool water, kills harmful micro-organisms. chlorine that has not combined but is free to kill bacteria and algae and destroy organic pollutants introduced into the pool water. 5
6 S T A N D A R D knowledgeable person mg/l occupier operator owner PH one who is able to control, manage and operate a pool to ensure that the pool water complies with the requirements of the Regulations under the Public and Environmental Health Act. milligram per litre. in relation to premises, means a person who has, or is entitled to, possession or control of the premises and includes a person who is in charge of the premises. the person who has control and management of the pool, is knowledgeable in its operation and is sufficiently competent to ensure that the pool complies with the requirements of the regulations. in relation to premises, includes an occupier of the premises. a scale (ranging from 0 to 14) that indicates the amount of acid or alkali present in the water. Water with a ph of 7 is neutral. 0 Increasingly Neutral Increasingly 14 acidic 7 alkaline ph S.A.H.C. spa pool stabilizer superchlorination swimming pool total alkalinity total chlorine total dissolved solids UV+H 2 O 2 mws/cm 2 South Australian Health Commission. means a pool or other water-retaining structure designed for human use:- (a) that is capable of holding more than 680 litres of water; and (b) that incorporates, or is connected to, equipment that is capable of heating any water contained in it and injecting air bubbles or water into it under pressure so as to cause general turbulence in the water. a compound which is added to pool water to reduce chlorine loss due to sunlight. the addition of sufficient chlorine to pool water to raise the level of free chlorine to at least 10mg/L for the destruction of combined chlorine (chloramines), algae, and other impurities. includes any waterslide, wave pool, hydrotherapy pool or other similar structure designed for human use other than:- (a) a spa pool; or (b) a tidal pool or other similar structure where water flows in and out according to the operation of natural forces. a measure of the total amount of dissolved alkaline compounds in the pool water. the sum of combined chlorine and free chlorine. a measure of the total amount of dissolved inorganic compounds in the pool water. ultraviolet light plus hydrogen peroxide disinfection system. microwatt seconds per centimeter squared. 6
7 O P E R A T I O N O F S W I M M I N G P O O L S & S P A P O O L S 3. MANAGEMENT Where a swimming pool or a spa pool is available for use by the public the owner of the facility must ensure that the pool is under the control and management of a person who is knowledgeable and competent in the operation of the plant and maintenance of pool water quality. Whilst the facility is available for use by the public it is the responsibility of the owner and the pool operator to ensure pool water quality is maintained in accordance with the requirements of the Public and Environmental Health Regulations. For the purpose of Public and Environmental Health Regulation 8 (1) (a), possession of a qualification approved by the South Australian Health Commission may constitute prima facie evidence of the knowledge and competence required of the person in charge of a swimming pool or spa pool. The knowledge and competence of the operator may also be assessed by the standard of the water quality within the swimming pool or spa pool, as indicated below. Owners of pools covered by the ambit of the regulations are responsible for ensuring the pool is correctly operated. Failure to do so could result in legal proceedings being implemented for non compliance. Where the operator of a pool fails to maintain pool water quality in the manner prescribed the authority may deem the operator not to be competent and require the owner to provide a person who is competent. 4. DISINFECTING AGENTS To minimise the risk of infection to bathers the pool water must be disinfected with an agent that is: specified in the Regulations otherwise approved by the S.A.H.C. and indicated in this code easily applied able to kill a wide range of disease causing organisms capable of simple on-site measurement. 4.1 CHLORINE Chlorine is a disinfecting agent that meets the above requirements and has the additional advantage of being able to oxidise most pollutants not removed by filtration. However, concentrations of chlorine must be controlled, as low concentrations result in ineffective disinfection and high concentrations can cause eye, skin and respiratory irritation. Because high levels of chlorine can have adverse health affects on bathers it is recommended that bathers should not be present in the pool water during superchlorination or when the chlorine residual exceeds 10mg/L. Most swimming pools and spa pools are disinfected using chlorine gas or chlorine compounds. Each of these disinfecting agents form hypochlorous acid when reacting with water and therefore disinfect the pool water in the same manner. For example, the reaction of sodium hypochlorite with water is:- NaOCl + H 2 O HOCl + NaOH sodium water hypochlorous sodium hypochlorite acid hydroxide Hypochlorous acid partly dissociates to give hydrogen ions and hypochlorite ions. HOCl H + + OCl - hypochlorous hydrogen hypochlorite acid ion ion 7
8 S T A N D A R D Therefore, pool water that is treated with chlorine gas or a chlorine compound will contain both hypochlorous acid and hypochlorite ions. Their relative proportions depend on the ph of the pool water. See figure 1. FIGURE 1 : PERCENTAGE OF FREE CHLORINE RELATIVE TO ph Percentage of free chlorine as ph HOCl OCl * 7.5* 7.6* * operating range as defined by regulation. Hypochlorous acid is a very effective disinfecting agent. It has low molecular mass and no electrical charge. This allows it to penetrate through the cell wall of bacteria to attack enzymes. The destruction of the enzymes results in the death of the organism. The hypochlorite ion (OCl - ) is about 100 times less effective as a disinfectant than hypochlorous acid (HOCl). This is believed to be so because the hypochlorite ion is negatively charged and this reduces its ability to penetrate the bacterial cell wall which is also negatively charged. The various chlorinating compounds have differing effects on:- ph alkalinity total hardness total dissolved solids the amount of cyanuric acid present, if any. Therefore, it is essential to maintain the balance of pool water to ensure effective disinfection of the water, bather comfort, water clarity and preservation of pool surfaces and structure. 4.2 CHLORINE STABILIZED WITH CYANURIC ACID Free chlorine in swimming pool water decomposes under the influence of the ultraviolet rays from sunlight. Cyanuric acid and chlorinated cyanurates are used to increase the stability of free chlorine levels in outdoor swimming pools. Cyanurates tie up hypochlorite ions in a complex molecule. This reduces the loss of free chlorine as a result of exposure to sunlight and effectively extends the period of disinfection. However, increased chlorine levels are required in stabilized pools because a large amount of chlorine is attached to the cyanuric acid and is not readily available for disinfection purposes. Stabilization has the advantage when used in outdoor pools at the recommended levels of 30-50mg/L of maintaining free chlorine residuals for longer periods. Stabilizer levels in excess of 50mg/L reduce disinfection efficacy; therefore, it is very important to ensure the upper limit is not exceeded. Losses of water by evaporation, splashing and vacuuming to waste will gradually reduce stabilizer level and this will require replacement. Regulations under the Public and Environmental Health Act preclude the use of stabilizers in indoor pool waters. 8
9 O P E R A T I O N O F S W I M M I N G P O O L S & S P A P O O L S 4.3 ULTRAVIOLET LIGHT PLUS HYDROGEN PEROXIDE The ultraviolet light plus hydrogen peroxide (UV+H 2 O 2 ) system is approved for disinfecting indoor swimming pools up to 500,000 litres in capacity. Disinfection occurs when water is passed through the ultraviolet unit. As no residual is produced there is no antimicrobial action in other parts of the system. Therefore, in order to achieve a residual oxidising and microbial capability, hydrogen peroxide must be used in conjunction with ultraviolet light. Hydrogen peroxide is a powerful oxidising agent and in its concentrated form it is a clear liquid with a sharp odour. It provides a residual capacity to oxidise organic material derived from bather load and other sources in the pool water; thus inhibiting micro-organism growth within the remainder of the system. For the ultraviolet light plus hydrogen peroxide system to be effective it must operate 24 hours a day. Ultraviolet light has no effect on ph, colour and little effect on the chemical composition of the water. However, the colour, turbidity and chemical composition of the water can interfere with ultraviolet light transmission. Bacteria may be protected by turbidity, clumping and by the presence of slimes. Therefore, the water must be adequately treated prior to ultraviolet light exposure. Ultraviolet light disinfection is not ph dependent, but the addition of hydrogen peroxide to pool water results in slightly acidic conditions. This combined with the oxidation of bather organics requires ph balance to overcome bather discomfort and maintain protection of the pool surfaces, pool water plant and metal fixtures. To achieve satisfactory pool water chemistry the total alkalinity level should be maintained within a range of 60 to 200 mg/l Ultraviolet light plus hydrogen peroxide operating criteria To ensure effective disinfection the ultraviolet light plus hydrogen peroxide system must achieve: an ultraviolet light dose rate of 30,000 microwatt seconds per centimetre squared a flow rate of 150 litres per minute through the ultraviolet light disinfection system a pool water turnover rate of at least once in:- - every 6 hour period for a swimming pool - every 1/2 hour period for a spa pool a minimum hydrogen peroxide level of not less than 40mg/L within the pool water a ph value between 7.2 and 7.6 a total alkalinity level between 60 mg/l and 200 mg/l 5. WATER CLARITY Clarity of pool water refers to the clearness or lack of cloudiness of the water and it may be regarded as the distance through the water at which an object can be seen. Under the Public and Environmental Health Regulations the clarity of pool water must be such that a matt black disc, or a disc that contrasts with the colour of the bottom of the pool, 150mm in diameter, is (or would be) clearly visible at the deepest part of the pool. Removal of suspended and colloidal matter by filtration will assist in maintaining pool water clarity. The purpose of achieving clarity in swimming and spa pools is to: confirm the absence of particles which may shield micro-organisms from direct contact with the disinfectant. enable persons to estimate depth, to see subsurface hazards easily and to detect submerged pool users. provide a pleasant, attractive and appealing appearance to the water. 9
10 S T A N D A R D The internal surfaces of pools must provide high light reflection from the under water surfaces. This can help in detecting:- poor water quality poor cleaning practices bathers beneath the surface who may be in difficulties. 6. ph AND TOTAL ALKALINITY The ph of swimming and spa pool water can affect the disinfection efficiency. It can also effect the pool surfaces, metal fixtures, pipework, pumps and bather comfort. Where the pool water is disinfected with chlorine the ph factor is much more critical. Therefore, the ph range must be limited and its tendency to fluctuate must be controlled by ensuring a minimum level of total alkalinity. For the purpose of this code total alkalinity is measured as calcium carbonate (CaCO 3 ). Pool waters disinfected with chlorine or ultraviolet light plus hydrogen peroxide require a minimum total alkalinity level of 60mg/L. However, where gaseous chlorine is used the minimum total alkalinity level is 150mg/L. This ensures that the water is chemically balanced and can be effectively disinfected Total alkalinity levels greater than 200mg/L may result in scaling of fittings and surfaces particularly with hard waters. Consequently, hard waters may require treatment prior to being added to a pool. Tables 1 to 4 detail the range of ph and total alkalinity values for disinfected pool waters. 7. SPA POOLS Spa pools have a much higher level of suspended matter than swimming pools because of their reduced capacity, higher bather load to water volume ratio, increased operating temperature, aeration of the water body and elevated organic contaminant loading. To lessen the impact of this elevated level of suspended matter on disinfection efficacy the pool water needs to be exchanged and passed through the filter at least half hourly. In those facilities with varying requirements for pool water turnover the spa pool should be provided with a separate filter. Spa pools must be drained at least weekly to prevent a build up of total dissolved solids. This is to ensure the efficacy of disinfection and to enable cleaning of the floors and walls to be done prior to refilling with clean fresh water. Inground spa pools must be constructed and installed to prevent movement due to external pressure when drained. 7.1 WATER TEMPERATURE Spa pool water should not be heated to above 40 o C. An ideal range is o C. Refer to tables 2 and 3. Any thermostatic device controlling the spa pool water temperature should be capable of maintaining the temperature to within ±0.5 o C of the set range. A high temperature alarm should be installed to inform users that the water temperature exceeds 40 o C. 7.2 POTENTIAL HEALTH EFFECTS Infection is usually associated with high levels of micro-organisms in poorly maintained spa pools. The spa ecosystem being both warm and aerated promotes growth of a range of harmful organisms such as those listed in table 5. 10
11 O P E R A T I O N O F S W I M M I N G P O O L S & S P A P O O L S 7.3 BATHER WARNING NOTICE A sign displaying the following advice should be positioned in a prominent position immediately adjacent to the spa where it can be read by bathers intending to enter the spa. DO NOT put your head under the water. DO NOT use the spa while under the influence of drugs or alcohol. DO NOT use the spa for more than 20 minutes at a time. DO NOT allow children to use the spa unsupervised. DO NOT swallow spa water. DO NOT use the spa if you have an open wound, feel unwell or are pregnant. 8. DISINFECTION & TREATMENT OF WATER 8.1 SWIMMING POOLS The following conditions must be achieved whenever a swimming pool (excluding hydrotherapy pools, wave pools and waterslides) is available for use: the swimming pool water must be disinfected by chlorine or by an ultraviolet light plus hydrogen peroxide system so that the disinfection values set out in tables 1 and 4 are maintained. where chlorine is used the ph, total alkalinity and cyanuric acid (for stabilized pools only) values for the swimming pool water are to be maintained in accordance with tables 1 and 2. where an ultraviolet light and hydrogen peroxide system is used the ph, total alkalinity and pool water flow rate must be maintained in accordance with the requirements set out in table 4. the swimming pool must have a filtration system that provides a continuous circulation of the pool water through the filter. all water in the swimming pool must pass through the filter as often as necessary to ensure that the water is maintained in a clean and clear condition and in any event at least once in every six hours. the swimming pool must be fitted with automatic dosing and monitoring equipment that continuously analyses and controls the ph and disinfectant levels in the pool water within the range as indicated in tables 1 and 2. pool water clarity must be maintained in a clean, clear condition so that a 150 mm diameter matt black disc, or a 150 mm diameter disc that contrasts with the colour of the bottom of the swimming pool, is (or would be) clearly visible when viewed through the pool water at the deepest part of the swimming pool. 8.2 SPA POOLS The following conditions must be achieved whenever a spa pool is available for use: the spa pool water must be disinfected with chlorine or by an ultraviolet light plus hydrogen peroxide system in accordance with the values set out in tables 3 and 4. for chlorine disinfected spa pools the ph and total alkalinity of the water must be maintained in accordance with the requirements set out in table 3. where an ultraviolet light and hydrogen peroxide system is used the ph, total alkalinity and pool water flow rate must be maintained in accordance with the requirements set out in table 4. the spa pool shall be fitted with a filtration system that provides a continuous circulation of water through the filter and passes all water in the spa pool through the filter at least once in every 30 minutes. 11
12 S T A N D A R D the spa pool shall incorporate a weir off-take or skimmer system that continuously takes away surface water whilst the spa pool is in use. the spa pool must be fitted with automatic dosing and monitoring equipment that continuously analyses and controls the ph and disinfectant levels in the pool water within the range as indicated in table 3. the spa pool water clarity must be maintained in a clean, clear condition so that a 150 mm diameter matt black disc, or a 150 mm diameter disc that contrasts with the colour of the bottom of the pool, is (or would be) clearly visible through the pool water at the deepest part of the spa pool when there is no turbulence in the spa pool water. the spa pool must be drained at least weekly and the floor and walls of the pool cleaned before it is refilled. 9. BREAKPOINT CHLORINATION 9.1 EXPLANATION Breakpoint chlorination is the process of maintaining sufficient free available chlorine in the pool water to chemically convert chloramines and ammonia-nitrogen compounds to inert nitrogen gas. The process is described in more detail below and as indicated in figure 2. When chlorine is first added to the water it is destroyed by reducing compounds present in the water as depicted in zone 1 of figure 2. FIGURE 2 : BREAKPOINT CHLORINATION As further chlorine is added the level of total chlorine in the water, mainly chloramines, will steadily increase until a peak is reached, shown as point A in zone 2 of figure 2. The chloramines, mainly monochloramines, arise from the reaction of chlorine with nitrogenous compounds which have been introduced into the pool by organic 12
13 O P E R A T I O N O F S W I M M I N G P O O L S & S P A P O O L S matter such as perspiration and urine from bathers. These nitrogenous compounds e.g. urea, uric acid, amino acids and creatinine react with chlorine to form monochloramines. Point A in figure 2 depicts the stage when all the nitrogenous compounds in the water have reacted with chlorine to form monochloramines. With the further addition of chlorine an unexpected phenomenon occurs; instead of the total chlorine measurement continuing to rise it begins to drop to almost zero as indicated in zone 3 of figure 2. Here the continued addition of chlorine oxidises the monochloramines to dichloramines and the dichloramines to either nitrogen or trichloramines. This means that from this point, indicated as point A in figure 2, the total chlorine level reduces as the monochloramines and dichloramines are oxidised out of solution. At point B, as shown in figure 2, only the stable chloro-organic nitrogen compounds remain. Finally, the continued addition of chlorine results in free chlorine being available in the pool water as indicated in zone 4 of figure 2. Point B, as indicated in zone 4 of figure 2, is known as the breakpoint and thereafter all the additional chlorine results in increased free chlorine concentrations. It is this free chlorine that provides the disinfection capability within the pool water. 9.2 CHLORAMINES The following chemical equations illustrate the reactions of hypochlorous acid with water containing ammonia from urine, perspiration and other sources to form chloramines. NH 3 + HOCl NH 2 Cl + H 2 O ammonia hypochlorous monochloramine water acid This reaction is usually completed within a minute at ph 7.0 when the chlorine to ammonia nitrogen ratio is 5:1. As the chlorine to ammonia nitrogen ratio begins to increase above 5:1 the monochloramine reacts to form dichloramine. NH 2 Cl + HOCl NHCl 2 + H 2 O monochloramine hypochlorous dichloramine water acid This reaction is very much slower than the first reaction. Further addition of chlorine before the breakpoint can result in the formation of volatile trichloramine (nitrogen trichloride). NHCl 2 + HOCl NCl 3 + H 2 O dichloramine hypochlorous trichloramine water acid The monochloramine and dichloramine also react with each other to release nitrogen. NH 2 Cl + NHCl 2 N 2 + 3HCl monochloramine dichloramine nitrogen gas hydrogen chloride The above reactions may be summarized as follows:- 2NH 3 + 3HOCl N 2 + 3HCl + 3H 2 O ammonia hypochlorous nitrogen gas hydrogen water acid chloride Chloramines produce a characteristic chlorine-like smell. Trichloramine is particularly noticeable because it is volatile and is readily aerated out of water by agitation. Trichloramine is one of a number of chlorinated compounds present in pool water and can cause severe eye irritation. The trichloramine reaction is most pronounced at low ph levels. The reaction lessens as the ph level rises, it is minimal at the ph level of 7.5 to 8.0 and does not normally form above this level. This is one of the main reasons for keeping the ph level within the range of 7.2 to 7.6. Maintenance of breakpoint chlorination is required to minimise the effects caused by trichloramine. Not all eye irritation can be attributed to trichloramine. Chlorine can also react with phenolic compounds to form chlorinated phenols which also given rise to severe eye irritation and unpleasant tastes in the water. Phenolic compounds are present in a number of cleaning products and have been used in the past for foot baths. The use of phenols or phenolic compounds is not recommended in or around swimming pools and spa pools. 13
14 S T A N D A R D 10. POOL POLLUTION Bathers are the chief source of nitrogenous compounds in swimming and spa pool water. Ammonia nitrogen and organic nitrogen are discharged to the water via perspiration and urine. The amounts of each may vary but generally children are responsible for the greatest proportion of urine in the pool. High pool water temperature and air temperature increase the rate of perspiration. Dust, tree leaves and lawn clippings also contribute to the pollution of swimming and spa pool water ALGAE Algae are microscopic plants of which two varieties of importance are found in pools; one variety which floats freely in the water and a more persistent variety which imbeds itself into pores and crevices of the water contact surfaces. The presence of sunlight, carbon dioxide, mineral matter and nitrogenous compounds or atmospheric nitrogen and other organic nutrients is essential for algal growth. Algae will harbour and foster bacterial growth and retard the action of some disinfectants such as chlorine. For pools disinfected with chlorine, algal growth is objectionable because it reacts with the chlorine to create odours, cause turbidity, discolour the water and produce slimes that can contribute to accidents in and around the pool. A heavy algal growth may increase the chlorine demand in pools disinfected with chlorine to a point where the ordinary levels of free chlorine will not kill the algae. It is then necessary to superchlorinate the pool by maintaining a free chlorine level in excess of 10mg/L whilst the pool is not in use. Following this treatment the algae should brush off quite readily. If not, the dose should be repeated until all the algae is destroyed. The dead algae should be removed by physical means before the pool is made available for use. The presence of algae in pool water disinfected with chlorine is an indication that free chlorine is not being maintained. Algae can also be controlled by the use of an algicide AMOEBAE Acanthamoeba species and Naegleria fowleri, are ubiquitous protozoan organisms naturally occurring within the environment. Under suitable conditions such as those found in poorly maintained pool water they can cause a fatal form of meningo-encephalitis. These protozoa invade the swimmer through the cribriform plate in the nasal cavity and then migrate to the brain. They are readily destroyed by maintaining the required level of disinfecting agent within the pool water. Refer to tables 1, 3 and BACTERIA The presence of organic matter in pool water provides a suitable medium for the growth of bacteria. This pool water pollution is derived from humans, animals such as birds and the environment. Disinfecting agents are used to destroy or inactivate these harmful bacteria and it is for this reason that health authorities require disinfection of pool water. Pathogenic micro-organisms found in inadequately disinfected pools include Escherichia coli, Staphylococcus, Streptococcus, Pseudomonas aeruginosa, Mycobacterium marinum, Salmonella and Neisseria species. Escherichia coli is used as an indicator for the presence of faecal pollution. Staphylococci and Streptococci are used as indicators for pollution originating from the nose, throat, mouth and skin of bathers. They are more resistant to the disinfecting agents than the coliform organisms. Pseudomonas aeruginosa is an opportunistic pathogen which can cause eye, ear and skin infections in users of pools where the pool water is inadequately disinfected. Mycobacterium marinum cause skin granulomas and it can be found on wet pool surrounds. Table 5 provides further information on a range of potential health effects associated with pool use. 14
15 O P E R A T I O N O F S W I M M I N G P O O L S & S P A P O O L S 10.4 CORROSION PRODUCTS Corrosion in pool structures is caused by prevailing acidic conditions i.e. a ph of less than 7.0. Such conditions can cause deterioration of structural concrete, cement rendering, other surfaces and cause tiles to lift. Metal fittings including pumps, ladders, underwater light fittings, heat exchangers and pipework will also corrode. This will effect flow and have an impact on water quality management. It is very important to ensure that the pool water is chemically balanced to reduce the effects of corrosion on pool water quality and the materials used in the pool system ORGANIC NITROGEN To ensure effective disinfection in pool water the presence of organic nitrogen must be controlled. This can be achieved by ensuring breakpoint chlorination is maintained at all times. A swimmer may lose up to 1 litre of perspiration per hour when active in pool water at 24 o C with an ambient air temperature of 38 o C. Perspiration contains sodium chloride, calcium and magnesium salts, and nitrogenous compounds consisting of large amounts of organic nitrogen, ammonia nitrogen, urea, creatinine and amino acids. The ph of perspiration is in the range of 4.0 to 6.8; however, the nitrogen content will vary according to diet. The chemical composition of urine includes urea, creatinine, uric acid, hippuric acid and inorganic salts, it is more complex than perspiration and it is difficult to treat because of its high nitrogen content. Ammonia and urea from both perspiration and urine are the main products which adversely effect the chlorination process. Ammonia nitrogen reacts with chlorine within minutes to form chloramines; however, urea must first go through a hydrolysis reaction before it can combine with chlorine and this can be accelerated by the presence of certain enzymes. This hydrolysis takes 3 to 4 hours under normal conditions VIRUSES Humans and animals pollute pool water with viruses which can then infect other users. Many viruses can be transmitted from one person to another via pool water. Most viruses, especially the enteroviruses, are more resistant to chlorine than bacteria such as Escherichia coli. Adenoviruses are associated with pharyngitis, conjunctivitis and fever. The enterovirus group includes polio, coxsackie and hepatitis A. These agents may produce gastro-enteric infections, jaundice, involve the nervous system and cause a variety of skin rashes. Disinfection concentrations required by the legislation and as indicated in figures 1, 3 and 4 will destroy the harmful viruses and render the pool water safe for use by bathers. 11. TABLES TABLE 1 : SWIMMING POOLS DISINFECTED WITH CHLORINE Pool water temperature ph Total alkalinity mg/l Min-Max Min-Max Minimum free chlorine* < 26 o C ** 1.0 Unstabilized pool water mg/l Maximum total chlorine* Minimum free chlorine* Free chlorine as measured o C ** 2.0 Free chlorine as measured * Disinfection values ** If gaseous chlorine is used the total alkalinity value must be in the range mg/L. NOTE: Stabilizers are not to be used in indoor swimming pools Stabilized pool water mg/l Maximum total chlorine* Min-Max cyanuric acid Free chlorine as measured Free chlorine as measured
16 S T A N D A R D TABLE 2: SWIMMING AND SPA POOL CHARACTERISTICS Characteristics Range: Min - Max Comments ph If ph is below 7.2, then the possibility of:- - eye discomfort due to accelerated formation of chloramines - rapid loss of chlorine - etching of exposed cement finished pools, and - corrosion of metals If ph is above 7.6, then the possibility of:- - reduction of chlorine disinfection efficiency - increased chlorine requirement - eye discomfort - drying of skin - cloudy water, and - scale formation Total alkalinity when disinfected with:- - calcium hypochlorite - sodium hypochlorite - salt chlorinator - gaseous chlorine mg/l mg/l mg/l mg/l If total alkalinity is below 60, then possibility of:- - ph fluctuation due to weak buffering effect - corrosion of metals If total alkalinity is above 200 then the possibility of:- - high ph - cloudy water, and - scale formation Stabilizer cyanuric acid mg/l If stabilizer value is below 30, then the chlorine residual is rapidly destroyed by sunlight If stabilizer value is above 50, then the time to destroy pathogenic organisms becomes unacceptably long Temperature Swimming pools - 28 o C max Spa pools - 40 o C max Ideal o C If the temperature is too low, then bathers may experience discomfort If the temperature is too high, then the possibility of:- - increased use of chlorine - bather discomfort - increased evaporation, and - increased scaling potential NOTE: Stabilizers are not to be used in spa pools or indoor swimming pools TABLE 3: SPA POOLS DISINFECTED WITH CHLORINE ph Temperature Free chlorine mg/l Total chlorine mg/l Total alkalinity mg/l Min - Max Ideal Maximum Minimum Maximum Min - Max o C 40 o C 4.0 Free chlorine as measured NOTE: Stabilizers are not to be used in spa pools 16
17 O P E R A T I O N O F S W I M M I N G P O O L S & S P A P O O L S TABLE 4: OPERATING CRITERIA FOR THE ULTRAVIOLET LIGHT PLUS HYDROGEN PEROXIDE SYSTEM Ultraviolet light mws/cm 2 * Pool water flow rate Pool water turnover rate 150 L/min 6 hours for swimming pools 1/2 hour for spa pools Hydrogen peroxide (H 2 O 2 ) level 40 mg/l * ph 7.2 to 7.6 Total alkalinity 60 to 200 mg/l * Disinfection values NOTE: The ultraviolet light plus hydrogen peroxide system has been approved for use in spa pools and in indoor swimming pools having a capacity up to 500,000 litres. TABLE 5: POTENTIAL HEALTH EFFECTS ASSOCIATED WITH SWIMMING AND SPA POOLS HEALTH CAUSATIVE PREDISPOSING FACTORS EFFECTS ORGANISMS / AGENTS TO INFECTION 1. Follicular Pseudomonas aeruginosa - High numbers of micro-organisms dermatitis - Long exposure or high temperatures 2. Skin, ear and Pseudomonas aeruginosa - Injury eye infections Ps cepacia - Spa environs and materials Mycobacterium marinum - Skin lesions from recent trauma or Papilloma viruses immune deficiency Acanthamoeba 3. Skin irritation Chloramines - Inadequate dumping frequency - Low chlorine disinfectant levels 4. Respiratory Legionella, Pseudomonas spp - Aerosol dispersion of contaminated water infection Enterobacteriaceae, aerobic - Poor disinfection practice amoebae, adenoviruses - Immersion of the head - Pre-existing respiratory disease 5. Genito-urinary Pseudomonas spp, - Excessive exposure to spa water infection Enterobacteriaceae, - Bather practices Trichomonas, yeasts and fungi 6. Gastro-intestinal Giardia, Cryptosporidium, - Ingestion of water Enterobacteriaceae - - Faecal pollution of water Klebsiella, Yersinia 7. Heat stress Excessive exposure - High temperature, especially above 40 o C (hyperthermia) - Long exposure time - Predisposition to stress, heart conditions Information by courtesy of the National Health and Medical Research Council, Australia, Guidelines for Heated Spa Pools 17
18 S T A N D A R D 12. ACKNOWLEDGEMENTS This Code of Practice was developed by a working party comprising representatives from the following organisations... Australian Institute of Environmental Health (S.A. Division) Australian Institute of Swimming and Recreation Centre Management (S.A. Division) Local Government Association of South Australia, Legal Services Swimming Pool and Spa Association of Australia (S.A. Division) South Australian Swimming Pool and Spa Industry South Australian Health Commission, Environmental Surveillance Section The Public and Environmental Health Council wishes to convey its sincere appreciation to the supporting organisations for making a representative available and to each member of the working party for their valued technical contribution. 13. REFERENCES Public and Environmental Health Act, 1987 and Regulations. Australian Standards: Spa Pools Part 1: Public spas Part 2: Private spas 3633 Private Swimming Pools - Water Quality Mitchell, P. Kirk, The Proper Management of Pool and Spa Water. Hydrotech Chemical Corporation. Hartley, K.J., Chemistry of Chlorinated Swimming Pools. Gutteridge Haskins and Davey, Antisavage, J.P. (ed) Handbook of Industrial Water Conditioning. Eighth Edition, Betz Laboratories, Australian Guidelines for Heated Spa Pools, National Health and Medical Research Council, Commonwealth of Australia, 1990 Australian Guidelines for Disinfecting Private Swimming Pools, National Health and Medical Research Council. Commonwealth of Australia,
Keeping Your Swimming Pool and Spa Healthy Environmental Health Guide
Keeping Your Swimming Pool and Spa Healthy Environmental Health Guide A swimming pool or spa can be an asset to your home, and provide the opportunity to take part in healthy relaxing activities. However,
WATER CHEMISTRY AND POOL WATER BALANCE
C R6 H A PT E WATER CHEMISTRY AND POOL WATER BALANCE LEARNING OBJECTIVES After completely studying this chapter, you should be able to: Understand and list the parameters upon which water balance is based.
EPB 311- Strategies for Dealing with Groundwater Treatment Systems Having High Natural Ammonia
EPB 311- Strategies for Dealing with Groundwater Treatment Systems Having High Natural Ammonia Background The occurrence of ammonia (NH 3 ) in the water source is often associated with pollution due to
The Chemical Adjustment Reference Cheat Sheet
The Chemical Adjustment Reference Cheat Sheet By Terry Duff Howdy! I hope this information finds you well. In this easy to read, short report, you ll find a few charts that will show you what to add and
CFAO 34-38 -- SANITARY CONTROL OF INDOOR AND OUTDOOR POOLS AND SWIMMING AREAS
CFAO 34-38 -- SANITARY CONTROL OF INDOOR AND OUTDOOR POOLS AND SWIMMING AREAS GENERAL 1. Bathing in water polluted by sewage or by secretions and discharges of bathers is a possible means of acquiring
Basic Chemistry of Chlorination
Basic Chemistry of Chlorination Chlorine (Cl 2 ) is a gas, heavier than air, toxic, non-flammable and an economically available oxidizing agent that provides properties desirable in disinfection usage.
Swimming Pool Maintenance
Swimming Pool Maintenance Steps to remove algae in swimming pools 1. Brush the walls and floor of the swimming pool to remove as much of the algae as possible. This will greatly reduce the amount of time
Trichloramine and Asthma in Swimming pools & spas Problem solved
1 Trichloramine and Asthma in Swimming pools & spas By Dr.Howard T Dryden October 2006 In recent years there have been many reports in the press regarding trichloramine and its potential implications as
How To Ensure Safety At A Swimming Pool Or Spa
Index Purpose... 2 Application... 2 Referral Agency... 2 Associated Requirements... 2 Referenced standards... 2 Definitions... 2 Disinfection System... 4 Filtration equipment... 4 Small child safety...
Agricultural and Veterinary Chemicals Code (Listed Chemical Product Home Swimming Pool and Spa Products) Standard 2014
Agricultural and Veterinary Chemicals Code (Listed Chemical Product Home Swimming Pool and Spa Products) Standard 2014 I, Kareena Arthy, Chief Executive Officer of the Australian Pesticides and Veterinary
UV Treatment of Swimming Pool Water
UV Treatment of Swimming Pool Water Dechloramination Chlorine in Pool Water Free chlorine (= residual chlorine) exists as hydrochloric acid, hypochlorous acid and the hypochlorite ion; ideally, free chlorine
What is Chlorination?
What is Chlorination? What is chlorination? Microorganisms can be found in raw water from rivers, lakes and groundwater. While not all microorganisms are harmful to human health, there are some that may
Treatment options for hydrogen sulfide. Testing for hydrogen sulfide
Sometimes hot water will have a sour smell, similar to that of an old damp rag. This smell often develops when the thermostat has been lowered to save energy or reduce the potential for scalding. Odor-causing
Chemistry at Work. How Chemistry is used in the Water Service
Chemistry at Work How Chemistry is used in the Water Service WATER TREATMENT Everyday, more than 100 water treatment works in Northern Ireland put approximately 680 million litres of water into the supply
Basic Pool & Spa Care
Basic Pool & Spa Care Module 2: Water Balance Exceptional People. Proven Methods Table of Contents MODULE 2: Water Balance Objective. 4 Purpose.. 4 ph Objectives.. 5 Topic Introduction. 5 Water Balance.
ACT DEPARTMENT OF HEALTH AND COMMUNITY CARE A CODE OF PRACTICE TO MINIMISE THE PUBLIC HEALTH RISKS FROM SWIMMING/SPA POOLS PART A: GENERAL GUIDELINES
ACT DEPARTMENT OF HEALTH AND COMMUNITY CARE A CODE OF PRACTICE TO MINIMISE THE PUBLIC HEALTH RISKS FROM SWIMMING/SPA POOLS PART A: GENERAL GUIDELINES CONTENTS TABLES...iv PURPOSE...v Definitions...vi 1.
WATER TREATMENT IN AUCKLAND
WATER TREATMENT IN AUCKLAND Auckland's water (like water throughout New Zealand) is a combination of water from dams and water from underground springs. Depending on the source of the water, it has different
Understanding basic pool chemistry is one of the most important factors in pool maintenance. Properly balanced water creates an environment that
Understanding basic pool chemistry is one of the most important factors in pool maintenance. Properly balanced water creates an environment that optimizes the disinfection process and protects the pool
PPM or ORP: Which Should Be Used?
PPM or ORP: Which Should Be Used? Water treatment experts are becoming increasingly aware that water disinfection is dependent upon ORP and not the free residual chlorine ratio. Over the past few years,
Ultra Violet Disinfection 01422 833121 [email protected]
[email protected] Applications Overview Ultraviolet (UV) disinfection is used to treat three billion litres of water every day around the world as it is a highly effective treatment method
Supporting Guidance (WAT-SG-41)
Water Use Supporting Guidance (WAT-SG-41) Discharge of Chlorinated Effluents Version: v2.1 Released: Aug 2014 Copyright and Legal Information Copyright 2012 Scottish Environment Protection Agency (SEPA).
Extended experimental investigation: The effect of sunlight on the chlorine levels in pools
Chemistry (2007) Sample assessment instrument and student response Extended experimental investigation: The effect of sunlight on the chlorine levels in pools This sample is intended to inform the design
WHAT DOES A SWIMMING POOL OPERATOR NEED TO KNOW?
WHAT DOES A SWIMMING POOL OPERATOR NEED TO KNOW? 1. POOL VOLUME The volume of your pool is the most important number you need to know. The volume is the number of gallons of water in your pool. a. The
Factors Affecting Precipitation of Calcium Carbonate
Factors Affecting Precipitation of Calcium Carbonate John A. Wojtowicz Chemcon Laboratory tests with clear solutions showed that precipitation of calcium carbonate does not occur in the ph range 7.5 to
The Ultimate Swimming Experience
The Ultimate Swimming Experience Forward This handbook is designed to provide an understanding of water treatment and sanitation approaches used for residential and commercial swimming pool and spa waters.
Page # Introduction... 2 Disinfecting Agents... 3 Alkalinity and ph Explained... 4 Pool Maintenance Procedures... 5 Pump, Filter and Circulation
Page # Introduction... 2 Disinfecting Agents... 3 Alkalinity and ph Explained... 4 Pool Maintenance Procedures... 5 Pump, Filter and Circulation Systems... 8 Common Pool Water Problems... 9 Pool Talk in
FAQ s & Product & Troubleshooting Guide 37
FAQ s & TROUBLESHOOTING GUIDE Pool Water Treatment SIMPLE DIRECTIONS FOR THE TREATMENT OF AUSTRALIAN SWIMMING POOL WATER SANITISATION: The approved form for sanitisation for Australian swimming pools is
The Control of ph and Oxidation Reduction Potential (ORP) in Cooling Tower Applications By Charles T. Johnson, Walchem Corporation
The Control of ph and Oxidation Reduction Potential (ORP) in Cooling Tower Applications By Charles T. Johnson, Walchem Corporation Introduction The importance of keeping cooling tower water in proper chemical
Queensland Health Swimming and Spa Pool Water Quality and Operational Guidelines (October 2004)
Queensland Health Swimming and Spa Pool Water Quality and Operational Guidelines (October 2004) Communicable Diseases Unit Public Health Services Queensland Health Swimming and Spa Pool Water Quality and
8 Chemicals from water treatment and distribution
8 Chemicals from water treatment and distribution 8.1 Introduction Chemicals from water treatment and distribution reach drinking-water by the most direct route. They fall into three broad categories:
Adjusting Chemical Levels in a Swimming Pool
Adjusting Chemical Levels in a Swimming Pool When adding chemicals, there are three types of chemical adjustments that can be performed: product label chemical dosage, product label chemical adjustment,
MAINTAINING YOUR SPA WATER
MAINTAINING YOUR SPA WATER Tap water that is safe to drink is not always safe for a spa. Normal tap water is usually filled with minerals and microcontaminants that are not visible to the naked eye. Properly
DRAFT July, 2006 Page 1 of 18
DRAFT July, 2006 Page 1 of 18 Swimming Pool Venue Environmental Health Outbreak Investigation Survey: An Environmental Health Systems Approach to Recreational Water Illness Prevention - Information Collection
b. Alkalinity make your life easier and get the alkalinity between 80 and 120 PPM. c. ph from 7.2 and 7.8 so that the other chemicals work properly
1. Adding Chemicals to your water: Chemicals should be added slowly over a period of time. Pool owner/operators need to remember that all chemicals added will have an effect beyond their intended purpose.
GUIDELINES FOR LEACHATE CONTROL
GUIDELINES FOR LEACHATE CONTROL The term leachate refers to liquids that migrate from the waste carrying dissolved or suspended contaminants. Leachate results from precipitation entering the landfill and
The role of CO 2 in pool water
The role of CO 2 in pool water A series of e-mail articles from the research group onbalance, January 2006 The role of CO 2 in pool water #1 While some service techs go about their business taking care
Total Suspended Solids Total Dissolved Solids Hardness
Total Suspended Solids (TSS) are solids in water that can be trapped by a filter. TSS can include a wide variety of material, such as silt, decaying plant and animal matter, industrial wastes, and sewage.
Water Quality For Poultry
Water Quality For Poultry Amy E. Halls, M.Sc. Monogastric Nutritionist Shur-Gain, Nutreco Canada Inc. January 2008 Water Quality For Poultry Amy E. Halls, M.Sc. Monogastric Nutritionist Shur-Gain, Nutreco
Removal of Chlorine Residual in Tap Water by Boiling or Adding Ascorbic Acid
RESEARCH ARTICLE OPEN ACCESS Removal of Chlorine Residual in Tap Water by Boiling or Adding Ascorbic Acid Liuqing Albert Zhang *King George V School, 2 Tin Kwong Rd, Hong Kong ABSTRACT Society s preference
Ozone in Cooling Towers : Hygiene for us
Ozone in Cooling Towers : Hygiene for us Dr. Matthias Hoffmann BWT Wassertechnik GmbH, Industriestrasse 7, D-69198 Schriesheim, Germany Keywords: Ozone, Cooling Tower, Legionella, Hygiene, Air conditioning,
BF Series Sa S n u d p Fe i r l C t l e e r a n Installation Manual -1-
Installation Manual -1- What happens to the water in your pool? This should be a question of prime consideration for all pool owners. In the past some pools did not use filtering systems, the owner was
conductivity emulsification saponification wetting peptizing dispersion rinsability controlling mineral deposits Sequestration chelation
ENVH 441 FOOD PROTECTION DETERGENTS AND SANITIZERS Cleaning and sanitizing must both occur for dishware to be safe. These are accomplished by use of a (1) detergent to clean utensil surfaces (remove the
ACIDS, BASES AND SALTS
Acids are those chemical substances which have a sour taste. Bases are those chemical substances which have a bitter taste. A salt is an ionic compound which dissociates to yield a positive ion other than
Protocol for Disinfection of Cell Culture and Tissue Culture in Media:
Protocol for Disinfection of Cell Culture and Tissue Culture in Media: Location: Hickory Hall 001 Director: Dr. Guido Verbeck DECONTAMINATION OF CELL CULTURE WASTE Cell culture has become a common laboratory
Ospa Water Care Guide for private swimming pools and whirlpools
Ospa Water Care Guide for private swimming pools and whirlpools The pool water treatment system 2 When you bought your Ospa system, you took the first and most important step towards convenient and problem-free
MARYLAND DEPARTMENT OF THE ENVIRONMENT 1800 Washington Boulevard Baltimore Maryland 21230 (410) 537-3000 1-800-633-6101 http://www.mde.state.md.
MARYLAND DEPARTMENT OF THE ENVIRONMENT 1800 Washington Boulevard Baltimore Maryland 21230 (410) 537-3000 1-800-633-6101 http://www.mde.state.md.us FACT SHEET General Discharge Permit No. 12-SI NPDES Permit
Kemisan Water and Wastewater Disinfection Technologies. HypoX. HYPOCHLOROZONE Chlorine Oxygen based Disinfectant
Page0 HypoX HYPOCHLOROZONE Chlorine Oxygen based Disinfectant Page1 TABLE OF CONTENTS - About HypoX --------------------------------------------------------------------------- 3 - Gas Chlorine /Water Reactions
Sodium Hypochlorite KEY FAC T S. Na + O OVERVIEW
Na + O Cl OTHER NAMES: Sodium oxychloride; hypochlorite; bleach; chlorine bleach FORMULA: NaClO ELEMENTS: Sodium, chlorine, oxygen COMPOUND TYPE: Oxy salt (inorganic) STATE: Solid or aqueous solution;
Mechanical Systems Competency 1.20
Competency 1.20 Mechanical systems personnel shall demonstrate a working level knowledge of the safety and health fundamentals of mechanical systems and/or components. 1. Supporting Knowledge and Skills
Sarah Chung, Ken Oliphant, Patrick Vibien and Jingguo Zhang Jana Laboratories Inc., Aurora, Ontario, Canada
AN EXAMINATION OF THE RELATIVE IMPACT OF COMMON POTABLE WATER DISINFECTANTS (CHLORINE, CHLORAMINES AND CHLORINE DIOXIDE) ON PLASTIC PIPING SYSTEM COMPONENTS Sarah Chung, Ken Oliphant, Patrick Vibien and
Control of legionella bacteria in water systems
Control of legionella bacteria in water systems Audit checklists This is a free-to-download, web-friendly version of Control of legionella bacteria in water systems: Audit checklists (published 2003).
Basics of UV Disinfection
Local Section Seminar Basics of UV Disinfection April 17, 2014 Joseph Moore, P.E. DuBois-Cooper Associates, Inc. 1 Presentation Outline Basics of Ultraviolet (UV) Disinfection Components of UV Disinfection
Maintaining Safe Swimming Pool Indoor Air Quality
Maintaining Safe Swimming Pool Indoor Air Quality VERSION 1.0 ISSUE DATE JULY 2015 ACKNOWLEDGMENT Special thanks to the Public Services Health and Safety Association for the participation in the review
Iron and manganese are two similar elements
L-5451 2-04 Drinking Water Problems: Iron and Manganese Mark L. McFarland, Associate Professor and Extension Soil Fertility Specialist Monty C. Dozier, Assistant Professor and Extension Water Resources
THE USE OF OZONE IN COOLING TOWERS
THE USE OF OZONE IN COOLING TOWERS Paul D. McNicholas Ozonia Ltd Duebendorf, Switzerland Abstract Ozone has been successfully applied to industrial cooling water systems with the resultant improvement
Troubleshooting tips Key. What colour is the water? Reddish-orange. Yellowish-brown or tea-coloured
Appendix 9: Troubleshooting tips These troubleshooting tips provide basic guidance on how to rectify some common water quality problems. Conduct a risk assessment and seek further information before making
A build-up of dirt and decaing organic matter is undesirable in koi ponds.
Hydrogen Sulphide in Koi Ponds A build-up of dirt and decaing organic matter is undesirable in koi ponds. KOISA No. 33 June 010 Hydrogen Sulphide Gas (HS) and Koi Ponds A build up of dirt and decaying
Cleaning. By the end of this chapter, you will be able to: Introduction. Definitions. Chapter 9
Chapter 9 By the end of this chapter, you will be able to: l Define the terms cleaning, decontamination, disinfection l List the factors that affect disinfection l Describe the aims of a cleaning schedule
General Chemistry I (FC, 09-10) Lab #3: The Empirical Formula of a Compound. Introduction
General Chemistry I (FC, 09-10) Introduction A look at the mass relationships in chemistry reveals little order or sense. The ratio of the masses of the elements in a compound, while constant, does not
ENE 806, Project Report 3 CHEMICAL PRECIPITATION: WATER SOFTENING. Grégoire Seyrig Wenqian Shan
ENE 806, Project Report 3 CHEMICAL PRECIPITATION: WATER SOFTENING Grégoire Seyrig Wenqian Shan College of Engineering, Michigan State University Spring 2007 ABSTRACT The groundwater with high level initial
ANSWER KEY. Acids, Bases, and Solutions. Chapter Project Worksheet 1 1. Answers will vary. Sample: cherries, blueberries,
Chapter Project Worksheet 1 1. Answers will vary. Sample: cherries, blueberries, and grass 2. Answers will vary. Sample: Cut 5 g of cherries into small pieces and place in blender. Blend for two minutes,
ACO Cleaning principles for drainage
Cleaning procedures ACO Cleaning principles for drainage Page Introduction 3 Principles of cleaning 4 Cleaning procedures ACO cleaning principles for drainage Cleaning chemicals 5 Manual cleaning of drainage
Welcome to the Understanding Dissolved Oxygen learning module. This section provides information on the following topics:
Introduction Welcome to the learning module. This section provides information on the following topics: How dissolved oxygen is defined and measured in numbers Why dissolved oxygen is important Natural
ION EXCHANGE FOR DUMMIES. An introduction
ION EXCHANGE FOR DUMMIES An introduction Water Water is a liquid. Water is made of water molecules (formula H 2 O). All natural waters contain some foreign substances, usually in small amounts. The water
N-P-K FERTILIZERS. by M.L. Vitosh Extension Specialist, Crop and Soil Sciences
Michigan State University Extension! Extension Bulletin E-896! Reprint July 1996 N-P-K FERTILIZERS by M.L. Vitosh Extension Specialist, Crop and Soil Sciences T here are many grades and analyses of nitrogen
Removing Heavy Metals from Wastewater
Removing Heavy Metals from Wastewater Engineering Research Center Report David M. Ayres Allen P. Davis Paul M. Gietka August 1994 1 2 Removing Heavy Metals From Wastewater Introduction This manual provides
QUESTION (2012:3) (a) (i) Complete the table below showing the conjugate acids and bases. CO 3 H 2 O OH HCN CN -
QUESTION (2012:3) (i) Complete the table below showing the conjugate acids and bases. Conjugate acid Conjugate base - HCO 3 2 CO 3 H 2 O OH HCN CN - (ii) HPO 4 2 (aq) Write equations for the reactions
Storage-stable Aqueous Solutions of Chlorine Dioxide
White Paper Storage-stable Aqueous Solutions of Chlorine Dioxide Tom McWhorter November 14, 2014 Abstract Chlorine dioxide is a powerful, selective biocide. Aqueous solutions of chlorine dioxide have many
Chlorine, Total. DPD Method 1 Method 10101 0.09 to 5.00 mg/l Cl 2 Test 'N Tube Vials. Test preparation. Instrument-specific information
Chlorine, Total DOC316.53.01028 DPD Method 1 Method 10101 0.09 to 5.00 mg/l Cl 2 Test 'N Tube Vials Scope and application: For testing higher levels of total (free plus combined) chlorine in drinking water,
IB Chemistry. DP Chemistry Review
DP Chemistry Review Topic 1: Quantitative chemistry 1.1 The mole concept and Avogadro s constant Assessment statement Apply the mole concept to substances. Determine the number of particles and the amount
Never use a spa or hot tub alone. Do not allow children to use a spa without supervision.
ASK THE EXPERT: SPA MAINTENANCE GUIDE By: All Seasons Spas & Fireplaces http://www.all4seasons.com Introduction Soaking in a hot tub or spa can be uniquely soothing and relaxing, but the hot water environment
Professional Certification in Biological Waste Management Examination Content, Sample Questions & References
Professional Certification in Biological Waste Management Examination Content, Sample Questions & References The IFBA s Professional Certification (PC) in Biological Waste Management identifies individuals
CPSC/CPA SERIES Salt Water Chlorine Generator By Compu Pool Products
CPSC/CPA SERIES Salt Water Chlorine Generator By Compu Pool Products Commercial & Domestic Head Office 88 Spencer Rd. Nerang, Gold Coast Australia P: +61(07) 5596 3773 F: +61(07) 5596 1951 E: [email protected]
CHEMICAL DETERMINATION OF EVERYDAY HOUSEHOLD CHEMICALS
CHEMICAL DETERMINATION OF EVERYDAY HOUSEHOLD CHEMICALS Purpose: It is important for chemists to be able to determine the composition of unknown chemicals. This can often be done by way of chemical tests.
Swimming Pool and Spa Water Chemical Adjustments
Swimming Pool and Spa Water Chemical Adjustments John A. Wojtowicz Chemcon This paper deals with adjustments to swimming pool and spa water chemical parameters such as ph, alkalinity, hardness, stabilizer,
WHY IS THIS IMPORTANT?
CHAPTER 10 BACTERIAL GROWTH Eye of Science / Science Photo Library WHY IS THIS IMPORTANT? Increase in numbers is one of the requirements for infection. This increase is dependent upon bacterial growth.
Acids, Bases, and ph
CHAPTER 9 1 SECTION Acids, Bases, and Salts Acids, Bases, and ph KEY IDEAS As you read this section, keep these questions in mind: What properties do acids have? What properties do bases have? How can
Profiles for floors of same height Cerfix Projoint
PROFILPAS S.P.A. VIA EINSTEIN, 38 35010 CADONEGHE (PADOVA) ITALY TEL. +39 (0)49 8878411 +39 (0)49 8878412 FAX. +39 (0)49-706692 EMAIL: [email protected] s for floors of same height Cerfix Projoint Application
Section 6: Pool Water Quality Management
Essential components of effective pool water management include water source, managing pool water clarity to minimize injury hazard, managing water quality to prevent the transmission of infectious disease,
Where is it found? Elemental form: in barometers, blood pressure instruments, thermometers, and other pressuresensing
Mercury 2 Where is it found? Elemental form: in barometers, blood pressure instruments, thermometers, and other pressuresensing instruments Some batteries for small electronic devices Small amounts in
Innovation and Progress in Water Treatment Technology
Innovation and Progress in Water Treatment Technology Degree of separation of ultrafiltration Summary of the various processes The water will be pressed through the between the raw water side and the filtrate
The Empirical Formula of a Compound
The Empirical Formula of a Compound Lab #5 Introduction A look at the mass relationships in chemistry reveals little order or sense. The ratio of the masses of the elements in a compound, while constant,
SIX REASONS TO DRY BIOGAS To A LOW DEWPOINT BEFORE COMBUSTION IN A CHP ENGINE STEVEN SCOTT MARKET DEVELOPMENT MANAGER ALTERNATIVE ENERGIES
SIX REASONS TO DRY BIOGAS To A LOW DEWPOINT BEFORE COMBUSTION IN A CHP ENGINE STEVEN SCOTT MARKET DEVELOPMENT MANAGER ALTERNATIVE ENERGIES Filippo Turra Product Manager Cooling Technology INTRODUCTION
Alberta Health. Pool Standards July 2014
Alberta Health Pool Standards July 2014 Department Alberta Health Title Pool Standards, July 2014 Author Authority Health System Accountability and Performance Section 66(4) of the Public Health Act, and
Safety Data Sheet Avesta Neutralization Agent 502
Safety Data Sheet Avesta Neutralization Agent 502 This Safety Data Sheet contains information to help users understand the potential hazards relating to this product and provides advice for risk management.
A chlorine free swimming pool that s free of odours and taste, soft and gentle on the skin. www.waterco.com
A chlorine free swimming pool that s free of odours and taste, soft and gentle on the skin www.waterco.com How does it work? Hydroxypure sanitisation is based on the Advance Oxidation Process. (AOP), which
WASTEWATER TREATMENT OBJECTIVES
WASTEWATER TREATMENT OBJECTIVES The student will do the following: 1. Define wastewater and list components of wastewater. 2. Describe the function of a wastewater treatment plant. 3. Create a wastewater
OZOMATIC OWNERS MANUAL
P/N 401833 OZOMATIC OWNERS MANUAL Page 1. INTRODUCTION: 3 2. RUNNING TIME: 3 3. SPA/POOL BALANCE: 4 4. TROUBLE SHOOTING: 4 5. GENERAL INFORMATION: 5 6. OZOMATIC INJECTION SYSTEMS: 5-9 7. 24 HOUR CIRCULATION
Disc Diffusion Susceptibility Methods
Disc Diffusion Susceptibility Methods Introduction When a filter paper disc impregnated with a chemical is placed on agar the chemical will diffuse from the disc into the agar. This diffusion will place
NZS 5826 (2010) (English): Pool water quality [By Authority of New Zealand Ministry of Education Health and Safety Code of Practice]
NZS 5826 (2010) (English): Pool water quality [By Authority of New Zealand Ministry of Education Health and Safety Code of Practice] Wewilseltonoman, wewilnotdenyordefertoanymaneitherjusticeorright. MagnaCarta
Oxivir Tb and Accelerated Hydrogen Peroxide (AHP) Frequently Asked Questions
Oxivir Tb and Accelerated Hydrogen Peroxide (AHP) Frequently Asked Questions What is Accelerated Hydrogen Peroxide (AHP)? AHP is a patented synergistic blend of commonly used, safe ingredients that when
AP ENVIRONMENTAL SCIENCE 2007 SCORING GUIDELINES
AP ENVIRONMENTAL SCIENCE 2007 SCORING GUIDELINES Question 1 Read the Fremont Examiner article below and answer the questions that follow. (a) Identify ONE component of the sewage that is targeted for removal
Silica Over-Saturation, Precipitation, Prevention and Remediation In Hot Water Systems Edited By Dave Peairs, Cal Water, Technical Director
Silica Over-Saturation, Precipitation, Prevention and Remediation In Hot Water Systems Edited By Dave Peairs, Cal Water, Technical Director Background Silica scaling becomes a problem when any hot water
6.8 Measuring the Acidity of Solutions Page 160
6.8 Measuring the Acidity of Solutions Page 160 PRESCRIBED LEARNING OUTCOMES measure substances and solutions according to ph, solubility, and concentration KNOWLEDGE ph is the measure of the tendency
POTENTIAL HAZARD INFORMATION & SIGNATURE SHEET
POTENTIAL HAZARD INFORMATION & SIGNATURE SHEET Scientific research involves exposure to various hazards. When deciding to allow your child to participate in research projects conducted in University of
Scaletec Plus. Descaling Overview, Guidelines, Cleanup Tips, And Question & Answers
INFORMATION RELEASE Synergy Technology for Pool, Spa, & Fountains Scaletec Plus Product technical guidelines for calcium descaling and stain removal from swimming pool surfaces, tile, and equipment to
