FILTRATION for CNG. Compressed Natural Gas (CNG) Filters. Dryers Compressors Storage Cascades Dispensers.
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1 FILTRATION for NG Dryers ompressors Storage ascades Dispensers ompressed Natural Gas (NG) s
2 XEE MISSION To provide customers with innovative solutions which transform raw natural gas into marketable sources of clean energy. We understand what service means to you Products Designed for NG Practical solutions developed from 40 years of experience Full range of products for one-stop shopping Proven quality on a global scale Exceptional Support Flexible, fully trained technical team Expert advice and simple solutions for the right product, every time Expert Problem Solvers on a Global Scale Founded in 1967, Xebec has over 40 years of experience in adsorption technology, the foundation of all of Xebec s systems. To date, Xebec has supplied more than 9000 adsorption systems, built to ASME, National ode or PED specifications, to more than 1500 customers worldwide. With major installations throughout North America, hina, Russia, Australia, South America, Indonesia and the Middle East, Xebec offers worldwide service and support through a dedicated NG team, providing design services, installation expertise and systems development for end-to-end solutions. ustomers First Direct line, live support Products in stock, ready to ship Uncomplicated visual catalogue 2 3
3 The Application What is ompressed Natural Gas (NG)? NG is natural gas that is highly compressed and stored in thick-walled steel, aluminum, or composite high-pressure storage containers. NG is a clear and non-corrosive alternative transportation fuel for automobiles, trucks and buses. Its use is becoming more and more popular because it is less expensive than gasoline and it is far more friendly to the environment with reductions of O 2, nitrous-oxide, and particulate emissions. As a result, many governments financially encourage the conversion and use of this alternative fuel as an energy source. The Problem In NGV Fueling Stations, natural gas is taken from a pipeline and compressed to pressures ranging from 2000 psig up to 6000 psig. The resulting NG is then stored in large tanks before making its way to a gas dispenser where it is ready for use in vehicles. NG, like all fuels, experiences contamination as it travels from pipeline to dispenser. Like traditional fuels, solids collect during handling, water condenses in tanks, and compressor lube oils carry over into the NG stream. ontaminants are also present within the delivery system that can lead to compressor fouling, vehicle fuel system repair, liquids in storage tanks, and gas dispenser replacement. The Solution s are essential for compressed natural gas treatment and are present throughout the treatment chain. NG filters remove all types of solid and liquid contaminants in stages large amounts of condensate and coarse contamination particles such as rust, abrasion particles, oil droplets, and dust in the first stages; fine oil mist and fine dust particles in subsequent stages. ompressed gas filters containing activated carbon also remove oil and oil vapour. NG s Design and s: The core of a compressed gas filter separates levels of contaminants from the compressed gas, depending on the filter media and grade. The element permanently captures the solid particles. It then requires periodic replacement dependent on the level of contamination. Housings: housings with a method for supporting the filter element, a compressed gas inlet and outlet with the flow paths to and from the filter element, a condensate outlet for discharging separated liquids, and connections for monitoring the differential pressure across the filter element. Differential Gauges: Measure the differential pressure across the filter element. They indicate when a filter element needs to be replaced, either because it has reached the end of its useful life, or large amount of contamination has been discharged upstream. Manual ondensate Drains: Used for manually discharging the separated liquids and for pressure relief of the filter. Oil Indicators: Measure the oil aerosol content in the compressed gas. Oil indicators are mainly used to determine the saturation level and whether an activated carbon filter needs to be replaced. Oil Indicator Typical NG Fuel Station Layout E A D Natural Gas Dryer NG ompressor Aftercooler Tank Sump Storage Vessel System NG Dispenser Natural Gas Vehicle A efore drying upstream filter of adsorption dryer: liquid condensate reduces the drying efficiency of the desiccant used in the dryer while liquid oil contaminates the desiccant bed and damages dryer performance permanently. Therefore, both contaminants must be effectively removed upstream of an adsorption dryer. Installing a lower pressure particulate filter removes pipe scale to prevent dryer and compressor damage. efore compression: dust from the dryer must be removed to protect the compressor. After compression: medium and high pressure particulate filters and activated carbon elements will remove oil and oil vapour coming from the compressor. D efore NG is transported from storage to NGV dispenser: pre-filtration of the gas with two-stage coalescing high pressure filters will eliminate solid particles and oil vapours generated by the compressor during underground transit. E For extra protection: high efficiency, high pressure coalescer filters are placed inside the gas dispenser as a final security to protect sensitive metering equipment and prevent oil from making its way into the vehicle. 4 5
4 Overview What best in class looks like Surface Protection The high-grade, cast aluminum filter housings (XL and XM series) are chromatized for corrosion protection and finished with an impact and abrasion-proof powder coating on the outer side. High pressure carbon steel housings (XH series) are manufactured by means of iron phosphate passivation and have a nickel-coated finish. This multi-layer surface protection ensures high resistance and a long service life. onformity with International Standards The X Series has been performance validated according to ISO8573 quality standards and ISO test methods by IUTA, an independent verification body. All filters have been tested to ASME standards, are RN pending and comply with EU Equipment Directive (PED) 97/23/E. An Optimized Range Perfectly Simple Differential pressure gauges Oil Indicators ondensate drains Assembly kits Media Designed For Natural Gas High quality compressed gas filtration starts with selecting the correct filter media. Xebec uses superior-quality filter media with a new hybrid technology. Xebec elements stop the perpetual discussion about the use of filter media with or without binders because they are layered with both types, tailored to the filtration task. The fine filter media is protected on both sides using a supporting fabric to increase both stability and reliability. Pleated s Pleated filter elements provide significantly greater filtration volumes than non-pleated. The higher filter volume provides more void space for holding contaminants which reduces the differential pressure caused by retention of solid particles. The service life of the filter element increases proportionally which results in operating and maintenance cost savings. Incorporated Drainage Media The filter and drainage media are compacted between two stainless steel supporting cylinders, eliminating any potential detachment of the filter media. The drainage media is located inside the filter element, eliminating potential handling damage. The stainless steel cylinders have big, diamond-shaped openings for optimum flow conditions. ompared to punch-hole versions, their contribution to differential pressure is much lower and they are much more environmentally friendly because they are made from expanded sheet metal, i.e. without metal scrap during the production process. Simple Design. Easy Maintenance. Xebec filters have lugs in the lower filter part to which the filter element is securely mounted, fastened and sealed when the housing is screwed tight. That eliminates the need for a tie rod, which allows the filter to be located only a few inches above ground level. A mechanical end stop prevents the housing thread from being overstressed and ensures easy opening of the filter housing even after prolonged operating periods. A hex-nut at the bottom of the bowl has been added for extra help. The filter element holder has guide paths in order for the filter element to be automatically locked in the holder when being installed. 2-Stage Dry-Type Separation During dry-type separation with out-to-inside flow through the filter elements, the drainage media functions as a pre-filter stage, preventing coarse contaminants from entering the fine filter media. As a result, the differential pressure caused by contaminants is reduced and the service life of the filter is extended. As an additional advantage, the filter elements can also be used for wet type filtration. Abrasion-free Activated arbon with 100% Activated arbon oth the filter element type and the cartridge type contain pure activated carbon granulate. The increased filling quantities contribute to a high separation performance and a long service life. oth the filter elements and the cartridges have an integrated general purpose filter element which significantly reduces the abrasion particles of the activated carbon. As a result, downstream dust filtration is not required, reducing installation, operation and maintenance costs. 6 7
5 Type Of Filtration s come with polymer endcaps but are available with aluminum or stainless steel end caps. Filtration grade WS G F SF A AA A MS Water Separation Large, heavy amounts of liquid droplets or particles from a compressed gas flow are separated by means of gravitational forces, centrifugal forces, inertial effects, etc. The differential pressure is constant and a high separation efficiency is guaranteed over the whole specified flow rate range. Designation Water Separator oarse, Pre- General Purpose particulate & coalescing Fine particulate & coalescing Super Fine Odour Removal Activated arbon Activated Alumina artridge Activated arbon artridge Molecular Sieve artridge Dry Type Filtration Purity lass acc to ISO Performance Specs - / 8 / - 6 / - / 4 2 / - / 2 1 / - / 1 1 / -/ / - / / - / / - / / 3 / 1 >98% >10µ (microns) separation (droplets and big particles) 99.99% 3µ (microns) separation of coarse particles & reduction of liquid particles % 1µ (microns) separation of fine particles 0,5 mg/m 3 residual oil content (liquid phase) % 0,1µ (microns) separation of fine particles <0,1 mg/m 3 residual oil content (liquid phase) % 0,01µ (microns) separation of finest particles <0,01 mg/m 3 residual oil content (liquid phase) - <0,005 mg/m 3 Residual oil content (gas phase) Application dependent - <0,005 mg/m 3 Residual oil content (gas phase) Application dependent Solid contaminants are separated from the compressed gas system. The solids contact the fibres of the filter media where they remain. A coarse and a fine coarse media filter protects the fine filter media, increasing the service life. The differential pressure (dry) increases with an increasing amount of contaminant. The elements can be operated from inside to out or vice versa. The preferred direction of flow is toward the finer filter fibres, i.e. from out-to-in. Type of Filtration Application Water separation large amounts of liquid. Wet & dry type Wet & dry type Wet & dry type Wet & dry type Oil vapour adsorption large amounts of solid or liquid coarse contaminants. Removal of medium amounts of solid or liquid fine contaminants. of solid or liquid of finer contaminants. Recommend combining with upstream or G element in the event of increased amounts of contaminant. of solid or liquid of finest contaminants Recommend combining with upstream G or F element in the event of increased amounts of contaminants. of gaseous contaminants, in particular, oil vapour. Upstream F or SF element required. No downstream particulate filter required as it comes with integrated G element. Water vapour adsorption of water vapour. Oil vapour adsorption of gaseous contaminants, in particular, oil vapour for low volume flow rates. Upstream F or SF element required. No downstream particulate filter required as it comes with integrated G element. Water vapour adsorption of water vapour. Wet Type Filtration Liquid contaminants from the compressed gas flow are separated using a fine multi-layer filter media in combination with a drainage media (coalescing filter). The liquid contaminants contact the fibres of the fine filter media, move along the fibres due to the compressed gas flow and form larger droplets when they are merged (coalescing effect). The droplets are absorbed by the drainage media, discharged to the filter element bottom due to gravitational forces, and drop off the filter element. Theoretically, the differential pressure (wet) is constant. However, it rises as the filter element is continuously loaded with liquid and solid contaminants. The direction of flow is toward the drainage media, i.e. from in-to-out. to order your elements Ordering example: XE L 203 A oarse, pre-filter element for filter model XL7, with aluminum end caps XEE Series Size Media Grade (microns) End ap X E () L (Low) 103 WS default: P (polymer) M (Medium) 105 (3µ) A (aluminum) H (High) 107 G (1µ) S (stainless steel) 114 F (0,1µ) 114 SF (0,01µ) 201 A 202 AA 203 A 205 MS Flow apacity* For Housing Size inches mm scfm Nm 3 /h XE_103 Ø=1 ½; h=2 Ø=42; h= XH1 XE_105 Ø=2; h=2 ¼ Ø=51; h= XL1 XM1 - XE_107 Ø=2; h=3 Ø=51; h= XL2 XM2 XH2 XE_114 Ø=2; h=5 ½ Ø=51; h= XL3 / XL4 XM3 XH3 / XH4 XE_201 Ø=3; h=4 ½ Ø=75; h= XL5 - XH5 XE_202 Ø=3; h=8 ½ Ø=75; h= XL6 XM4 XH6 XE_203 Ø=3; h=12 ½ Ø=75; h= XL7 XM5 XH7 XE_205 Ø=3; h=20 Ø=75; h= XL8 XM6 - XE_305 Ø=3 ½; h=20 Ø=92; h= XL9 XM7 - XE_307 Ø=3 ½; h=30 Ø=92; h= XL10 XM8 - XE_506 Ø=5 ½; h=23 ¾ Ø=140; h= XL11 XM9 - XE_507 Ø=5 ½; h=30 Ø=140; h= XL12 XM10 - *Refers to 1 bar(a) and 68 F / 20 at 100 psig/7 barg Oil Vapour Adsorption ompressed gas flow is separated by means of absorption to activated carbon. The NG becomes virtually oil-free which cannot condense into a liquid any more. There is often a filter media downstream of the activated carbon in order to eliminate activated carbon abrasion particles (abrasion-free activated carbon filter). The differential pressure (dry) is constant. The direction of flow is always toward the media, i.e. from in-to-out. Liquid oil or water would dramatically reduce the retention capacity of the activated carbon for oil vapour and should, therefore, be separated in advance using appropriate grade filters. 8 9
6 Low. High Performance. 290 psig / 20 barg Volume Flow Range 40 to 2060 scfm 70 to 3500 Nm 3 /h Temps Port Size F (248 F elements available) 0-80 (120 elements available) ¼" to 3" NPT Differential Gauge, Manual Drain, Oil Indicator, Assembly Kit The XL series of low pressure filters are used to remove solid, liquid and, when using activated carbon cartridges, gaseous contaminants from compressed gas flows. In addition to liquids and dust, these filters eliminate oil droplets and finest dust particles from the compressed gas. s WS G F SF Water Separator 3µm oarse Pre-filter 1µm General Purpose 0,1µm Fine 0,01µm Super-fine Gauges G1 G2 G3 I1 To Order Your XL s Ordering example: XEE Series Application XL N 5 SF P G1 D1 N Low pressure NG filter, ¾" NPT, flow 400 scfm, superfine media grade, DP gauge, manual drain. Port onnection Media Grade (microns) End ap Gauge ondensate Drain X L (Low) (NG) N (NPT) 1 WS P (Polymer) default Max. Temp. 176 F / 80 N (None) Default N (None) Default N (None) Default 2 (3µ) A (aluminum) Max. Temp. 248 F / 120 G1 (Magnetic Differential Manometer) D1 (Manual valve) AK (assembly kit) 3 G (1µ) S (stainless steel) Max. Temp. 248 F / 120 G2 (Magnetic Differential Manometer w/alarm) D3 (Manual ball valve) 4 F (0,1µ) G3 (Differential pressure drop indicator) 5 SF (0,01µ) I1 (Oil Indicator) 6 A 7 AA 8 A 9 MS Use this table to find your filter model. XL NPT Port Size (in) NG flow capacity Volume Mass at 290 psig/20 barg* A scfm Nm 3 /h in mm in mm in mm gals liters lbs kgs 1 ¼ XEL ¾ ¼ 80 ¾ , , XEL ¾ ¼ 80 ¾ , ,7 3 ½ XEL ½ ¼ 80 ¾ , ,8 4 ¾ XEL ½ ¼ 80 ¾ , ,8 5 ¾ XEL ¼ ½ ¼ , ,8 6 1 XEL ½ ¼ , ,2 7 1 ½ XEL ½ ¼ , ,5 8 1 ½ XEL ¼ ½ ¼ , ,1 9 2 XEL ½ ½ , , XEL ¼ ½ , , ½ XEL ½ ¾ , , XEL ½ ½ ¾ , ,9 *Refers to 1 bar(a) and 68 F/20 at 290 psig/20barg A A Activated arbon Manual Drains D1 Flow orrection Factors To select the right filter use the following formulas and the nominal flow figures from the filter model table: For calculating Actual Flow apacity: V a = V n *ft *fp For calculating Nominal Flow apacity: V n = V a / ft / fp AA MS Activated Alumina artridge Molecular Sieve artridge Temperature F ft A Activated arbon artridge D3 psig barg fp
7 medium. amazing Performance. 725 psig / 50 barg Volume Flow Range 260 to 13,000 scfm 450 to 22,300 Nm 3 /h Temps Port Size F (248 F elements available) 0-80 (120 elements available) ½" to 3" NPT Differential Gauge, Manual Drain The XM series of medium pressure filters are used to remove solid, liquid and, when using activated carbon cartridges, gaseous contaminants from compressed gas flows. In addition to liquids and dust, these filters eliminate oil droplets and finest dust particles from the compressed gas. With A or A grade elements oil aerosols and odours will be removed. To Order Your XM s Ordering example: XM N 1 G S G4 N N Medium pressure ng filter, ½" Npt, flow 260 scfm, general purpose media, with s/s endcaps, with DP gauge, no drain. No accessories. XEE Series Application Port Media Grade onnection (microns) End ap Gauge ondensate Drain X M (Med) (NG) N (NPT) 1 WS P (Polymer) default Max. Temp. 176 F / 80 N (None) Default N (None) Default N (None) Default 2 (3µ) A (aluminum) Max. Temp. 248 F / 120 G4 (Differential Drop Indicator) D3 (Manual ball valve) 3 G (1µ) S (stainless steel) Max. Temp. 248 F / F (0,1µ) 5 SF (0,01µ) 6 A 7 AA 8 A 9 MS 10 s WS Water Separator 3µm oarse Pre-filter Differential Drop Indicator Use this table to find your filter model. XM NPT Port Size (in) NG flow capacity Volume Mass at 725 psig/50 barg* A scfm Nm 3 /h in mm in mm in mm gals liters lbs kgs 1 ½ XEM ¾ ¼ , ,1 2 ¾ XEM ¾ ¼ , ,1 3 1 XEM ¾ ¼ , ,1 4 1 ½ XEM ½ ¾ , ,5 5 1 ½ XEM ½ ¾ , ,5 6 2 XEM ¼ ½ ¾ , ,2 7 2 XEM ¼ ½ ¾ , ,2 8 2 XEM ¼ ½ ¾ , ,5 A 9 3 XEM ¼ ¾ ¾ , ,4 G F SF A AA MS 1µm General Purpose 0,1µm Fine 0,01µm Super-fine Activated arbon Activated Alumina artridge Molecular Sieve artridge Manual all Valve G4 D XEM ¾ ¾ ¾ , ,9 *Refers to 1 bar(a) and 68 F/20 at 725 psig/50 barg Flow orrection Factors To select the right filter use the following formulas and the nominal flow figures from the filter model table: For calculating Actual Flow apacity: V a = V n *ft *fp For calculating Nominal Flow apacity: V n = V a / ft / fp Temperature F ft psig barg fp A Activated arbon artridge 12 13
8 high. ultimate Performance psig / 420 barg Volume Flow Range 480 to 6560 scfm 800 to 11,200 Nm 3 /h Temps Port Size F (248 F elements available) 0-80 (120 elements available) ¼" to 2" NPT, SAE option available Manual Drain The XH series of high pressure filters are used to remove solid, liquid and, when using activated carbon cartridges, gaseous contaminants from compressed gas flows. In addition to liquids and dust, these filters eliminate oil droplets and finest dust particles from the compressed gas. To Order Your XH s Ordering example: XH N 5 SF S N D4 N High pressure ng filter, 1" Npt, flow 2400 scfm, super fine media element with stainless steel endcaps, no DPI gauge, manual drain. No accessories. XEE Series Application Port onnection Media Grade (microns) End ap Gauge ondensate Drain X H (High) (NG) N (NPT) 1 WS P (Polymer) default Max. Temp. 176 F / 80 N (None) Default * N (None) Default N (None) Default S (SAE) 2 (3µ) A (aluminum) Max. Temp. 248 F / 120 * available on request D4 (Manual needle valve) 3 G (1µ) S (stainless steel) Max. Temp. 248 F / F (0,1µ) 5 SF (0,01µ) 6 A 7 AA A MS s Use this table to find your filter model. XH NPT Port Size (in) NG flow capacity Volume Mass at 6000 psig/420 barg** A scfm Nm 3 /h in mm in mm in mm gals liters lbs kgs 1 ¼ XEH ¼ 83 2 ¾ , ,8 WS Water Separator 2 ³ 8 XEH ½ ¼ , ,9 3 ½ XEH ¼ ¼ , ,2 A 4 ¾ XEH ¼ ¼ , ,1 5 1 XEH ¼ ¾ , ,0 6 1 ½ XEH ¼ ¾ , ,6 3µm oarse Pre-filter 7 2 XEH ³ ¼ , ,3 **Refers to 1 bar(a) and 68 F/20 at 6000 psig/420 barg G F SF A AA MS 1µm General Purpose 0,1µm Fine 0,01µm Super-fine Activated arbon Activated Alumina artridge Molecular Sieve artridge Manual Needle Valve D4 Flow orrection Factors To select the right filter use the following formulas and the nominal flow figures from the filter model table: For calculating Actual Flow apacity: V a = V n *ft *fp For calculating Nominal Flow apacity: V n = V a / ft / fp Temperature F ft psig barg fp A Activated arbon artridge 14 15
9 To Order Your XT and XZ s Ordering example: XT F 3 SF S G1 N engineered flanged filters 260 psig / 18 barg Volume Flow Range 1,250 to 24,300 scfm 2,100 to 41,280 Nm 3 /h Temps Port Size Standard s G F SF A F (248 F elements available) 0-80 (120 elements available) 2" to 12" class 150 Flange arbon Steel onstruction, Stainless Steel Internals, Inline (T) or Freestanding (Z) Differential Gauge, Manual Drain 3µm oarse Pre-filter 1µm General Purpose 0,1µm Fine 0,01µm Super-fine Activated arbon Gauges G1 G2 G3 Manual all Valve ustom s Larger Flows / Higher s Stainless Steel onstruction Vacuum Applications Activated arbon Tower Stainless Steel Internal Parts D3 cng inline filter, 4" flange connection, flow 2450 scfm, super fine media with stainless steel endcaps, DP gauge, no drain. XEE Series Application Use this table to find your filter model. XT Inline Flow 100 psig / 7 bar g Inlet/Outlet onnection 150# Flg Drain onnection NPT A D Design Weight Quantity/ Type scfm Nm³/hr in in in mm in mm in mm in mm psig bar g lbs kg ½ ½ x XEL ½ ¾ x XEL ½ x XEL ½ x XEL ½ ¾ x XEL ¼ x XEL ¼ x XEL ¼ ½ x XEL ½ x XEL ¾ x XEL ¾ x XEL x XEL307 XZ Free Standing Flow 100 psig / 7 bar g Port onnection Inlet/Outlet onnection 150# Flg Drain onnection NPT Media Grade (microns) End ap Gauge ondensate Drain X T (Inline) (NG) F (flanged) 1 (3µ) P (Polymer) default Max. Temp. 176 F / 80 N (None) Default N (None) Default Z (FStand) 2 G (1µ) A (aluminum) Max. Temp. 248 F / 120 G1 (Magnetic Differential Manometer) D3 (Manual ball valve) 3 F (0,1µ) S (stainless steel) Max. Temp. 248 F / 120 G2 (Magnetic Differential Manometer w/alarm) 4 SF (0,01µ) G3 (Differential Drop Indicator) 5 A A D E Design Weight Quantity/ Type scfm Nm³/hr in in in mm in mm in mm in mm in mm psig bar g lbs kg ½ x XEL ½ ½ ½ x XEL ½ ¼ x XEL ½ ¼ x XEL ½ ½ x XEL ½ x XEL ½ x XEL ½ ½ x XEL ½ ½ x XEL /F* /F* /F* /F* /F* x XEL /F* /F* /F* /F* /F* x XEL /F* /F* /F* /F* /F* x XEL307 * onsult factory Flow orrection Factors To select the right filter use the following formulas and the nominal flow figures from the filter model table: For calculating Actual Flow apacity: V a = V n *ft *fp For calculating Nominal Flow apacity: V n = V a / ft / fp D A EA D Temperature F ft psig barg fp
10 water separator 260 psig / 18 barg Volume Flow Range 2,430 to 14,300 scfm 4,130 to 24,300 Nm 3 /h Temps Port Size F " to 10" class 150 Flange ustom s High s Versions Stainless Steel onstruction G1 G2 G3 Manual Drain Remove bulk water from your compressed gas system ulk water, which exists in compressed gas systems, causes corrosion of piping, damage to valves, and reduces the effectiveness of aftercoolers/heat exchangers. Over 99% of bulk water can be easily and economically removed by installing a type XWS Water Separator. Your gas system will operate much more efficiently with reduced downtime and maintenance costs. For Use With XL, XT, XZ Magnetic Drop Indicator Differential Manometer Max. : 290 psig / 20 barg Max. Temperature: 176 F / 80 For Use With XL, XT, XZ Magnetic Drop Indicator Differential Manometer Voltage-free REED contact version for remote alarm Max. : 290 psig / 20 barg Max. Temperature: 176 F / 80 For Use With XL, XT, XZ Differential Drop Indicator Aluminum Alloy Housing Max. : 290 psig / 20 barg Max. Temperature: 176 F / 80 To Order Your Water Separator Ordering example: XWS 3 Use this table to find your water separator model. Water Separator Flow 100 psig / 7 bar g Inlet/Outlet onnection 150# Flg Drain onnection NPT XEE Series Application WS ondensate Drain X WS (Water Separator) (NG) 1 D3 (Manual all Valve) A Design scfm Nm³/hr inch inch in mm in mm in mm psig bar g lbs kgs ¾ ¼ Weight G4 For Use With XM Differential Drop Indicator Max. : 725 psig / 50 barg Max. Temperature: 176 F / 80 D1 For Use With XL Manual Valve ondensate Drain Stainless Steel Max. : 290 psig / 20 barg Max. Temperature: 176 F / 80 D3 Manual all Valve ondensate Drain Max. : 725 psig / 50 barg Max. Temperature: 176 F / 80 For Use With XL, XM, XT, XZ, XWS Flow orrection Factors To select the right filter use the following formulas and the nominal flow figures from the filter model table: For calculating Actual Flow apacity: V a = V n *ft *fp For calculating Nominal Flow apacity: V n = V a / ft / fp Temperature F ft psig barg fp D4 For Use With XH Manual Needle Valve ondensate Drain Max. : 6000 psig / 420 barg Max. Temperature: 176 F / 80 i1 For Use With XL Oil Indicator Max. : 290 psig / 20 barg Max. Temperature: 120 F /
11 XEE AND YOU A USTOM FIT! Whatever you need for your gas purification and filtration, Xebec can offer a solution. 40 years of experience speak to our solid track record of completing countless projects successfully. y keeping virtually all stages of production in-house, there are practically no limits to what we can achieve. Talk to us about solutions that work for your business. ommitted to first class customer service. Xebec stands behind the service, spare parts and technical support needed to ensure the most complete and effective solution for every installation throughout the world. united states XEE Adsorption USA, Inc Katy Freeway, Suite 320 Houston, TX Phone: (832) Fax: (832) sales@xebecinc.com ANADA XEE Adsorption, Inc. 730 oul. Industriel lainville, Quebec J7 3V4 Phone: (450) Toll Free: 1 (877) Fax: (450) sales@xebecinc.com HINA XEE Adsorption (Shanghai), o. Ltd. No. 92, lock 5, East Jiangtian Road Songjiang Economic Zone, Shanghai Phone: Fax: chinasales@xebecinc.com Distributed by:
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