How China Can Leapfrog. Mercury Emission Reductions. Sid Nelson Jr.



Similar documents
Basic Mercury Data & Coal Fired Power Plants

Assessing the Changes Required by the Industrial Boiler MACT Regulations

Roadmap Performance Target Best technology Capability

The Regulatory Impact Analysis (RIA) for the Mercury Air Toxics Standard (MATS)

Bill Maxwell, U.S. Environmental Protection Agency, OAQPS (C439-01)

Table of Contents. 1 Introduction... 5

State of the Art (SOTA) Manual for Boilers and Process Heaters

Well Positioned for the Future

Thermo Scientific Arke SO 3 System. increased sensitivity. greater value

Mercury emissions control in two hazardous waste incineration plants with dry and semi-dry gas cleaning

FACT SHEET PROPOSED MERCURY AND AIR TOXICS STANDARDS

10 Nuclear Power Reactors Figure 10.1

Development and Operating Results of Low SO2 to SO3 Conversion Rate Catalyst for DeNOx Application

Flue Gas Mercury Removal Using Carbon- Polymer Composite Material

Estimating Future Costs of CO 2 Capture Systems

SULFURIC ACID MIST PERFORMANCE TEST PROTOCOL. Duke Energy Florida, Inc. Crystal River Power Plant Units 4&5 Crystal River, Citrus County, Florida

Comparison of selected plasma technologies

Multi-pollutant control solutions for coal based power plants

Phoenix Process Engineering, Inc. Project Experience Helping Clients Achieve MACT Compliance

SO 3 -Monitoring in Flue Gas of a Power Plant Application & Results

IPM Model Updates to Cost and Performance for APC Technologies. SCR Cost Development Methodology. Final. March 2013

The Fate of Ammonia and Mercury in the Carbon Burn-Out (CBO ) Process

Committed to make a better world

Site Identification No.: AAO Application No.:

SLMA Meeting. Boiler MACT and Related Rules. Atlanta, GA March 2, Martin Rollins, P. E. H. M. Rollins Company, Inc. Gulfport, Mississippi

Improving the Thermal Efficiency of Coal-Fired Power Plants: A Data Mining Approach

Clean Power Plan: MISO Analysis ADEQ/APSC Stakeholder Meeting

Completion of SCR System for Ninghai Power Plant Unit 4 in China

Best Available Retrofit Technology Analysis Report

Cofiring of biomass in coal-fired power plants European experience Dr Colin Henderson IEA Clean Coal Centre

CoalGen 2010 Pre-Air Heater Control of SO3 and Related Condensables

Joint projects of Transition Technologies and Emerson Process Management.

Sewage sludge treatment with oxygen enrichement and oxyfuel combustion in CFBC - new pilot plant results

B0401 Abstract 029 Oral Presentation Session B04 Innovative Applications and Designs - Tuesday, July 1, :00 h

A Case Study on Coal to Natural Gas Fuel Switch

OPPORTUNITIES FOR HEAT RATE REDUCTIONS IN EXISTING COAL- FIRED POWER PLANTS: A STRATEGY TO REDUCE CARBON CAPTURE COSTS

How To Make A Carbon Capture Plant Workable

SNOX flue gas treatment for boilers burning high-sulphur fuels

2nd IEA Oxyfuel Combustion Conference

7.0 DEPOSITION MODELING ANALYSIS

RESIDENTIAL AND COMMERCIAL/INSTITUTIONAL NATURAL GAS AND LIQUEFIED PETROLEUM GAS (LPG) COMBUSTION

How To Make Calcium Carbide

MHI s Energy Efficient Flue Gas CO 2 Capture Technology and Large Scale CCS Demonstration Test at Coal-fired Power Plants in USA

Mercury Speciation in Flue Gas from Coal-fired Power Stations

Tracing Back the Smog:

Sixth Annual Conference on Carbon Capture & Sequestration

Aggregate Handling And Storage Piles General

POLLUTED EMISSION TREATMENTS FROM INCINERATOR GASES

Pulverized Coal Oxycombustion Power Plants Final Results

Enhancing ESP Efficiency for High Resistivity Fly Ash by Reducing the Flue Gas Temperature

Carlos Fernández Alvarez. Senior Coal Analyst

PRE-QUALIFICATION ANNOUNCEMENT

Colorado PUC E-Filings System

This article appeared in a journal published by Elsevier. The attached copy is furnished to the author for internal non-commercial research and

Air Pollution and its Control Measures

Process Integration of Chemical Looping Combustion with Oxygen Uncoupling in a Coal-Fired Power Plant

Enhanced Capture of Mercury in Baghouse

TODAY S THERMAL OXIDIZER SOLUTIONS TO MEET TOMORROW S CHALLENGES

2050 LOW CARBON ECONOMY Executive Summary THE EUROPEAN CEMENT ASSOCIATION

MILESTONE H E L P I N G C H E M I S T S

BAT Guidance Note on Best Available Techniques for the Energy Sector (Large Combustion Plant Sector)

Removing Thallium from Industrial FGD Scrubber Water with Sorbster Adsorbent Media

Capital Cost Scaling Methodology Quality Guidelines for Energy System Studies January 2013 Disclaimer

Operating Performance and Latest Technology of DeNOx Plants for Coal-Fired Boilers

EIGHTH ANNUAL CONFERENCE ON CARBON CAPTURE & SEQUESTRATION

Pollution and health impacts of waste incinerators

Mercury Deposition Monitoring in Kansas: Network Report for 2013

Optimization of Emissions Reduction Equipment (SCR) Jeff Williams SmartProcess Business Development Manager

Hackney Biomass Boiler Information Request Form

Outlook on Integrated Gasification Combined Cycle (IGCC) Technology

How To Reduce Coal Power Plant Emissions

MHPS Global Activities for Air Quality Control System Technology

Understanding Tier 4 Interim and Tier 4 Final EPA regulations for generator set applications

Appendix 5A: Natural Gas Use in Industrial Boilers

Transcription:

How China Can Leapfrog Title of Slide the World in Mercury Emission Reductions Sid Nelson Jr.

Impressive Development Throughout China

But Ever-Increasing Pollution

Mercury from Power Plants

Chinese Coals Average ~50% Higher Hg China USA 0.00 0.05 0.10 0.15 0.20 Average coal Hg content, ppm, dry basis. Various sources. The difference may be even greater.

Overview of the Mercury Problem Source: U.S. EPA

Effects Observed in Small Newborn Samples 2006 Jedryckowski, et al., Effects of Prenatal Exposure to Mercury on Cognitive and Psychomotor Function in One-Year-Old Infants: Epidemiologic Cohort Study in Poland, Annals Epidemiology 16:439 447. 2006 Marques, et al., Maternal mercury exposure and neuro-motor development in breastfed infants from Porto Velho Brazil Int J Hyg Environ Health, 210(1):51. 2007 Gao, et al., Prenatal exposure to mercury and neurobehavioral development of neonates in Zhoushan City, China, Environmental Research, 105:390-399. 2007 Suzuki, K., et al., Associations of neonatal neurobehavioral status with cord blood PCB, maternal hair mercury, and maternal fish intake in the Tohoku Study Of Child Development, Organohalogen Compounds, 69:262. 2007 Xue, et al., Maternal fish consumption, mercury levels, and risk of preterm delivery, Environmental Health Perspectives, 115(1):42. (U.S.)

In the U.S., Hg from Fish Lowers IQ Oken (2005): lowering Hg 50% raises IQ = 2 points Oken (2008): lowering Hg 50% raises IQ = 1.5 points Lederman (2008): lowering Hg 50% raises IQ = 2.5 points Oken, E., et al., Maternal Fish Consumption, Hair Mercury, and Infant Cognition in a U.S. Cohort, Environmental Health Perspectives, 113(10):1376, 2005. Oken, E., et al., Maternal Fish Intake during Pregnancy, Blood Mercury Levels, and Child Cognition at Age 3 Years in a US Cohort, Am J Epidemiol 167:1171 1181, 2008. Lederman, et al., Relation between Cord Blood Mercury Levels and Early Child Development in a World Trade Center Cohort, Environmental Health Perspectives, 116(8):1085, 2008.

Fish MeHg Varies Directly with Deposited Hg in the fish Isotopically enriched Hg(II) (90.9% 202 Hg +2 ) was spiked into large, isolated lake sections Uptake monitored in zooplankton, benthic invertebrates, & fish We conclude that concentrations of spike MeHg in the food web of the mesocosms were directly proportional to the rates of Hg(II) loading. Orihel, et al., Experimental evidence of a linear relationship between inorganic mercury loading and methylmercury accumulation by aquatic biota, Environ. Sci. Technol. 41: 4952, 2007.

How Is Hg Done in the U.S.? ACI B-PAC H-PAC C-PAC Boiler ESP /FF 700F 300F Air Preheater Fly Ash Brominated Powdered Activated Carbon Injection (ACI) before the ESP

ACI System We have installed 10 systems Lances sticking into the ductwork 10-cm transport line & sold many millions of kgs of brominated carbons Silo to hold the PAC & blower(s) Delivering brominated PAC

Over 100 ACI Systems Sold Can be expensive for 90% (but micro-injection is not & is suited to plants without FGD) 55,000 MW of capacity

Leverage Hg Reductions from Scrubbers China USA 0.00 0.20 0.40 0.60 0.80 1.00 Fraction of Power Plants with FGD

Many Chinese Coals Have Low Halogens High Cl Low Cl USGS preliminary data on 305 samples Vosteen, Chinese Low Chlorine Coals Need Bromine for Co-Benefit Mercury Capture, EUEC Conference, 2010.

Oxidize Hg(0) with CaBr 2 on Coal While wet scrubbers remove most of the Hg+2 from the flue gas, they remove essentially zero of the Hg(0) Adding a small amount of bromide to the coal can change Hg(0) to Hg+2 so the scrubber can remove it

Very Simple & Inexpensive Just drip a CaBr 2 salt solution onto the coal

Chinese Wet Scrubbers 100 Usually ~ 70% from ESP+FGD; But sometimes much less Guizhou Guizhou Guizhou Guangdong Shanxi Beijing (SCR) Wang, et al., Mercury emission and speciation of coal-fired power plants in China, Atmos. Chem. Phys., 10, 1183 1192, 2010.

Two More 1.00 0.90 This one low Hg very low capture M e rc u ry R e d u c tio n 0.80 0.70 0.60 0.50 0.40 0.30 0.20 0.10 Hebei Zhang et al., Mercury Emissions from Six Coal-Fired Power Plants in China Fuel Processing Technology, 1033, 2008. 0.00 No SCR SCR On Ozone Season Wu, et al., Evaluation of mercury speciation and removal through air pollution control devices of a 190 MW boiler, Environmental Sciences, 227, 2010.

D Dombrowski (URS) et al., Near and Long Term Options for Controlling Mercury from Power Plants, MEGA Symposium, August 2008.

Luminant Monticello Station TX Lignite/PRB & LSFO + KNX CaBr2 - CaCl 2 not work, but CaBr 2 did: 30% 85% with ~100 ppm Benson, EERC, Richardson, URS, et al., Large-Scale Mercury Control Technology Testing for Lignite-Fired Utilities Oxidation Systems for Wet FGD, DOE NETL Hg Control R&D Program Review, 2006.

NRG Energy s Limestone Station Coal Blend with Wet Scrubber Tried CaBr2 with & without PAC Conditions %Hg Removal Baseline 30% 0.5 lb/mmacf 50% 100ppm CaBr2 70% 0.5 + 100 ppm 80% 1.6 + 280 ppm 90% 30% 70% with 100 ppm

We Energies Pleasant Prairie Plant with SCR - PRB coal - SCR - Wet FGD - KNX = CaBr2 55% 90% with 10-20 ppm Rini, et al., Full-scale Test Results From a 600 MW PRB-fired Unit Using Alstom s KNX Technology for Mercury Emissions Control Air Quality VII, 2009.

Costs Are Tiny Compared to Other Pollutants Costs in the USA $/kw SO2: Scrubbers $250 NOx: SCR $150 PM: Fabric Filter $60 Hg: ACI Hg: CaBr2 $3 $1 Work underway on United Nations global legally binding instrument on mercury China can inexpensively lead the way

Take-Home Messages 1. Every year that China delays reducing Hg, it lower its IQ 2. Brominated activated carbon in the U.S., but can be expensive 3. Adding small amounts of CaBr 2 to the coal can result in significantly improved Hg co-reductions in FGD at many plants 4. Very simple, very cheap, and very cost-effective 5. With CaBr 2 on FGD (and micro-injection without FGD), China can leapfrog the U.S. & the world in Hg reductions