首页> 外文期刊>Energy & fuels >Partitioning of Mercury, Arsenic, Selenium, Boron, and Chloride in a Full-Scale Coal Combustion Process Equipped with Selective Catalytic Reduction, Electrostatic Precipitation, and Flue Gas Desulfurization Systems
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Partitioning of Mercury, Arsenic, Selenium, Boron, and Chloride in a Full-Scale Coal Combustion Process Equipped with Selective Catalytic Reduction, Electrostatic Precipitation, and Flue Gas Desulfurization Systems

机译:汞,砷,硒,硼和氯化物在具有选择性催化还原,静电沉淀和烟气脱硫系统的大规模煤燃烧过程中的分配

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摘要

A full-scale field study was carried out at a 795 MWe coal-fired power plant equipped with selective catalytic reduction (SCR), an electrostatic precipitator (ESP), and wet flue gas desulfurization (FGD) systems to investigate the distribution of selected trace elements (i.e., mercury, arsenic, selenium, boron, and chloride) from coal, FGD reagent slurry, makeup water to flue gas, solid byproduct, and wastewater streams. Flue gases were collected from the SCR outlet, ESP inlet, FGD inlet, and stack. Concurrent with flue gas sampling, coal, bottom ash, economizer ash, and samples from the FGD process were also collected for elemental analysis. By combining plant operation parameters, the overall material balances of selected elements were established. The removal efficiencies of As, Se, Hg, and B by the ESP unit were 88, 56,17, and 8%, respectively. Only about 2.5% of Cl was condensed and removed from flue gas by fly ash. The FGD process removed over 90% of Cl, 77% of B, 76% of Hg, 30% of Se, and 5% of As. About 90% and 99% of the FGD-removed Hg and Se were associated with gypsum. For B and Cl, over 99% were discharged from the coal combustion process with the wastewater. Mineral trona (trisodium hydrogendi-carbonate dehydrate, Na_3H(CO_3)_2·2H_2O) was injected before the ESP unit to control the emission of sulfur trioxide (SO_3). By comparing the trace elements compositions in the fly ash samples collected from the locations before and after the trona injection, the injection of trona did not show an observable effect on the partitioning behaviors of selenium and arsenic, but it significantly increased the adsorption of mercury onto fly ash. The stack emissions of mercury, boron, selenium, and chloride were for the most part in the gas phase.
机译:在配备了选择性催化还原(SCR),静电除尘器(ESP)和湿法烟气脱硫(FGD)系统的795 MWe燃煤电厂进行了大规模现场研究,以研究选定痕量的分布煤,烟气脱硫试剂浆,烟道气的补充水,固体副产物和废水中的各种元素(即汞,砷,硒,硼和氯化物)。从SCR出口,ESP入口,FGD入口和烟囱收集烟气。与烟气采样同时,还收集了煤,底灰,省煤灰和烟气脱硫工艺中的样品用于元素分析。通过组合工厂操作参数,可以建立所选元素的整体物料平衡。 ESP装置去除As,Se,Hg和B的效率分别为88、56.17和8%。只有约2.5%的Cl被冷凝并通过粉煤灰从烟道气中除去。 FGD工艺去除了90%的Cl,77%的B,76%的Hg,30%的Se和5%的As。 FGD去除的Hg和Se中约有90%和99%与石膏有关。对于B和Cl,超过99%的废水与煤一起从煤燃烧过程中排出。在ESP装置之前注入矿物天然碱(脱水碳酸二氢三钠,Na_3H(CO_3)_2·2H_2O)以控制三氧化硫(SO_3)的排放。通过比较从天然碱注入前后位置收集的粉煤灰样品中的微量元素组成,天然碱的注入对硒和砷的分配行为没有表现出可观察到的影响,但显着增加了汞在硒和砷上的吸附。粉煤灰。汞,硼,硒和氯的烟囱排放大部分为气相。

著录项

  • 来源
    《Energy & fuels》 |2009年第5期|4805-4816|共12页
  • 作者单位

    Institute for Combustion Science and Environmental Technology, Department of Chemistry, Western Kentucky University, 2413 Nashville Road, Bowling Green, Kentucky 42101;

    Institute for Combustion Science and Environmental Technology, Department of Chemistry, Western Kentucky University, 2413 Nashville Road, Bowling Green, Kentucky 42101;

    Electric Power Research Institute, 3420 Hillview Avenue, Palo Alto, California 94304;

    Department of Chemical Engineering, Ming-Chi University of Technology, 84 Gungjuan RD., Taishan, Taipei, Taiwan 243 R.O.C;

    Department of Chemical Engineering, Ming-Chi University of Technology, 84 Gungjuan RD., Taishan, Taipei, Taiwan 243 R.O.C;

    Department of Chemical Engineering, Ming-Chi University of Technology, 84 Gungjuan RD., Taishan, Taipei, Taiwan 243 R.O.C;

    Department of Chemical Engineering, Ming-Chi University of Technology, 84 Gungjuan RD., Taishan, Taipei, Taiwan 243 R.O.C;

    Department of Chemical Engineering, Ming-Chi University of Technology, 84 Gungjuan RD., Taishan, Taipei, Taiwan 243 R.O.C;

    Department of Chemical Engineering, Ming-Chi University of Technology, 84 Gungjuan RD., Taishan, Taipei, Taiwan 243 R.O.C;

    Institute for Combustion Science and Environmental Technology, Department of Chemistry, Western Kentucky University, 2413 Nashville Road, Bowling Green, Kentucky 42101;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ACS: American Chemical Society; ASTM: American Society for Testing and Materials; BTU: british thermal unit; USEPA: US Environmental Protection Agency; FGD: flue gas desulfurizaton; et al;

    机译:ACS:美国化学学会;ASTM:美国材料测试学会;BTU:英国热量单位;USEPA:美国环境保护署;烟气脱硫:烟气脱硫;等;
  • 入库时间 2022-08-18 00:42:22

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