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The retention capacity for trace elements by the flue gas desulphurisation system under operational conditions of a co-combustion power plant

机译:联合燃烧电厂运行条件下烟气脱硫系统对微量元素的保留能力

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摘要

Water re-circulation to the scrubber and co-combustion of coal with petroleum coke are the most significant factors that affect the retention capacity for trace elements in a power plant equipped with a forced-oxidation flue gas desulphurisation (FGD) system. The water re-circulation favours the progressive saturation of most elements in the gypsum slurry with the subsequent increase in emission by entraining particles and droplets in the outgoing gas of FGD (OUT-FGD). The co-combustion increases the content of HCI and SO_2 in the gaseous stream, which enhances the formation of gaseous chlorides species, especially of Hg, and the formation of condensed species of Cu, Cr, Ni, Na, Cd, and Zn OUT-FGD, respectively. High gaseous retention capacity (83-100%) for S, Cl, F, As, and B is attained by the whole plant with a subsequent reduction in their gaseous emissions below the limits established by the European directive 2001/80/EC for large combustion plants, and also below the Pollutant Release and Transfer Register (PRTR) threshold values. The retention of Se increases from 2007 (75%) to 2008 (97%). The emissions of gaseous Hg and par-ticulate As, Zn, and Ni exceed the PRTR values. Remediation actions for the gaseous and PM emissions are relevant given the role of the filtered water re-circulation increasing the particles emissions OUT-FGD.
机译:将水再循环至洗涤塔以及将煤与石油焦共燃烧是影响配备强制氧化烟气脱硫(FGD)系统的电厂中微量元素的保留能力的最重要因素。水的再循环有利于石膏浆料中大多数元素的逐渐饱和,并随后通过夹带烟气脱硫气体(OUT-FGD)中的颗粒和液滴而增加排放量。共燃增加了气流中HCl和SO_2的含量,从而促进了气态氯化物物种(尤其是汞)的形成以及Cu,Cr,Ni,Na,Cd和Zn OUT-的冷凝物的形成。 FGD,分别。整个工厂实现了对S,Cl,F,As和B的高气体保留能力(83-100%),随后其气体排放量减少到了欧洲指令2001/80 / EC所规定的限值以下。燃烧装置,并且也低于污染物释放和转移寄存器(PRTR)阈值。硒的保留率从2007年(75%)增加到2008年(97%)。气态Hg和微粒As,Zn和Ni的排放超过了PRTR值。鉴于过滤水再循环的作用增加了颗粒物的排放,因此对气体和PM排放物的补救措施是相关的。

著录项

  • 来源
    《Fuel》 |2012年第2012期|p.773-788|共16页
  • 作者单位

    Institute de Diagnostico Ambiental y Estudios del Agua (IDAEA-CSIC), Jordi Girona 18-26, E-08034 Barcelona, Spain;

    Institute de Diagnostico Ambiental y Estudios del Agua (IDAEA-CSIC), Jordi Girona 18-26, E-08034 Barcelona, Spain;

    Institute de Diagnostico Ambiental y Estudios del Agua (IDAEA-CSIC), Jordi Girona 18-26, E-08034 Barcelona, Spain;

    Institute de Diagnostico Ambiental y Estudios del Agua (IDAEA-CSIC), Jordi Girona 18-26, E-08034 Barcelona, Spain;

    Escuela Superior de Ingenieros de Sevilla, Departamento de Ingenieria Qutmica y Ambiental, Camino de los Descubrimientos, s., Isla de la Cartuja, 41092 Sevilla, Spain;

    Instituto National del Carbon (INCAR-CSIC). Frantisco Pintado Fe, 26, 33011 Oviedo, Spain;

    Instituto National del Carbon (INCAR-CSIC). Frantisco Pintado Fe, 26, 33011 Oviedo, Spain;

    Instituto National del Carbon (INCAR-CSIC). Frantisco Pintado Fe, 26, 33011 Oviedo, Spain;

    Instituto National del Carbon (INCAR-CSIC). Frantisco Pintado Fe, 26, 33011 Oviedo, Spain;

    ENDESA GENERACION, SA Ribera del Loira, 60, planta 2, sector E, 28042 Madrid, Spain;

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

    co-combustion; trace elements; FGD; OUT-FGD gas; PRTR threshold value;

    机译:共燃;微量元素;烟气脱硫;烟气脱硫气体;PRTR阈值;

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