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循环流化床煤燃烧产物中微量元素分布特征
引用本文:张军营,郑楚光,任德贻,张衍国,郭亮. 循环流化床煤燃烧产物中微量元素分布特征[J]. 燃烧科学与技术, 2003, 9(1): 64-67
作者姓名:张军营  郑楚光  任德贻  张衍国  郭亮
作者单位:华中科技大学煤燃烧国家重点实验室,武汉430074;中国矿业大学,北京校区,资源开发工程系,北京100083;清华大学洁净煤燃烧中心,北京100084
基金项目:国家自然科学基金资助项目 (50 1 760 1 9,40 2 72 0 71 ),国家重点基础研究发展规划资助项目 (G1 9990 2 2 2 1 2 )
摘    要:利用清华大学小型循环流化床对黔西南坑硫煤进行燃烧实验,研究循环流化床燃烧过程中煤中微量元素在燃烧产物中的重新配置和对环境的影响,以及固硫添加剂对煤中部分有害微量元素排放的控制作用,结果表明,循环流化床灰中,As、Sb、Pb、Cu、Be与Zn等在细粒灰中富集,Pb、As、Sb、Se、Th、Ni与Cr等在磁性灰中富集。除尘器后烟道灰中富集Zn、As、P、Ni、Cr、Mo、Be、Pb、Th、Hg与F等,而Nb、Rb与Zr等明显亏损。在煤中加入固硫添加剂燃烧后比较发现,As、Se、Sg与Zn等在细粒流化床灰中富集能力降低,As、Se、Li、Be、Mo、Cr、Co与Ni等在除尘器后烟道灰中含量降低,烟道喷淋水中Cu、Zn、Cr、Pb、Co、Ni、F与Se等的含量降低。循环流化床燃烧过程中,固硫添加剂不仅降低SO2的排放,而且对部分有害微量元素(As、Se、Be、Cr、Co、Ni、Pb、Zn与F等)的排放有一定的控制作用。

关 键 词:微量元素  循环流化床  煤燃烧  添加剂
文章编号:1006-8740(2003)01-0064-04
修稿时间:2002-04-02

On Trace Elements in Circulating Fluidized Bed Combustion of Coal
ZHANG Jun-ying ,ZHENG Chu-guang ,REN De-yi ,ZHANG Yan-guo ,GUO Liang. On Trace Elements in Circulating Fluidized Bed Combustion of Coal[J]. Journal of Combustion Science and Technology, 2003, 9(1): 64-67
Authors:ZHANG Jun-ying   ZHENG Chu-guang   REN De-yi   ZHANG Yan-guo   GUO Liang
Affiliation:ZHANG Jun-ying 1,ZHENG Chu-guang 1,REN De-yi 2,ZHANG Yan-guo 3,GUO Liang 3
Abstract:For the better understanding of the partitioning behaviors of trace elements and their emissions with or without additive during circulating fluidized bed (CFB) combustion of coal, the coal was burned in a small CFB combustor. Coal samples, including CFB ash, magnetic ash in CFB ash, ash from chimney after dust remover and spraying water from chimney, were collected and analyzed using ICP-AES, AFS, INAA,ICS and CV-AAS. The experimental result shows that the trace elements (As, Sb, Pb, Cu, Be, Zn) are enriched substantially in the fine particles of CFB ash, and Pb, As, Sb, Se, Th, Ni, Cr are enriched in the magnetic ash in CFB ash.In the ash from chimney after dust remover, Zn, As, P, Ni, Cr, Mo, Be, Pb, Th, Hg, F are enriched while Nb, Rb, Zr are obvious deficient. With sulphur capture additive, the contents of As, Se, Sb, Zn in the fine particles of CFB ash decrease, and the contents of As, Se, Li, Be, Mo, Cr, Co, Ni in the ash from chimney after dust remover and the contents of Cu, Zn, Cr, Pb, Co, Ni, F, and Se in the spraying water from chimney decrease. Additive can control the emission of some potentially hazardous trace elements.
Keywords:trace elements  circulating fluidized bed  coal combustion  additive  
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