污泥混合燃烧过程中PCDD/Fs异构体生成的相关特性研究

Jinxing Wang, Shuzhou Wei, Haiwen Song, Xinlei Wang, Huixin Ren
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摘要

17种有毒多氯二苯并对二恶英和二苯并呋喃(PCDD/Fs)异构体是固体燃料(包括煤粉和混合燃料)燃烧过程中产生的持久性难降解有机污染物之一,调节其分布特性是有效降低其毒性当量的重要方面。本研究提出PCDD/Fs毒性当量相关模型,定量分析反应大气中HCl与SO2浓度的相关性,同时采用PCDD/Fs异构体转化途径诊断方法,分析煤燃烧与10%污泥混合后PCDD/Fs的分布特征。结果表明:随着PCDD/Fs毒性当量的增加,HCl浓度与SO2浓度关系导数的拐点向SO2低、HCl浓度高的方向移动;此外,通过计算氯取代概率,得到了混合污泥对燃煤中PCDD/Fs生成的作用途径。推导出混合污泥改善了五种转化途径。其次,通过绘制PCDD/Fs同分异构体的百分比含量迁移图和结合PCDD/Fs同分异构体毒性当量的平均毒性当量迁移图,分析了混合污泥影响PCDD/Fs在燃煤中分布特征的关键途径。结果表明,混合污泥进一步降低燃煤中PCDD/Fs异构体平均毒性当量的主要原因是:12378五氯二苯并-对二恶英(12378- pecdd) 4位氯取代概率增大,2378四氯二苯并-对呋喃(2378- tecdf) 4位氯取代概率减小,23478五氯二苯并-对呋喃(23478- pecdf)总氯取代概率增大;123478-六氯二苯并呋喃(123478-HxCDF)和123678-HxCDF。最后,绘制了煤燃烧与污泥混合生成PCDD/Fs异构体的功能途径图。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on Correlation Characteristics of PCDD/Fs Isomers Generation during the Coal-Combustion Process with Sludge Mixing
The 17 toxic polychlorinated dibenzo-p-dioxins and dibenzofurans (PCDD/Fs) isomers as a persistent and refractory organic pollutant are one of the pollutants produced in solid fuel (including pulverized coal and mixed fuel) combustion, and regulating their distribution characteristics is an important aspect of effectively reducing their toxic equivalent. In this study, a correlation model of PCDD/Fs toxic equivalent was proposed to quantitatively analyze the correlation between HCl and SO2 concentrations in the reaction atmosphere, meanwhile, a pathway-diagnosis method of PCDD/Fs isomers transformation was adopted to analyze the PCDD/Fs distribution characteristics of coal combustion and that mixed with 10% sludge. The results show that the inflection point for the derivative of the relationship between HCl concentration and SO2 concentration moves towards the direction of lower SO2 concentration and higher HCl concentration with the increase of PCDD/Fs toxic equivalent. Besides, the functional pathways of mixing sludge on PCDD/Fs generation in coal combustion were obtained by calculating chlorine substitution probability. It has been deduced that five transformation pathways were improved by mixing sludge. Next, the critical pathways of the influence from mixing sludge on the distribution characteristics of PCDD/Fs isomers in coal combustion were analyzed by drawing the percentage content migration diagram of PCDD/Fs isomers and the average toxic equivalent migration diagram that combined with the toxic equivalent of PCDD/Fs isomers. The results showed that the main reasons for mixing sludge to further reduce the average toxic equivalent of PCDD/Fs isomers in coal combustion were the increased chlorine substitution probability at the 4-position of 12378 Pentachlorodibenzo-p-dioxin (12378-PeCDD), the decreased chlorine substitution probability at the 4-position of 2378 Tetrachlorodibenzo-p-furan (2378-TeCDF), and the increased total chlorine substitution probability of 23478 Pentachlorodibenzo-p-furan (23478-PeCDF), 123478-Hexachlorodibenzofuran (123478-HxCDF) and 123678-HxCDF respectively. Finally, the functional pathway diagram of PCDD/Fs isomers generated from coal combustion with sludge mixing was drawn.
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