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Experimental study on the effect of SO2 on PCDD/F emissions: Determination of the importance of gas-phase versus solid-phase reactions in PCDD/F formation

机译:SO2对PCDD / F排放影响的实验研究:确定气相反应与固相反应在PCDD / F形成中的重要性

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Cofiring coal in municipal solid waste incinerators (MSWIs) has previously been reported to reduce polychlorinated dibenzo-p-dioxins and dibenzofurans (PCDDs/Fs) emissions due to increasing the flue gas SO2 concentration. The present study was focused on understanding the primary mechanism responsible for the suppressant effect of SO2 on total PCDD/F formation and toxic equivalent (TEQ) emissions. The addition of SO2, simulating the effect of coal addition on the flue gas composition, resulted in significant reductions in the TEQ emissions due to reactions involving SO2 in the postcombustion zone. However, emissions of total PCDDs/Fs, unlike the TEQ value, were dependent upon the Cl-2 and SO2 injection temperatures due to increases in non-TEQ correlated isomers. The conversion of metal chlorides in the fly ash to sulfates, thus reducing the sites responsible for chlorination/oxidation reactions, was concluded to be the main suppressant mechanism; proposed reactions for copper and iron are presented. This mechanism was found to be independent of combustion conditions and could have prolonged effects on PCDD/F emissions from deposits formed with high flue gas S/Cl ratios.
机译:据报道,由于增加烟道气中SO2的浓度,在城市固体废物焚化炉(MSWI)中共混煤可减少多氯代二苯并二恶英和二苯并呋喃(PCDDs / Fs)的排放。本研究的重点是了解造成SO2抑制PCDD / F总量和毒性当量(TEQ)排放的主要机理。 SO2的添加模拟了加煤对烟气成分的影响,由于后燃烧区中涉及SO2的反应,导致TEQ排放量显着减少。但是,由于非TEQ相关异构体的增加,总PCDDs / Fs的排放与TEQ值不同,取决于Cl-2和SO2注入温度。结论是,飞灰中的金属氯化物转化为硫酸盐,从而减少了负责氯化/氧化反应的部位,这是主要的抑制机制。提出了铜和铁的拟议反应。已发现该机理与燃烧条件无关,并且可能会对烟道气中S / Cl比高的沉积物对PCDD / F排放产生长期影响。

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