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Study on PCDD/Fs Suppressing Phenomenon for Co-Firing Processes of Coal and Municipal Solid Waste

机译:煤与市固体废物共射过程PCDD / FS抑制现象的研究

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Incineration as a method of reducing Municipal Solid Waste (MSW) volume and recovery of energy has been developed gradually in China. More attention is now paid on polychlorinated dibenzo-p-PCDD/Fs and polychlorinated dibenzofurans (PCDD/Fs) emission form MSW incinerator. Because of the low caloric value and high moisture content for Chinese MSW, coal and MSW co-firing is used to help self-sustained combustion process. The co-firing process has been found to suppress PCDD/Fs formation during combustion and gas cooling process. Many kinds of experimental data were presented here to confirm the PCDD/Fs suppressing functions from coal and MSW co-firing process. Comparing the PCDD/Fs concentration in fly ash from grate-fired incinerator and CFB co-firing incinerator, fly ash from CFB co-firing was found to have very low PCDD/Fs concentration as 0.24 ng I-TEQ/g. Several impacts on PCDD/Fs formation in fly ash from different incinerators were discussed. Another experiment was done in a tubular stove using pentachlorophenol (PCP) and coal, and the PCDD/Fs suppressing efficiency is up to 98% if only coal was co-fired. Three aspects of reasons were proposed to explain such high suppressing phenomenon. The last experiments showed in this paper were conducted in the same tubular stove using raw MSW and coal. It also strongly revealed the PCDD/Fs suppressing phenomenon that about 20% coal co-firing with raw MSW could get the high suppressing efficiency up to over 95%, and further enhancement of co-fired coal mass percentage promoted little suppressing. From these experiments' results, co-firing suppressed much more PCDDs, which suggested co-firing greatly suppressed the processes of precursors forming PCDD/Fs via gas phase formation.
机译:焚烧作为减少城市固体废物(MSW)的方法(MSW)的体积,并在中国逐步发展了能量的恢复。现在,更多关注多氯二苯甲基-P-PCDD / FS和多氯联苯(PCDD / FS)发射组MSW焚烧炉。由于中国MSW的热量值和高水分含量,煤和MSW共用用于帮助自我持续的燃烧过程。已经发现共烧过程抑制燃烧和气体冷却过程中的PCDD / FS形成。此处提出了多种实验数据,以确认来自煤和MSW共用过程的PCDD / FS抑制功能。将PCDD / FS浓度从粉碎焚烧炉和CFB共烧焚烧炉中的PCDD / FS浓度与CFB共同烧制的粉煤灰具有非常低的PCDD / FS浓度为0.24ng I-TEQ / g。讨论了来自不同焚烧炉的粉煤灰中PCDD / FS形成的几次影响。在使用五氯苯酚(PCP)和煤的管状炉中,PCDD / FS抑制效率的另一个实验是高达98%,如果只有煤被共用。提出了三个方面的原因,以解释这种高抑制现象。本文中的最后一项实验在使用Raw MSW和煤中的同一管状炉中进行。它还强烈揭示了PCDD / FS抑制现象,即大约20%的煤与原料MSW的煤炭可以使高抑制效率高达95%以上,进一步提高共用煤质量百分比促进抑制作用。从这些实验的结果中,共用抑制了更多的PCDD,这提出了通过气相形成形成形成PCDD / FS的前体的过程。

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