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热协同处理城市固体废弃物焚烧飞灰和底灰过程中铅和多环芳烃的排放。

Emission of Pb and PAHs from thermally co-treated MSWI fly ash and bottom ash process.

作者信息

Chou Jing-Dong, Wey Ming-Yen, Chang Shih-Hsien

机构信息

Department of Environmental Engineering, National Chung-Hsing University, Taichung 402, Taiwan, ROC.

出版信息

J Hazard Mater. 2008 Jan 15;150(1):27-36. doi: 10.1016/j.jhazmat.2007.04.041. Epub 2007 Apr 20.

Abstract

Municipal solid waste incinerator (MSWI) fly ash was regarded as a hazardous material because concentrations of TCLP leaching solution exceeded regulations. Previous studies have investigated the characteristics of thermally treated slag. However, the emissions of pollutant during the thermal treatment of MSWI fly ash have seldom been addressed. The main objective of this study was to evaluate the emission of Pb and PAHs from thermally co-treated MSWI fly and bottom ash process. The experimental parameters included the form of pretreatment, the proportion of bottom ash (bottom ash/fly ash, B/F=0, 0.1 and 1) and the retention time. The toxicity of thermally treated slag was also analyzed. The results indicated that (1) Pb emission occurred only in the solid phase and that PAHs were emitted from both solid and gas phases during thermal treatment process. (2) Washing pretreatment reduced not only the TCLP leaching concentration of Pb (from 15.75 to 1.67 mg/L), but also the emission of PAHs from the solid phase during thermal treatment process. (3) Adding bottom ash reduced the TCLP leaching concentration of thermally treated slag. (4) The concentration of Pb emission increased with retention time. (5) The thermal treatment reduced the toxicity of raw fly ash effectively, the inhibition ratio of raw fly ash and thermal treated slag were 98.71 and 18.35%, respectively.

摘要

城市固体废弃物焚烧炉(MSWI)飞灰被视为危险材料,因为毒性特征浸出程序(TCLP)浸出液的浓度超过了规定。先前的研究调查了热处理炉渣的特性。然而,MSWI飞灰热处理过程中的污染物排放很少得到关注。本研究的主要目的是评估MSWI飞灰与底灰热协同处理过程中铅和多环芳烃(PAHs)的排放。实验参数包括预处理形式、底灰比例(底灰/飞灰,B/F = 0、0.1和1)以及停留时间。还分析了热处理炉渣的毒性。结果表明:(1)热处理过程中铅仅在固相排放,而PAHs在固相和气相均有排放。(2)水洗预处理不仅降低了铅的TCLP浸出浓度(从15.75降至1.67mg/L),还降低了热处理过程中PAHs在固相的排放。(3)添加底灰降低了热处理炉渣的TCLP浸出浓度。(4)铅排放浓度随停留时间增加。(5)热处理有效降低了原生飞灰的毒性,原生飞灰和热处理炉渣的抑制率分别为98.71%和18.35%。

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