首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >The comparison of the migration and transformation behavior of heavy metals during pyrolysis and liquefaction of municipal sewage sludge, paper mill sludge, and slaughterhouse sludge
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The comparison of the migration and transformation behavior of heavy metals during pyrolysis and liquefaction of municipal sewage sludge, paper mill sludge, and slaughterhouse sludge

机译:城市污水污泥,造纸污泥,屠宰场污泥热解液化过程中重金属迁移转化行为的比较

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Municipal sewage sludge, paper mill sludge, and slaughterhouse sludge were pyrolyzed and liquefied for the production of bio-char. The migration and transformation behavior of Cu, Cr, and Zn during pyrolysis and liquefaction of these sludges were studied. Pyrolysis and liquefaction promoted mobile fraction (F1 and F2) to stable fraction (F3 and F4). The results showed that pyrolysis and liquefaction largely affected the redistribution of Cu and Zn in raw materials. The environmental risk assessment results indicated that the environmental risk levels of Cu and Zn were significantly reduced in bio-char, and risk level of Cr was slightly decreased after pyrolysis or liquefaction. Both pyrolysis and liquefaction were promising detoxification technologies for the three sludges in terms of the mitigation of heavy metals toxicity. It was suggested that dewatered sludge could be reduced toxicity/risk before utilization by pyrolysis or liquefaction technology, especially for Cu and Zn in slaughterhouse sludge. (C) 2015 Elsevier Ltd. All rights reserved.
机译:对市政污水污泥,造纸厂污泥和屠宰场污泥进行热解和液化,以生产生物炭。研究了这些污泥在热解和液化过程中Cu,Cr和Zn的迁移和转化行为。热解和液化将流动部分(F1和F2)提升为稳定部分(F3和F4)。结果表明,热解和液化在很大程度上影响了原料中Cu和Zn的重新分布。环境风险评估结果表明,生物炭中Cu和Zn的环境风险水平显着降低,热解或液化后Cr的风险水平略有降低。就减轻重金属毒性而言,热解和液化都是对三种污泥的有前途的脱毒技术。有人建议通过热解或液化技术降低脱水污泥的毒性/风险,尤其是对屠宰场污泥中的铜和锌而言。 (C)2015 Elsevier Ltd.保留所有权利。

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