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Evaluation of sewage sludge and slow pyrolyzed sewage sludge-derived biochar for adsorption of phenanthrene and pyrene

机译:污水污泥和慢速热解污水污泥生物炭对菲和adsorption的吸附性能评价

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摘要

The present study investigated the sorption of phenanthrene (PHE) and pyrene (PYR) by sewage sludges and sewage sludge-derived biochars. The organic carbon normalized distribution coefficient (log(KOC) for C-w = 0.01 S-w) for the sewage sludges ranged from 5.62 L kg(-1) to 5.64 L kg(-1) for PHE and from 5.72 L kg(-1) to 5.75 L kg(-1) for PYR. The conversion of sewage sludges into biochar significantly increased their sorption capacity. The value of logK(OC) for the biochars ranged from 5.54 L kg(-1) to 6.23 L kg(-1) for PHE and from 5.95 L kg(-1) to 6.52 L kg(-1) for PYR depending on temperature of pyrolysis. The dominant process was monolayer adsorption in the micropores and/or multilayer surface adsorption (in the mesopores), which was indicated by the significant correlations between logK(OC) and surface properties of biochars. PYR was sorbed better on the tested materials than PHE. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本研究调查了污水污泥和污水污泥衍生的生物炭对菲(PHE)和pyr(PYR)的吸附。污水污泥的有机碳归一化分布系数(Cw = 0.01 Sw的log(KOC))从PHE到5.62 L kg(-1)到5.64 L kg(-1),从5.72 L kg(-1) PYR为5.75 L kg(-1)。污水污泥转化为生物炭的能力大大提高了它们的吸附能力。对于PHE,生物炭的logK(OC)值范围从5.54 L kg(-1)到6.23 L kg(-1),对于PYR从5.95 L kg(-1)到6.52 L kg(-1)取决于热解温度。主要的过程是微孔中的单层吸附和/或中孔中的多层表面吸附,这由logK(OC)与生物炭表面特性之间的显着相关性表明。 PYR比PHE更好地吸附在测试材料上。 (C)2015 Elsevier Ltd.保留所有权利。

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