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Attenuation of phenanthrene and pyrene adsorption by sewage sludge-derived biochar in biochar-amended soils

机译:污泥改良土壤中污泥衍生生物炭对菲和pyr的吸附作用

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The aim of this study was to evaluate the effect of soils on the sorption of phenanthrene (PHE) and pyrene (PYR) by sewage sludge-derived biochars (SS-derived biochars). The SS-derived biochars were added to soils with varying properties as well as with a different degree and source of polycyclic aromatic hydrocarbons (PAHs) contamination. The biochars (BCs) were produced from sewage sludge during pyrolysis at temperatures of 500 A degrees C (BC500) and 700 A degrees C (BC700). The addition of biochars to the soils (5 %, w/w) increased the sorption of PHE from 8.3 to 20.3 % and PYR from 14.5 to 31.7 % by amended soil. BC700 biochar was characterized by better sorption capacity than BC500 biochar. Nevertheless, the presence of soil reduces the effectiveness of biochars in binding the compounds studied. The sorption capacity of the biochars decreased several times after they had been mixed with the soil compared to pure biochars. The study found dissolved organic carbon (DOC) and clay minerals present in the soils to have a significant effect on reducing the efficiency of PHE and PYR sorption by biochar. A greater impact of fouling was observed in the case of BC500 biochar characterized by lower porosity than BC700 biochar.
机译:这项研究的目的是评估土壤对污水污泥衍生生物炭(SS衍生生物炭)对菲(PHE)和)(PYR)的吸附的影响。将SS衍生的生物炭添加到具有不同特性以及具有不同程度和来源的多环芳烃(PAHs)污染的土壤中。生物炭(BCs)是在500 A摄氏度(BC500)和700 A摄氏度(BC700)的温度下热解过程中由污水污泥产生的。在土壤中添加生物炭(5%,w / w)后,经过改良的土壤将PHE的吸附量从8.3增加到20.3%,将PYR的吸附量从14.5增加到31.7%。 BC700生物炭的特点是比BC500生物炭具有更好的吸附能力。然而,土壤的存在降低了生物炭结合化合物的有效性。与纯生物炭相比,生物炭与土壤混合后的吸附能力降低了数倍。该研究发现土壤中存在的溶解有机碳(DOC)和粘土矿物对降低生物炭对PHE和PYR的吸附效率具有显着影响。在以比BC700生物炭低的孔隙率为特征的BC500生物炭的情况下,观察到结垢的影响更大。

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