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Sorption of hydrophobic organic compounds to a diverse suite of carbonaceous materials with emphasis on biochar

机译:将疏水性有机化合物吸附到一系列含碳材料上,重点是生物炭

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Carbonaceous materials like biochars are increasingly recognized as effective sorbent materials for sequestering organic pollutants. Here, we study sorption behavior of two common hydrophobic organic contaminants 2,2',5,5'-tetrachlorobiphenyl (CB52) and phenanthrene (PHE), on biochars and other carbonaceous materials (CM) produced at a wide range of conditions and temperatures from various feedstocks. The primary aim was to establish structure-reactivity relationships responsible for the observed variation in CM and biochar sorption characteristics. CM were characterized for their elemental composition, surface area, pore size distribution, aromaticity and thermal stability. Freundlich sorption coefficients for CB52 and PHE (i.e. LogK(F,CB52) and K-F,K-PHE, respectively) to CM showed a variation of two to three orders of magnitude, with LogK(F,CB52) ranging from 5.12 +/- 0.38 to 8.01 +/- 0.18 and LogK(F,PHE) from 5.18 +/- 0.09 to 7.42 +/- 1.09. The highest LogK(F) values were observed for the activated CM, however, non-activated biochars produced at high temperatures (>700 degrees C) sorbed almost as strongly (within 0.2-0.5 Log units) as the activated ones. Sorption coefficients significantly increased with pyrolysis temperature, CM surface area and pore volume, aromaticity, and thermal stability, and decreased with H/C, O/C, (O + N)/C content. The results of our study contribute to the understanding of processes underlying HOC sorption to CM and explore the potential of CM as engineered sorbents for environmental applications. (C) 2015 Elsevier Ltd. All rights reserved.
机译:含碳物质(如生物炭)日益被认为是隔离有机污染物的有效吸附剂。在这里,我们研究了两种常见的疏水性有机污染物2,2',5,5'-四氯联苯(CB52)和菲(PHE)在各种条件和温度下生产的生物炭和其他碳质材料(CM)上的吸附行为。从各种原料中提取。主要目的是建立负责观察到的CM和生物炭吸附特性变化的结构反应关系。表征了CM的元素组成,表面积,孔径分布,芳香性和热稳定性。 CB52和PHE(分别为LogK(F,CB52)和KF,K-PHE)对CM的Freundlich吸附系数显示出2到3个数量级的变化,LogK(F,CB52)的范围为5.12 +/- 0.38至8.01 +/- 0.18,LogK(F,PHE)从5.18 +/- 0.09至7.42 +/- 1.09。观察到活化的CM的最高LogK(F)值,但是,在高温(> 700摄氏度)下产生的未活化的生物炭吸收强度几乎与活化的生物炭一样强(在0.2-0.5 Log单位之内)。吸附系数随热解温度,CM表面积和孔体积,芳香度和热稳定性而显着增加,而随H / C,O / C,(O + N)/ C含量而降低。我们的研究结果有助于理解HOC对CM的吸附过程,并探索CM作为工程吸附剂在环境应用中的潜力。 (C)2015 Elsevier Ltd.保留所有权利。

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