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污水污泥生物炭是一种有效的全氟烷基物质吸附剂。

Sewage sludge biochars as effective PFAS-sorbents.

机构信息

Norwegian Geotechnical Institute (NGI), 0484 Oslo, Norway; Norwegian University of Life Sciences (NMBU), 1430 Ås, Norway; Lindum AS, 3036 Drammen, Norway.

Norwegian Geotechnical Institute (NGI), 0484 Oslo, Norway; Norwegian University of Life Sciences (NMBU), 1430 Ås, Norway.

出版信息

J Hazard Mater. 2023 Mar 5;445:130449. doi: 10.1016/j.jhazmat.2022.130449. Epub 2022 Nov 19.

Abstract

The use of sewage sludge to produce biochar-based sorbents for per- and polyfluoroalkyl substances (PFAS) removal from water and soil may be an economically and environmentally sustainable waste management option. This study compared the sorption of six perfluorinated carboxylic acids (PFCAs) by two sewage sludge biochars (SSBCs) and one wood chip biochar (WCBC), dry pyrolyzed at 700 °C. Batch sorption tests were conducted by adding individual PFCAs and a PFCA-mixture to pure biochars and mixtures of biochar and a sandy soil (1.3% TOC). PFAS-sorption to the SSBCs exhibited log-linear biochar-water distribution coefficients (log K), comparable to those previously reported for commercial activated carbons (e.g., 5.73 ± 0.02 for perfluorooctanoic acid at 1 µg/L). The strong sorption of PFCAs was attributed to the SSBCs relatively high pore volumes in the pore size range that can accommodate these compounds. Sorption was attenuated by the presence of soil (by factors 3-10), by the presence of a mixture of PFCAs (by factors of 6-532) and by both together (by factors of 8-6581), indicating strongly competitive sorption between PFCA-congeners, and less severe sorption attenuation by soil organic matter. These findings could enable sustainable value chains for SSBs in soil remediation and water filtration solutions.

摘要

利用污水污泥生产基于生物炭的吸附剂,以去除水中和土壤中的全氟和多氟烷基物质(PFAS),可能是一种经济和环境可持续的废物管理选择。本研究比较了两种污水污泥生物炭(SSBC)和一种木屑生物炭(WCBC)对六种全氟羧酸(PFCAs)的吸附作用,这些生物炭均在 700°C 下进行了干热解。通过向纯生物炭和生物炭与砂质土壤(TOC 含量为 1.3%)的混合物中添加单一 PFCAs 和 PFCAs 混合物,进行了批式吸附试验。PFAS 对 SSBC 的吸附表现出与商业活性炭(例如,在 1μg/L 时,全氟辛酸的 log K 为 5.73±0.02)相当的对数线性生物炭-水分配系数(log K)。PFCAs 的强吸附归因于 SSBC 中相对较高的孔径体积,这些孔体积可以容纳这些化合物。土壤的存在(降低了 3-10 倍)、PFCAs 混合物的存在(降低了 6-532 倍)以及两者的共同存在(降低了 8-6581 倍)都会减弱吸附作用,这表明 PFCA 同系物之间存在强烈的竞争吸附作用,而土壤有机质的吸附作用减弱程度较小。这些发现可能为 SSB 在土壤修复和水过滤解决方案中的可持续价值链提供了依据。

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