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热解腐殖酸对有机化合物的吸附。

Sorption of organic compounds by pyrolyzed humic acids.

机构信息

Department of Environmental Science, Zhejiang University, 866 Yuhangtang Road, Hangzhou 310058, China; Key Laboratory of Environmental Pollution and Ecological Health of Ministry of Education, 866 Yuhangtang Road, Hangzhou 310058, China; Zhejiang Provincial Key Laboratory of Organic Pollution Process and Control, 866 Yuhangtang Road, Hangzhou 310058, China.

Department of Environmental Science, Zhejiang University, 866 Yuhangtang Road, Hangzhou 310058, China; Key Laboratory of Environmental Pollution and Ecological Health of Ministry of Education, 866 Yuhangtang Road, Hangzhou 310058, China; Zhejiang Provincial Key Laboratory of Organic Pollution Process and Control, 866 Yuhangtang Road, Hangzhou 310058, China.

出版信息

Sci Total Environ. 2021 Aug 10;781:146646. doi: 10.1016/j.scitotenv.2021.146646. Epub 2021 Mar 21.

Abstract

Humic acids (HAs) are frequently subjected to pyrolysis and carbonization by wildfires, which could significantly change the sorption of organic contaminants and their environmental risks in natural system. In previous studies, sorption of organic compounds was investigated for HAs pyrolyzed at temperature below 330 °C, but not for HAs pyrolyzed at higher temperature. Therefore, in this study, sorption of 22 typical organic compounds by HAs pyrolyzed at a series of temperatures from 300 to 700 °C was investigated. Sorption of organic compounds was dominated by nonlinear partition for HAs pyrolyzed at low temperature (e.g., 300 and 400 °C) due to the aliphatic and nonporous structures of pyrolyzed humic acids (PyHAs), while it was dominated by pore-filling adsorption for HAs pyrolyzed at high temperature (e.g., 700 °C) due to the aromatic and porous structures of PyHAs. For HAs pyrolyzed at moderate temperature (e.g., 450, 500 and 600 °C), both nonlinear partition and pore-filling adsorption were responsible for the sorption of organic compounds. Meanwhile, the contribution of pore-filling adsorption to overall sorption increased but the contribution of nonlinear partition decreased with the increasing pyrolytic temperature of PyHAs, attributed to the structure change of PyHAs from aliphatic and nonporous to the aromatic and porous. Moreover, with the increasing pyrolytic temperature of PyHAs, sorption affinity of organic compounds increased, while the change of sorption capacity could be explained by the decrease of nonlinear partition and the increase of pore-filling adsorption. The obtained results could help to evaluate the transport, bioavailability and health risks of organic contaminants in the environment.

摘要

腐殖酸(HA)经常在野火中发生热解和碳化,这可能会显著改变其对有机污染物的吸附能力及其在自然系统中的环境风险。在之前的研究中,研究了温度低于 330°C 时热解的腐殖酸对有机化合物的吸附情况,但没有研究温度更高时热解的腐殖酸的吸附情况。因此,本研究考察了温度范围在 300 至 700°C 的一系列温度下热解的腐殖酸对 22 种典型有机化合物的吸附。对于在低温(如 300 和 400°C)下热解的腐殖酸,由于热解腐殖酸(PyHA)的脂肪族和无孔结构,有机化合物的吸附主要受非线性分配控制;而对于在高温(如 700°C)下热解的腐殖酸,由于 PyHA 的芳香族和多孔结构,吸附主要受孔填充吸附控制。对于在中温(如 450、500 和 600°C)下热解的腐殖酸,非线性分配和孔填充吸附都对有机化合物的吸附起作用。同时,随着 PyHA 热解温度的升高,孔填充吸附对整体吸附的贡献增加,而非线性分配的贡献减少,这归因于 PyHA 结构从脂肪族和无孔到芳香族和多孔的变化。此外,随着 PyHA 热解温度的升高,有机化合物的吸附亲和力增加,而吸附容量的变化可以通过非线性分配的减少和孔填充吸附的增加来解释。这些结果有助于评估环境中有机污染物的迁移、生物可利用性和健康风险。

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