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多菌灵在污泥衍生生物炭上的吸附-解吸行为及其可能机制

Adsorption-desorption behavior of carbendazim by sewage sludge-derived biochar and its possible mechanism.

作者信息

Ding Tengda, Huang Tuo, Wu Zhenhua, Li Wen, Guo Kexin, Li Juying

机构信息

College of Chemistry and Environmental Engineering, Shenzhen University Shenzhen 518060 China

Dongyang Environmental Protection Monitoring Station Dongyang 322100 China.

出版信息

RSC Adv. 2019 Oct 31;9(60):35209-35216. doi: 10.1039/c9ra07263b. eCollection 2019 Oct 28.

Abstract

Biochar application in agricultural soil for environmental remediation has received increasing attention, however, few studies are focused on sewage sludge based biochar. The present study evaluated the effect of raw sewage sludge and sewage sludge based biochars produced at different pyrolysis temperatures (100-700 °C) on the adsorption-desorption of carbendazim in soil. Sewage sludge derived biochar significantly enhanced the sorption affinity and limited the desorption capacity of the soil for carbendazim. A maximum removal efficiency of 98.9% and a greatest value of 144.05 ± 0.32 μg g sorption capacity occurred in soil amended with biochar pyrolyzed at 700 °C (BC700). As the pyrolysis temperature and the amendment rate of biochars increased, the sorption of carbendazim was promoted and desorption was further inhibited. The adsorption-desorption hysteresis index of carbendazim was consistently higher in soils amended with biochars (>0.85) than in the unamended soil (0.42-0.68), implying that carbendazim could be immobilized in soil amended with sewage sludge derived biochars. The partition effect was dominant in the sorption process for carbendazim in the biochar-soil mixtures. This study will be helpful for the disposal of sewage sludge and its utilization, and it is the first report for the study the sorption-desorption process of carbendazim in soil amended with sewage sludge derived biochar. Furthermore, these findings may be also useful for understanding the distribution and transport of carbendazim in the environment and will be of great significance in remediation strategies for contaminated soil.

摘要

生物炭应用于农业土壤进行环境修复已受到越来越多的关注,然而,很少有研究聚焦于基于污水污泥的生物炭。本研究评估了原生污水污泥以及在不同热解温度(100 - 700°C)下制备的基于污水污泥的生物炭对土壤中多菌灵吸附 - 解吸的影响。源自污水污泥的生物炭显著增强了土壤对多菌灵的吸附亲和力并限制了解吸能力。在用700°C热解的生物炭(BC700)改良的土壤中,多菌灵的最大去除效率达到98.9%,吸附容量的最大值为144.05±0.32μg g。随着生物炭的热解温度和添加率增加,多菌灵的吸附得到促进,解吸进一步受到抑制。在用生物炭改良的土壤中,多菌灵的吸附 - 解吸滞后指数始终高于未改良土壤(>0.85对比0.42 - 0.68),这意味着多菌灵可被固定在经污水污泥衍生生物炭改良的土壤中。分配效应在生物炭 - 土壤混合物中多菌灵的吸附过程中占主导地位。本研究将有助于污水污泥的处置及其利用,并且是关于污水污泥衍生生物炭改良土壤中多菌灵吸附 - 解吸过程研究的首次报道。此外,这些发现可能也有助于理解多菌灵在环境中的分布和迁移,并且在污染土壤的修复策略中将具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69ce/9074120/5a183e4949c9/c9ra07263b-f1.jpg

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