A novel magnetic graphene-loaded biochar gel for the remediation of arsenic- and antimony-contaminated mining soil

生物炭 环境修复 类金属 环境化学 土壤污染 污染 壤土 环境科学 砷酸盐 化学 土壤水分 金属 土壤科学 无机化学 热解 生态学 生物 有机化学
作者
Yurong Gao,Jiayi Li,Caibin Li,Hanbo Chen,Zheng Fang,Kwasi Adusei‐Fosu,Yuchuan Wang,Lukáš Trakal,Hailong Wang
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:927: 172149-172149 被引量:7
标识
DOI:10.1016/j.scitotenv.2024.172149
摘要

Metalloid co-contamination such as arsenic (As) and antimony (Sb) in soils has posed a significant threat to ecological balance and human well-being. In this study, a novel magnetic graphene-loaded biochar gel (FeBG) was developed, and its remediation potential for the reclamation of AsSb spoiled soil was assessed through a six-month soil incubation experiment. Results showed that the incorporation of iron substances and graphene imparted FeBG with enhanced surface characteristics, such as the formation of a new FeO bond and an enlarged surface area compared to the pristine biochar (BC) (80.5 m2 g−1 vs 57.4 m2 g−1). Application of FeBG significantly decreased Na2HPO4-extractable concentration of As in soils by 9.9 %, whilst BC addition had a non-significant influence on As availability, compared to the control. Additionally, both BC (8.2 %) and FeBG (16.4 %) treatments decreased the Na2HPO4-extractable concentration of Sb in soils. The enhanced immobilization efficiency of FeBG for As/Sb could be attributed to FeBG-induced electrostatic attraction, complexation (Fe–O(H)–As/Sb), and π-π electron donor-acceptor coordination mechanisms. Additionally, the FeBG application boosted the activities of sucrase (9.6 %) and leucine aminopeptidase (7.7 %), compared to the control. PLS-PM analysis revealed a significant negative impact of soil physicochemical properties on the availability of As (β = −0.611, P < 0.01) and Sb (β = −0.848, P < 0.001) in soils, in which Sb availability subsequently led to a suppression in soil enzyme activities (β = −0.514, P < 0.01). Overall, the novel FeBG could be a potential amendment for the simultaneous stabilization of As/Sb and the improvement of soil quality in contaminated soils.

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