生物炭
稻草
化学
环境修复
环境化学
镉
生物利用度
浸出(土壤学)
微量金属
渗滤液
农学
土壤水分
污染
金属
环境科学
土壤科学
生物
生态学
热解
无机化学
生物信息学
有机化学
作者
Muhammad Haris,Ting Wei,Geng Cao,Shenghui Yu,Xinhao Ren,Honglei Jia,Atif Saleem,Hua Li,Junkang Guo,Yongtao Li
出处
期刊:Chemosphere
[Elsevier BV]
日期:2021-01-14
卷期号:273: 129644-129644
被引量:63
标识
DOI:10.1016/j.chemosphere.2021.129644
摘要
The application of crops straw and biochar in trace metals remediation from the contaminated environment attracted more and more attention during the past decade. Although there has been some review work on the mechanism of trace metals stabilization by crops straw, the effects and mechanisms of interaction among soil indigenous-microbes and crops-straw for trace metal adsorption and stabilization is still unclear. In this study, the dynamic effects along with potential mechanisms of wheat-straw (WS), wheat-straw biochar (WBC) and biologically modified wheat-straw (BMWS) were conducted to investigate the adsorption, leaching behaviour, chemical fractions and bioavailability of cadmium (Cd). The results showed that the biosorption capacity (qe) was most elevated in the BMWS treatment (14.42 mg g−1) as compared to WBC (6.28 mg g−1) and WS (4.20 mg g−1). The application of BMWS, WBC and WS at the rate of 3% significantly reduced Cd concentration in leachate to 53, 45 and 21% respectively, as compared to control. The addition of BMWS reduced the exchangeable Cd fraction resulted an increase in organic matter and carbonate bound Cd fraction in the soil. The DTPA extractable Cd was significantly decreased by 31.2 and 28.6% with the application of BMWS and WBC at 3% w/w respectively as compared to control. The research results may provide a novel perceptive for the development of functional materials and strategies for eco-friendly and sustainable trace metal remediation in contaminated soil and water by combination of straw and soil-indigenous microorganisms.
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