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硅-铁改性生物质炭对水土环境中镉砷的吸附及钝化机制研究

李诗怡 茹东周 房友田 田欣 连斌 赵科理 李章涛 吴骥子

土壤学报2024,Vol.61Issue(6):1591-1604,14.
土壤学报2024,Vol.61Issue(6):1591-1604,14.DOI:10.11766/trxb202307150277

硅-铁改性生物质炭对水土环境中镉砷的吸附及钝化机制研究

Adsorption and Passivation Mechanisms of Cadmium and Arsenic Contamination in Water and Soil Environments by Silico-Ferric Modified Biochar

李诗怡 1茹东周 1房友田 1田欣 2连斌 2赵科理 2李章涛 3吴骥子2

作者信息

  • 1. 浙江农林大学环境与资源学院,杭州 311300
  • 2. 浙江农林大学环境与资源学院,杭州 311300||浙江农林大学浙江省土壤污染生物修复重点实验室,杭州 311300
  • 3. 浙江省废弃生物质循环利用与生态处理技术重点实验室,浙江科技大学,杭州 310023
  • 折叠

摘要

Abstract

[Objective]The coexistence of cadmium(Cd)and arsenic(As)in soil and water has emerged as a critical global environmental concern due to the significant risks it poses to human health through the food chain.To address this pressing issue,a novel silicon-ferric modified biochar(CMSMB)was developed using a co-precipitation-physical mixing method.[Method]The study aimed to comprehensively investigate the remediation capabilities and underlying mechanisms of CMSMB through a series of batch experiments and soil incubation trials in environments contaminated by both Cd and As.[Result]In batch experiments,CMSMB exhibited an impressive maximum adsorption capacity of 272.73 and 17.59 mg·g-1 for Cd(Ⅱ)and As(Ⅲ),respectively.The adsorption processes on the CMSMB surface were intricate,involving a simultaneous interplay of antagonistic and synergistic interactions,and the relative strengths of these interactions were found to be controlled by the concentrations of Cd(Ⅱ)and As(Ⅲ)in the solution.The antagonistic effect primarily originated from the competitive binding of Cd(Ⅱ)and As(Ⅲ)to hydroxyl and aromatic rings.Conversely,the synergistic effect relied on electrostatic adsorption,Cd-As co-precipitation,and the formation of ternary surface complexes.Soil incubation experiments conducted over 20 days revealed significant positive outcomes.The application of CMSMB led to a substantial increase in soil pH and dissolved organic carbon(DOC)content.Consequently,there was a noteworthy decrease(ranging from 64.86%to 74.25%)in the concentration of available Cd in the soil.These changes were attributed to the impact of electrostatic adsorption,precipitation,and complexation resulting from the intricate interplay between CMSMB and alterations in the soil physicochemical properties.However,in the short-term soil incubation,CMSMB exhibited a negligible influence on the bioavailability of As in the soil.The concentration of bioavailable As showed only a slight decline with increasing incubation time which suggests that the remediation effect of CMSMB on As in co-contaminated soils may require a longer duration for observable impacts.[Conclusion]In summary,CMSMB emerges as a potent environmental agent with remarkable efficacy in remediating water contaminated by Cd(Ⅱ)and As(Ⅲ)co-contamination.Furthermore,it demonstrates the ability to passivate Cd in co-contaminated soils,leading to a substantial reduction in the bioavailable Cd.However,its influence on the bioavailability of As in the soil during short-term application appears to be limited.CMSMB demonstrates applicability in the remediation of farmland soils and wastewater contaminated with cadmium and arsenic,found in sources such as mining tailings and agricultural irrigation.However,its long-term remediation capacity,encompassing migration,transformation,and microbiological mechanisms,requires further in-depth exploration and validation.

关键词

重金属/铁改性生物质炭/硅-铁复合材料/吸附机理/原位修复

Key words

Heavy metals/Iron-modified biochar/Silico-ferric composite material/Adsorption mechanisms/In-situ remediation

分类

资源环境

引用本文复制引用

李诗怡,茹东周,房友田,田欣,连斌,赵科理,李章涛,吴骥子..硅-铁改性生物质炭对水土环境中镉砷的吸附及钝化机制研究[J].土壤学报,2024,61(6):1591-1604,14.

基金项目

国家自然科学基金项目(42207011)、国家级大学生创新创业训练项目(202210341022)和浙江省自然科学基金项目(LQ22D010009)共同资助Supported by the National Natural Science Foundation of China(No.42207011),the National Innovative Entrepreneurship Training Program for Undergraduates of China(No.202210341022)and the Natural Science Foundation of Zhejiang Province,China(No.LQ22D010009) (42207011)

土壤学报

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