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Nanoactivated Carbon Reduces Mercury Mobility and Uptake by Oryza sativa L: Mechanistic Investigation Using Spectroscopic and Microscopic Techniques

文献类型:期刊论文

作者Jianxu Wang;  Sabry M. Shaheen;  Christopher W. N. Anderson;  Ying Xing;  Shirong Liu;  Jicheng Xia;  Xinbin Feng;  Jörg Rinklebe
刊名Environmental Science & Technology
出版日期2020
卷号54期号:5页码:2698-2706
英文摘要

Mercury (Hg) contamination of paddy field poses a health risk to rice consumers, and its remediation is a subject of global scientific attention. In recent years focus has been given to in situ techniques which reduce the risk of Hg entering the food chain. Here, we investigate the use of nanoactivated carbon (NAC) as a soil amendment to minimize Hg uptake by rice plants. Application of 1-3% NAC to soil (by weight) reduced Hg concentration in the pore water (by 61-76%) and its bioaccumulation in the tissues of rice plants (by 15-63%), relative to the corresponding control. Specifically, NAC reduced the Hg concentration of polished rice by 47-63% compared to the control, to a level that was 29-49% lower than the food safety value (20 ng g(-1)) defined by the Chinese government. The NAC induced a change in Hg binding from organic matter to nano-HgS in the soil as a function of soil amendment. This Hg speciation transformation might be coupled to the reduction of sulfoxide to reduced sulfur species (S-0) by NAC. The NAC amendment may be a practical and effective solution to mitigate the risk of Hg transferring from contaminated soil to rice grains at locations around the world.

语种英语
源URL[http://ir.gyig.ac.cn/handle/42920512-1/10534]  
专题地球化学研究所_环境地球化学国家重点实验室
地球化学研究所_矿床地球化学国家重点实验室
作者单位1.CAS Ctr Excellence Quaternary Sci & Global Change, Xian 710061, Peoples R China
2.Univ Wuppertal, Inst Fdn Engn Water & Waste Management, Sch Architecture & Civil Engn, Lab Soil & Groundwater Management, D-42285 Wuppertal, Germany
3.Chinese Acad Sci, Inst Geochem, State Key Lab Environm Geochem, Guiyang 550081, Peoples R China
推荐引用方式
GB/T 7714
Jianxu Wang;Sabry M. Shaheen;Christopher W. N. Anderson;Ying Xing;Shirong Liu;Jicheng Xia;Xinbin Feng;Jörg Rinklebe. Nanoactivated Carbon Reduces Mercury Mobility and Uptake by Oryza sativa L: Mechanistic Investigation Using Spectroscopic and Microscopic Techniques[J]. Environmental Science & Technology,2020,54(5):2698-2706.
APA Jianxu Wang;Sabry M. Shaheen;Christopher W. N. Anderson;Ying Xing;Shirong Liu;Jicheng Xia;Xinbin Feng;Jörg Rinklebe.(2020).Nanoactivated Carbon Reduces Mercury Mobility and Uptake by Oryza sativa L: Mechanistic Investigation Using Spectroscopic and Microscopic Techniques.Environmental Science & Technology,54(5),2698-2706.
MLA Jianxu Wang;Sabry M. Shaheen;Christopher W. N. Anderson;Ying Xing;Shirong Liu;Jicheng Xia;Xinbin Feng;Jörg Rinklebe."Nanoactivated Carbon Reduces Mercury Mobility and Uptake by Oryza sativa L: Mechanistic Investigation Using Spectroscopic and Microscopic Techniques".Environmental Science & Technology 54.5(2020):2698-2706.

入库方式: OAI收割

来源:地球化学研究所

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