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纳米活性炭通过光谱和显微镜技术的机制研究减少汞的迁移和吸收。

Nanoactivated Carbon Reduces Mercury Mobility and Uptake by : Mechanistic Investigation Using Spectroscopic and Microscopic Techniques.

机构信息

State Key Laboratory of Environmental Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, 550081 Guiyang, P. R. China.

University of Wuppertal, School of Architecture and Civil Engineering, Institute of Foundation Engineering, Water- and Waste-Management, Laboratory of Soil- and Groundwater-Management, Pauluskirchstraße 7, 42285 Wuppertal, Germany.

出版信息

Environ Sci Technol. 2020 Mar 3;54(5):2698-2706. doi: 10.1021/acs.est.9b05685. Epub 2020 Feb 20.

Abstract

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) 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) 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.

摘要

稻田中的汞(Hg)污染对食用大米的消费者的健康构成了威胁,因此修复受汞污染的稻田是一个受到全球科学界关注的课题。近年来,人们越来越关注原位修复技术,因为这些技术可以降低汞进入食物链的风险。在这里,我们研究了纳米活性炭(NAC)作为土壤改良剂,以减少水稻对汞的吸收。将 1-3%(按重量计)的 NAC 施加到土壤中,与相应的对照相比,可将孔水中的汞浓度降低 61-76%,并降低水稻植株组织中汞的生物累积量 15-63%。具体来说,与对照相比,NAC 将抛光大米中的汞浓度降低了 47-63%,降至中国政府规定的食品安全值(20ng/g)以下 29-49%。NAC 诱导了土壤中汞结合形态从有机质向纳米 HgS 的变化,这是土壤改良的一个功能。这种汞形态转化可能与 NAC 将亚砜还原为还原态硫(S)的过程有关。NAC 改良剂可能是一种实用且有效的解决方案,可以降低世界各地受污染土壤中汞向稻谷转移的风险。

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