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施用不同有机物料对淹水稻田砷形态变化及挥发的影响。

Arsenic speciation and volatilization from flooded paddy soils amended with different organic matters.

机构信息

Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, People's Republic of China.

出版信息

Environ Sci Technol. 2012 Feb 21;46(4):2163-8. doi: 10.1021/es203635s. Epub 2012 Feb 10.

Abstract

Arsenic (As) methylation and volatilization in soil can be increased after organic matter (OM) amendment, though the factors influencing this are poorly understood. Herein we investigate how amended OM influences As speciation as well as how it alters microbial processes in soil and soil solution during As volatilization. Microcosm experiments were conducted on predried and fresh As contaminated paddy soils to investigate microbial mediated As speciation and volatilization under different OM amendment conditions. These experiments indicated that the microbes attached to OM did not significantly influence As volatilization. The arsine flux from the treatment amended with 10% clover (clover-amended treatment, CT) and dried distillers grain (DDG) (DDG-amended treatment, DT2) were significantly higher than the control. Trimethylarsine (TMAs) was the dominant species in arsine derived from CT, whereas the primary arsine species from DT2 was TMAs and arsine (AsH(3)), followed by monomethylarsine (MeAsH(2)). The predominant As species in the soil solutions of CT and DT2 were dimethylarsinic acid (DMAA) and As(V), respectively. OM addition increased the activities of arsenite-oxidizing bacteria (harboring aroA-like genes), though they did not increase or even decrease the abundance of arsenite oxidizers. In contrast, the abundance of arsenate reducers (carrying the arsC gene) was increased by OM amendment; however, significant enhancement of activity of arsenate reducers was observed only in CT. Our results demonstrate that OM addition significantly increased As methylation and volatilization from the investigated paddy soil. The physiologically active bacteria capable of oxidization, reduction, and methylation of As coexisted and mediated the As speciation in soil and soil solution.

摘要

砷(As)在土壤中的甲基化和挥发作用会在添加有机物(OM)后增加,尽管影响这一过程的因素尚未完全了解。本研究旨在探讨添加的 OM 如何影响 As 的形态,以及在 As 挥发过程中如何改变土壤和土壤溶液中的微生物过程。采用微宇宙实验,研究了不同 OM 添加条件下,受污染的稻田土壤中微生物介导的 As 形态变化和挥发作用。这些实验表明,OM 上附着的微生物对 As 挥发的影响不大。与对照相比,添加 10%三叶草(三叶草添加处理,CT)和干酒糟(DDG)(DDG 添加处理,DT2)的处理中胂气通量显著增加。CT 中胂气的主要形态是三甲胂(TMAs),而 DT2 中主要的胂气形态是 TMAs 和胂(AsH3),其次是一甲基胂(MeAsH2)。CT 和 DT2 土壤溶液中的主要 As 形态分别为二甲基砷酸(DMAA)和 As(V)。OM 添加增加了亚砷酸盐氧化菌(携带 aroA 样基因)的活性,尽管它们没有增加甚至减少亚砷酸盐氧化菌的丰度。相反,OM 添加增加了砷酸盐还原菌(携带 arsC 基因)的丰度,但仅在 CT 中观察到砷酸盐还原酶活性的显著增强。研究结果表明,OM 添加可显著增加受调查稻田土壤中 As 的甲基化和挥发作用。能够氧化、还原和甲基化 As 的生理活性细菌共存并介导土壤和土壤溶液中 As 的形态。

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