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稻草灰改良对淹水稻田土壤中铜的溶解性和分布的影响。

Effects of rice straw ash amendment on Cu solubility and distribution in flooded rice paddy soils.

机构信息

Department of Soil and Environmental Sciences, National Chung Hsing University, 250 Kuo Kuang Road, Taichung 40227, Taiwan.

出版信息

J Hazard Mater. 2011 Feb 28;186(2-3):1801-7. doi: 10.1016/j.jhazmat.2010.12.066. Epub 2010 Dec 22.

Abstract

Rice straw burning is a common post-harvest practice on rice paddy land, and it leads to the accumulation of rice straw ash (RSA) in paddy soil. To understand the role of RSA in determining the mobility and bioavailability of metal contaminants, this study investigated the effects of RSA amendment on the solubility and distribution of Cu in contaminated rice paddy soils with flooding incubation. The addition of RSA to the soils suppressed the release of Cu into the soil solutions, which was primarily attributed to the metal-binding capacity of the RSA. Additionally, after the soils were flooded, the increase in soil pH and decrease in redox potential resulted in the transformation of Cu into less soluble forms. The RSA amendment appeared to enhance the changes in pH and redox potential of the flooded soils and, consequently, the immobilization of Cu in the soils. The results suggest that the RSA can retard the bioavailability and movement of the metal in contaminated soils and, thus, lower the potential environmental risk of Cu toxicity.

摘要

稻草燃烧是稻田中常见的收获后处理方式,会导致稻秆灰(RSA)在稻田土壤中积累。为了了解 RSA 在决定金属污染物的迁移性和生物可利用性方面的作用,本研究通过淹水培养实验,调查了 RSA 改良对污染稻田土壤中 Cu 溶解性和分布的影响。向土壤中添加 RSA 抑制了 Cu 向土壤溶液中的释放,这主要归因于 RSA 的金属结合能力。此外,土壤淹水后,土壤 pH 值升高和氧化还原电位降低导致 Cu 转化为溶解度较低的形式。RSA 改良似乎增强了淹水土壤 pH 值和氧化还原电位的变化,从而使 Cu 在土壤中固定。研究结果表明,RSA 可以延缓污染土壤中金属的生物有效性和迁移性,从而降低 Cu 毒性的潜在环境风险。

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