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[稳定剂添加对土壤砷形态的影响及其机理研究]

[Effect of Stabilizer Addition on Soil Arsenic Speciation and Investigation of Its Mechanism].

作者信息

Chen Zhi-Liang, Zhao Shu-Hua, Zhong Song-Xiong, Sang Yan-Hong, Jiang Xiao-Lu, Dai Yu, Wang Xin

机构信息

Laboratory of Soil Pollution Control and Remediation, South China Institute of Environmental Science, Ministry of Environmental Protection, Guangzhou 510655, China.

Shenzhen Academy of Environmental Science, Shenzhen 518001, China.

出版信息

Huan Jing Ke Xue. 2016 Jun 8;37(6):2345-2352. doi: 10.13227/j.hjkx.2016.06.044.

Abstract

Arsenic toxicity, mobility and bioaccessibility are influenced by its different speciation in soil, which exerts different impacts on the environment. In this study, coal fly ash, dried sludge, ferrous sulfate and broken peanut shell were used as stabilizers to investigate their stabilizing effects on As in soil as well as relationships between pH, soil organic matter content, cation exchange capacity and speciation of soil As. The results showed rise in soil pH, soil organic matter content and residual arsenic content after the addition of stabilizers. Addition of 10% coal fly ash and 10% dried sludge led to the decrease in the content of exchangeable As, carbonate bound As, Fe-Mn oxide bound As, organic bound As by 34.2%, 17.5%, 19.9%, 53.7%, respectively. Addition of ferrous sulfate could preferably stabilize As in soil. When 10% coal fly ash, 10% dried sludge and 1% ferrous sulfate were added concurrently, the decrease in the content of exchangeable As, carbonate bound As, Fe-Mn oxide bound As, organic bound As was 62.3%, 55.2%, 29.6%, 58.2%, respectively, with an increase in residual arsenic content by 8.1%. After the addition of 10% coal fly ash, 10% dried sludge, 1% ferrous sulfate and 1% broken peanut shell, a most conspicuous decrease in the content of exchangeable As by 73.3% was observed. Appropriate application of coal fly ash, dry sludge and ferrous sulfate converted a proportion of exchangeable, carbonate bounded, Fe-Mn bounded, organic bounded As into residual As, which reduced As's toxicity. The rise in pH led to increasing residual As content and decreasing exchangeable As, carbonate bounded As, Fe-Mn bounded As and organic bounded As content, and As was most stable at the approach of neutral condition. The rise in organic matter content led to increasing carbonate bounded As and residual As content and decreasing exchangeable As, Fe-Mn bounded As, organic bounded As content. The rise in cation exchange capacity led to increasing residual As content and decreasing exchangeable As, carbonate bounded As, Fe-Mn bounded As and organic bounded As content.

摘要

砷的毒性、迁移性和生物可利用性受其在土壤中不同形态的影响,这对环境产生不同的影响。本研究以粉煤灰、干污泥、硫酸亚铁和破碎花生壳作为稳定剂,研究它们对土壤中砷的稳定作用以及土壤pH值、土壤有机质含量、阳离子交换容量与土壤砷形态之间的关系。结果表明,添加稳定剂后土壤pH值、土壤有机质含量和残留砷含量升高。添加10%粉煤灰和10%干污泥使可交换态砷、碳酸盐结合态砷、铁锰氧化物结合态砷、有机结合态砷含量分别降低34.2%、17.5%、19.9%、53.7%。添加硫酸亚铁能较好地稳定土壤中的砷。当同时添加10%粉煤灰、10%干污泥和1%硫酸亚铁时,可交换态砷、碳酸盐结合态砷、铁锰氧化物结合态砷、有机结合态砷含量分别降低62.3%、55.2%、29.6%、58.2%,残留砷含量增加8.1%。添加10%粉煤灰、10%干污泥、1%硫酸亚铁和1%破碎花生壳后,可交换态砷含量显著降低,降幅达73.3%。适当施用粉煤灰、干污泥和硫酸亚铁可使部分可交换态、碳酸盐结合态、铁锰结合态、有机结合态砷转化为残留态砷,降低了砷的毒性。pH值升高导致残留砷含量增加,可交换态砷、碳酸盐结合态砷、铁锰结合态砷和有机结合态砷含量降低,在接近中性条件下砷最稳定。有机质含量升高导致碳酸盐结合态砷和残留砷含量增加,可交换态砷、铁锰结合态砷、有机结合态砷含量降低。阳离子交换容量升高导致残留砷含量增加,可交换态砷、碳酸盐结合态砷、铁锰结合态砷和有机结合态砷含量降低。

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