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底泥添加污水污泥后重金属的浸出和植物吸收。

Heavy metal leaching and plant uptake in mudflat soils amended with sewage sludge.

机构信息

School of Environment, Beijing Normal University, Beijing, 100875, China.

College of Environmental Science and Engineering, Yangzhou University, Yangzhou, 225009, China.

出版信息

Environ Sci Pollut Res Int. 2018 Nov;25(31):31031-31039. doi: 10.1007/s11356-018-3089-5. Epub 2018 Sep 5.

Abstract

The leaching and uptake of Cd, Cu, Pb, and Zn by maize (Zea mays L.) in mudflat saline-alkali soils amended by sewage sludge was examined using a greenhouse leaching column experiment. Application of sewage sludge caused decreased pH, increased DOC, and increased Cd, Cu, Pb, and Zn concentrations in leachates. The similar temporal dynamics of DOC and the metal concentrations in leachates suggested complexation of the metals with DOC. There was downward movement of metals as evidenced by the metal enrichment in the bottom layer (20-40-cm depth) of leaching columns (p < 0.05). The enrichment of metals was contributed by the acid-soluble/exchangeable fraction (EX), reducible fraction (RG), oxidizable fraction (OXI), and residual fraction (RES), indicating redistribution of leached metals from the top 20-cm layer. The sewage sludge application also enhanced plant uptake of metals. However, even under the greatest sludge application rate (150 g kg), very small proportions, averagely 0.65% and 0.35%, of the applied metals were leached and taken up by maize, respectively, over the experimental period. Long-term field-scale research is warranted for further investigation of the effects of sewage sludge amendment on heavy metal fractionation and distribution in mudflat soil-plant-water system.

摘要

采用温室淋溶柱实验研究了污灌改良滨海盐碱性淤泥地后玉米(Zea mays L.)对 Cd、Cu、Pb 和 Zn 的淋溶和吸收。污灌会降低 pH 值,增加 DOC,并增加淋出液中 Cd、Cu、Pb 和 Zn 的浓度。DOC 和金属浓度在淋出液中的相似时间动态表明金属与 DOC 发生了络合。金属向下迁移,这可以从淋溶柱底部(20-40cm 深度)的金属富集得到证明(p < 0.05)。金属的富集归因于酸可溶/可交换态(EX)、可还原态(RG)、可氧化态(OXI)和残渣态(RES),表明淋溶出的金属从表层 20cm 层重新分配。污灌还增加了植物对金属的吸收。然而,即使在最大的污泥施用量(150 g kg)下,在实验期间,仅有非常小的比例(平均分别为 0.65%和 0.35%)的施入金属被淋溶和被玉米吸收。需要进行长期的田间尺度研究,以进一步调查污灌改良对滨海盐碱性淤泥地土壤-植物-水系统中重金属形态和分布的影响。

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