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The concentration and chemical speciation of arsenic in the Nanpan River, the upstream of the Pearl River, China

机译:珠江上游南盘河中砷的浓度和化学形态

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摘要

The concentration and chemical speciation of arsenic (As) in different environmental matrixes (water, sediment, agricultural soils, and non-agricultural soils) were investigated in the Nanpan River area, the upstream of Pearl River, China. The results did not show any obvious transport of As along the flow direction of the river (from upstream to downstream). Total As concentrations in sediment were significantly different from those in agricultural soil. According to the comparison to quality standards, the As in sediments of the studied area have potential ecological risks and a minority of the sampling sites of agricultural soils in the studied area were polluted with As. As speciations were analyzed using sequential extraction and the percentage of non-residual fraction in sediment predominated over residual fraction. We thus believe that As in the studied area was with low mobility and bioavailability in sediment, agricultural soils, and non-agricultural soils. However, the bioavailability and mobility of As in sediment were higher than in both agricultural and non-agricultural soils, and thus, special attention should be paid for the risk assessment of As in the river in future studies.
机译:在中国珠江上游的南盘河地区,研究了不同环境基质(水,沉积物,农业土壤和非农业土壤)中砷(As)的浓度和化学形态。结果表明,沿河水的流动方向(从上游到下游)没有明显的砷运移。沉积物中的总砷浓度与农业土壤中的总砷浓度显着不同。根据与质量标准的比较,研究区沉积物中的砷具有潜在的生态风险,研究区中少量的农业土壤采样点被砷污染。由于使用连续提取分析了形态,沉积物中非残留部分的百分比高于残留部分。因此,我们认为在研究区中的As在沉积物,农业土壤和非农业土壤中具有较低的迁移率和生物利用度。但是,沉积物中砷的生物利用度和迁移率均高于农业和非农业土壤,因此,在未来的研究中应特别注意河流中砷的风险评估。

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