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Adsorptive properties of alluvial soil for arsenic(V) and its potential for protection of the shallow groundwater among Changsha, Zhuzhou, and Xiangtan cities, China

机译:砷(v)对抗土壤的吸附性质及其保护长沙,株洲和湘潭城市浅地下水保护潜力

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The study area is among Changsha, Zhuzhou, and Xiangtan cities, which was under agricultural use and natural conditions about 10 years ago and now is becoming part of the metropolis because of the urban expansion. This study aims to investigate the mechanisms and capabilities of the local alluvial soil layer for protecting the local shallow groundwater from arsenic pollution by field surveys and batch experiments. The field surveys showed that there was an acidic tendency of the groundwater, and phosphate, nitrate, and arsenic in the groundwater significantly increased comparing to their reference values. It indicates that the disturbance of the former agricultural land due to the change of land use may be responsible for these changes. From the experimental results, the maximum adsorption capacity of the soil for As(V) was as low as 0.334 mg/g, and lower As(V) adsorption capacities were obtained at higher As(V) concentration, higher pH, and lower temperature. The presence of H2PO4- and SiO32- posed negative, while HCO3- slight positive, and SO42-, NO3- and Cl(-)negligible influences on the As(V) adsorption. The surface-derived organic matter played a negative role in the adsorption process, and low specific surface area influenced adsorption capacity of the soil. The study reveals that the local soil layer shows poor potential for protection of the local shallow groundwater from As(V) pollution, and the change trends of the groundwater environments due to more intensive anthropogenic activities will further weaken this potential and increase the risk of the groundwater contamination.
机译:该研究领域是长沙,株洲和湘潭市,约10年前在农业用途和自然条件下,现在正在成为城市扩张的大都市的一部分。本研究旨在探讨局部冲积土层的机制和能力,用于保护局部浅层地下水免受灭蚊污染的灭虫和批量实验。现场调查显示地下水的酸性趋势,磷酸盐,硝酸盐和地下水中的砷显着增加与其参考值相比。它表明,由于土地利用变化导致的前农业土地的干扰可能对这些变化负责。从实验结果中,作为(v)的土壤的最大吸附容量低至0.334mg / g,并且在较高为(v)浓度,更高的pH和更低的温度下获得(V)吸附能力降低。 H2PO4-和SiO32的存在,而HCO3-轻微阳性,SO42-,NO 3和Cl( - )对AS(V)吸附的影响可忽略不计。表面衍生的有机物质在吸附过程中发挥了负面作用,低比表面积影响了土壤的吸附能力。该研究表明,当地土壤层面表现出保护当地浅地下水免受(v)污染保护的潜力,并且由于更强烈的人为活动导致地下水环境的变化趋势将进一步削弱这种潜力并增加风险地下水污染。

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