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首页> 外文期刊>Journal of soil science and plant nutrition >Stabilization of nickel in a contaminated calcareous soil amended with low-cost amendments
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Stabilization of nickel in a contaminated calcareous soil amended with low-cost amendments

机译:用低成本的修正法修正了钙质污染土壤中镍的稳定化

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A laboratory study was planned to delineate the benefits of some low-cost soil amendments on Nickel (Ni) stabilization in a Ni-spiked soil. Six different kinds of amendments were evaluated by desorption kinetic test and sequential extraction procedure to determine their ability to reduce mobility of Ni in a Ni-spiked soil. The Ni-spiked soil was separately incubated with coal fly ash (CFA), rice husk biochars prepared at 300 °C (B300) and 600 °C (B600), municipal solid waste compost (MSWC), zero valent iron (Fe0) and zero valent manganese (Mn0) at 2 and 5% (W/W) for 45 and 90 days at 25 °C. The kinetic data obtained from 0.01 M EDTA was used to simulate desorption equations. The Sequential extraction method was also used as a suitable method for identification of chemical forms of Ni and its mobility. According to the results, application of amendments reduced exchangeable and carbonate forms of Nirate with respect to control treatment. Changes in chemical forms of Ni and their conversion into less soluble forms in treated soils was observed with incubation time. Application of Mn0, Fe0, CFA, and B300 to soil samples significantly decreased Ni desorption rate compared to the control treatment. The lowest Ni release was achieved by Mn0-treatment at 5%. Biphasic pattern of Ni desorption kinetic was fitted well by the model of two first-order reactions. From the practical point of view, Fe0, Mn0, CFA, and B300 treatments are effective in Ni stabilization, while using Mn0 and Fe0 at 5% can be recommended for immobilization of Ni from calcareous polluted soil.
机译:计划进行一项实验室研究,以描述一些低成本土壤改良剂对掺镍土壤中镍(Ni)稳定化的益处。通过解吸动力学测试和顺序萃取程序对六种不同的修饰剂进行了评估,以确定它们降低镍加标土壤中镍迁移率的能力。掺有镍的土壤分别与粉煤灰(CFA),在300°C(B300)和600°C(B600)下制备的稻壳生物炭,城市固体废物堆肥(MSWC),零价铁(Fe0)和在25°C下分别在2和5%(W / W)的零价锰(Mn0)下放置45天和90天。从0.01 M EDTA获得的动力学数据用于模拟解吸方程。顺序萃取法还用作鉴定Ni化学形式及其迁移率的合适方法。根据结果​​,就对照处理而言,施用修正剂减少了硝酸盐的可交换形式和碳酸盐形式。随着培养时间的推移,观察到了镍的化学形式的变化以及它们在处理后的土壤中转化为难溶形式的变化。与对照相比,在土壤样品中施用Mn0,Fe0,CFA和B300显着降低了Ni解吸速率。通过5%的Mn0处理可实现最低的Ni释放量。通过两个一级反应模型很好地拟合了Ni解吸动力学的双相模式。从实用的角度来看,Fe0,Mn0,CFA和B300处理对Ni的稳定有效,而建议使用5%的Mn0和Fe0来固定钙质污染土壤中的Ni。

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