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首页> 外文期刊>Environmental Science and Pollution Research >Impact of waste-derived organic and inorganic amendments on the mobility and bioavailability of arsenic and cadmium in alkaline and acid soils
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Impact of waste-derived organic and inorganic amendments on the mobility and bioavailability of arsenic and cadmium in alkaline and acid soils

机译:废物衍生的有机物和无机修正对碱性和酸性土壤中砷和镉的流动性和生物利用度的影响

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摘要

In agriculture, more and more frequently waste-derived amendments are applied to soil to improve physical and chemical properties. Nevertheless, in soils polluted by potentially toxic metal(loid)s, this agricultural practice may significantly affect the mobility and bioavailability of pollutants modifying the risks for biota and human health. This work was aimed to assess the influence of poultry manure, biochar and coal fly ash on the mobility and bioavailability of As and Cd spiked in two Australian soils with different pH and texture: Mount Gambier (MGB)-alkaline sandy clay loam and Kapuda (KPD)-acid loamy sand. After 4weeks of incubation from spiking and another 4weeks from amendment addition, the soils were analysed for pH and amounts of As and Cd in pore-water and following 1M NH4NO3 extraction. Bioavailable amounts were assessed by plant uptake, using Zea mays L. as test crop. In the alkaline MGB soil, the availability of Cd was reduced, while that of As increased. An opposite behaviour was observed in the acid KPD soil. All amendments, when added to KPD soil, increased pH and consequently reduced the mobility of Cd and increased the mobility of As. In MGB, the amendment addition had an effect only on As mobility and bioavailability, which increased likely as a result of the increased competition for adsorption with DOC released by organic compounds. These trends were confirmed by the amounts of Cd and As uptaken by maize plants.
机译:在农业中,越来越多的浪费衍生的修正用于土壤以改善物理和化学性质。尽管如此,在潜在毒性金属(懒惰)污染的土壤中,这种农业实践可能会显着影响污染物改变生物群和人类健康风险的流动性和生物利用度。这项工作旨在评估家禽肥料,生物炭和煤粉煤灰对两种澳大利亚土壤的流动性和生物利用度的影响,不同的pH和纹理:冈比特(MGB) - alkaline Sandy粘土壤土和Kapuda( KPD) - 酸橡胶沙。从尖刺孵育和另外4周的孵育后,分析了孔隙水中的pH和CD的pH和量的土壤,并在1M NH 4 NO 3中提取。通过植物摄取来评估生物可利用量,使用Zea Mays L.作为测试作物。在碱性MGB土壤中,CD的可用性降低,而相应的情况下增加。在酸性KPD土壤中观察到相反的行为。所有修正案,当添加到KPD土壤时,增加pH并因此降低了CD的流动性并增加了常量的流动性。在MGB中,修订加入仅作为流动性和生物利用度的效果,这可能因伴有有机化合物释放的DOC的吸附竞争而增加。这些趋势通过CD的数量和玉米植物的颠覆确认。

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