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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Dominant factor affecting Pb speciation and the leaching risk among land- use types around Pb-Zn mine
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Dominant factor affecting Pb speciation and the leaching risk among land- use types around Pb-Zn mine

机译:PB-ZN矿区陆地利用类型的主要因素及土地使用类型中的浸出风险

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Soil lead (Pb) pollution around the mining area has severely threaten human health. However, Pb leaching risk in soils with different land uses and which is the proper land use are still unknown. In this work, Pb speciation characteristics and the dominant soil factors affecting Pb speciation in three land uses (farmland, woodland, and grassland) surrounding the Pb-Zn mine in Feng Country, Shaanxi province were investigated. Moreover, the Pb leaching risk and associated determining factors were evaluated by the combination of leached Pb concentration and structural equation model (SEM). The results showed that farmland presented the highest total Pb content (410.1 mg kg(-1)) among three land use types. The reducible fraction of Pb (Fe-Mn oxides bound) was the major speciation ( & 50%) in all tested soils of three land-use types. Soil total phosphorus (TP), water content (WC), and pH play major role in regulating Pb speciation. Though soil biological properties, like microbial communities, catalase, and microbial biomass nitrogen (MBN) exhibited distinct responses to three different land uses, they showed minor influence on Pb speciation. More interestingly, SEM analysis indicated that Pb leaching risk was directly linked with bacteria abundance, total Pb content, clay content, and C/N. Grassland presented the higher predicted Pb leaching concentration (85.03 mg kg(-1)), compared with that in woodland, suggesting that grassland was the worst land-use type to buffer the Pb toxicity. Woodland could be recommended as the proper native land use to alleviate environmental risk. Overall, our results demonstrated the dominant factor to regulate Pb speciation and pointed out the proper land-use in relieving Pb leaching risk around Pb-Zn mine. These finding provides the new strategies to the remediation and management of metal-contaminated soil.
机译:矿区周围的土壤铅(PB)污染严重威胁人类健康。然而,Pb浸出土壤中具有不同土地使用的风险,并且仍然是正确的土地使用仍然未知。在这项工作中,陕西省冯国PB-ZN矿区的三种土地使用(农田,林地和草原)的PB质型特征和影响PB物种的主要土壤因素进行了调查。此外,通过浸出的PB浓度和结构方程模型(SEM)的组合来评估PB浸出风险和相关的确定因子。结果表明,农田在三种土地使用类型中呈现出最高总Pb含量(410.1毫克KG(-1))。 Pb(Fe-Mn氧化物结合)的可还原级分是三种土地使用类型的所有测试土壤中的主要物种(& 50%)。土壤总磷(TP),水含量(WC)和pH在调节PB物种中发挥重要作用。虽然土壤生物学性质,如微生物群落,过氧化氢和微生物生物量氮(MBN)表现出对三种不同土地使用的明显反应,但它们对PB物种显示出微小的影响。更有趣的是,SEM分析表明PB浸出风险与细菌丰富,总Pb含量,粘土含量和C / N直接相关。草地呈现出更高的预测PB浸出浓度(85.03毫克KG(-1)),与林地相比,建议草原是缓冲PB毒性的最糟糕的土地使用型。伍德兰可以推荐为适当的本地土地用于减轻环境风险。总体而言,我们的结果表明了规范PB品种的主导因素,并指出了在PB-ZN矿区缩减PB浸出风险的适当土地使用。这些发现为金属污染土壤的修复和管理提供了新的策略。

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