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Cd, Cu, and Zn Accumulations Caused by Long-Term Fertilization in Greenhouse Soils and Their Potential Risk Assessment

机译:温室土壤中长期施肥的CD,Cu和Zn积累及其潜在风险评估

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摘要

The intense management practices in greenhouse production may lead to heavy metal (HM) accumulations in soils. To determine the accumulation characteristics of HM and to evaluate possible HM sources in greenhouse soils, thirty typical greenhouse soil samples were collected in Shouguang District, Shandong Province, China. The results indicate that the Cd, Cu, and Zn concentrations are, respectively, 164.8%, 78.6%, and 123.9% higher than their background values. In the study area, Cd exhibits certain characteristics, such as wide variations in the proportion of its exchangeable form and the highest mobility factor and geo-accumulation index, which are indicative of its high bioavailability and environmental risk. In addition, there is a significant positive correlation between pairs of Cd, P, soil organic carbon, and cultivation age. Combined with principal component analysis, the results indicate the clear effects that agricultural activities have on Cd, Cu, and Zn accumulation. However, Cr, Ni, and Pb have a significant correlation with soil Fe and Al (hydr)-oxides, which indicates that these metals mainly originate from parent materials. This research indicated that long-term intensive fertilization (especially the application of chemical fertilizers and livestock manure) leads to Cd, Cu, and Zn accumulation in greenhouse soils in Shouguang. And the time required to reach the maximum permeable limit in agricultural soils for Cd, Cu, and Zn is 23, 51, and 42 years, respectively, based on their current increasing rates.
机译:温室生产中的强烈管理实践可能导致土壤中的重金属(HM)积累。为了确定HM的累积特性并评估温室土壤中可能的HM源,在山东省寿光区收集了三十典型的温室土壤样品。结果表明,CD,Cu和Zn浓度分别比其背景值高出164.8%,78.6%和123.9%。在研究领域,CD表现出某些特征,例如可交换形式的比例和最高的移动性因子和地球积累指数的宽变化,这表明其高生物利用度和环境风险。此外,在Cd,P,土壤有机碳和培养年龄对之间存在显着的正相关性。结合主成分分析,结果表明农业活动对CD,Cu和Zn积累的明显影响。然而,Cr,Ni和Pb与土壤Fe和Al(氢) - 氧化物具有显着的相关性,这表明这些金属主要来自母材料。本研究表明,长期强化施肥(尤其是化肥和牲畜粪物的应用)导致寿光温室土壤中的CD,Cu和Zn积累。基于其当前增加的速率,分别达到CD,Cu和Zn的农业土壤中最大渗透极限所需的时间分别为23,51和42年。

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