首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Accumulation and Partitioning of Phosphorus and Heavy Metals in a Sandy Soil Under Long-Term Vegetable Crop Production
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Accumulation and Partitioning of Phosphorus and Heavy Metals in a Sandy Soil Under Long-Term Vegetable Crop Production

机译:长期蔬菜作物生产下沙质土壤中磷和重金属的积累与分配

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Increased inputs of phosphorus (P) and heavy metals to agricultural soils have caused considerable concern. Information on accumulation and chemical forms of the elements in soils is needed as a guide for the judicious application of agricultural chemicals and organic manures. The focus of this study was to assess accumulation of P and heavy metals among various fractions of a sandy soil with a 25 year history of vegetable crop production and primarily inorganic fertilization. The results demonstrated that long-term vegetable production practices changed concentrations and partitioning of P and heavy metals in the soil. Phosphorus, Cu, Zn, and Mn were significantly accumulated and moved downward along the soil profile. Most of the total Cr in the vegetable soil accumulated in the upper 0-15 cm. However, there was no significant accumulation and transport of Cd, Co, Mo, Ni, and Pb in the vegetable soil. Major P fractions in the vegetable soil were NaHCO_3-P, followed by HCl-P and residual P. Copper, Zn, and Mn accumulated predominantly in the CaCO_3 fraction or oxide fraction, whereas Cr accumulated mainly in the organically bound fraction, indicating that P, Cu, Zn, and Mn in the vegetable soil have greater mobility potential. Compared with adjacent forest soil, the vegetable soil had a lower percentage of P, Cu, Zn, and Mn in the residual fractions, and a higher percentage of P, Cu, Zn, and Mn in the CaCO_3 fractions or organically bound fraction.
机译:磷(P)和重金属对农业土壤的投入增加引起了人们的极大关注。需要有关土壤中元素的积累和化学形式的信息,作为明智地使用农药和有机肥料的指南。这项研究的重点是评估25年蔬菜作物生产和主要是无机肥生产的沙质土壤各部分中磷和重金属的积累。结果表明,长期的蔬菜生产实践改变了土壤中磷和重金属的浓度和分配。磷,铜,锌和锰大量积累并沿土壤剖面向下移动。菜园土壤中总的Cr大部分堆积在上部0-15 cm。但是,在蔬菜土壤中Cd,Co,Mo,Ni和Pb没有明显的积累和运输。蔬菜土壤中的主要P组分为NaHCO_3-P,其次为HCl-P和残留P。铜,锌和锰主要聚集在CaCO_3组分或氧化物组分中,而Cr主要聚集在有机结合的组分中,表明P菜地中的铜,锌和锰具有更大的迁移潜力。与邻近的森林土壤相比,菜园土壤中残留部分的P,Cu,Zn和Mn含量较低,而CaCO_3部分或有机结合的部分中P,Cu,Zn和Mn含量较高。

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