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Soils from abandoned shooting range facilities as contamination source of potentially toxic elements: distribution among soil geochemical fractions

机译:废弃射击范围设施的土壤作为潜在有毒元素的污染源:土壤地球化学部分的分布

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摘要

Civilian and military shooting range facilities cause environmental issues in several countries due to the accumulation of Potentially Toxic Elements; as a result of weathering of ammunitions accumulated into the soils. The contents and distribution of Cu, Ni, Pb and Zn were analyzed in 12 soils in an abandoned clay target shooting range at two different depths (0-15 and 15-30 cm). Single extractions (CaCl2 and DTPA) and Tessier sequential extraction were conducted to assess the PTE mobility and the PTE distribution in the different soil geochemical fractions at both depths. High total contents of Pb were found at both soil depths, while Cu, Ni and Zn showed lower significance levels. Copper, Ni and Zn are mainly associated with the residual fraction ( 95% of total content in all cases). However, Pb was highly associated with exchangeable fractions (21-52%), showing a high mobility at both depths. With moderate-high contents of organic matter (6-12%), the studied soils have acidic values and low levels of Al, Fe and Mn oxides that favors the migration of Pb through the soil profile and potential transformation to more mobile forms (Pb-0 to Pb2+ and Pb4+). Although Pb reduced downward mobility in soils, due to the specific conditions of these facilities and the lead source (weathering of ammunition), risk assessment studies on clay-target shooting and firing range facilities should study the potential migration of Pb through the soil profile.
机译:平民和军事射击范围设施由于潜在有毒元素的积累而导致若干国家的环境问题;由于弹药累积到土壤中的风化。在两个不同深度(0-15和15-30cm)的废弃粘土靶拍摄范围内分析Cu,Ni,Pb和Zn的含量和分布。进行单一提取(CaCl2和DTPA)和Tessier顺序提取,以评估两个深度不同土壤地球化学级分中的PTE流动性和PTE分布。在两种土壤深度都发现了高总含量的Pb,而Cu,Ni和Zn显示出较低的显着性水平。铜,Ni和Zn主要与残留馏分(含量含量的总含量的95%)有关。然而,Pb与可交换级分(21-52%)高度相关,在两个深度上显示出高迁移率。具有中高含量的有机物质(6-12%),所研究的土壤具有酸性值和低水平的Al,Fe和Mn氧化物,可利用土壤曲线迁移PB和更多移动形式的潜在转化(PB -0至pb2 +和pb4 +)。虽然PB减少了土壤中的下行流动性,但由于这些设施的具体条件和引线源(Ammunition的风化),粘土目标射击和射击范围设施的风险评估研究应研究Pb通过土壤剖面的潜在迁移。

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