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Total Contents and Sequential Extraction of Heavy Metals in Soils Irrigated with Wastewater, Akaki, Ethiopia

机译:埃塞俄比亚阿卡奇市废水灌溉土壤中重金属的总含量和顺序提取

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The Akaki River, laden with untreated wastes from domestic, industrial, and commercial sources, serves as a source of water for irrigating vegetable farms. The purpose of this study is to identify the impact of waste-water irrigation on the level of heavy metals and to predict their potential mobility and bioavailability. Zn and V had the highest, whereas Hg the lowest, concentrations observed in the soils. The average contents of As, Co, Cr, Cu, Ni, Zn, V, and Hg of both soils; and Pb and Se from Fluvisol surpassed the mean + 2 SD of the corresponding levels reported for their uncontaminated counterparts. Apparently, irrigation with waste water for the last few decades has contributed to the observed higher concentrations of the above elements in the study soils (Vertisol and Fluvisol) when compared to uncontaminated Vertisol and Fluvisol. On the other hand, Vertisol accommodated comparatively higher average levels of Cr, Cu, Ni, Zn, etc V, and Cd, whereas high contents of Pb and Se were observed in Fluvisol. Alternatively, comparable levels of Co and Hg were found in either soil. Except for Ni, Cr, and Cd in contaminated Vertisol, heavy metals in the soils were not significantly affected by the depth (0-20 and 30-50 cm). When the same element from the two soils was compared, the levels of Cr, Cu, Ni, Pb, Se, Zn, V, Cd at 0-20 cm; and Cr, Ni, Cu, Cd, and Zn at 30-50 cm were significantly different. Organic carbon (in both soils), CEC (Fluvisol), and clay (Vertisol) exhibited significant positive correspondences with the total heavy metal levels. Conversely, Se and Hg contents revealed perceptible associations with carbonate and pH. The exchangeable fraction was dominated by Hg and Cd, whereas the carbonate fraction was abounded with Cd, Pb, and Co. conversely, V and Pb displayed strong affinity to reducible fraction, where as Cr, Cu, Zn, and Ni dominated the oxidizable fraction. Cr, Hg, Se, and Zn (in both soils) showed preference to the residual fraction. Generally, a considerable proportion of the total levels of many of the heavy metals resided in non residual fractions. The enhanced lability is generally expected to follow the order: Cd > Co > Pb > Cu > Ni > Se > V and Pb > Cd > Co > Cu > Ni > Zn in Vertisol and Fluvisol, respectively. For the similar wastewater application, the soil variables influence the status and the distribution of the associated heavy metals among the different soil fractions in the study soils. Among heavy metals that presented relatively elevated levels and with potential mobility, Co, Cu, Ni (either soil), V (Vertisol), Pb, and Zn (Fluvisol) could pose health threat through their introduction into the food chain in the wastewater irrigated soils.
机译:阿卡奇河(Akaki River)充满了来自家庭,工业和商业来源的未经处理的废物,是灌溉菜园的水源。这项研究的目的是确定废水灌溉对重金属含量的影响,并预测其潜在的流动性和生物利用度。在土壤中观察到的锌和钒含量最高,而汞含量最低。两种土壤中As,Co,Cr,Cu,Ni,Zn,V和Hg的平均含量;来自Fluvisol的Pb和Se超过了其未受污染的对应物报告的相应水平的平均值+ 2 SD。显然,与未污染的Vertisol和Fluvisol相比,过去几十年来用废水灌溉导致研究土壤(Vertisol和Fluvisol)中上述元素的浓度更高。另一方面,Vertisol的Cr,Cu,Ni,Zn等V和Cd的平均含量较高,而Fluvisol中的Pb和Se含量较高。另外,在两种土壤中都发现了相当水平的钴和汞。除了受污染的Vertisol中的Ni,Cr和Cd以外,土壤中的重金属不受深度(0-20和30-50 cm)的影响。当比较两种土壤中的相同元素时,Cr,Cu,Ni,Pb,Se,Zn,V,Cd的含量在0-20 cm处; 30-50 cm处的Cr,Ni,Cu,Cd和Zn显着不同。有机碳(在两种土壤中),CEC(氟维索醇)和粘土(Vertisol)均与总重金属含量呈显着正相关。相反,硒和汞的含量显示出与碳酸盐和pH的明显关联。可交换部分以Hg和Cd为主,而碳酸盐部分则以Cd,Pb和Co为主。相反,V和Pb对可还原部分表现出很强的亲和力,其中Cr,Cu,Zn和Ni为主可氧化部分。 。 Cr,Hg,Se和Zn(在两种土壤中)均显示优先于残留分数。通常,许多重金属的总含量中相当大的比例存在于非残留部分中。通常预期增强的不稳定性遵循以下顺序:分别在Vertisol和Fluvisol中Cd> Co> Pb> Cu> Ni> Se> V和Pb> Cd> Co> Cu> Ni> Zn。对于类似的废水应用,土壤变量会影响研究土壤中不同土壤组分之间相关重金属的状态和分布。在含量相对较高且具有潜在迁移性的重金属中,Co,Cu,Ni(两种土壤),V(Vertisol),Pb和Zn(氟维索尔)可能会通过将其引入灌溉废水中的食物链中而对健康构成威胁。土壤。

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