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首页> 外文期刊>Oriental Journal of Chemistry: An International Research Journal of Pure & Applied Chemistry >Bioaccumulation of Trace Metals In Selected Vegetable Crops around Tummalapalle uranium mine in Kadapa District, Andhra Pradesh
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Bioaccumulation of Trace Metals In Selected Vegetable Crops around Tummalapalle uranium mine in Kadapa District, Andhra Pradesh

机译:在Kadapa地区达明帕彭铀矿矿矿床中的痕量金属痕量金属生物累积

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摘要

The present investigation was carried out to evaluate trace metals concentration in soils and vegetable crops growing in agricultural fields around Tummalapalle uranium mining area, Pulivendula, Kadapa Dist, Andhra Pradesh. For this study the cultivated crops such as Capsicum annuum (Green chilli), Solanum melongena (Brinjal), Solarium lycopersicum (Tomato), Abelmoschus esculentus and Arachis hypogea (Ground nut) were selected. Soil and plant samples were evaluated for trace elements by using (ICP-OES). As for the estimated data, the concentrations of trace metals in ground nut and vegetables are found in the range of 0.14-1.2 mg/kg for B, 46-58.12 mg/kg for Ca, 0.49-3 mg/kg for Cu, 40.6-69.36 mg/kg for Fe, 76.84-91.72 mg/kg for K, 12.64-25.28 mg/kg for Mg, 0.51-2.1 mg/kg for Mn, 0.16-2.56 mg/kg for Mo, 20.85-25.2 mg/kg for P, 0.34-0.8 mg/kg for Zn, 0.3-0.64 mg/kg for Pb and 0.01-0.02 mg/kg for Se. (BAF) Bioaccumulation Factor (TF) Translocation Factor and (BAG) Bioaccumulation Coefficient, remained considered for the evaluation of movement of trace elements from soil to shoot, root to shoot and soil to entire plant. Solanum melongena (B, Zn) and Solanum lycopersicum (Mn, Mo) plants showed high TF values from roots to the shoots. These plants are appropriate for phytoextraction. The BAF data shows that all considered plants were excluders (< 1) and good accumulators (1-10) for all metals except Mo. But whereas BAG reveals that, all studied plants can be considered as hyper accumulators (> 10) for Mo, P and Zn.
机译:本发明的调查是为了评估在百星帕拉尔铀矿区,普鲁旺普尔矿区,帕德拉姆,安得拉邦的农业领域生长的土壤和蔬菜作物中的痕量金属浓度。对于这项研究,选择培养作物,如辣椒(Green Chilli),Solanum Melongena(Brinjal),Solariumlyopersicum(番茄),Abelmoschus Esculentus和Arachis Hypofea(磨碎的螺母)。通过使用(ICP-OES)评估土壤和植物样品的微量元素。至于估计的数据,磨碎螺母和蔬菜中的痕量金属的浓度在0.14-1.2mg / kg的B,46-58.12mg / kg的Ca,0.49-3mg / kg用于Cu,40.6 Fe,76.84-91.72mg / kg k,k,mg 12.64-25.28 mg / kg,0.51-2.1mg / kg的Mn,0.16-2.56mg / kg为mo,20.85-25.2 mg / kg对于P,0.34-0.8mg / kg的Pb,0.3〜0.64mg / kg,0.01-0.02mg / kg为se。 (BAF)生物累积因子(TF)易位因子和(袋)生物积累系数,仍然被认为是从土壤中的微量元素的运动评估,从土壤中射击,根部射击和土壤到整个植物。 Solanum Melongena(B,Zn)和Solanum Lycopersicum(Mn,Mo)植物从根部到枝条显示出高的TF值。这些植物适用于植物萃取物。 BAF数据显示,除MO之外的所有金属,所有被认为的植物都被排除(<1)和良好的蓄电池(1-10),但是袋子揭示了,所有研究的植物都可以被认为是MO的超蓄能器(> 10), p和zn。

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