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Drinking water treatment residuals as an amendment to alkaline soils: Effects on bioaccumulation of heavy metals and aluminum in corn plants

机译:饮用水处理残留物对碱性土壤的修正:对玉米植物中重金属和铝的生物积累的影响

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An alum-based drinking water treatment residue (DWTR) is the by-product from the production of potable water. Land application of DWTR has received a considerable attention for its potential as a low-cost disposal alternative. A greenhouse experiment was conducted to quantify the effects of DWTR on bioaccumulation of some heavy metals in plant tissue and to determine the effects of the DWTR on soil aluminum and aluminum phytotoxicity for the corn plants in alkaline soils. The results indicated that land application of DWTR significantly decreased extractable heavy metals in all studied soils. Combined analyses of all soils and rates of DWTR application showed significant relationship between DTPA-extractable heavy metals and heavy metals uptake of corn plants. Addition of DWTR with different rates (10, 20, 30 and 40 g/kg) to different soil types did not cause aluminum phytotoxicity symptoms for corn plants grown in all studied alkaline agricultural soils because the application rates of DWTR did not increase extractable Al in amended soils > 8 mg Al/kg and the Al phytotoxicity may occur below pH 5.5. Extractable Al is associated with pH of the studied soils, combined analyses of all soils and rates of DWTR application showed a significant relationship between extractable Al and pH. Based on the results of current study, the DWTR is considered an ameliorating material for heavy metals removal from soils; however, additional studies are necessary to confirm these results under field conditions.
机译:白矾基饮用水处理残渣(DWTR)是饮用水生产的副产品。 DWTR的土地应用作为低成本处置替代品的潜力备受关注。进行了温室实验,以量化DWTR对植物组织中某些重金属的生物积累的影响,并确定DWTR对碱性土壤中玉米植物的土壤铝和铝的植物毒性的影响。结果表明,在所有研究的土壤中,DWTR的土地施用显着减少了可提取的重金属。对所有土壤和DWTR施用量的综合分析表明,DTPA可提取的重金属与玉米植物对重金属的吸收之间存在显着关系。在所有研究过的碱性农业土壤中,以不同的比例(10、20、30和40 g / kg)添加DWTR不会对在所有研究过的碱性农业土壤中生长的玉米植株产生铝的植物毒性症状,因为DWTR的施用量并未增加土壤中可提取的Al。修改后的土壤> 8 mg Al / kg,并且在pH值低于5.5时可能发生Al的植物毒性。可提取的铝与研究土壤的pH相关,对所有土壤和DWTR施用量的综合分析表明可提取的铝与pH之间存在显着的关系。根据目前的研究结果,DWTR被认为是一种从土壤中去除重金属的改良材料。但是,在野外条件下还需要进行更多的研究来证实这些结果。

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