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The Impact of Water from Sand Pit Lakes on Plant Growth, Soil, and Leachate

机译:来自砂坑湖泊对植物生长,土壤和渗滤液的影响

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Sand mining in the municipality of Seropedica, Rio de Janeiro, Brazil, has created large acidic lakes. This study evaluated the impact of water from sand pit lakes on the soil, leachate, and growth of Urochloa plants. Soil columns were sown with these plants and watered with five irrigation rates (treatments) with sand pit water and one treatment with pit water (control). A bottle was placed under each soil column to collect the leachate solution. The Ca2+, Mg2+, K+, Na+, Al3+, Fe3+, Si, P, N-NO3-, and SO42- contents in the leachate, and the soil pH, EC, (H+ + Al), Ca2+, Mg2+, K+, Na+, Al3+, Fe3+, and P contents were determined. Plant height, shoot and root dry matter, the contents, and accumulation of Ca, Mg, K, Na, Al, Fe, Mn, P, and N were evaluated. The results were analyzed by analysis of variance and regression models. The increase of the water from the pit lake reduced plant height, dry root, and shoot matter linearly. The Al and Fe contents in the roots were 10 times higher than in the shoots. No salinization or sodification of the soil occurred, but the Al3+ solubilization due to the low soil pH leads the increase of (H+ + Al). The acidity of the water and the low buffer capacity of the soil reduce its capacity to retain chemical elements. The Al, Fe, SO42-, and N-NO3- concentrations in the leachate were higher than those allowed by Brazilian groundwater laws. Under the experimental conditions, there is a potential risk of groundwater contamination.
机译:巴西里约热内卢市中心塞罗帕托卡市的沙坑创造了大型酸性湖泊。本研究评估了水对土壤,渗滤液和Urochloa植物生长的影响。用这些植物播种土壤柱,并用五种灌溉速率(治疗)浇水,用砂坑水和用坑水(对照)进行一次处理。将瓶子放在每个土柱下以收集渗滤液溶液。渗滤液中的Ca2 +,Mg2 +,K +,Na +,Al3 +,Fe3 +,Si,P,N-NO 3和SO42-含量,以及土壤pH值,EC,(H + + Al),Ca2 +,Mg2 +,K +,Na + ,确定Al3 +,Fe3 +和P含量。评价植物高度,芽和根干物质,Ca,Mg,K,Na,Al,Fe,Mn,P和N的含量和积累。通过分析方差和回归模型来分析结果。从坑湖的水的增加降低了植物高度,干根,并线性射击物质。根部中的Al和Fe内容量高于枝条的10倍。未发生土壤的盐渍化或加入,但由于低土pH值引起的Al 3 +溶解导致(H + + Al)的增加。水的酸度和土壤的低缓冲能力降低了其保留化学元素的能力。渗滤液中的Al,Fe,SO42-和N-NO 3-浓度高于巴西地下水法所允许的浓度。在实验条件下,存在地下水污染的潜在风险。

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