污水污泥对荒漠土壤中镉迁移率的影响

Aishah M. Ramadan, M. A. Elssaidi
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引用次数: 0

摘要

本研究的主要目的是预测污水污泥改性土壤柱中镉(Cd)离子的运动。采用扰动土柱研究污泥对镉迁移的影响,评价不同污泥处理量(T1= 0, T2= 20, T3=40, T4= 60 t /公顷)荒漠土壤中镉的垂直迁移。结果表明,污泥的加入对土壤的理化性质有明显的改善。土壤有机质和孔隙度增加了土壤的持水能力和结构。污水污泥具有提高土壤肥力的能力。相反,某些重金属在改良土壤中的过量是使用污泥的负面影响。污泥处理速率(T4)越高(14.2 mg/kg),镉浓度越高。根据研究结果,被测柱中添加的污水污泥在其渗滤液中产生了相当高的Cd浓度。其中,60吨/公顷土柱改良剂的渗滤液Cd浓度较高,为3.03 mg/l。浸出后土壤镉浓度随添加速率的不同而不同,呈现出(T1) < (T2) < (T3) < (T4)的趋势。淋滤过程后土壤柱中Cd的分布呈分层分布。总体而言,污泥改良土壤中Cd的移动与有机质和pH的相关r分别为(0.71439和0.94886)和(0.70965和0.99047)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mobility of Cadmium in Distributed Desert Soil Column Amended by Sewage Sludge
The main aim of this research is to predict the movement of cadmium (Cd) ions in sewage sludge-amended soil columns. Sewage sludge impact on the mobility of cadmium was studied using disturbed soil columns, to assess the vertical movement of Cd in desert soil treated with different rates of sewage sludge, i.e., (T1= 0, T2= 20, T3=40, and T4= 60 ton/hectare). The obtained results showed that the physiochemical properties of the studied soil had improved significantly due to sewage sludge addition. Soil organic matter and porosity increase the water-holding capacity and structure of studied soil. Sewage sludge had the ability to increase soil fertility. In contrast, the excess of some heavy metals in the amended soil is the negative impact of using sewage sludge. Cadmium concentrations were greater at a higher rate (T4) of sludge treatment (14.2 mg/kg). According to the findings, the sewage sludge addition to the tested columns yielded considerable Cd concentrations in their leachates. Whereby, leachates of the soil column amendment with 60 ton/hectare contained higher Cd concentration (3.03 mg/l). Moreover, after leaching the soil cadmium concentration differ according to the addition rate, leading to this trend: (T1) < (T2) < (T3) < (T4). Distribution of Cd in soil columns after the leaching process distributed on the soil layers. Overall, Cd movement in sludge-amended soil was correlated with organic matter and pH with r= (0.71439 and 0.0.94886) and r= (0.70965 and 0.99047) respectively.
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