玉米芯活性炭吸附地下水重金属的研究

Ermadani, Amalia Viviani, Yasdi, Shally Yanopa, Suryanto, Arsyad, Ar, Sarman
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引用次数: 0

摘要

铁(Fe)和锰(Mn)是重金属,在高度风化的土壤中含量很高,特别是在热带地区,导致地下水中含量很高。这些金属引起独特的气味,红棕色,黄色,高沉淀。当它被用作饮用水源时,这种情况可能会导致健康问题。本研究旨在评价玉米芯活性炭对地下水中铁和锰的吸附效果。将0.1 g、0.2 g、0.3 g、0.4 g、0.5 g、1 g、1.5 g和2 g不同剂量的活性炭加入100 ml地下水中进行吸附。pH分别为pH 2、pH 3、pH 4、pH 5、pH 6、pH 7和pH 8,接触时间分别为10、30、45、60、90和120分钟。结果表明,降低地下水中Fe和Mn浓度的最佳剂量为1 g和0.5 g,吸附效率分别为70.14%和41.60%。Fe和Mn的最佳吸附pH均为pH 4,吸附效率分别为75.44%和56.52%;最佳接触时间为60和30 min,吸附效率分别为75.44和59.29%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The use of activated charcoal from corn cobs as adsorbent of heavy metals from groundwater
Iron (Fe) and manganese (Mn) are heavy metals which are found in high concentration in highly weathered soils, especially in the tropics, resulting in high content of them in groundwater. These metals cause a distinctive odor, reddish brown, yellowish color, and high sediment. This condition could cause health problems when it is used as a source of drinking water. This study was aimed to evaluate the efficiency of activated carbon from corn cobs in reducing the concentrations of Fe and Mn from groundwater adsorption. The adsorption process was performed by applying activated carbon with varying doses of 0.1 g, 0.2 g, 0.3 g, 0.4 g, 0.5 g, 1 g, 1.5 g and 2 g into 100 ml groundwater. Variations of pH were pH 2, pH 3, pH 4, pH 5, pH 6, pH 7 and pH 8, and variations in contact time of 10, 30, 45, 60, 90 and 120 minutes. The results showed that the optimum doses to reduce Fe and Mn concentration from groundwater were 1 g and 0.5 g with the adsorption efficiency of 70.14% and 41.60% respectively. The optimum pH for both Fe and Mn was pH 4 with an adsorption efficiency of 75.44% and 56.52% respectively, while the optimum contact times were 60 and 30 minutes with an adsorption efficiency of 75.44 dan 59.29% respectively.
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