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Mercury(II) Removal by Bicarbonate Modified Tamarindnut Carbon

机译:碳酸氢盐修饰的罗望子果碳脱除汞

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The carbon obtained by treatment of tamarindnut with concentrated sulphuric acid under a weight ratio of 1 : 1 followed by soaking in 10% sodium bicarbonate solution exhibited a significant removal of Hg(II) from aqueous solutions over the pH range of 3-10 and commercially activated carbon in the pH range of 2-3 in batch studies.Based upon the findings,column studies were mainly conducted under optimum conditions to evaluate the removal of Hg(II) for large scale applications.For bicarbonate modified tamarindnut carbon an optimum flow rate of 13 mL/min with optimum bed height of 10.3 cm in 2.5 cm diameter column with optimum weight of 15 g of carbon was maintained.In the case of commercially activated carbon,15 g of carbon with optimum flow rate of 5 mL/min was maintained with the optimum bed height of 5.8 cm.The breakthrough capacities of bicarbonate modified tamarindnut carbon and commercially activated carbon under optimum conditions were found to be 1440 and 52 mg respectivey per 15 g of carbon.Common anions and cations affected the removal of Hg(II) on both the carbons.Breakthrough capacities were found out in the presence of wastewater containing Hg(II) and the potential of bicarbonate modified tamarindnut carbon was found to be 10 times superior to commercially activated carbon in the removal of Hg(II).
机译:重量比为1:1的罗望子果仁用浓硫酸处理后,再浸泡在10%的碳酸氢钠溶液中所获得的碳,在pH范围为3-10的情况下,从水溶液中显着去除了Hg(II)。在2-3 pH范围内进行活性炭的分批研究。基于这些发现,色谱柱研究主要是在最佳条件下进行的,以评估大规模应用中Hg(II)的去除。对于碳酸氢盐修饰的罗望子果糖碳,最佳流速在2.5厘米直径的色谱柱中,最佳床高为10.3厘米,最高柱速为13毫升/分钟,最佳碳重量为15克。对于商业活性炭,最佳流速为5毫升/分钟的碳15克保持最佳床高5.8厘米。碳酸氢盐修饰的罗望子果碳和商业活性炭在最佳条件下的突破能力分别为1440和52 mg / 15碳的克数。常见的阴离子和阳离子影响两种碳上Hg(II)的去除。在含有Hg(II)的废水存在下,具有突破能力,发现碳酸氢盐修饰的罗望子果碳的潜力是10倍在去除Hg(II)方面优于商业活性炭。

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