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首页> 外文期刊>Green and Sustainable Chemistry >Passive Remediation of Acid Mine Drainage Using Ball-Milling Modified Indonesian Natural Bentonite: Laboratory Batch and Column Sorption of Manganese
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Passive Remediation of Acid Mine Drainage Using Ball-Milling Modified Indonesian Natural Bentonite: Laboratory Batch and Column Sorption of Manganese

机译:使用球磨改性的印尼天然膨润土对酸性矿山的排水进行被动修复:锰的实验室批次和柱吸附

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Manganese (Mn) is an essential element for human body. However, elevated concentration of manganese causes severe problem and disease. Acid mine drainage (AMD), wastewater generated due to open-pit mining, commonly contains Mn with exceeded concentration. This study is to investigate the improvement of ball-milling modified Indonesian natural bentonite (INB) for manganese (Mn) removal from AMD and to increase the pH through batch and column sorption test as a passive treatment system approach. The batch sorption test result showed the maximum Mn adsorbed ( Q _( m )) on INB from the Langmuir model increased from 4.69 to 17.12 mg/g after milling. The column sorption test result also showed the amount of Mn adsorbed on INB until breakthrough time ( q _( u )) and until saturation time ( q ) increased after milling. The q _( u ) increased from 1.27 to 10.06 mg/g, and the q increased from 4.55 to 12.91 mg/g. The mass transfer zone (MTZ) became significantly shorter after milling from 0.22 to 0.07 cm. The Thomas model exhibited the equilibrium uptake of Mn ( q _( 0 )) increased after milling from 3.91 to 13.72 mg/g. In equilibrium condition, both unmilled and milled INB showed the pH increased from ≈3 to 8.
机译:锰(Mn)是人体必需的元素。但是,锰的浓度升高会引起严重的问题和疾病。酸性矿山排水(AMD)是露天开采产生的废水,通常含有浓度超标的Mn。这项研究旨在研究球磨改性印尼天然膨润土(INB)从AMD去除锰(Mn)的改进,并通过分批和柱吸附测试作为被动处理系统方法来提高pH。批吸附试验结果表明,Langmuir模型在INB上吸附的最大Mn(Q _(m))从研磨后的4.69增加到17.12 mg / g。柱吸附测试结果还显示,研磨后直至突破时间(q _(u))和直到饱和时间(q)增加,INB上吸附的Mn量。 q _(u)从1.27 mg / g增加到10.06 mg / g,q从4.55 mg / g增加到12.91 mg / g。从0.22到0.07 cm研磨后,传质区(MTZ)明显缩短。托马斯模型显示,研磨后的Mn(q _(0))的平衡摄取从3.91 mg / g增加至13.72 mg / g。在平衡条件下,未碾磨和碾磨的INB均显示pH从≈3增加到8。

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