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首页> 外文期刊>Journal of Chemistry >Removal of Lead(II) Ions by Adsorption ontoBamboo Dust and Commercial Activated Carbons -A Comparative Study
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Removal of Lead(II) Ions by Adsorption ontoBamboo Dust and Commercial Activated Carbons -A Comparative Study

机译:通过吸附Ontobamboo粉尘和商业活性炭的吸附除去铅(II)离子-A比较研究

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Studies on the removal of lead(II) ions by adsorption onto indigenously prepared bamboo dust carbon (BDC) and commercial activated carbon (CAC) have been carried out with an aim to obtain data for treating effluents from metal processing and metal finishing industries. Effect of various process parameters has been investigated by following the batch adsorption technique at 30±1°C. Percentage removal of lead(II) ions increased with the decrease in initial concentration and increased with increase in contact time and dose of adsorbent. Amount of lead(II) ions adsorbed increases with the decrease in particle size of the adsorbent. As initial pH of the slurry increased, the percentage removal increased, reached a maximum and the final solution pH after adsorption decreases. Adsorption data were modeled with the Freundlich and Langmuir isotherms, the first order kinetic equations proposed by Natarajan – Khalaf, Lagergren and Bhattacharya and Venkobachar and intra- particle diffusion model and the models were found to be applicable. Kinetics of adsorption is observed to be first order with intra-particle diffusion as one of the rate determining steps. Removal of lead(II) ions by bamboo dust carbon (BDC) is found to be favourable and hence BDC could be employed as an alternative adsorbent to commercial activated carbon (CAC) for effluent treatment, especially for the removal of lead(II) ions
机译:已经通过吸附在本发明制备的竹粉碳(BDC)上除去铅(II)离子和商业活性炭(CAC)的研究,目的是获得从金属加工和金属整理行业处理污水的数据。通过在30±1℃下进行批量吸附技术,研究了各种工艺参数的效果。铅(II)离子的去除百分比随着初始浓度的降低而增加,随着吸附剂的接触时间和剂量的增加而增加。铅(II)离子的量随吸附剂的粒度降低而增加。由于浆料的初始pH增加,除去率增加,达到最大值和吸附后的最终溶液pH。吸附数据与Freundlich和Langmuir等温机构建模的,该第一阶动力学方程是Natarajan - KhaLaf,Lagergren和Bhattacharya和Venkobachar和粒子内扩散模型以及模型的一阶动力学方程。观察到吸附的动力学是具有颗粒内扩散的第一阶作为速率确定步骤之一。发现通过竹粉碳(BDC)除去铅(II)离子是有利的,因此BDC可以用作流出物处理的商业活性炭(CAC)的替代吸附剂,特别是用于去除铅(II)离子

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