首页> 外文期刊>Indian Journal of Environmental Protection >Kinetics of Adsorption for the Removal of Zinc (II) Ions From Aqueous Solution Using Indigenously Prepared Jack Fruit Seed and Commercial Activated Carbons
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Kinetics of Adsorption for the Removal of Zinc (II) Ions From Aqueous Solution Using Indigenously Prepared Jack Fruit Seed and Commercial Activated Carbons

机译:本地制备的杰克果种子和市售活性炭从水溶液中去除锌离子的动力学

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Studies on batch adsorption dynamics and equilibrium for the removal of zinc (II) ions from aqueous solution using indigenously prepared jack fruit seed (JFSC) and commercial activated carbons (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℃. Percentage removal of zinc (II) ions increased with the decrease in initial concentration and increased with increase in contact time and dose of adsorbent. Amount of zinc (II) ions adsorbed increases with the decrease in particle size of JFSC. 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 intraparticle diffusion model and the models were found to be applicable. Kinetics of adsorption is observed to be first order with intraparticle diffusion as one of the rate determining steps. Removal of zinc (II) ions by jack fruit seed carbon (JFSC) is found to be favourable and hence JFSC could be employed as an alternative adsorbent to commercial activated carbon (CAC) for effluent treatment, especially for the removal of zinc (II) ions.
机译:为了获得用于处理金属废水的数据,已经进行了使用本地制备的波罗蜜种子(JFSC)和商业活性炭(CAC)的批次吸附动力学和平衡以从水溶液中去除锌(II)离子的研究。加工和金属精加工行业。通过在30±1℃下采用间歇吸附技术研究了各种工艺参数的影响。锌(II)离子的去除率随着初始浓度的降低而增加,并且随着接触时间和吸附剂剂量的增加而增加。随着JFSC粒度的减小,吸附的锌(II)离子的量增加。随着浆料初始pH的增加,去除率增加,达到最大值,吸附后的最终溶液pH降低。吸附数据采用Freundlich和Langmuir等温线建模,由Natarajan-Khalaf,Lagergren和Bhattacharya和Venkobachar提出的一阶动力学方程和粒子内扩散模型被发现是适用的。观察到吸附动力学是一级的,其中颗粒内扩散是速率确定步骤之一。已发现用菠萝蜜种子碳(JFSC)去除锌(II)离子是有利的,因此JFSC可用作废水处理中商业活性炭(CAC)的替代吸附剂,特别是用于去除锌(II)离子。

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