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Removal of Cu (II) by calcinated electroplating sludge

机译:通过煅烧电镀污泥去除Cu(II)

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摘要

Electroplating sludge consists of various heavy metal oxides, which may be utilized as adsorbent to remove Cu (II) present in aqueous environment. This study evaluated the adsorption performance of calcinated electroplating sludge. The adsorption isotherm based on Langmuir equation proved that calcinated electroplating sludge had a higher adsorption performance than raw electroplating sludge, with maximum adsorption capacity 92 mg/g and 76.34 mg/g, respectively. Findings of the conducted kinetic study revealed that both surface adsorption and intra-particular diffusion were involved during the adsorption process. Moreover, the comparison between the experimental and calculated data of equilibrium adsorption capacity demonstrated that the pseudo second-order kinetic equation fitted well with 38.31 mg/g of calcinated sludge and 33.66 mg/g of raw sludge, approximate to real-world data. Furthermore, adsorption mechanism research demonstrated that while OH group plays a vital role in raw sample, Ca2+, in addition to OH group, was involved in ion exchange in calcinated sample.
机译:电镀污泥由各种重金属氧化物组成,其可用作吸附剂以除去含水环境中存在的Cu(II)。该研究评估了煅烧电镀污泥的吸附性能。基于Langmuir方程的吸附等温线证明,煅烧电镀污泥的吸附性能较高,而不是原始电镀污泥,分别具有92mg / g和76.34mg / g的最大吸附容量。进行了动力学研究的发现表明,在吸附过程中涉及表面吸附和特定的扩散。此外,实验性和计算的平衡吸附能力数据之间的比较表明,伪二阶动力学方程与38.31mg / g煅烧污泥良好,33.66毫克/克原料污泥,近似于现实世界。此外,吸附机制研究表明,虽然OH基团在Raw样品中发挥重要作用,但除OH组外,Ca2 +还参与煅烧样品中的离子交换。

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