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Development of copper-iron bimetallic nanoparticle impregnated activated carbon derived from coconut husk and its efficacy as a novel adsorbent toward the removal of chromium (Ⅵ) from aqueous solution

机译:铜 - 铁双金属纳米粒子浸渍活性炭衍生自椰子壳的浸渍活性炭及其效果,作为一种新的吸附剂,朝向水溶液除去铬(Ⅵ)

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The present work demonstrates the preparation of biodegradable coconut husk derived activated carbon (CAC) impregnated with bimetallic nanoparticles consisting of zerovalent iron and copper to produce a new adsorbent (Fe-0/Cu-CAC). The new adsorbent was further employed to determine the removal efficiency of Chromium (VI) from aqueous solutions. Chromium (VI) adsorption process by Fe-0/Cu-CAC was found to be favorable at pH similar to 3, attaining 95.28% removal efficiency while its counterpart CAC attained only similar to 41%. Negative Delta G(0) value suggests that the process was thermodynamically spontaneous and Delta H-0 was observed to be 8.496 kJ/mol, further corroborating the endothermic nature of the process. Pseudo-second order model was best suited to explain the kinetics of the process with R-2 value of 0.99683 and an error of 6.73%. Equilibrium parameter (R-L) derived from Langmuir isotherm was calculated to be 0.1103, indicating favorable adsorption and thus Langmuir isotherm can be used to describe the process of adsorption of Cr (VI) by Fe-0/Cu-CAC. Finally, a maximum monolayer adsorption capacity of 173.9 mg/g indicated the suitability of the prepared adsorbent in treating chromium contaminated wastewater streams. (c) 2020 Water Environment FederationPractitioner pointsFacile development of novel adsorbent from biodegradable coconut husk via cost effective route.Utilization of the adsorbent towards removal of toxic pollutant like Cr (VI) from its aqueous solution.Validation of the effective adsorption mechanism by Kinetic and Thermodynamic study.
机译:本作者表明,制备可生物降解的椰子壳衍生的活性炭(CAC)浸渍有由zeropalit铁和铜组成的双金属纳米颗粒,以产生新的吸附剂(Fe-0 / Cu-CaC)。进一步使用新的吸附剂来确定来自水溶液中铬(VI)的去除效率。发现Fe-0 / Cu-CAC的铬(VI)吸附过程在类似于3的pH下有利,获得95.28%的去除效率,而其对应CAC仅达到41%。阴性ΔG(0)值表明该方法是热力学自发的,并且观察到δH-0为8.496 kJ / mol,进一步证实了该方法的吸热性质。伪二次订单模型最适合解释该过程的动力学,R-2值为0.99683,误差为6.73%。将源自朗米尔等温衍生的平衡参数(R-1)计算为0.1103,表明良好的吸附,因此可以使用朗米尔等温线来描述CR-0 / Cu-CaC的Cr(VI)的吸附过程。最后,最大单层吸附容量为173.9mg / g表示制备的吸附剂在处理铬污染的废水流中的适用性。 (c)2020水环境FederationPractitioner通过成本效益的椰子壳从可生物降解的椰子壳中发育了新的吸附剂。吸附剂从其水溶液中除去毒性污染物如Cr(VI)。通过动力学和热力学的有效吸附机理。学习。

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