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Zerovalent nickel nanoparticles performance towards Cr(VI) adsorption in polluted water

机译:Zerovalent镍纳米粒子在污染水中的Cr(vi)吸附的性能

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摘要

Heavy metals are one of the most common types of pollutants in ground water due to their wide sources, non-degradability and high toxicity. Many traditional wastewater treatments were not capable of removing enough such contaminants in order to meet quality standards. Nanosized zerovalent transition metals have emerged as a great candidate for ground water remediation, due to their simplicity and low fabrication cost, furthermore they can comply with simple chemical synthesis. Here, we present the synthesis of nano zerovalent nickel (nZVN) by a simple grinding reduction method. The obtained nZVN was characterized with XRD, SEM, EDS and BET surface area. The results confirms the formation of nZVN and the active particle cluster size ranges from 100 to 200 nm. N2 adsorption isotherms revealed that the formation mesoporous cluster of nZVN with good surface area. The adsorption of Cr(VI) using nZVN showed 96% removal efficiency for 10 ppm concentration, and even up to 98% when the temperature is slightly raised to 36 degrees C (309K). The removal efficiencies of Cr by zerovalent nickel was well fitted by the Langmuir-Hinshelwood first order reaction kinetic model with deceptive rate constant values of 0.6699, 0.7956 and 1.0251 min(-1) at temperature 200, 303 and 309 K, respectively. In total, our studies suggest that nanoscale zerovalent iron is a capable material for Cr(VI) remediation from groundwater.
机译:由于它们的广泛来源,不降解性和高毒性,重金属是地下水中最常见的污染物之一。许多传统的废水处理能够去除足够的污染物,以满足质量标准。由于其简单性和低制造成本,纳米齐价过渡金属已成为地下水修复的伟大候选者,因此它们可以符合简单的化学合成。这里,我们通过简单的磨削还原方法介绍纳米零亚价镍(NZVN)的合成。所获得的NZVN的特征在于XRD,SEM,EDS和BET表面积。结果证实了NZVN的形成,并且活性粒子簇大小范围为100至200nm。 N 2吸附等温物揭示了NZVN的形成介孔簇,表面积良好。使用NZVN的Cr(VI)的吸附显示出10ppm浓度的96%,并且当温度略微升高到36℃(309k)时甚至高达98%。 Zeropalent镍的Cr的去除效率通过Langmuir-hinshelwood一级反应动力学模型充分,具有0.6699,303和1.0251 min(-1)的耐腐蚀速率恒定值,分别在温度200,303和309k。我们的研究总共表明,纳米级Zerovalent Iron是来自地下水的Cr(VI)的能力的能力。

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