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首页> 外文期刊>Environmental engineering and management journal >HIGHLY EFFICIENT REMOVAL OF CADMIUM FROM AQUEOUS SOLUTION USING POLYMER-STABILIZED ZERO-VALENT IRON NANOPARTICLES: EQUILIBRIUM, KINETIC AND THERMODYNAMIC STUDIES
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HIGHLY EFFICIENT REMOVAL OF CADMIUM FROM AQUEOUS SOLUTION USING POLYMER-STABILIZED ZERO-VALENT IRON NANOPARTICLES: EQUILIBRIUM, KINETIC AND THERMODYNAMIC STUDIES

机译:使用聚合物稳定的零价铁纳米粒子从水溶液中高效去除镉:平衡,动力学和热力学研究

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摘要

Bare zero-valent iron nanoparticles (bare-ZVIN) have a great tendency to aggregate, which drops their reactivity with pollutants. To address this issue, polyvinylpyrrolidone stabilized-ZVIN (PVP-ZVIN) was synthesized and used for the removal of Cd~(2+) from aqueous solution in a batch system. The effects of operation conditions such as the pH of aqueous solution (2-8), reaction time (0-120), adsorbent concentration (1-6 g L~(-1)) and the initial Cd~(2+) concentration (10-60 mg L~(-1)) on the removal efficiency of Cd~(2+) were studied. Furthermore, adsorption isotherm, kinetic and thermodynamic studies of Cd~(2+) removal were performed. Results of studies revealed that PVP could apparently enhance the colloidal stability of ZVIN and the removal efficiency of Cd~(2+). In addition, increasing ZVINs concentration from 1 to 6 g L~(-1) enhanced Cd~(2+) removal efficiency while a sharp decrease was observed in Cd~(2+) removal efficiency by increasing the initial concentration of Cd~(2+) from 10 to 60 mg L~(-1). The experimental results showed that maximum Cd~(2+) adsorption was obtained at pH 6 and 20 min contact time. Moreover, the experimental adsorption of isotherm and kinetic data were completely followed the Freundlich isotherm model and Pseudo first-order kinetic model with maximum coefficients of determination (R2) of >0.98 and >0.99, respectively. Also, the obtained results of thermodynamic studies implied the influence of endothermic and spontaneous nature of Cd~(2+) adsorption onto ZVINs surfaces, at temperature range of 293-303 K. The findings of this study demonstrated that ZVINs could be applied as applicable adsorbents to remove Cd~(2+) from aqueous solutions.
机译:裸露的零价铁纳米颗粒(bare-ZVIN)具有很大的聚集趋势,从而降低了其与污染物的反应性。为了解决这个问题,合成了聚乙烯吡咯烷酮稳定化的ZVIN(PVP-ZVIN),并用于分批系统中从水溶液中去除Cd〜(2+)。水溶液的pH值(2-8),反应时间(0-120),吸附剂浓度(1-6 g L〜(-1))和初始Cd〜(2+)浓度等操作条件的影响研究了10-60 mg L〜(-1)对Cd〜(2+)的去除效果。此外,还进行了吸附等温线,动力学和热力学研究Cd〜(2+)的去除。研究结果表明,PVP可以明显提高ZVIN的胶体稳定性和Cd〜(2+)的去除效率。此外,将ZVINs浓度从1 g L〜(-1)增加到6 g L〜(-1)可以提高Cd〜(2+)的去除效率,而通过增加Cd〜( 2+)10至60 mg L〜(-1)。实验结果表明,在pH 6和20 min的接触时间下,Cd〜(2+)的吸附量最大。此外,完全遵循了Freundlich等温线模型和伪一级动力学模型,对等温线和动力学数据进行了实验性吸附,最大测定系数(R2)分别> 0.98和> 0.99。此外,获得的热力学研究结果暗示了在293-303 K的温度范围内Cd〜(2+)吸附到ZVINs表面的吸热和自发性质的影响。这项研究的结果表明,ZVINs可以适用吸附剂从水溶液中去除Cd〜(2+)。

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