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Experimental study on the treatment of chromium-containing wastewater by aged refuse

机译:老化垃圾处理含铬废水的实验研究

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Biosorption-coupled reduction, as an effective and low-cost technology treating chrome- containing wastewater, has become a significant concern worldwide. This paper presents the results of two comparative trials, one column reactor was filled with unpasteurized aged refuse and the other sterilized, aiming at evaluating the performance of aged refuse for Cr(VI) removal from simulation wastewater. The results indicated that the Cr(VI) removal efficiency was slightly better in unpasteurized chrome, which demonstrated that micro-organisms had made a tiny contribution. In order to elucidate the mechanism of the process, the retained medium was characterized in terms of Cr(VI) and total chromium using ultraviolet-visible (UV-vis) spectroscopic techniques. Isotherm tests showed that equilibrium sorption data were better represented by Langmuir than Frendlich model. Two main processes involved were: adsorption on the surface and reduction into Cr(HI) mediated by the organic matter or anaerobic microbial metabolism of the bacteria residing in aged refuse. Thanks to the proven efficiency and the low-cost, the method can represent a valid alternative to conventional approaches to chromium remediation.
机译:作为一种有效和低成本的技术处理含铬废水的生物吸收耦合还原,已成为全球知名度。本文呈现了两种对比试验的结果,将一柱反应器填充有未腐烂的老化垃圾和其他灭菌,旨在评估从模拟废水中去除Cr(VI)的老化垃圾的性能。结果表明,在未经高温消毒的铬中,Cr(VI)去除效率稍微好转,这表明微生物产生了微小的贡献。为了阐明该方法的机制,使用紫外线可见(UV-VI)光谱技术的Cr(VI)和总铬表征保留介质。等温测试表明,Langmuir比Frendlich模型更好地表示平衡吸附数据。所涉及的两种主要过程是:对表面的表面和还原成有机物质或厌氧微生物代谢介导的Cr(HI),这些细菌仍居住在老年垃圾中。由于经过验证的效率和低成本,该方法可以代表常规铬修复方法的有效替代方案。

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