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首页> 外文期刊>Separation and Purification Technology >Enhanced biosorption of Cr(VI) from synthetic wastewater using algal-bacterial aerobic granular sludge: Batch experiments, kinetics and mechanisms
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Enhanced biosorption of Cr(VI) from synthetic wastewater using algal-bacterial aerobic granular sludge: Batch experiments, kinetics and mechanisms

机译:使用藻类细菌有氧颗粒污泥,从合成废水增强Cr(VI)的生物吸附:批量实验,动力学和机制

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摘要

Biosorption is considered as a cost-effective and environmentally friendly Cr(VI) removal process from wastewater. This study is the first report on algal-bacterial aerobic granular sludge (AGS) being used as biosorbent for Cr(VI) removal in comparison to conventional bacterial AGS with respect to biosorption performance. Batch tests revealed that Cr(VI) biosorption onto algal-bacterial AGS was highly pH dependent and the maximum Cr(VI) biosorption capacity of 51.0 mg g-1 occurred at pH 2. The Cr(VI) removal by algal-bacterial AGS was found to be accomplished by both biosorption and bioreduction reactions, in which four mechanisms, namely electrostatic interactions, ion exchange, surface complexation and bioreduction were involved. In addition, desorption tests showed that 64-73% of the adsorbed Cr onto the algal-bacterial AGS could be recovered by NaHCO3, and most of the adsorbed Cr was in the form of Cr(III). Compared to the conventional bacterial AGS, algal-bacterial AGS demonstrated higher biosorption capacity and better granular stability, implying that algal-bacterial AGS can be more potentially utilized as a Cr(VI) removal and recovery biomaterial for the treatment of Cr(VI)containing wastewater.
机译:生物吸附被认为是来自废水的成本效益和环保的CR(VI)去除过程。本研究是关于与生物吸附性能相比,与常规细菌AGS相比,使用作为Br(VI)除去的生物吸附剂的藻类细菌有氧颗粒污泥(AGS)的第一个报告。分批测试显示,在藻类 - 细菌AG上的Cr(VI)生物吸附是高度pH依赖性,并且在pH2时发生51.0mg G-1的最大Cr(VI)生物吸收能力。通过藻类 - 细菌AGS除去Cr(VI)发现通过生物吸附和生物测定反应来实现,其中涉及四种机制,即静电相互作用,离子交换,表面络合和生物进展。此外,解吸试验表明,将64-73%的吸附Cr在藻类 - 细菌AG上可以通过NaHCO 3回收,并且大多数吸附的Cr是Cr(III)的形式。与常规的细菌AGS相比,藻类 - 细菌AGS显示出较高的生物吸收能力和更好的粒状稳定性,这意味着藻类 - 细菌AG可以更潜在地用作Cr(VI)去除和回收生物材料,用于治疗含Cr(VI)废水。

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