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Performance of dissolved organic matter removal from membrane bioreactor effluent by magnetic powdered activated carbon

机译:磁性粉末活性炭去除膜生物反应器废水中溶解有机物的性能

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摘要

Magnetic powdered activated carbon (Mag-PAC) was successfully developed and applied as an adsorbent for dissolved organic matter (DOM) removal from the effluent of a membrane bioreactor (MBR) using batch experiments. The results show that a coating of iron oxide particles is consistently distributed on the surface of powdered activated carbon (PAC), resulting in a decrease in the specific surface area and in the pH at the point of zero charge, even though the particle sizes of Mag-PAC and PAC were similar. A Mag-PAC dosage of 4 g/L exhibited efficient and fast DOM adsorption with a relatively short contact time of 5 min. The iron oxide coating on the surface of PAC may play an important role in the DOM removal efficiency. Temkin isotherm and pseudo-second order kinetic models well described the DOM adsorption, suggesting that the adsorption of DOM onto Mag-PAC could be mainly governed by a chemisorption mechanism. Humic acid- and fulvic acid-like compounds and aromatic DOM with molecular weights (MWs) between 2610 Da and 3030 Da were efficiently removed by Mag-PAC, whereas aromatic DOM with an MW of 1760 Da was poorly removed. Our results demonstrate that the application of Mag-PAC for DOM adsorption is attractive and yields benefits as a posttreatment system for MBR effluent due to its efficient and fast DOM adsorption.
机译:磁性粉末状活性炭(Mag-PAC)已成功开发,并用作使用批处理实验的吸附剂,用于从膜生物反应器(MBR)的废水中去除溶解的有机物(DOM)。结果表明,氧化铁颗粒的涂层始终分布在粉末状活性炭(PAC)的表面上,导致零电荷点的比表面积和pH值减小,即使Mag-PAC和PAC相似。用量为4 g / L的Mag-PAC表现出高效且快速的DOM吸附,且接触时间仅为5分钟。 PAC表面的氧化铁涂层可能对DOM去除效率起重要作用。 Temkin等温线和伪二级动力学模型很好地描述了DOM的吸附,这表明DOM在Mag-PAC上的吸附可能主要由化学吸附机制决定。 Mag-PAC可有效去除腐殖酸和黄腐酸样化合物以及分子量(MWs)在2610 Da和3030 Da之间的芳族DOM,而MW仅为1760 Da的芳族DOM则很难去除。我们的结果表明,Mag-PAC在DOM吸附方面的应用具有吸引力,并且由于其高效而快速的DOM吸附,因此可作为MBR废水的后处理系统受益。

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