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超声辅助吸附强化啤酒厂废酵母生物吸附剂在废水处理中去除染料的应用价值

Valorization of spent brewery yeast biosorbent with sonication-assisted adsorption for dye removal in wastewater treatment.

作者信息

Soh Elaine Y S, Lim Siew Shee, Chew Kit Wayne, Phuang Xin Wei, Ho Victoria M V, Chu Kevin Y H, Wong Rui Rui, Lee Lai Yee, Tiong T Joyce

机构信息

Department of Chemical and Environmental Engineering, Faculty of Science and Engineering, University of Nottingham Malaysia, Jalan Broga, Semenyih, Selangor, 43500, Malaysia.

Department of Chemical and Environmental Engineering, Faculty of Science and Engineering, University of Nottingham Malaysia, Jalan Broga, Semenyih, Selangor, 43500, Malaysia.

出版信息

Environ Res. 2022 Mar;204(Pt D):112385. doi: 10.1016/j.envres.2021.112385. Epub 2021 Nov 13.

Abstract

The effluent of textile industries containing synthetic dyes contributed to substantial pollution to water bodies. The biosorption process of Congo Red dye was successfully performed by integrating ultrasonication in the adsorption step with spent brewery yeast as a novel and renewable biosorbent. The adsorption process was hindered when ultrasonication was employed together with the biosorbent, indicating that desorption process had occurred. The adsorption process showed that 4 g/L of biosorbent was the optimum dosage for adsorption of 50 mg/L of Congo Red dye, and that the adsorption equilibrium fitted to the Langmuir model, with kinetics best fitted with pseudo-second order model. The maximum capacity of the adsorption was 52.6 mg/g, showing the potential of spent brewery yeast to aid in removing wastewater pollutants. Maximal Congo Red dye recovery (100%) was achieved in the sonication-assisted desorption studies using 0.01M NaOH as the eluting agent. The ultrasonication effects contributed to the efficient recovery of dye and good conversion of spent brewery yeast to biosorbent can be beneficial for treating pollution from textile wastewater.

摘要

含有合成染料的纺织工业废水对水体造成了严重污染。通过在吸附步骤中引入超声处理,并使用废弃啤酒酵母作为新型可再生生物吸附剂,成功实现了刚果红染料的生物吸附过程。当超声处理与生物吸附剂一起使用时,吸附过程受到阻碍,这表明发生了解吸过程。吸附过程表明,对于50mg/L的刚果红染料,4g/L的生物吸附剂用量是最佳吸附剂量,且吸附平衡符合朗缪尔模型,动力学最符合准二级模型。最大吸附容量为52.6mg/g,表明废弃啤酒酵母在去除废水污染物方面具有潜力。在使用0.01M NaOH作为洗脱剂的超声辅助解吸研究中,刚果红染料的回收率达到了100%。超声处理的效果有助于染料的高效回收,并且废弃啤酒酵母向生物吸附剂的良好转化有利于处理纺织废水污染。

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