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双极膜电渗析在高化学需氧量浓度下从工业盐水废水中回收酸和碱。

Recovery of Acid and Alkaline from Industrial Saline Wastewater by Bipolar Membrane Electrodialysis under High-Chemical Oxygen Demand Concentration.

机构信息

School of Water and Environment, Chang'an University, No. 126 Yanta Road, Xi'an 710054, China.

Shaanxi Research Design Institute of Petroleum and Chemical Industry, Xi'an 710054, China.

出版信息

Molecules. 2022 Oct 27;27(21):7308. doi: 10.3390/molecules27217308.

Abstract

Actual high saline wastewater containing concentrated organics and sodium chloride is a bioenergy and renewable resource. This study compared two different bipolar membrane electrodialysis membranes from two companies' stacks to recover HCl and NaOH from sodium chloride solution and actual chemical wastewater. The results demonstrated that the electrolysis rates were around 1.5 kg/mh, the HCl and NaOH production rates were about 0.9 kg/mh, energy consumption was in the range of 1.05-1.27 kWh/kg, and the economic benefits were above 1 yuan/h in BMED systems. From analyzing the performance of seven different BMED membrane stacks, the B2 stack was chosen for electrolyzing actual high salt wastewater to observe the effect of chemical oxygen demand on BMED systems, where electrolytic salt performance, HCl-NaOH alkali production rates, and energy consumption show linear dependence on time for 5000 mg/L chemical oxygen demand wastewater. It illustrated chemical oxygen demand can enhance energy consumption and reduce electrolytic salt performance and the acid and alkali production rates, due to improving the membrane area resistance. In this study, the effect of high COD saline wastewater on the performance of a BMED membrane stack was clarified and the mechanism was analyzed for its practical application in treating chemical high salt wastewater.

摘要

实际的高盐废水含有浓缩有机物和氯化钠,是一种生物能源和可再生资源。本研究比较了来自两家公司的两种不同的双极膜电渗析膜堆,以从氯化钠溶液和实际的化工废水中回收 HCl 和 NaOH。结果表明,电解速率约为 1.5 kg/mh,HCl 和 NaOH 的生成速率约为 0.9 kg/mh,能耗在 1.05-1.27 kWh/kg 范围内,BMED 系统的经济效益高于 1 元/h。通过分析七种不同的 BMED 膜堆的性能,选择 B2 膜堆用于电解实际的高盐废水,以观察化学需氧量对 BMED 系统的影响,其中电解盐性能、HCl-NaOH 碱产量和能耗随时间呈线性关系对于 5000mg/L 化学需氧量废水。结果表明,由于提高了膜面积电阻,化学需氧量可以提高能耗,降低电解盐性能和酸、碱的生成速率。在本研究中,阐明了高 COD 含盐废水对 BMED 膜堆性能的影响,并分析了其在处理化工高盐废水方面的实际应用的机理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eff3/9657526/7e11ffc33561/molecules-27-07308-g001.jpg

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