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Removal and recovery of sodium hydroxide (NaOH) from industrial wastewater by two-stage diffusion dialysis (DD) and electrodialysis (ED) processes

机译:通过两步扩散渗析(DD)和电渗析(ED)工艺从工业废水中去除和回收氢氧化钠(NaOH)

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In this study, a two-stage diffusion dialysis (DD) and electrodialysis (ED) system for the removal and recovery of sodium hydroxide from industrial wastewater were investigated. The study was carried out at laboratory scale using food industry wastewater. Sodium hydroxide is commonly used as principal strong base by various chemical industries. The processed wastewater therefore enhances the pH levels of receiving water bodies that affects the physiological functions of aquatic organisms, plants, and makes the water inappropriate for human consumption. 1.0-mu m PTFE (Advantec, USA), forward osmosis (FO) (Hydration Technology Innovation) membranes, platinum coated over titanium anode, and graphite cathode were used in this study. In the first stage of the DD process, NaOH from the feed solution (FS) i.e. wastewater to draw solution (DS) i.e. deionized water (DI) was carried out through PTFE membrane in a diffusion cell. The initial concentration of NaOH in the FS was from 1 to 3 M and in the first step, 60 to 62% of NaOH was diffused from the FS to DS. In the second step of the DD process, further 48 to 50% NaOH was transferred from the FS to DS and overall 80 to 83% NaOH was removed from the FS. In the second stage, the DS collected from diffusion cell was transferred to the ED cell as the FS for further treatment and recovery of caustic soda. During the ED process, 15.0 V was applied for 5.0 h batch time. Sodium cations were transported from the FS to DS under the influence of electric potential through FO membrane and up to 44% of NaOH was recovered.
机译:在这项研究中,研究了一种用于从工业废水中去除和回收氢氧化钠的两阶段扩散渗析(DD)和电渗析(ED)系统。该研究是在实验室规模使用食品工业废水进行的。氢氧化钠被各种化学工业普遍用作主要的强碱。因此,处理后的废水会提高接收水体的pH值,从而影响水生生物,植物的生理功能,并使水不适合人类食用。在这项研究中,使用了1.0微米的PTFE(美国,Advantec),正渗透(FO)(水化技术创新)膜,钛阳极上涂覆的铂和石墨阴极。在DD工艺的第一阶段中,通过扩散池中的PTFE膜将来自进料溶液(FS)的废水中的NaOH抽出溶液(DS)的离子水(即去离子水(DI))进行处理。 FS中的NaOH初始浓度为1至3 M,在第一步中,60%至62%的NaOH从FS扩散至DS。在DD工艺的第二步中,将另外48%至50%的NaOH从FS转移到DS,并从FS中去除了80%至83%的NaOH。在第二阶段,将从扩散池收集的DS作为FS转移至ED池,以进一步处理和回收苛性钠。在ED过程中,以5.0小时的批处理时间施加15.0V。钠阳离子在电势的影响下通过FO膜从FS迁移到DS,并回收了多达44%的NaOH。

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