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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Sustainable recovery of high-saline papermaking wastewater: Optimized separation for salts and organics via membrane-hybrid process
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Sustainable recovery of high-saline papermaking wastewater: Optimized separation for salts and organics via membrane-hybrid process

机译:高盐水造纸废水可持续恢复:通过膜 - 杂交工艺优化盐和有机物的优化分离

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摘要

In this work, a novel zero liquid discharge technology combining of electrodialysis (ED), electrochemical catalytic oxidation (ECO), reserve osmosis (RO) and bipolar membrane electrodialysis (BMED) was developed for sustainable recovery of high-saline papermaking wastewater. The effect of membrane type, volume ratio, membrane fouling and voltage were investigated in ED process; subsequently parameter such as electrolyte conductivity was studied in ECO process. The FKB/FAB stack shows good separation performance for the salts and organics, allowing a relatively high COD rejection of 97.80%. Meanwhile, membrane fouling was investigated through a comparison between virgin and fouled membranes. To achieve a high-saline solution with low organics, a second-stage ED process was applied. The concentration factor was increased to 1.799 with a COD rejection of 96.54% at voltage of 12 V. Simultaneously, the ECO process exhibited superior COD removal of 94.99% at the electrolyte conductivity of 4 mS/cm. Through the application of BMED at V-f:V-b:V-a (volume ratio of feed, base and acid solution) of 4:1:1, the final acid and base content could approach a high value of 12.30 wt% and 10.60 wt%, respectively. Therefore, this hybrid ED-ECO-RO-BMED combined process demonstrates a strongly technical applicability for sustainable resource recovery from high-saline papermaking wastewater.
机译:本研究将电渗析(ED)、电化学催化氧化(ECO)、储备渗透(RO)和双极膜电渗析(BMED)相结合,开发了一种新的零液体排放技术,用于高盐造纸废水的可持续回收。考察了膜类型、体积比、膜污染和电压对ED过程的影响;随后对ECO过程中的电解质电导率等参数进行了研究。FKB/FAB烟囱对盐和有机物表现出良好的分离性能,允许相对较高的COD去除率达到97.80%。同时,通过比较未净化膜和污染膜,对膜污染进行了研究。为了获得含低有机物的高盐溶液,采用了第二阶段ED工艺。在12V电压下,浓度因子增加到1.799,COD截留率为96.54%。同时,在4ms/cm的电解质电导率下,ECO工艺表现出优越的COD去除率94.99%。通过在V-f:V-b:V-a(进料、碱和酸溶液的体积比)为4:1:1时应用BMED,最终酸和碱含量可分别接近12.30 wt%和10.60 wt%的高值。因此,这种ED-ECO-RO-BMED混合工艺在高盐造纸废水的可持续资源回收方面具有很强的技术适用性。

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