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Electrochemical phosphate recovery from nanofiltration concentrates

机译:从纳滤浓缩物中回收电化学磷酸盐

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The high total phosphorus content of raw domestic wastewater with its significant eutrophication potential offers an excellent possibility for phosphate recovery. Continuous recirculation of NF concentrate to an MBR and simultaneous phosphate recovery from the NF concentrate can be applied to produce reusable water, recovering phosphates, while at the same time decreasing the scaling potential of the recirculated NF concentrate, prolonging the retention times of slowly biodegradable soluble compounds (e.g. micropollutants) and recirculating multivalent cations to promote the bio-flocculation. Here we introduce an electrochemical system to recover phosphates. An electrochemical cell was divided into an anode and a cathode compartment separated by a cation exchange membrane. Precipitation of phosphates from nanofiltration concentrate was induced by locally increasing the pH at the cathode surface by water electrolysis and thereby creating supersaturated conditions at the cathode. 70-95% recovery of total phosphate was achieved at a pH of 8-10 near the cathode. Ion analysis, XRD and ATR-FTCR spectra indicated that the precipitate consisted of amorphous calcium phosphate (ACP) and minor proportions of amorphous calcium carbonate (ACC). The amount of ACC was dependent on the pH. Calcium phosphate scaling at the cathode surface did not occur due to H2-gas formation preventing nucleation and growth at the cathode.
机译:高水平的富营养化潜力的生活污水中总磷含量高,为磷酸盐回收提供了极好的可能性。 NF浓缩液连续再循环至MBR,同时从NF浓缩液中回收磷酸盐可用于生产可重复使用的水,回收磷酸盐,同时降低再循环NF浓缩液的结垢潜力,从而延长了可缓慢生物降解的可溶物的保留时间化合物(例如微污染物)和再循环的多价阳离子以促进生物絮凝。在这里,我们介绍了一种回收磷酸盐的电化学系统。将电化学电池分成由阳离子交换膜隔开的阳极室和阴极室。通过水电解在阴极表面局部增加pH值,从而在阴极产生过饱和条件,从而诱导了纳米过滤浓缩物中磷酸盐的沉淀。在阴极附近的pH为8-10时,总磷酸盐的回收率为70-95%。离子分析,XRD和ATR-FTCR光谱表明,沉淀物由无定形磷酸钙(ACP)和少量无定形碳酸钙(ACC)组成。 ACC的量取决于pH。由于氢气的形成阻止了阴极处的成核和生长,因此在阴极表面未发生磷酸钙水垢。

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