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Treatment of source-separated urine by a combination of bipolar electrodialysis and a gas transfer membrane

机译:通过双极电渗析和气体转移膜的组合处理分离尿液

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摘要

Urine contains nutrients which can be applied usefully as a fertiliser in agriculture, but the relatively high pH can lead to ammonia evaporation. Electrodialysis with bipolar membranes was combined with an additional mass transfer unit in order to render a product containing ammonium and phosphate at a low pH. In one case, the additional mass transfer unit consisted of bubble columns placed in acid and basic concentrate streams, connected with a circulating gas phase. In the other case, the unit consisted of a gas-filled (hydrophobic) membrane placed in between the circulating acid and basic concentrate streams. The results showed that ammonia was transferred through the gas phase, but also carbonate, which is present in stored urine originating from the hydrolysis of urea. Although the pH in the product stream decreases initially, it rises above pH 7 at longer operation times. This pH increase can be attributed to a combination of proton compensating effects. The use of ammonia-selective membranes for the transfer into the acid concentrate could provide a solution to generate an ammonium phosphate product at low pH and high recoveries.
机译:尿液中含有可以用作农业肥料的养分,但是相对较高的pH值会导致氨气蒸发。将具有双极性膜的电渗析与附加的传质单元结合使用,以使产品在低pH值下含有铵和磷酸盐。在一种情况下,附加的传质单元由置于酸性和碱性浓物流中的鼓泡塔组成,并与循环气相连接。在另一种情况下,该装置由放置在循环酸和碱性浓液流之间的充气(疏水)膜组成。结果表明,氨不仅通过气相转移,而且还通过碳酸盐转移,这是由于尿素水解而存在于储存的尿液中。尽管产物流中的pH最初会降低,但在更长的操作时间中会升高到pH 7以上。 pH值的增加可归因于质子补偿作用的结合。使用氨选择性膜转移到酸浓缩物中可以提供一种在低pH和高回收率下生成磷酸铵产物的解决方案。

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