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Pilot experiments with electrodialysis and ozonation for the production of a fertiliser from urine

机译:用电渗析和臭氧化从尿中生产肥料的中试实验

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Pilot tests were performed with a process combination of electrodialysis and ozonation for the removal of micropollutants and the concentration of nutrients in urine. In continuous and batch experiments, maximum concentration factors up to 3.5 and 4.1 were obtained, respectively. The desalination capacity did not decrease significantly during continuous operation periods of several weeks. Membrane cleaning after 195 days resulted in approximately 35% increase in desalination rate. The Yeast Estrogen Screen (YES), a bioassay that selectively detects oestrogenic compounds, confirmed that about 90% of the oestrogenic activity was removed by electrodialysis. HPLC analysis showed that ibuprofen was removed to a high extent, while other micropollutants were below the detection limit. In view of the fact that ibuprofen is among the most rapidly transported micropollutants in electrodialysis processes, this result indicates that electrodialysis provides an effective barrier for micropollutants. Standardised plant growth tests were performed in the field with the salt solution resulting from the treatment by electrodialysis and subsequent ozonation. The results show that the plant height is comparable to synthetic fertilisers, but the crop yield is slightly lower. The latter is probably caused by volatilisation losses during field application, which can be prevented by improved application technologies.
机译:用电渗析和臭氧化工艺组合进行了先导测试,以去除微量污染物和尿液中的营养成分。在连续和分批实验中,最大浓度因子分别达到3.5和4.1。在几个星期的连续运行期间,脱盐能力没有明显降低。 195天后进行膜清洁,可使脱盐率提高约35%。选择性检测雌激素化合物的生物测定法“酵母雌激素筛选”(YES)证实,通过电渗析去除了约90%的雌激素活性。 HPLC分析表明,布洛芬的去除率很高,而其他微量污染物均低于检测极限。考虑到布洛芬是电渗析过程中运输最迅速的微污染物之一的事实,该结果表明电渗析为微污染物提供了有效的屏障。通过电渗析和随后的臭氧化处理产生的盐溶液,在田间进行了标准化的植物生长试验。结果表明,株高与合成肥料相当,但农作物产量略低。后者可能是由现场应用过程中的挥发损失引起的,可以通过改进应用技术来避免。

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