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Resource recovery microbial fuel cells for urine-containing wastewater treatment without external energy consumption

机译:资源回收微生物燃料电池用于尿液的废水处理,无需外部能量消耗

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摘要

Resources in urine-containing wastewater are useful if recovered as nutrients. In this study, a three-chamber resource recovery microbial fuel cell (RRMFC) is proposed to treat synthetic urine-containing wastewater with various organic pollutants and recover N, P, and S nutrients. In the treatment, urea hydrolysis was increased by microbial and electrical processes. Ions migration driven by the self-generated electric field was used to recover nutrients from the wastewater. Over one cycle (similar to 3 days), 99% of urea, 97% of COD, 99% of histidine, 91% of creatinine, 99% of sodium acetate, 98% of SO42-, and 99% of PO43- were removed from the wastewater, and at the same time, 42% of total nitrogen, 37% of PO43-, 59% of SO42-, and 33% of total salts were recovered in the middle chamber. This technology is very attractive for sustainable resource recovery from urine-containing wastewater.
机译:含尿废水中的资源如果作为营养素恢复是有用的。 在该研究中,提出了一种三腔资源回收微生物燃料电池(RRMFC)以处理具有各种有机污染物的合成尿液废水,并回收N,P和S营养。 在治疗中,通过微生物和电气方法增加尿素水解。 由自发电电场驱动的离子迁移用于回收废水中的营养素。 超过一个循环(类似于3天),99%的尿素,97%的COD,99%的组氨酸,91%的肌酐,99%的醋酸钠,98%的SO42-和99%的PO43-培养 从废水中,同时,在中间室中回收了42%的总氮,37%的PO43-,59%的SO42-和总盐的33%。 这项技术对于含尿尿液废水的可持续资源恢复非常有吸引力。

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