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Nitrogen recovery by urea hydrolysis and struvite precipitation from anthropogenic urine

机译:从人为尿液中尿素水解和鸟粪石沉淀回收氮

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Human urine is a source of nutrients and has a significant potential for recycle of nitrogen. Recently, much research focused on separate collection and treatment of human urine. Recovery of nutrients from human urine requires hydrolysis of urea into ammonia and subsequent removal of ammonia and sometimes phosphorus. This study attempted to evaluate urea hydrolysis of human urine in both untreated fresh samples and urease added urine samples. Recovery of nutrients by struvite precipitation on pre-hydrolysed samples was also assessed on undiluted and 1:1 diluted samples. Results of urea hydrolysis on untreated urine samples indicated that the process Was slow and pH exerted a significant effect on the process. No hydrolysis occurred above pH 10. From pH 2 to 7.5, 25% of urea could be hydrolysed in 30 d. Urease added hydrolysis with the enzyme doses 25-49 mg L-1 was a rapid process providing complete conversion into ammonia in 1.5 h. Struvite precipitation conducted on enzyme hydrolysed urine sample proved to be an efficient process and ammonia removals up to 95% were obtained. Struvite precipitation also provided 50% organic nitrogen removal.
机译:人尿是营养物质的来源,具有回收氮的巨大潜力。最近,许多研究集中在单独收集和处理人类尿液上。从人尿中回收养分需要​​将尿素水解成氨,然后去除氨,有时还去除磷。这项研究试图评估未经处理的新鲜样品和添加尿素酶的尿液样品中人尿素的水解程度。还对未稀释样品和1:1稀释样品上的鸟粪石沉淀物在预水解样品上的养分回收率进行了评估。在未经处理的尿液样品上尿素水解的结果表明,该过程缓慢,pH值对该过程产生了显着影响。在pH 10以上没有发生水解。在pH 2至7.5之间,30天内可水解25%的尿素。加入脲酶的酶剂量为25-49 mg L-1的水解是一个快速过程,可在1.5小时内完全转化为氨。经酶水解尿液样品进行鸟粪石沉淀是一种有效的方法,氨去除率高达95%。鸟粪石沉淀还提供了50%的有机氮去除率。

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