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Source-separated urine opens golden opportunities for microbial electrochemical technologies

机译:分离尿液为微生物电化学技术打开了千载难逢的机会

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The food security of a booming global population demands a continuous and sustainable supply of fertilisers. Their current once-through use [especially of the macronutrients nitrogen (N), phosphorus (P), and potassium (K)] requires a paradigm shift towards recovery and reuse. In the case of source-separated urine, efficient recovery could supply 20% of current macronutrient usage and remove 50-80% of nutrients present in wastewater. However, suitable technology options are needed to allow nutrients to be separated from urine close to the source. Thus far none of the proposed solutions has been widely implemented due to intrinsic limitations. Microbial electrochemical technologies (METs) have proved to be technically and economically viable for N recovery from urine, opening the path for novel decentralised systems focused on nutrient recovery and reuse.
机译:蓬勃发展的全球人口的粮食安全需要持续不断的肥料供应。它们目前的一次性使用(尤其是大量营养素氮(N),磷(P)和钾(K)的使用)需要向回收和再利用的范式转变。对于尿源分离的尿液,有效的回收可以提供当前20%的大量养分使用量,并去除废水中50-80%的养分。但是,需要合适的技术选择,以使营养物从源头附近的尿液中分离出来。迄今为止,由于固有的局限性,没有一个提议的解决方案得到广泛实施。微生物电化学技术(METs)已证明在技术上和经济上可用于从尿液中回收氮,这为致力于营养物回收和再利用的新型分散系统打开了道路。

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