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Self-Powered Bioelectrochemical Nutrient Recovery for Fertilizer Generation from Human Urine

机译:人类尿液中肥料生物发电的自给自足生物电化学养分回收

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Nutrient recovery from source-separated human urine has been identified by many as a viable avenue towards the circular economy of nutrients. Moreover, untreated (and partially treated) urine is the main anthropogenic route of environmental discharge of nutrients, most concerning for nitrogen, whose release has exceeded the planet’s own self-healing capacity. Urine contains all key macronutrients (N, P, and K) and micronutrients (S, Ca, Mg, and trace metals) needed for plant growth and is, therefore, an excellent fertilizer. However, direct reuse is not recommended in modern society due to the presence of active organic molecules and heavy metals in urine. Many systems have been proposed and tested for nutrient recovery from urine, but none so far has reached technological maturity due to usually high power or chemical requirements or the need for advanced process controls. This work is the proof of concept for the world’s first nutrient recovery system that powers itself and does not require any chemicals or process controls. This is a variation of the previously proposed microbial electrochemical Ugold process, where a novel air cathode catalyst active in urine conditions (pH 9, high ammonia) enables in situ generation of electricity in a microbial fuel cell setup, and the simultaneous harvesting of such electricity for the electrodialytic concentration of ionic nutrients into a product stream, which is free of heavy metals. The system was able to sustain electrical current densities around 3 A m –2 for over two months while simultaneously upconcentrating N and K by a factor of 1.5–1.7.
机译:从源分离的人类尿液中的营养回收已经被许多人确定为朝鲜循环经济的可行途径。此外,未经处理的(和部分治疗)尿液是营养素的主要人为排放途径,大多数关于氮气的释放超过了行星自身的自我愈合能力。尿液含有植物生长所需的所有关键态常规(N,P和K)和微量营养素(S,Ca,Mg和痕量金属),因此是优异的肥料。然而,由于存在活性有机分子和尿液中的重金属,不建议在现代社会中推荐直接重复使用。许多系统已经提出并测试了尿液中的营养回收,但到目前为止由于通常高功率或化学要求或对先进过程控制的需求而达到技术成熟度。这项工作是世界上第一批营养恢复系统的概念证明,该系统为自己提供动力,不需要任何化学品或过程控制。这是先前提出的微生物电化学UGOLD方法的变化,其中具有在尿液条件(pH9,高氨)中活性的新型空气阴极催化剂使得能够在微生物燃料电池设置中的电力,以及这种电力的同时收获对于离子营养物的电渗量浓缩成产物流,其不含重金属。该系统能够在两个月内维持大约3 A m -2的电流密度,同时将n和k同时浓度为1.5-1.7。

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