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Urine-powered synergy of nutrient recovery and urine purification in a microbial electrochemical system

机译:尿液动力在微生物电化学系统中的养分回收和尿液净化的协同作用

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This study demonstrates that the chemical energy contained in human urine can synergize the in situ nutrient recovery and purification of urine itself. This process was achieved using a urine-powered microbial electrochemical system named U-Power, which can provide a maximum power density of 21.3 W m(-3) via the degradation of fresh human urine. Urea hydrolysis was induced by anodic microorganisms and further accelerated by the electrical potential inside U-Power to provide ammonium and balance the pH in the anode. Driven by the electrical potential generated by U-Power, the NH4+ and PO43- contained in urine migrated into the high nutrient concentration recovery solution. On average, 93.8% of organics, 73.1% of nitrogen and 86.2% of phosphorus were removed, along with recovery concentrations of 1234 mg L-1 nitrogen and 101 mg L-1 phosphorus. Both the above purification and recovery processes require no energy input but output a satisfactory power density among all present urine treatment studies, together with an average current efficiency of 178% and a coulombic efficiency of 26%. By achieving the triple benefits of energy-positive recovery of nutrients from urine, avoiding the complicated and energy-intensive process of nutrient removal in downstream wastewater treatment facilities, and avoiding the energy and hygiene issues combined with the storage and reuse of urine, U-Power represents a promising tool to pave the way for a sustainable water-energy-nutrient nexus.
机译:这项研究表明,人类尿液中所含的化学能可以协同原位养分的回收和尿液本身的净化。此过程是使用名为U-Power的尿液供电的微生物电化学系统完成的,该系统可通过降解新鲜的人类尿液提供21.3 W m(-3)的最大功率密度。尿素水解是由阳极微生物诱导的,并由U-Power内部的电势进一步加速,以提供铵并平衡阳极中的pH。在U-Power产生的电势的驱动下,尿液中的NH4 +和PO43-迁移到高营养物浓度回收溶液中。平均去除了93.8%的有机物,73.1%的氮和86.2%的磷,回收浓度为1234 mg L-1氮和101 mg L-1磷。在所有目前的尿液治疗研究中,以上纯化和回收过程均不需要能量输入,但输出令人满意的功率密度,以及平均电流效率为178%和库仑效率为26%。通过实现尿液中营养素能量正回收的三重好处,避免了下游废水处理设施中营养物去除过程复杂而耗能的过程,并避免了与尿液的存储和再利用相结合的能源和卫生问题,力量是有前途的工具,为可持续的水-能源-营养关系铺平了道路。

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