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PEE POWER® urinal II – Urinal scale-up with microbial fuel cell scale-down for improved lighting

机译:PEEPOWER®小便斗II –小便斗按比例放大微生物燃料电池按比例缩小以改善照明

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摘要

A novel design of microbial fuel cells (MFC) fuelled with undiluted urine was demonstrated to be an efficient power source for decentralised areas, but had only been tested under controlled laboratory conditions. Hence, a field-trial was carried out to assess its feasibility for practical implementation: a bespoke stack of 12 MFC modules was implemented as a self-sufficient lit urinal system at UK's largest music festival. Laboratory investigation showed that with a hydraulic retention time (HRT) of 44 h, a cascade of 4 modules (19.2 L displacement volume) was continuously producing ≈150 mW. At the same HRT, the chemical oxygen demand (COD) was reduced from 5586 mg COD·L−1 to 625 mg COD·L−1. Field results of the system under uncontrolled usage indicate an optimal retention time for power production between 2h30 and ≈9 h. When measured (HRT of ≈11h40), the COD decreased by 48% and the total nitrogen content by 13%. Compared to the previous PEE POWER® field-trial (2015), the present system achieved a 37% higher COD removal with half the HRT. The 2016 set-up produced ≈30% more energy in a third of the total volumetric footprint (max 600 mW). This performance corresponds to ≈7-fold technological improvement.
机译:事实证明,以未稀释尿液为燃料的微生物燃料电池(MFC)的新颖设计是分散区域的有效动力来源,但仅在受控实验室条件下进行了测试。因此,进行了现场试验,以评估其实际实施的可行性:在英国最大的音乐节上,定制堆栈的12个MFC模块作为自给式小便池系统被实施。实验室研究表明,在水力停留时间(HRT)为44 h的情况下,由4个模块组成的级联(位移量为19.2 L)连续产生≈150mW。在相同的HRT下,化学需氧量(COD)从5586 mg COD·L -1 降至625 mg COD·L -1 。在不受控制的使用情况下,系统的现场结果表明,发电的最佳保留时间为2h30至≈9h。测量时(HRT约为11h40),COD降低了48%,总氮含量降低了13%。与以前的PEE POWER ®现场试验(2015)相比,本系统在HRT降低一半的情况下实现了高37%的COD去除率。 2016年的设置在总体积足迹的三分之一(最大600 mW)中产生了约30%的能量。该性能相当于≈7倍的技术改进。

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