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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Ammonium recovery from reject water combined with hydrogen production in a bioelectrochemical reactor
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Ammonium recovery from reject water combined with hydrogen production in a bioelectrochemical reactor

机译:从废水中回收铵,并在生物电化学反应器中制氢

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摘要

In this study, a bioelectrochemical reactor was investigated for simultaneous hydrogen production and ammonium recovery from reject water, which is an ammonium-rich side-stream produced from sludge treatment processes at wastewater treatment plants. In the anode chamber of the reactor, microorganisms converted organic material into electrical current. The electrical current was used to generate hydrogen gas at the cathode with 96. ±. 6% efficiency. Real or synthetic reject water was fed to the cathode chamber where proton reduction into hydrogen gas resulted in a pH increase which led to ammonium being converted into volatile ammonia. The ammonia could be stripped from the solution and recovered in acid. Overall, ammonium recovery efficiencies reached 94% with synthetic reject water and 79% with real reject water. This process could potentially be used to make wastewater treatment plants more resource-efficient and further research is warranted.
机译:在这项研究中,对生物电化学反应器进行了研究,以同时从废水中回收氢气和从废水中回收铵,废水中是废水处理厂的污泥处理过程中产生的富铵侧流。在反应器的阳极室中,微生物将有机物质转化为电流。电流用于在阴极以96±的电流产生氢气。效率为6%。将真实或合成的废水送入阴极室,在阴极室中,质子还原为氢气会导致pH升高,从而导致铵转化为挥发性氨。可将氨从溶液中汽提并在酸中回收。总体而言,合成废水的氨回收效率达到94%,而实际废水的铵回收效率达到79%。此过程有可能用于使废水处理厂的资源效率更高,因此有必要进行进一步的研究。

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