A stacked transmembrane electro-chemisorption system connected by hydrophobic gas permeable membranes for on-site utilization of authigenic acid and base to enhance ammonia recovery from wastewater

Beiqi Deng,Jiao Zhang,Ruifeng Deng, Zuobing Wang,Zhiqiang Zhang, Nan Zhang, Zhiyong Cao, Qingbo Zhang,Guangfeng Wei,Siqing Xia

Water Research(2024)

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摘要
The ammonia recovery from wastewater via electrochemical technologies represents a promising way for wastewater treatment, resource recovery, and carbon emission reduction. However, chemicals consumption and reactor scalability of the existing electrochemical systems have become the key challenges for their development and application. In this study, a stacked transmembrane electro-chemisorption (sTMECS) system was developed to utilize authigenic acid and base on site for enhancing ammonia recovery from wastewater. The easily scaled up system was achieved via innovatively connecting the cathode chamber in a unit with the anode chamber in the adjacent unit by a hydrophobic gas permeable membrane (GPM). Thus, authigenic base at cathodes and authigenic acid at anodes could be utilized as stripper and absorbent on site to enhance the transmembrane chemisorption of ammonia. Continuous power supply, reducing the distances of electrodes to GPM and moderate aeration of the catholyte could promote ammonia recovery. Applied to the ammonia recovery from the simulated urine, the sTMECS under the current density 62.5 A/cm2 for operation time 4 h showed the transmembrane ammonia flux of 26.00 g N/(m2·h) and the system energy consumption of 10.5 kWh/kg N. Accordingly, the developed sTMECS system with chemicals savings, easy scale-up and excellent performance shows good prospects in recovering ammonia from wastewater.
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关键词
On-site utilization,Authigenic acid and base,Transmembrane electro-chemisorption,Gas permeable membrane,Ammonia recovery
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