Integration of Microalgae-Microbial Fuel Cell with Microbial Electrolysis Cell for Wastewater Treatment and Energy Production

ECWS-7 2023 Pub Date : 2023-04-11 DOI:10.3390/ecws-7-14306
Basil Mansoor, Sumreen Ashraf, Umar Rehman, Zia Ullah, Zeshan Sheikh
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引用次数: 1

Abstract

: The microalgae-microbial fuel cell (mMFC) enables us to perform secondary and tertiary treatment of domestic wastewater while simultaneously producing green electricity. In this work, the treatment of wastewater and producing electricity using a dual-chambered mMFC were demonstrated. Furthermore, the electricity produced by the mMFC was utilized to drive microbial electrolysis cell (MEC) for hydrogen synthesis. Primary domestic wastewater was treated in the anodic compartment of mMFC. Chemical oxygen demand (COD) removal of 67.2 and 54% was achieved in the anodic compartment of batch and continuous mode, respectively. Wetland-treated water was filled in the cathodic compartment, and Scenedesmus sp. was used as a catholyte. The overall voltage of 1.85 V was used to run a 1-L MEC. Industrial wastewater was treated with a COD removal of 73% in the MEC and biohydrogen was produced at a rate of 9.8 ± 0.2 mL L − 1 d − 1 .
微藻-微生物燃料电池与微生物电解电池集成用于废水处理和能源生产
微藻-微生物燃料电池(mMFC)使我们能够对生活废水进行二级和三级处理,同时产生绿色电力。在这项工作中,展示了使用双室mMFC处理废水和发电。此外,利用mMFC产生的电能驱动微生物电解池(MEC)进行氢合成。在mMFC阳极室中处理生活一级废水。间歇式和连续式阳极室的化学需氧量去除率分别为67.2和54%。在阴极室中填充湿地处理过的水,以Scenedesmus sp.作为阴极液。总电压为1.85 V,运行1l MEC。MEC对工业废水的COD去除率为73%,产氢速率为9.8±0.2 mL L−1 d−1。
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