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Effect of light on the production of bioelectricity and added-value microalgae biomass in a photosynthetic alga microbial fuel cell

机译:光对光合藻类微生物燃料电池中生物电和增值微藻生物质生产的影响

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摘要

This study demonstrates the simultaneous production of bioelectricity and added-value pigments in a Photosynthetic Alga Microbial Fuel Cell (PAMFC). A PAMFC was operated using Chlorella vulgaris in the cathode compartment and a bacterial consortium in the anode. The system was studied at two different light intensities and the maximum power produced was 62.7 mW/m2 with a light intensity of 96 lE/(m2 s). The results showed that increasing light intensity from 26 to 96 lE/(m2 s) leads to an increase of about 6-folds in the power produced. Additionally, the pigments produced by the microalga were analysed and the results showed that the light intensity and PAMFC operation potentiated the carotenogenesis in the cathode compartment. The demonstrated possibility of producing added-value microalgae biomass in microbial fuel cell cathodes will increase the economic feasibility of these bioelectrochemical systems, allowing the development of energy efficient systems for wastewater treatment and carbon fixation.
机译:这项研究证明了在光合藻类微生物燃料电池(PAMFC)中同时生产生物电和增值颜料。使用阴极小室中的小球藻和阳极中的细菌菌群操作PAMFC。在两种不同的光强度下对系统进行了研究,产生的最大功率为62.7 mW / m2,光强度为96 lE /(m2 s)。结果表明,将光强度从26 lE /(m2 s)增加到产生的功率增加大约6倍。此外,分析了微藻产生的色素,结果表明光强度和PAMFC操作增强了阴极室中的类胡萝卜素生成。在微生物燃料电池阴极中生产增值微藻生物质的可能性被证明将增加这些生物电化学系统的经济可行性,从而允许开发用于废水处理和固碳的节能系统。

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