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Resource recovery from low strength wastewater in a bioelectrochemical desalination process

机译:生物电化学脱盐过程中低强度废水的资源回收

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In this research, low strength synthetic wastewaters with chemical oxygen demand less than 300 mg L-1 were treated at different concentrations in a bioelectrochemical desalination process. A process optimization model was utilized to study the performance of the photosynthetic bioelectrochemical desalination process. The variables include substrate (chemical oxygen demand) concentration, total dissolved solids, and microalgae biomass concentration in the cathode chamber. Relationships between the chemical oxygen demand concentration, microalgae, and salt concentrations were evaluated. Power densities and potential energy benefits from microalgal biomass growth were discussed. The results from this study demonstrated the reliability and reproducibility of the photosynthetic microbial desalination process performance followed by a response surface methodology optimization. This study also confirms the suitability of bioelectrochemical desalination process for treating low substrate wastewaters such as agricultural wastewaters, anaerobic digester effluents, and septic tank effluents for net energy production and water desalination.
机译:在该研究中,在生物电化学脱盐过程中不同浓度处理具有低于300mg L-1的化学氧需求小于300mg的低强度合成废水。利用过程优化模型研究光合生物电化学脱盐过程的性能。变量包括阴极室中的底物(化学需氧量)浓度,总溶解的固体和微藻生物量浓度。评估了化学需求浓度,微藻和盐浓度之间的关系。讨论了微藻生物量生长的功率密度和潜在的能量益处。本研究的结果证明了光合微生物脱盐工艺性能的可靠性和再现性,然后进行了响应面方法优化。该研究还证实了生物电化学脱盐方法的适用性,用于治疗低底物废水,如农业废水,厌氧消化器污水和渗透罐流水,用于净能量生产和水脱盐。

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