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Harnessing of biohydrogen from wastewater treatment using mixed fermentative consortia: Process evaluation towards optimization

机译:利用混合发酵联合体处理废水中的生物氢:朝优化过程的评估

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Utilizing wastewater as a potential source for renewable energy generation through biological routes has instigated considerable interest recently due to its sustainable nature. An attempt was made in this communication to review and summarize the work carried out in our laboratory on dark fermentation process of biohydrogen (H_2) production utilizing wastewater as primary substrate under acidogenic mixed microenvironment towards optimization of dynamic process. Process was evaluated based on the nature and composition of wastewater, substrate loading rates, reactor configuration, operation mode, pH microenvironment and pretreatment procedures adopted for mixed anaerobic culture to selectively enrich acidogenic H_2 producing consortia. The fermentative conversion of the substrate to H_2 is possible by a series of complex biochemical reactions manifested by selective bacterial groups. In spite of striking advantages, the main challenge of fermentative H_2 production is that, relatively low energy from the organic source was obtained in the form of H_2. Further utilization of unutilized carbon sources present in wastewater for additional H_2 production will sustain the practical applicability of the process. In this direction, enhancing H_2 production by adapting various strategies, viz., self-immobilization of mixed consortia (onto mesoporous material and activated carbon), integration with terminal methanogenic and photo-biological processes and bioaugmentation with selectively enriched acidogenic consortia were discussed. Application of acidogenic microenvironment for in situ production of bioelectricity through wastewater treatment employing microbial fuel cell (MFC) was also presented.
机译:由于废水具有可持续性,因此利用废水作为通过生物途径产生可再生能源的潜在来源引起了人们的极大兴趣。在此交流中尝试回顾和总结在我们的实验室中进行的关于在产酸混合微环境下利用废水作为主要底物的生物氢(H_2)暗发酵生产过程中的工作,以优化动态过程。根据废水的性质和组成,底物加载速率,反应器配置,操作模式,pH微环境和混合厌氧培养所采用的预处理程序(选择性地富集产酸H_2产菌群)对工艺进行了评估。底物向H_2的发酵转化可能通过一系列由选择性细菌组成的复杂的生化反应实现。尽管具有显着优势,但发酵生产H_2的主要挑战是,以H_2的形式从有机源中获得了相对较低的能量。废水中存在的未利用碳源的进一步利用可用于额外的H_2生产,将维持该工艺的实际适用性。在这个方向上,讨论了通过采用各种策略来提高H_2的产量,即混合社团的自我固定化(在介孔材料和活性炭上),与最终产甲烷和光生物学过程的整合以及具有选择性富集产酸社团的生物强化。还介绍了产酸微环境在废水处理中利用微生物燃料电池(MFC)原位生产生物电的应用。

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