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Biohydrogen production using sequential two-stage dark and photo fermentation processes

机译:使用顺序的两阶段暗发酵和光发酵工艺生产生物氢

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A two-stage process combining dark/photo fermentation was used to increase the overall hydrogen yield from sucrose and also to reduce the chemical oxygen demand (COD) in the effluent. Dark-H_2 fermentation was conducted using Clostridium pasteurianum CH_4, giving a maximum H_2 production yield of 3.80 mol H_2/mol sucrose. The soluble metabolites resulting from dark fermentation, consisting of butyric and acetic acid, were further used for H_2 production in the subsequent photo fermentation. Using soluble products from dark fermentation as substrate, Rhodopseudomonas palustris WP3-5 could produce H_2 phototrophically, elevating the total hydrogen yield from 3.80 (dark fermentation) to 10.02 mol H_2/mol sucrose (dark/photo fermentation). Meanwhile, a 72.0% COD removal was also achieved. When the photobioreactor was illuminated with side-light optical fibers and was supplemented with 2.0% (w/v) of clay carriers, the overall H_2 yield of the two-stage process was further enhanced to 14.2 mol H_2/mol sucrose with a nearly 90% COD removal. Continuous photo fermentation was also carried out at 96 h HRT using effluent from dark fermentation as the feed. The continuous culture maintained stable for nearly 10 days with an average H_2 yield of 10.21 mol H_2/mol sucrose. This demonstrates the feasibility of using the two-stage process combining dark and photo fermentation for simultaneous hydrogen production and COD removal.
机译:采用暗/光发酵相结合的两阶段工艺,可提高蔗糖的总氢产量,并减少废水中的化学需氧量(COD)。使用巴氏梭菌CH_4进行黑暗H_2发酵,产生的最大H_2产率为3.80mol H_2 / mol蔗糖。由黑暗发酵产生的由丁酸和乙酸组成的可溶性代谢物在随后的光发酵中进一步用于生产H_2。使用暗发酵产生的可溶性产物作为底物,Phodopseudomonas palustris WP3-5可以光养分产生H_2,从而将总氢产量从3.80(暗发酵)提高到10.02 mol H_2 / mol蔗糖(暗/光发酵)。同时,还实现了72.0%的COD去除率。当光生物反应器用侧光光纤照射并补充有2.0%(w / v)的粘土载体时,两步法的总H_2收率进一步提高到14.2 mol H_2 / mol蔗糖,其收率接近90 %COD去除率。还使用黑暗发酵的出水作为进料在96 h HRT进行了连续的光发酵。连续培养保持稳定近10天,平均H_2收率为10.21mol H_2 / mol蔗糖。这证明了将暗发酵和光发酵相结合的两步工艺同时生产氢气和去除COD的可行性。

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