首页> 外文期刊>International journal of hydrogen energy >Light Fermentation Of Dark Fermentation Effluent For Bio-hydrogen Production By Different Rhodobacter Species At Different Initial Volatile Fatty Acid (vfa) Concentrations
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Light Fermentation Of Dark Fermentation Effluent For Bio-hydrogen Production By Different Rhodobacter Species At Different Initial Volatile Fatty Acid (vfa) Concentrations

机译:在不同的初始挥发性脂肪酸(vfa)浓度下,由不同种类的红细菌在暗发酵废水中进行光发酵以生产生物氢

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Three different Rhodobacter sphaeroides (RS) strains (RS-NRRL, RS-DSMZ and RS-RV) and their combinations were used for light fermentation of dark fermentation effluent of ground wheat containing volatile fatty acids (VFA). In terms of cumulative hydrogen formation, RS-NRRL performed better than the other two strains producing 48 ml H_2 in 180 h. However, RS-RV resulted in the highest hydrogen yield of 250 ml H_2g~(-1) TVFA. Specific hydrogen production rate (SHPR) with the RS-NRRL was also better in comparison to the others (13.8 ml H_2g~(-1)biomassh~(-1)). When combinations of those three strains were used, RS-RV + RS-DSMZ resulted in the highest cumulative hydrogen formation (90 ml H_2 in 330 h). However, hydrogen yield (693 ml H_2g~(-1) TVFA) and SHPR (12.1 ml H_2g~(-1) biomass h_(-1)) were higher with the combination of the three different strains. On the basis of Gompertz equation coefficients mixed culture of the three different strains gave the highest cumulative hydrogen and formation rate probably due to synergistic interaction among the strains. The effects of initial TVFA and NH_4-N concentrations on hydrogen formation were investigated for the mixed culture of the three strains. The optimum TVFA and NH_4-N concentrations maximizing the hydrogen formation were determined as 2350 and 47 mg L~(-1), respectively.
机译:将三种不同的球形红细菌(RS)菌株(RS-NRRL,RS-DSMZ和RS-RV)及其组合用于含挥发性脂肪酸(VFA)的地面小麦暗发酵废水的轻度发酵。就累积氢形成而言,RS-NRRL在180小时内的表现优于其他两个菌株,产生48 ml H_2。然而,RS-RV产生的最高氢气产量为250 ml H_2g〜(-1)TVFA。 RS-NRRL的比产氢率(SHPR)也比其他的(13.8 ml H_2g〜(-1)生物质〜(-1))更好。当使用这三个菌株的组合时,RS-RV + RS-DSMZ导致最高的累积氢形成(在330小时内为90 ml H_2)。然而,在三种不同菌株的组合下,氢气产量(693 ml H_2g〜(-1)TVFA)和SHPR(12.1 ml H_2g〜(-1)生物量h _(-1))较高。根据Gompertz方程系数,三种不同菌株的混合培养可能产生最高的累积氢和形成速率,这可能是由于菌株之间的协同相互作用所致。研究了三种菌株混合培养的初始TVFA和NH_4-N浓度对氢形成的影响。使氢形成最大化的最佳TVFA和NH_4-N浓度分别确定为2350和47 mg L〜(-1)。

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