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Biohydrogen production from ricebran using Clostridium saccharoperbutylacetonicum N1-4

机译:使用蔗糖丁醇梭菌N1-4从米糠中生产生物氢

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Treated ricebran hydrolysate was fermented anaerobically using Clostridium saccharoperbutylacetonicum N1-4 at an initial pH of 6 ± 0.2 and an operating temperature of 30 ℃ for production of hydrogen. The effects of different pretreatment methods on the liberation of sugar from 100 g of ricebran per litre of medium (distilled water) were investigated. In addition, the effects of the pretreatment method on ricebran hydrolysates of different initial ricebran concentrations on liberated sugar as well as the effects of the initial inoculum concentration, ricebran (substrate) concentration, and FeSO_4·7H_2O concentration on the yield as well as the productivity of hydrogen were investigated. The combination of enzymatic hydrolysis and a boiling pretreatment method produced the most fermentable sugar, 29.03 ± 0.0 g/L from 100 g of ricebran per litre of medium (distilled water), while the amount of sugar liberated by ricebran hydrolysates of different initial ricebran concentrations upon pretreatment monotonically increased with the initial ricebran concentration. The increment in substrate, inoculum, and FeSO_4·7H_2O concentrations had a significantly positive effect (p < 0.05) on both the yield and productivity of hydrogen. The maximum hydrogen gas yield (Y_(P/S)) and productivity of 3.37 mol-H_2 per mol-sugar consumed and 7.58 mmol/(L h), respectively, were obtained from ricebran hydrolysate with a 100 g/L ricebran concentration (equivalent to 28.59 ± 1.27 g sugar/L). In other experiments, 0.03 g/L FeSO_4·7H_2O and 1.5 g/L inoculum resulted in the best hydrogen gas yield and productivity from ricebran hydrolysates.
机译:将处理过的米糠水解产物在初始pH为6±0.2且操作温度为30℃的条件下,使用蔗糖梭菌丙酮丁醇梭菌N1-4厌氧发酵。研究了不同预处理方法对每升培养基(蒸馏水)100克米糠中糖释放的影响。此外,预处理方法对不同初始米糠浓度的米糠水解物对游离糖的影响以及初始接种物浓度,米糠(底物)浓度和FeSO_4·7H_2O浓度对产量和生产率的影响对氢的含量进行了研究。酶水解和沸腾预处理方法的结合,每升培养基(蒸馏水)每升100克米糠中发酵出的糖最多,为29.03±0.0 g / L,而不同初始米糠浓度的米糠水解产物释放的糖量预处理后,米糠的初始浓度单调增加。底物,接种物和FeSO_4·7H_2O浓度的增加对氢气的产率和生产率均具有显着的正效应(p <0.05)。从100 g / L米糠浓度的米糠水解物获得最大氢气产量(Y_(P / S))和每消耗一摩尔糖3.37 mol-H_2和7.58 mmol /(L h)的生产率(相当于28.59±1.27克糖/ L)。在其他实验中,0.03 g / L FeSO_4·7H_2O和1.5 g / L接种物可使米糠水解物获得最佳的氢气产量和生产率。

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