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Improvement of hydrogen production with thermophilic mixed culture from rice spent wash of distillery industry

机译:酿酒厂大米洗净液中嗜热混合培养提高产氢量

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摘要

Biohydrogen production processes were investigated using thermophilic bacterial consortia enriched from sludge of the anaerobic digester. A multiple parameter optimization viz. temperature, pH and substrate concentration was performed for maximization of hydrogen production. Heat shock pre-treatment followed by BES (2-bromo ethane sulfonate) treatment was done for the enrichment of hydrogen producing bacteria. Box-Behnken design and response surface methodology were adopted to investigate the mutual interaction among the process parameters. Experimental optimization of process parameters (60 ℃, pH 6.5 and 10 g/L) gave the maximum hydrogen production and yield of 3985 mL/L and 2.7 mol/mol glucose respectively in the batch system which is higher than the reported value on UASB. These experimental parameters found concurrent with the values obtained from the theoretical model i.e. 58.4 ℃, pH 6.6, 10.8 g/L and yield of 2.71 mol/mol glucose. At optimized conditions, maximum hydrogen production rate (R_m) of 850 mL/h, gas production potential (P) of 4551 mL/L and lag time (λ) of 1.98 h were determined using modified Gompertz equation. Using the optimum conditions, hydrogen production from rice spent wash was conducted in which hydrogen yield of 464 mL/g carbohydrate and hydrogen production rate of 168 mL/L h were obtained. PCR-DGGE profile showed that the thermophilic mixed culture was predominated with species closely affiliated to Thermoanaerobacterium sp.
机译:使用从厌氧消化池污泥中富集的嗜热细菌聚生体研究了生物氢的生产过程。多参数优化即。进行温度,pH和底物浓度以最大化制氢。进行热激预处理,然后进行BES(2-溴乙烷磺酸盐)处理,以富集产氢细菌。采用Box-Behnken设计和响应面方法研究工艺参数之间的相互影响。通过对工艺参数(60℃,pH 6.5和10 g / L)的实验优化,得到了批处理系统中的最大产氢量和葡萄糖产量分别为3985 mL / L和2.7 mol / mol葡萄糖,高于UASB的报道值。发现这些实验参数与从理论模型获得的值即58.4℃,pH 6.6、10.8g / L和2.71mol / mol葡萄糖的产率同时存在。在优化的条件下,使用改良的Gompertz方程确定了最大氢气产生速率(R_m)为850 mL / h,气体产生潜能(P)为4551 mL / L和滞后时间(λ)为1.98 h。在最佳条件下,从稻米废液中制氢,制氢量为464 mL / g碳水化合物,制氢速率为168 mL / L h。 PCR-DGGE图谱表明,嗜热混合培养物主要与嗜热厌氧菌属紧密相关。

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