生物技术用于生物燃料的未来趋势

A. Trchounian
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引用次数: 0

摘要

包括生物氢在内的清洁替代生物燃料的开发具有重要意义。当氢化酶是负责H2代谢的酶时,生物氢的一种方法是暗发酵和光发酵。生产氢气的生物技术的进一步发展至少可以通过以下方式指导:构建或选择合适的有效菌株(突变体)和培养物;创造混合文化;应用不同的碳源(糖、醇和有机酸)及其混合物进行共发酵,以及有机废物(甘油和木质纤维素废物);控制外部工艺因素(pH、氧化还原电位、底物浓度),添加不同的化合物及其混合物,特别是一些重金属(Ni、Fe、Mo、Mg、Cu等)。与生物乙醇一起生产生物氢引起了人们的兴趣。它也可以用于提高生物甲烷的生产。关键词:生物燃料,氢能,生物甲烷,发酵,细菌
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prospective Trends in Biotechnology for Biofuel
The development of clean alternative biofuel, including biohydrogen, is of great significant interest. One method for biohydrogen is dark and light fermentation when hydrogenases are responsible enzymes for H2 metabolism. A further development of biotechnology for H2 production can be directed in the following ways at least: construction or selection of appropriate effective bacterial strains (mutants) and cultures; creation of mixed cultures; application of different carbon sources (sugars, alcohols and organic acids) and their mixtures for co-fermentation as well as organic wastes (glycerol and lignocellulose waste); control of external technology factors (pH, redox potential, substrate concentration), addition of different compounds and their mixtures, especially some heavy metals (Ni, Fe, Mo, Mg, Cu, etc). Biohydrogen has of interest when was producing with bioethanol. It can also be applied for enhanced production of biomethane. Keywords—biotechnology for biofuel, hydrogen energy, biomethane, fermentation, bacteria
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