CO一步法C.autoethanogenum发酵产乙醇的工艺研究
合成气/CO发酵制备燃料乙醇是一项具有吸引力的新技术,为促进C.autoethanogenum在该技术中的应用,对C.autoethanogenum的乙醇发酵工艺及过程参数进行了研究。结果表明,C.autoethanogenum代谢木糖的产物以乙酸为主,只产生少量乙醇;与无机氮源相比较,C.autoethanogenum在含有机氮源的培养基中生长迅速,菌体浓度高。在3L发酵罐中进行C.autoethanogenum的批式发酵试验,采用木糖生长-CO发酵两步法,乙醇主要在CO发酵阶段产生,最高乙醇质量浓度为1.71g/L;发酵罐经改进之后,采用CO一步法发酵,虽然得到的菌体浓度降低了,但是发酵时...
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Published in | 农业工程学报 Vol. 33; no. 23; pp. 246 - 251 |
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Main Author | |
Format | Journal Article |
Language | Chinese |
Published |
广东省新能源和可再生能源研究开发与应用重点实验室,广州 510640%中国科学院广州能源研究所,中国科学院可再生能源重点实验室,广州 510640
2017
中国科学院广州能源研究所,中国科学院可再生能源重点实验室,广州 510640 |
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Online Access | Get full text |
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Summary: | 合成气/CO发酵制备燃料乙醇是一项具有吸引力的新技术,为促进C.autoethanogenum在该技术中的应用,对C.autoethanogenum的乙醇发酵工艺及过程参数进行了研究。结果表明,C.autoethanogenum代谢木糖的产物以乙酸为主,只产生少量乙醇;与无机氮源相比较,C.autoethanogenum在含有机氮源的培养基中生长迅速,菌体浓度高。在3L发酵罐中进行C.autoethanogenum的批式发酵试验,采用木糖生长-CO发酵两步法,乙醇主要在CO发酵阶段产生,最高乙醇质量浓度为1.71g/L;发酵罐经改进之后,采用CO一步法发酵,虽然得到的菌体浓度降低了,但是发酵时间延长,最高乙醇质量浓度达到7.36g/L,而乙酸质量浓度在整个发酵过程中均低于1.1g/L。此外,研究发现发酵液的pH值和氧化还原电位ORP与乙酸/乙醇产物分布密切相关,尤其是pH值。上述研究结果可为C.autoethanogenum发酵CO生产乙醇的中试放大提供参考。 |
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Bibliography: | 11-2047/S Fuel ethanol has been recognized as a kind of potential alternative fuel as well as an additive to gasoline because of its oxygenated and high octane characteristics.Syngas fermentation,a novel route for ethanol production,is getting more and more attention.Syngas can be generated from a lot of organic materials including biomass.Gasification technology is used to convert the biomass into a mixture of gases(consisting mainly of CO,CO2and H2),which is subsequently fermented to ethanol by means of anaerobic microbial catalysts known as homoacetogens.As a homoacetogen,Clostridium autoethanogenum is able to metabolize syngas/CO and synthesize ethanol,but limited work has been accomplished with it and ethanol concentration achieved was low.In order to improve its ethanol production,fermentation process and some factors affecting cell growth or product formation were studied.Although xylose is an easily-used carbon source for C.autoethanogenum,results showed that the primary end product in xylose metabolis |
ISSN: | 1002-6819 |
DOI: | 10.11975/j.issn.1002-6819.2017.23.032 |