刘晨光
近期热点
资料介绍
近期论文
Bai FW, Liu CG, Huang X, Tsao GT. 2012. Biotechnology in China III: Biofuels and Bioenergy. Springer. New York.Liu CG, Liu LY, Lin YH*, Bai FW*. 2015. Kinetic modeling for redox potential-controlled repeated batch ethanol fermentation using flocculating yeast. Process Biochemistry 50(1), 1-7 (SCI: 2.524)Liu CG, Liu LY, Zi LH, Zhao XQ, Xu YH, Bai FW*. 2014. Assessment and regression analysis on instant catapult steam explosion pretreatment of corn stover. Bioresource Technology 166: 368-372. (SCI: 5.039)Liu CG, Xue C, Lin YH*, Bai FW*. 2013. Redox potential control and applications in microaerobic and anaerobic fermentations. Biotechnology Advances 31(2): 257-265. (SCI: 8.905)Liu CG, Lin YH*, Bai FW*. 2013. Global gene expression analysis of Saccharomyces cerevisiae grown under redox potential-controlled very-high-gravity conditions. Biotechnology Journal 8(11): 1332-1340. (SCI: 3.708)Liu CG, Wang N, Lin YH*, Bai FW*. 2012. Very high gravity ethanol fermentation by flocculating yeast under redox potential-controlled conditions. Biotechnology for Biofuels 5: 61. (SCI: 6.221)Liu CG, Lin YH*, Bai FW*. 2012. Ageing vessel design and optimization for continuous very-high-gravity ethanol fermentation processes. Process Biochemistry 47(1): 57-61. (SCI: 2.524)Liu CG, Lin YH*, Bai FW*. 2011. Development of redox potential-controlled schemes for very-high-gravity ethanol fermentation. Journal of Biotechnology 153(1-2): 42-47. (SCI: 2.884)Liu CG, Lin YH*, Bai FW*. 2011. A kinetic growth model for Saccharomyces cerevisiae grown under redox potential-controlled very-high-gravity environment. Biochemical Engineering Journal 56(1-2): 63-68. (SCI: 2.368)Liu CG, Lin YH*, Bai FW*. 2011. Ageing vessel configuration for continuous redox potential-controlled very-high-gravity ethanol fermentation. Journal of Bioscience and Bioengineering 111(1): 61-66. (SCI: 1.790)Liu CG, Ge XM, Bai FW*. 2008. On-line monitoring and the mechanism of the de-flocculation of flocculating yeast cells during continuous yeast culture processes. Journal of Biotechnology S136: 421. (SCI: 2.884)Lv Y*, Liu CG, Qu Z, Wei J. 2014. Removal of volatile organic compounds using biofilter. Asian Journal of Chemistry 26: 5324-5328. (SCI: 0.355)Zi LH, Liu CG, Xin CB, Bai FW*. 2013. Stillage backset and its impact on ethanol fermentation by the flocculating yeast, Process Biochemistry 48(5-6): 753-758. (SCI: 2.524)Zhao N, Bai Y, Liu CG, Zhao XQ, Xu JF, Bai FW*. 2014. Flocculating Zymomonas mobilis is a promising host to be engineered for fuel ethanol production from lignocellulosic biomass. Biotechnology Journal 9(3): 362-371. (SCI: 3.708)Xue C, Zhao XQ, Liu CG, Chen LJ*, Bai FW*. 2013. Prospective and development of butanol as an advanced biofuel. Biotechnology Advances 31(8): 1575-1584. (SCI: 8.905)Lin YH*, Liu CG. 2014. Process design for very-high-gravity ethanol fermentation. Energy Procedia, 61(0), 2725-2728. (EI)Lv Y*, Liu CG, Fu B, Wei J. 2014. Identification, Analysis of fungal microorganisms on filter of central air conditioning system. Advanced Materials Research 955-959: 565-568. (EI)刘晨光, 李宁, 葛旭萌, 白凤武*. 2009. 恒化培养过程中酵母絮凝性状退化行为. 化工学报 60(8): 2031-2039. (EI)郝学密, 杜斌, 刘黎阳, 刘晨光*, 白凤武. 2015. ORP对酿酒酵母在木质纤维素水解液抑制物中发酵的影响. 化工学报 66(3):1066-1071. (EI)刘黎阳, 郝学密, 刘晨光*, 白凤武. 2014. 瞬间弹射蒸汽爆破联用化学法预处理玉米秸秆的组分和酶解分析. 化工学报 65(11):4557-4563. (EI)刘黎阳, 牛坤, 刘晨光*,白凤武. 2013. 离子液体预处理油料作物木质纤维素. 化工学报64(1):104-110. (EI)刘黎阳, 刘晨光*,白凤武*. 2013. 氧化还原电位控制的自絮凝酵母自动重复批次发酵. 化工学报 64(11), 4181-4186. (EI)王娜, 刘晨光, 袁文杰, 葛旭萌, 白凤武*. 2012. 氧化还原电位控制下自絮凝酵母高浓度乙醇发酵. 化工学报 63(4): 1168-1174. (EI)尹冬丽, 刘晨光, 李凡, 葛旭萌, 白凤武*. 2011. 自絮凝颗粒酵母表观生长动力学. 化工学报 62(11): 3149-3155. (EI)张栩, 吴又多, 齐高相, 刘晨光, 陈丽杰, 白凤武*. 2013.氧化还原电位调控混合糖为底物的丁醇发酵 化工学报 65(6): 2225-2231. (EI)刘黎阳, 刘晨光*, 孜力汗, 白凤武, 徐友海, 胡世洋. 2014. 玉米秸秆瞬间蒸汽爆破预处理的回归优化和结构分析. 中国科技论文 9(06): 686-690. (核心)孜力汗, 刘晨光, 白凤武*. 2014. 废糟液全循环条件下絮凝酵母乙醇连续发酵. 生物工程学报 30(2): 310-314. (核心)孜力汗, 刘晨光, 王娜, 袁文杰, 白凤武*. 2013. 多种通气策略下的高浓度乙醇生产. 中国生物工程杂志 33(6): 86-92. (核心)辛崇博, 孜力汗, 刘晨光, 白凤武*. 2013. 响应面法优化玉米芯同步糖化发酵预处理条件. 中国农业科技导报 15(5): 173-180. (核心)李洁, 李凡, 刘晨光, 任剑刚, 赵心清, 葛旭萌, 白凤武*. 2009. 高效发酵木糖生产乙醇酵母菌株的构建. 中国生物工程杂志 29(6): 74-78. (核心) 相关热点
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