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赵建
(教授)
教师姓名:赵建
教师拼音名称:zhaojian
入职时间:1999-09-01
所在单位:微生物技术研究院
性别:男
职称:教授
在职信息:在职
论文成果
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[113] 李雪芝 , 赵建 and 郭芬芬. Optimizing Culture Conditions by Statistical Approach to Enhance Production of Pectinase from Bacillus sp. Y1. BioMed Research International, 2019.
[114] 王禄山 , 迟连利 , 赵建 and 曲音波. N-Glycoform Diversity of Cellobiohydrolase I from Penicillium decumbens and Synergism of Nonhydrolytic Glycoform in Cellulose Degradation. J Biol Chem, 287, 15906, 2012.
[115] 李雪芝 , 赵建 and 叶延欣. A beta-xylosidase hyper-production Penicillium oxalicum mutant enhanced ethanol production from alkali-pretreated corn stover. Bioresource technology, 245, 734, 2017.
[116] 李雪芝 , 赵建 and 曲音波. Screening of a fungus capable of powerful and selective delignification on wheat straw. Letters in Applied Microbiology, 47, 415, 2008.
[117] 赵建 and 曲音波. Decolorisation of synthetic dyes by crude laccase from Rigidoporus lignosus W1. Journal of Chemical Technology and Biotechnol, 84, 399, 2009.
[118] 李雪芝 , 赵建 , 曲音波 and 谭丽萍. Fractionation of oil palm empty fruit bunch by bisulfite pretreatment for the production of bioethanol and high value products. BioresourceTechnology, 200, 572, 2016.
[119] 曲音波 , 赵建 and 李雪芝. Bisulfite pretreatment changes the structure and properties of oil palm empty fruit bunch to improve enzymatic hydrolysis and bioethanol production. Biotechnology Journal, 10, 915, 2015.
[120] 李雪芝 , 赵建 and 王美美. Modification of Different Pulps by Homologous Overexpression Alkali-Tolerant Endoglucanase in Bacillus subtilis Y106. scientific reports, 7, 2017.
[121] 李雪芝 , 赵建 and 王美美. Utility of co-expressed alkali-tolerant endoglucanase and xylanase in ameliorating wheat straw chemical pulp properties. Cellulose, 24, 2299, 2017.
[122] 李雪芝 , 赵建 and 卢宪芹. Adsorption and mechanism of cellulase enzymes onto lignin isolated from corn stover pretreated with liquid hot water. Biotechnology for biofuels, 9, 118, 2016.
[123] 王禄山 , 赵建 and 曲音波. Purification and characterization of a novel cellobiohydrolase (PdCel6A) from Penicillium decumbens JU-A10 for bioethanol production. Biosource Technology, 2011.
[124] 李雪芝 , 赵建 and 卢宪芹. Studying Nonproductive Adsorption Ability and Binding Approach of Cellobiohydrolase to Lignin during Bioconversion of Lignocellulose. energy & fuels, 31, 14393, 2017.
[125] 李雪芝 , 赵建 and 卢宪芹. Temperature and pH influence adsorption of cellobiohydrolase onto lignin by changing the protein properties. Bioresource technology, 245, 819, 2017.
[126] 赵建 , 刘国栋 , 曲音波 and 杜健. Differential reinforcement of enzymatic hydrolysis by adding chemicals and accessory proteins to high solid loading substrates with different pretreatments. BIOPROCESS AND BIOSYSTEMS ENGINEERING, 41, 1153, 2018.
[127] 李雪芝 , 赵建 , 刘国栋 , 高宝玉 , 曲音波 and 杜健. The cellulose binding region in Trichoderma reesei cellobiohydrolase I has a higher capacity in improving crystalline cellulose degradation than that of Penicillium oxalicum. Bioresource technology, 266, 19, 2018.
[128] 刘国栋 , 赵建 , 李雪芝 , 曲音波 and 杜健. Identifying and overcoming the effect of mass transfer limitation on decreased yield in enzymatic hydrolysis of lignocellulose at high solid concentrations. Bioresource technology, 229, 88, 2017.
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