编辑: JZS133 2015-01-18
【个人简介】 姓名孙付保 性别男出生日期 1975.

12 职称副教授 电话151

9025 8692 E-mail [email protected] ;

[email protected] 【学术简介】 工作经历 2012.

10 ~ 至今:江南大学 生物工程学院 副教授,硕士生导师;

2012.

5 ~ 2013.5:University of British Columbia 博士后(Jack N. Saddler);

2008.12 ~ 2012.8:江南大学 生物工程学院 校聘副教授;

1998.1 ~ 2001.8: 南阳普康集团方圆药业有限公司助理工程师. 学习经历 2004.9 ~ 2008.9:中国科学院研究生院过程工程研究所,博士;

学术与社会兼职 国际杂志 J Chem Technol Biotechnol 编委;

Biotechnol Biofuel, Bioresource Technol, J Chem Technol Biotechnol, Enzyme Microb Tech 等杂志审稿人;

国家自然科学基金化学部通 讯评委. 【研究方向】 纤维质糖化学及能源生物技术;

活性肽及氨基酸衍生物的微生物酶法制造. 【研究领域】

一、生物质原料高值转化为生物能源和生物基产品.以生物炼制理念为指导,围绕纤 维质废弃物开展: 1)纤维原料的经济高效预处理和酶解糖化工艺;

2)纤维素酶/半纤维素酶产生菌的选育和分子改造技术;

3)生物燃料/化学品的新型集成型发酵技术;

4)高效纤维素酶制剂的优化定制;

5)植物细胞壁破解及其生物活性物质精炼型提取技术.

二、药用氨基酸类产品的微生物酶法合成: 1)稀有氨基酸的微生物酶法转化;

2)活性肽的微生物酶法加工. 【代表性论文】 目前已在国内外期刊杂志上发表学术论文

40 余篇,其中 SCI 收录

18 篇,申请国家发 明专利

16 项,已授权

3 项.代表性论文: [1] S Tang, RK Liu, FB Sun*, et al (2017). Bioprocessing of tea oil fruit hull with acetic acid organosolv pretreatment in combination with alkaline H2O2. Biotechnol Biofuel 10: 86. (1区, IF6.4) [2] FB Sun*, XQ Zhao, JP Hong, et al (2016). Industrially relevant hydrolyzability and fermentability of sugarcane bagasse improved effectively by glycerol organosolv pretreatment. Biotechnol Biofuel 9: 59. (1区, IF6.4) [3] FB Sun*, S Tang, RK Liu, et al (2016). Biorefining fractionation of the Camellia oleifera Abel. hull with two-stage organosolv extraction. Industrial crops and products. Industrial Crops and Products 94: 790C799. (1区,IF3.4) [4] FB Sun*, RH Bai, HM Yang, et al (2016). Heterologous expression of codon optimized T. reesei Cel6A in P. pastoris. Enzyme Microb Technol 92: 107C116. (3区, IF2.6) [5] Jinxia Wang, Zhenyu Zhang, Hedong Liu, Funbao Sun*, et al (2016). Construction and optimization of trans-4-hydroxy-L-proline production recombinant E. coli strain consuming the glycerol as carbon source. J Chem Technol Biotechnol, 91: 2389C2398. (2区, IF2.7) [6] FB Sun*, L Wang, JP Hong, et al (2015). The impact of glycerol organosolv pretreatment on the chemistry and enzymatic hydrolyzability of wheat straw. Bioresource Technol, 187: 354C361. (1 区, IF4.5) [7] FB Sun*, JP Hong, JG Hu, et al (2015). Accessory enzymes influence cellulase hydrolysis of the model substrate and the realistic lignocellulosic biomass. Enzyme Microb Technol 79:42C48. (3区, IF2.32) [8] FB Sun, ZG Mao, L Tang, et al (2010). Exploration of water-recycled cassava bioethanol production integrated with anaerobic digestion treatment. African J Biotechnol, 37: 6182C6190. (SCI, IF0.8) [9] FB Sun, ZG Mao, JH Zhang, et al (2010). Water-recycled cassava bioethanol production integrated with two-stage UASB treatment. Chinese J Chem Eng, 18: 837C842. (SCI, IF0.7) [10]FB Sun and Hongzhang Chen (2008). Organosolv pretreatment by crude glycerol from oleochemicals industry for enzymatic hydrolysis of wheat straw. Bioresource Technol 99: 5474C5479. (1区, IF4.5) [11]FB Sun and Hongzhang Chen (2008). Enhanced enzymatic hydrolysis of wheat straw by aqueous glycerol pretreatment. Bioresource Technol 99: 6156C6161. (1区, IF4.5) [12]FB Sun and Hongzhang Chen (2008). Comparison of atmospheric aqueous glycerol and steam explosion pretreatments of wheat straw for enhanced enzymatic hydrolysis. J Chem Technol Biotechnol 83: 707C714. (2区, IF1.4) [13]FB Sun, Hongzhang Chen (2007). Evaluation of enzymatic hydrolysis of wheat straw pretreated by atmospheric glycerol autocatalysis. J Chem Technol Biotechnol 82: 1039C1044. (2区, IF1.4) [14]Hongzhang Chen, FB Sun (2007). Novel bioconversion of wheat straw to bio-organic fertilizer in a solid-state bioreactor. Bioprocess and Biosystems Engineering 30:99C105. (3区, IF1.1) 【发明专利】 [1] 孙付保,张震宇. 一种利用烟道气爆破生物质废弃物制备固体燃料的方法.ZL201410497307.7. [2] 陈洪章,孙付保. 对植物秸秆进行汽爆-微波耦合处理分离秸秆组分的方法 CN

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