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陳勇

(南京工業大學國家生化工程研究中心副主任)

鎖定
陳勇,南京工業大學生物與製藥工程學院研究員,南京工業大學國家生化工程技術研究中心副主任 [2-3]  。2011年起就職於南京工業大學國家生化工程技術研究中心。任現職以來,主要進行微生物與吸附介質相互作用機制的研究及產業化應用。作為負責人承擔了國家科技支撐計劃、國家重點研發計劃課題、自然科學基金面上等多項國家級項目,承擔了百萬級以上企業橫向項目3項。在METAB ENG等高水平SCI期刊上發表論文34篇,申請專利117項,授權專利52項,其中PCT專利授權9項。 [2]  美國授權專利3項。 [3]  榮獲國家技術發明二等獎在內多項國家和省部級科技獎勵。並獲得了“百千萬人才工程”國家級人選、江蘇省傑出青年、江蘇省青年科技獎等人才稱號。 [2] 
中文名
陳勇
畢業院校
南京工業大學
職    業
教師
主要成就
獲評第十七屆江蘇省青年科技獎獲獎

陳勇教育背景

本科畢業於南京工業大學生物工程專業
博士畢業於南京工業大學生物化工專業 [2] 

陳勇所獲榮譽

2021年1月,獲評第十七屆江蘇省青年科技獎獲獎。 [1] 

陳勇研究領域

生物化工、生物催化、發酵過程優化 [2] 

陳勇主講課程

現代生物技術、生物工藝學 [2] 

陳勇代表性成果

1. Liu D, Chen Y, Ding F, et al. Simultaneous production of butanol and acetoin by metabolically engineered Clostridium acetobutylicum[J]. Metabolic engineering, 2015, 27: 107-114.共一
2. Sun W, Yu Y, Chen J, et al. Light Signaling Regulates Aspergillus niger Biofilm Formation by Affecting Melanin and Extracellular Polysaccharide Biosynthesis[J]. Mbio, 2021, 12(1). 通訊
3. Shi X, Chen Y, Ren H, et al. Economically enhanced succinic acid fermentation from cassava bagasse hydrolysate using Corynebacterium glutamicum immobilized in porous polyurethane filler[J]. Bioresource technology, 2014, 174: 190-197. 共一
4. Liu Q, Zhao N, Zou Y, et al. Feasibility of ethanol production from expired rice by surface immobilization technology in a new type of packed bed pilot reactor[J]. Renewable Energy, 2020, 149: 321-328. 通訊
5. Liu L, Yu B, Sun W, et al. Calcineurin signaling pathway influences Aspergillus niger biofilm formation by affecting hydrophobicity and cell wall integrity[J]. Biotechnology for Biofuels, 2020, 13(1): 1-13. 通訊
6. Yang L, Zheng C, Chen Y, et al. Nitric oxide increases biofilm formation in Saccharomyces cerevisiae by activating the transcriptional factor Mac1p and thereby regulating the transmembrane protein Ctr1[J]. Biotechnology for biofuels, 2019, 12(1): 30. 通訊
7. Liang C, Ding S, Sun W, et al. Biofilm-based fermentation: a novel immobilisation strategy for Saccharomyces cerevisiae cell cycle progression during ethanol production[J]. Applied Microbiology and Biotechnology, 2020, 104(17): 7495-7505. 通訊
8. Yu B, Cheng H, Zhuang W, et al. Stability and repeatability improvement of horseradish peroxidase by immobilization on amino-functionalized bacterial cellulose[J]. Process biochemistry, 2019, 79: 40-48. 通訊
9. Chen T, Liu N, Ren P, et al. Efficient biofilm-based fermentation strategies for L-threonine production by Escherichia coli[J]. Frontiers in microbiology, 2019, 10: 1773. 通訊
10. Liu Q, Zhao N, Zou Y, et al. Feasibility study on long-term continuous ethanol production from cassava supernatant by immobilized yeast cells in packed bed reactor[J]. Journal of microbiology and biotechnology, 2019. 通訊
11. Li Z, Chen Y, Liu D, et al. Involvement of glycolysis/gluconeogenesis and signaling regulatory pathways in Saccharomyces cerevisiae biofilms during fermentation[J]. Frontiers in microbiology, 2015, 6: 139. 共一
12. Yu B, Zhang X, Sun W, et al. Continuous citric acid production in repeated-fed batch fermentation by Aspergillus niger immobilized on a new porous foam[J]. Journal of biotechnology, 2018, 276: 1-9. 通訊
13. Zhao N, Ren H, Li Z, et al. Enhancement of nuclease P1 production by Penicillium citrinum YL104 immobilized on activated carbon filter sponge[J]. Applied microbiology and biotechnology, 2015, 99(3): 1145-1153. 通訊
14. Liu Q, Cheng H, Wu J, et al. Long-term production of fuel ethanol by immobilized yeast in repeated-batch simultaneous saccharification and fermentation of cassava[J]. Energy & Fuels, 2015, 29(1): 185-190. 通訊
15. Yang L, Zheng C, Chen Y, et al. FLO genes family and transcription factor MIG1 regulate Saccharomyces cerevisiae biofilm formation during immobilized fermentation[J]. Frontiers in microbiology, 2018, 9: 1860. 通訊 [2] 
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