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导师信息#北京理工大学化学与化工学院研究生导师#冯旭东

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发表于 2019-9-1 13:36:27 | 显示全部楼层 |阅读模式
发明专利申请,代写全部材料。
个人概况
特别副研究员, 博士生导师
招生专业咨询QQ、微信:2544906,主持。
2.国家自然科学基金重点基金项目,21736002,微生物合成萜烯化合物过程中的跨膜转运与代谢传质强化,2018/01-2022/12,320 万元,参与。
发表文章
1.Yujia Zhao, Bo Lv, Xudong Feng*, Chun Li*, Perspective on biotransformation and de novo biosynthesis of licorice constituents, Journal of Agricultural and Food Chemistry, 2017, 65: 11147-11156.
2.Xiaochen Liu, Liang Zhang, Xudong Feng, Bo Lv*, Chun Li, Biosynthesis of glycyrrhetinic acid-3-O-monoglucose using glycosyltransferase UGT73C11 from Barbarea vulgaris, Industrial & Engineering Chemistry Research, 2017, 56: 14949-14958.3.Bo Lv, Hanli Sun, Shen Huang, Xudong Feng, Tao Jiang, Chun Li*. Structure-guided engineering of the substrate specificity of a fungal β-glucuronidase toward triterpenoid saponins. Journal of Biological Chemistry, 2018, 293, 433-443.
4.Xudong Feng, Heng Tang, Beijia Han, Bo Lv, Chun Li*. Engineering the thermostability of β-glucuronidase from Penicillium purpurogenum Li-3 by loop transplant. Applied Microbiology and Biotechnology, 2016. 100(23): 9955-9966.5.Xudong Feng, Heng Tang, Beijia Han, Bo Lv, Chun Li*. Enhancing the thermostability of β-glucuronidase by rationally redesigning the catalytic domain
based on sequence alignment strategy. Industrial & Engineering Chemistry Research, 2016, 55, 5474−5483.6.Bo Lv, Xiaogang Yang, Xudong Feng*, Chun Li. Enhanced production of glycyrrhetic acid 3-O-mono-β-D- glucuronide by fed-batch fermentation using pH and dissolved oxygen as feedback parameters. Chinese Journal of Chemical Engineering, 2016, 24(4): 506-512.7.Haiyang Jia, Xiangying Sun, Huan Sun, Chenyi Li, Yunqian Wang, Xudong Feng, Chun Li*. Intelligent microbial heat-regulating engine (IMHeRE) for improved thermo-robustness and efficiency of bioconversion. ACS Synthetic Biology, 2016, 5(4): 321-320.
8.Zhe Li, Xiaoxiao Guo, Xudong Feng, Chun Li*. An environment friendly and efficient process for xylitol bioconversion from enzymatic corncob hydrolysate by adapted candida tropicalis. Chemical Engineering Journal, 2015. 263, 249-256.
9.Xiaoyan Wang, Yanli Liu, Chao Wang, Xudong Feng*, Chun Li*. Properties and structures of beta-glucuronidases with different transformation types of glycyrrhizin. RSC Advances, 2015. 5(84): 68345-68350.
10.Shen Huang, Xudong Feng*, Chun Li. Enhanced production of beta-glucuronidase from Penicillium purpurogenum Li-3 by optimizing fermentation and downstream processes. Frontiers of Chemical Science and Engineering, 2015. 9(4): 501-510.
11.Lifeng Qiao, Bo Lv, Xudong Feng, Chun Li*. A new application of aptamer: One-step purification and immobilization of enzyme from cell lysates for biocatalysis. Journal of Biotechnology, 2015. 203, 68-76.
12.Xudong Feng, Chun Li*. The improvement of enzyme properties and its catalytic engineering strategy. Progress in Chemistry, 2015. 27(11): 1649-1657.
13.Xudong Feng, DA Patterson, M Balaban, EAC Emanuelsson*. Increasing reaction rate and conversion in the spinning cloth disc reactor: Investigating the effect of using multiple enzyme immobilized cloths. Chemical Engineering Journal, 2014.255:356-364.
14.Xudong Feng, DA Patterson, M Balaban, EAC Emanuelsson*. Characterization of liquid flow in the spinning cloth disc reactor: residence time distribution, visual study and modeling, Chemical Engineering Journal, 2014. 235: 356-367.
15.Xudong Feng, DA Patterson, M Balaban, EAC Emanuelsson*. Enabling the utilization of wool as an enzyme support: enhancing the activity and stability of lipase immobilized onto woolen cloth, Colloids and Surfaces B: Biointerfaces, 2013.102:526-533.
16.Xudong Feng, DA Patterson, M Balaban, EAC Emanuelsson*. Characterization of tributyrin hydrolysis by immobilized lipase on woolen cloth using conventional batch and novel spinning cloth disc reactors, Chemical Engineering Research and Design, 2013. 91(9): 1684-1692.
17.Xudong Feng, DA Patterson, M Balaban, G Fauconnier, EAC Emanuelsson*. The spinning cloth disc reactor for immobilized enzymes: A new process intensification technology for enzymatic reactions, Chemical Engineering Journal, 2013. 221: 407-417.
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