9.19種國際雜志Bioresource Technology(IF4.365)、Journal of Molecular Catalysis B: Enzymatic(IF2.40)、Biochemical Engineering Journal(IF2.692)、Carbohydrate Polymers(IF3.167)、Journal of Chemical Technology & Biotechnology 、Biotechnology and Bioprocess Engineering(IF1.412)、Process Biochemistry(IF2.444)、Appl Biochem Biotechnol(IF1.643)和Industrial Crops and Products(IF1.66)、BioResources、Fibers and Polymers、Research Journal of Textile and Apparel、Molecules等的審稿人。
美國康奈爾大學(xué)訪問學(xué)者(2016-2017)、瑞典Umea大學(xué)化學(xué)系高級(jí)訪問學(xué)者、瑞典隆德大學(xué)(Lund University)應(yīng)用微生物系博士后(1999-2001),瑞典卡爾斯大德大學(xué)(Karlstad University)生物化學(xué)系高級(jí)客座研究員(2001-2003)。短期訪問美國University of Illinois,多次參加國際會(huì)議。
1、Feng Hong(大會(huì)特邀報(bào)告). Symposium on Bacterial NanoCellulose - First International Symposium on BNC Materials. CELL Division, ACS national meeting, 2013, April 7-10, New Orleans.
2、Feng Hong(大會(huì)報(bào)告). Bacterial cellulose production from cotton-based waste textiles: enzymatic saccharification enhanced by ionic liquid pretreatment. IPTB2011, 2011,March 2-4, Milan
3、Feng Hong(大會(huì)報(bào)告), Shi-fen Han. Biorefinery of bacterial cellulose from rice straw: enhanced enzymatic saccharification by ionic liquid pretreatment. China Frontiers of Engineering Symposium for Young Engineers, Beijing, 2010, Sep. 17.
4、Feng Hong*. Chromatographic analysis of ilicicolin H. 235th ACS National Meeting, New Orleans, LA, United States, April 6-10, 2008(ANYL-040, Paper #1158219),CA收錄(CODEN: 69KNN3, AN 2008:383939).
5、Feng Hong*. Comparative study on three fungal strains for oxalate decarboxylase production. 235th ACS National Meeting, New Orleans, LA, United States, April 6-10, 2008(AGFD-095, Paper # 1158003),CA收錄(CODEN: 69KNN3, AN 2008:383670)
6、Kun Zhong, Feng Hong*. Enzymatic hydrolysis of EGCG to EGC by using a hydrolase from Aspergillus niger. International Symposium on Clean Energy Technology 2007 (ISCET 2007) in conjunction with The 3rd International Symposium on Bioenergy and Bioprocess Engineering (ISBBE 2007), Shanghai, China, November 21-23, 2007. P-85, 158
7、Chen Deng, Zhi-Yu Shao, De-Qiang Xu, Feng Hong*. Optimization for enhanced production of ilicicolin H by Fusarium sp. F4. International Symposium on Clean Energy Technology 2007 (ISCET 2007) in conjunction with The 3rd International Symposium on Bioenergy and Bioprocess Engineering (ISBBE 2007), Shanghai, China, November 21-23, 2007. P-104, 177.
8、Cui-Xia Zhu, Feng Hong*. Induction of an oxalate decarboxylase in Trametes versicolor by addition of organic acids. International Symposium on Clean Energy Technology 2007 (ISCET 2007) in conjunction with The 3rd International Symposium on Bioenergy and Bioprocess Engineering (ISBBE 2007), Nov.21-23, 2007, Shanghai, China, P-86, 159.
9、Feng Hong*. Characterization of bacterial cellulose membrane by SEM, FTIR and TGA. The International Conference on Biorefinery. Oct.20-23, 2007, Beijing, China. PO-3-09, 173.
10、Kun Zhong, Yingxue Zhu, Zhiyu Shao, Feng Hong*. Improvement of yield of beauvericin in Fusarium sp. F-1 by feeding precursors. The International Conference on Biorefinery, Beijing, China, October 20-23, 2007. PO-1-08, 111.
11、Cuixia Zhu, Maoxin Cao, Qizhi Chen, Feng Hong*. Induction of an oxalate decarboxylase in Trametes versicolor by addition of inorganic acids. The International Conference on Biorefinery. Oct.20-23, 2007, Beijing, China. PO-1-10, 113.
12、Kaiyan Qiu, Feng Hong*. Production of bacterial cellulose using an alternate carbon source from konjac powder. The International Conference on Biorefinery. Oct.20-23, 2007, Beijing, China. PO-3-04, 169.
13、Feng Hong*, Kai Yan Qiu, Yu Jing Tan, Qi Zhi Chen. Production and characterization of bacterial cellulose membranes in static cultivations. Proceedings of the 2007 International Conference on Advanced Fibers and Polymer Materials (ICAFPM 2007), Oct. 15-17, 2007, Shanghai, China. Vol. II, 709-711. ISTP收錄
14、Qiu Kaiyan, Feng Hong*, Development of an alternate carbon source from konjac powder for high-yield production of bacterial cellulose. Proceedings of 2007 International Forum on Biomedical Textile Materials, Shanghai, May 30th-June 2nd, 2007, 235-240. ISTP收錄
15、Kun Zhong, Feng Hong*. Production of beauvericin by Fusarium sp. F-1. 234th ACS National Meeting, Boston, MA, August 19-23, 2007(AGRO 072,Paper #1099296), CA收錄(CODEN: 69JNR2, AN 2007:878162)
16、Chen Deng, Yang Dong Chen, Zhi Yu Shao, Feng Hong*. A novel antifungal agent ilicicolin H produced by Fusarium sp. F-4. 234th ACS National Meeting, Boston, MA, August 19-23, 2007(AGRO 076,Paper #1094288), CA收錄(CODEN: 69JNR2, AN 2007:878165)
17、Feng Hong*. Static fermentation of bacterial cellulose and characterization of the cellulose's physical properties. 234th ACS National Meeting, Boston, MA, August 19-23, 2007(CARB 091,Paper #1084750), CA收錄(CODEN: 69JNR2, AN 2007:879546)
18、Feng Hong*, Kaiyan Qiu. Mutation of Acetobacter xylinum for high-yield production of bacterial cellulose. 234th ACS National Meeting, Boston, MA, August 19-23, 2007(AGFD 160,Paper #1083812), CA收錄(CODEN: 69JNR2, AN 2007:877999)
19、Feng Hong. Improvement of the bleachability and brightness of wheat straw chemomechanical pulp with a pretreatment of xylanase from Trichoderma reesei. 234th ACS National Meeting, Boston, MA, August 19-23, 2007(BIOT 260,Paper #1084752), CA收錄(CODEN: 69JNR2, AN 2007:879231)
20、Cui Xia Zhu, Feng Hong*. Extraction of intracellular oxalate decarboxylase from the white-rot wood decay fungus Trametes versicolor. 234th ACS National Meeting, Boston, MA, August 19-23, 2007(BIOT 328,Paper #1083609), CA收錄(CODEN: 69JNR2, AN 2007:879294)
21、Influences of surfactant and organic solvent pretreatment on an esterase modification of PET. Proceedings of International Conference on Advanced Fibers and Polymer Materials. pp 1285-1288, October 19-21, 2005, Shanghai, China. (ISTP收錄,IDS Number: BDR60)
22、分會(huì)場主席主持會(huì)議,International Symposium on Biocatalysis and Bioprocess Engineering (ISBBE). Oct.16-18, 2005, Shanghai, China.
23、The 27th Symposium on Biotechnology for Fuels and Chemicals. May 1-4, 2005, Denver, Colorado.
24、The 9th International Conference on Biotechnology in the Pulp and Paper Industry (ICBPPI). October 10-14, 2004, Durban, South Africa.
25、2nd ISTPPBFP, October 13-14, 2004, Nanjing, Jiangsu, P.R. China.
26、Bioprocessing in Industry, Swedish National Meeting (Vinnova, the Swedish Agency for Innovation Systems), April 24-25, 2002, Sigtuna, Sweden.
27、223rd ACS National Meeting, April 7-11, 2002, Orlando, Florida, USA. SCI收錄
28、The 8th International Conference on Biotechnology in the Pulp and Paper Industry (ICBPPI), 110-111, June 4-8, 2001, Helsinki, Finland.
論文專著:
發(fā)表英文論文:
[1]Haibin Yuan, Lin Chen*, Feng Hong*, and Meifang Zhu. Evaluation of nanocellulose carriers produced by four different bacterial strains for laccase immobilization, Carbohydrate Polymers, 2018, 196: 457–464, DOI: 10.1016/j.carbpol.2018.05.055(二區(qū) SCI IF 5.158)
[2]Genqiang Chen, Lin Chen*, Wei Wang, Feng Hong*. Evaluation of six ionic liquids and application in pretreatment of sweet sorghum bagasse for bacterial nanocellulose production. Journal of Chemical Technology and Biotechnology, 2018, in press, DOI: 10.1002/jctb.5703(二區(qū)SCI IF3.135)
[3]Genqiang Chen, Guochao Wu, Bj�0�2rn Alriksson, Lin Chen, Wei Wang, Leif J. J�0�2nsson*, Feng Hong*. Scale-up of production of bacterial nanocellulose using submerged cultivation. Journal of Chemical Technology and Biotechnology, 2018, in press, DOI:10.1002/jctb.5699(二區(qū)SCI IF3.135)
[4]Xiaozhou Zou, Guochao Wu, Stefan Stagge, Lin Chen, Leif J. J�0�2nsson, Feng Hong*. Comparison of tolerance of four bacterial nanocellulose-producing strains to lignocellulose-derived inhibitors. Microbial Cell Factories, 2017, 16: 229. DOI: 10.1186/s12934-017-0846-y(二區(qū)SCI IF 3.681)
[5]Xue Li, Jingyu Tang, Luhan Bao, Lin Chen, Feng Hong*. Performance improvements of the BNC tubes from unique double-silicone-tube bioreactors by introducing chitosan and heparin for application as small-diameter artificial blood vessels. Carbohydrate Polymers, 2017, 178: 394-405. doi.org/10.1016/j.carbpol.2017.08.120(二區(qū)SCI IF 5.158)
[6]Genqiang Chen, Guochao Wu, Bj�0�2rn Alriksson, Wei Wang, Feng Hong*, and Leif J. J�0�2nsson*. Bioconversion of waste fiber sludge to bacterial nanocellulose and use for reinforcement of CTMP paper sheets. Polymers, 2017, 9: 458; doi:10.3390/polym9090458(二區(qū)SCI IF3.364)
[7]Jingyu Tang, Xue Li, Luhan Bao, Lin Chen, Feng Hong*. Comparison of two types of bioreactors for synthesis of bacterial nanocellulose tubes as potential medical prostheses including artificial blood vessels. Journal of Chemical Technology and Biotechnology, 2017, 92 (6): 1218–1228. DOI: 10.1002/jctb.5111(二區(qū)SCI IF3.135)
[8]Peng Zhang, Lin Chen, Qingsong Zhang, Leif J. J�0�2nsson, Feng Hong*. Using in situ nanocellulose-coating technology based on dynamic bacterial cultures for upgrading conventional biomedical materials and reinforcing nanocellulose hydrogels. Biotechnology Progress, 2016, 32(4):1077-1084. DOI: 10.1002/btpr.2280(二區(qū)SCI IF2.149)
[9]Xiang Guo, Lin Chen, Jingyu Tang, Leif J. J�0�2nsson and Feng Hong*. Production of bacterial nanocellulose and enzyme from [AMIM]Cl-pretreated waste cotton fabrics: effects of dyes on enzymatic saccharification and nanocellulose production. Journal of Chemical Technology and Biotechnology, 2016, 91(5), 1413–1421, DOI: 10.1002/jctb.4738(二區(qū)SCI IF 3.135)
[10]Peng Zhang, Lin Chen, Qingsong Zhang, Feng Hong*. Using in situ dynamic cultures to rapidly biofabricate fabric-reinforced composites of chitosan/bacterial nanocellulose for antibacterial wound dressings. Frontiers in Microbiology, 2016, 7: 260. DOI: 10.3389/fmicb.2016.00260(二區(qū)SCI IF 4.165)
[11]Lin Chen, Min Zou, Feng. Hong*. Evaluation of fungal laccase immobilized on natural nanostructured bacterial cellulose. Frontiers in Microbiology, 2015, 6: 1245. DOI: 10.3389/fmicb.2015.01245.(二區(qū)SCI IF 4.165)
[12]Jingyu Tang, Luhan Bao, Xue Li, Lin Chen and Feng . Hong*. Potential of PVA-doped bacterial nano-cellulose tubular composites for artificial blood vessels. Journal of Materials Chemistry B, 2015, 3(43), 8537–8547. DOI: 10.1039/C5TB01144B(一區(qū)SCI IF4.726)
[13]Feng Hong*, Bin Wei, Lin Chen. Preliminary study on biosynthesis of bacterial nanocellulose tubes in a novel double-silicone-tube bioreactor for potential vascular prosthesis. BioMed Research International, vol. 2015, Article ID 560365, 9 pages. DOI: 10.1155/2015/560365(三區(qū)SCI IF2.706)
[14]Gao-peng Jiang, Jing Zhang, Jin-li Qiao, Yong-ming Jiang, Hadis Zarrin, Zhongwei Chen, Feng Hong*. Bacterial nanocellulose/nafion composite membranes for low temperature polymer electrolyte fuel cells. Journal of Power Sources, 2015, 273, 697–706. DOI: 10.1016/j.jpowsour.2014.09.145 (一區(qū)SCI IF 6.333)
[15]Guang Yang*, Caixia Wang, Feng Hong*, Xuexia Yang, Zhangjun Cao. Preparation and characterization of BC/PAM-AgNPs nanocomposites for antibacterial applications. Carbohydrate Polymers, 2015, 115(22): 636–642.(二區(qū) SCI IF 5.158)DOI: 10.1016/j.carbpol.2014.09.042
[16]Shuo Zhang, Sandra Winestrand, Lin Chen, Dengxin Li, Leif J. J�0�2nsson, Feng Hong*. Tolerance of the nanocellulose-producing bacterium Gluconacetobacter xylinus to lignocellulose-derived acids and aldehydes. Journal of Agricultural and Food Chemistry, 2014, 62: 9792-9799. DOI: 10.1021/jf502623s(一區(qū)SCI IF 3.107)
[17]Shuo Zhang, Sandra Winestrand, Xiang Guo, Lin Chen, Feng Hong*, Leif J. J�0�2nsson*. Effects of aromatic compounds on the production of bacterial nanocellulose by Gluconacetobacter xylinus. Microbial Cell Factories, 2014, 13: 62. DOI: 10.1186/1475-2859-13-62
[18]Jinli Qiao, Yuyu Liu*, Feng Hong*, Jiujun Zhang*. A review of catalysts for the electroreduction of carbon dioxide to produce low-carbon fuels. Chem. Soc. Rev. (Chemical Society Reviews) 2014, 43(2): 631-675. DOI:10.1039/C3CS60323G(一區(qū)SCI IF 34.09)
[19]Xiang Guo, Adnan Cavka, Leif J J�0�2nsson* and Feng Hong*. Comparison of methods for detoxification of spruce hydrolysate for bacterial cellulose production. Microbial Cell Factories, 2013, 12:93(二區(qū)2013年SCI IF4.250). doi:10.1186/1475-2859-12-93.
[20]Adnan Cavka, Xiang Guo, Shui-Jia Tang,Feng Hong*, Sandra Winestrand, Leif J. J?nsson and Feng Hong*. Production of bacterial cellulose and enzyme from waste fiber sludge. Biotechnology for Biofuels. 2013, 6:25. DOI: 10.1186/1754-6834-6-25. 2013 Feb. 16. (SCI IF6.09) 2012
[21]Lin Chen, Feng Hong*, Xue-xia Yang, Shi-fen Han. Biotransformation of wheat straw to bacterial cellulose and its mechanism. Bioresource Technology, 2012, DOI: 10.1016/j.biortech.2012.10.029(SCI IF4.980)
[22]Gaopeng Jiang, Jinli Qiao, Feng Hong*. Application of phosphoric acid and phytic acid doped bacterial cellulose as novel proton-conducting membranes to PEMFC. International Journal of Hydrogen Energy, 2012, 37(11): 9182-9192. (SCI IF4.054)
[23]Sandra Winestrand, Madhavi Latha Gandla, Feng Hong, Qi Zhi Chen, and Leif J. J?nsson. Oxalate decarboxylase of Trametes versicolor: biochemical characterization and performance in bleaching filtrates from the pulp and paper industry. Journal of Chemical Technology and Biotechnology,2012, 87(11): 1600–1606. (SCI,IF2.168)
[24]Ruijing Su, Penghui Shi, Mincong Zhu, Feng Hong, Dengxin Li. Studies on the properties of graphene oxide-alkaline protease bio-composites. Bioresource Technology, 2012. 115, 136-140.(一區(qū)SCI IF4.980)
[25]Feng Hong*, Xiang Guo, Shuo Zhang, Shi-fen Han, Guang Yang, and Leif J. J�0�2nsson. Bacterial cellulose production from cotton-based waste textiles: Enzymatic saccharification enhanced by ionic liquid pretreatment. Bioresource Technology, 2012, 104: 503-508.(一區(qū)SCI IF4.980)
[26]Guang Yang, Jianjian Xie, Yunxia Deng, Yonggang Bian, Feng Hong. Hydrothermal synthesis of bacterial cellulose/AgNPs composite: A “green” route for antibacterial application. Carbohydrate Polymers, 2012, 87 (4): 2482-24871. (二區(qū)SCI IF3.628)
[31]Feng Hong, Ying Xue Zhu, Guang Yang, Xue Xia Yang. Wheat straw acid hydrolysate as a potential cost-effective feedstock for production of bacterial cellulose. Journal of Chemical Technology and Biotechnology,2011, 86(5): 675-680.(二區(qū)SCI IF3.512)
[32]Bin Wei, Guang Yang, Feng Hong*. Preparation and evaluation of a kind of bacterial cellulose dry films with antibacterial properties. Carbohydrate Polymers, 2011, 84(1): 533-538. (二區(qū)SCI IF5.105)
[33]Cuixia Zhu, Feng Hong*. Induction of an oxalate decarboxylase in the filamentous fungus Trametes versicolor by addition of inorganic acids. Applied Biochemistry and Biotechnology. 2010, 160(2): 655-664. (SCI,IF: 1.943)
[34]Kun Zhong, Zhi-Yu Shao, Feng Hong*. Enzymatic production of epigallocatechin by using an epigallocatechin gallate hydrolase induced from Aspergillus oryzae. Biotechnology Progress. 2008, 24(3), 583-587. (SCI,IF: 2.34)
[35]Feng Hong*, Kaiyan Qiu. An alternative carbon source from konjac powder for enhancing production of bacterial cellulose in static cultures by a model strain Acetobacter aceti subsp. xylinus ATCC 23770, Carbohydrate Polymers. 2008, 72, 545–549. (SCI,IF: 3.628) 2008
[36]Xiao Hua Wang, Da Nian Lu, Leif J. Jonsson and Feng Hong*. Induction of a PET-degrading lipase from Aspergillus oryzae by addition of bis(2-hydroxyethyl) terephthalate and enzymatic modification of PET fabrics. Engineering in Life Sciences. 2008, 8(3): 268–276.(SCI,IF: 1.925)
[37]Feng Hong. Characterization of bacterial cellulose membrane by scanning electron microscope, fourier transform infrared spectroscopy and thermo-gravimetric analysis. Journal of Biotechnology, 2008, 136S: S433.(SCI, IF: 2.565)
[38]Feng Hong*, Cui-Xia Zhu. Induction of an oxalate decarboxylase in Trametes versicolor by addition of organic acids. IBS2008, October 12-17, 2008, Dalian, China. Journal of Biotechnology, 2008, 136S: S323.
[39]Kun Zhong, Sheng-Yin Zhao, Leif J. Jonsson, Feng Hong*. Enzymatic conversion of epigallocatechin gallate to epigallocatechin with an inducible hydrolase from Aspergillus niger. Biocatalysis and Biotransformation. 2008, 26(4), 306-312.(SCI, IF: 1.52)
[40]Feng Hong*, Yu Zhang, Ying-Xue Zhu. Decolorization of industrial dyes catalyzed by laccase from a mushroom Lentinula edodes. Journal of Biotechnology, 2008, 136S: S696. (SCI, IF: 2.565)
[41]Chen Deng, Zhi-Jia Zhu, Zhi-Yu Shao and Feng Hong*. Enhancement of ilicicolin H production by Fusarium sp. F4 in shaking-flask cultivations. Journal of Biotechnology, 2008, 136S: S432.
[42]Ying-Xue Zhu, Kun Zhong, Zhi-Yu Shao and Feng Hong*. Production of beauvericin by a high-yield strain Fusarium sp. F-1 in static cultivations. Journal of Biotechnology, 2008, 136S: S432.
[43]Wenhong Cheng, Qicheng Zhou, Qinhua Yuan and Feng Hong*. Enhancement of the natural dyestuff dyeability of wool fabrics with protease pretreatment. Journal of Biotechnology, 2008, 136S: S382.
[44]Feng Hong*. Comparison of enzymatic pretreatments with three xylanases for enhancing H2O2 bleaching of wheat straw chemomechanical pulp. Journal of Biotechnology, 2008, 136S: S381. 21.Qi-Zhi Chen, Feng Hong*. Extraction of intracellular oxalate decarboxylase from the white-rot wood decay fungus Trametes versicolor. Journal of Biotechnology, 2008, 136S: S324.
[45]Feng Hong*.Oxidation capacity of laccases and peroxidases as reflected in experiments with methoxy-substituted benzyl alcohols. Applied Biochemistry and Biotechnology(SCI收錄,IF:1.643),2006, 129:303-319.
[33]劉小虎,洪楓,郭穎,張菁,石建軍.Sterilization of Staphylococcus Aureus by an Atmospheric Non-Thermal Plasma Jet[J].Plasma Science and Technology,2013,15(05):439-442.