云顶集团_云顶集团游戏平台

文甲龙

点击数:   更新日期: 2021-04-30

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文甲龙  副教授、博士生导师

 

性 别:男

电子邮箱wenjialonghello@126.com

办公电话15210508136

研究方向:木质素化学及其高值化、生物质炼制

详细资料

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教育/工作经历

教育经历

    2011/09-2014/07,北京林业大学,林产化工,博士,导师:孙润仓教授

    2008/09-2011/07,西北农林科技大学,林产化工,硕士,导师:苏印泉教授

    2004/09-2008/07,中南林业科技大学,木材科学,学士,导师:彭万喜教授

工作经历

    2020/01-至今,北京林业大学,林木分子设计育种高精尖创新中心,青年研究员

    2017/01-至今,北京林业大学,云顶集团,副教授

    2014/07-2016.12,北京林业大学,云顶集团,讲师

    2014/08-2016/07,北京林业大学,林木遗传育种,在职博士后,导师:张德强教授

主讲课程

    1. 天然产物结构分析技术实验 16学时,必修)

    2. 生物质清洁分离及绿色转化技术(32学时,选修)

    3. 林产特色产品加工工艺学 32学时,选修)

科研工作及成果

主要从事木质素化学和基于生物炼制的生物质高值化研究,包括定量核磁共振技术(多维度高分辨率液体核磁共振技术和固体核磁技术)在天然高分子结构分析中(尤其是木质素结构定量解析)的应用及技术拓展,木质素分离方法和结构分析,木质纤维预处理化学,木质素改性及其高值化研究。目前完成/在研的项目十余项,包括国家自然科学基金青年项目(结题)、面上项目(在研2项)、国家重点研发计划子课题(在研)、北京林业大学杰出青年人才培育项目等。截止目前,在Green ChemistryBioresource TechnologyApplied Energy等本领域国际期刊发表SCI收录论文85篇(第一作者/通讯42篇,其中6篇为ESI高被引论文,第二作者30余篇)。其中,中科院Top一区SCI论文40篇,论文被SCI期刊他引2800余次, H指数33。受邀参编木质素相关英文专著3部,译著1部,教育部学位办研究生推荐教材1本,申请中国发明专利10件,授权5件。担任本领域十余种知名SCI期刊审稿人,曾获得宝钢优秀学生特等奖,梁希青年论文奖、美国化学会会员奖,教育部高等学校科技进步奖等多项奖励。积极加入国际/国内学术交流,其中包括16次国际会议分会报告,国内会议报告5次。社会服务方面,任林草局木质素高值化利用国家创新联盟秘书长,兼职多家企业的技术顾问。

奖励及荣誉称号

2011年获得“2011届北美枫情杯林科十佳毕业研究生

2011年获得陕西杨凌农业高新技术产业示范区科学技术一等奖(7

2012年获得博士研究生国家奖学金

2013年获宝钢优秀学生特等奖

2014五届梁希青年论文二等奖

2015美国化学会会员奖励(Membership Award

2015教育部科学技术进步奖一等奖(10

2016第六届梁希青年论文二等奖

2017五届林业学术大会青年分会优秀报告奖一等奖

2020年度中国高被引学者(Highly Cited Chinese Researchers)

学术/社会兼职

Green Chemistry, Bioresource Technology, Applied Energy 等本领域十余种SCI期刊审稿人

中国化学会,中国林学会,美国化学会会员

学术成果展示(不超30个)

    1. J. L. Wen, Z. J. Sun, Y. C Sun, S. N. Sun, F. Xu, and R. C. Sun*. Structural characterization of alkali-extractable lignin fractions from bamboo. Journal of Biobased Materials and Bioenergy, 2010, 4, 408~425.

    2. J. L. Wen, Y. C Sun, F. Xu, and R. C. Sun*. Fractional isolation and chemical structure of hemicellulosic polymers obtained from Bambusa rigida species Journal of Agricultural and Food Chemistry 2010, 58, 11372~11383

    3. J. L. Wen, L. P. Xiao, Y. C. Sun, S. N. Sun, F. Xu, R. C*. Sun and X. L. Zhang. Comparative study of alkali-soluble hemicelluloses isolated from bamboo. Carbohydrate Research, 2011, 346, 111~120.

    4. J. L. Wen, Y. C. Sun, L. Y. Meng, F. Xu, R. C. Sun*. Homogeneous lauroylation of ball-milled bamboo in ionic liquid for bio-based composites production Part I: Modification and Characterization. Industrial Crops and Products, 2011, 34, 1491~1501

    5. J. L. Wen, B. L. Xue, F. Xu, R. C. Sun*. Unmasking the structural features and property of lignin macromolecules from bamboo. Industrial Crops and Products, 2013, 42, 332?343. (ESI高被引)

    6. J. L. Wen, B. L. Xue, F. Xu, R. C. Sun*. Unveiling the structural heterogeneity of lignin by in-situ NMR (HSQC) techniques. Bioenergy Research, 2012, 5, 886?903.

    7. J. L. Wen, S. L. Sun, B. L. Xue, R. C. Sun*. Structures and thermal properties of the birch lignins after ionic liquid pretreatment. Journal of Agricultural and Food Chemistry, 2012. 2012. 61: 635-45. (ESI高被引)

    8. J. L. Wen, B. L. Xue, S. L. Sun, R. C. Sun*. Quantitative structural characterization and thermal properties of birch lignins during auto-catalyzed organosolv pretreatment and enzymatic hydrolysis. Journal of Chemical Technology and Biotechnology. 2013, 88, 1663?1671

    9. J. L. Wen, S. L. Sun, B. L. Xue, R. C. Sun*. Recent advances in characterization of lignin polymer by solution-state nmr methodology. Materials. 2013, 6, 359-391. (ESI高被引)

    10. J. L. Wen, S. L. Sun, B. L. Xue, R. C. Sun*. Quantitative structural characterization of the lignins from the stem and pith of bamboo (Phyllostachys pubescens). Holzforschung. 2013, 67(6), 613-627.

    11. J. L. Wen, S. L. Sun, T.Q. Yuan, F, Xu, R. C. Sun*. Fractionation of bamboo culms by autohydrolysis, organosolv delignification and extended delignification: understanding the fundamental chemistry of the lignin during the integrated process. Bioresource Technology, 2013, 150, 278-286.

    12. J. L. Wen, S. L. Sun, T.Q. Yuan, F, Xu, R. C. Sun*. Structural elucidation of lignin polymers of eucalyptus chips during organosolv pretreatment and extended delignification. Journal of Agricultural and Food Chemistry. 2013, 61, 11067-11075

    13. J. L. Wen, T.Q. Yuan, S. L. Sun, F, Xu, R. C. Sun*. Understanding the chemical transformations of lignin during ionic liquid pretreatment. Green Chemistry, 2014 (1), 16, 181-190.

    14. J. L. Wen, S. L. Sun, T.Q. Yuan, F, Xu, R. C. Sun*. Understanding the chemical and structural transformations of lignin macromolecule during torrefaction. Applied Energy, 2014, 121, 1-9 (ESI高被引)

    15. J. L. Wen, S. L. Sun, T.Q. Yuan, R. C. Sun*. Structural elucidation of whole lignin from Eucalyptus based on preswelling and enzymatic hydrolysis, Green Chemistry, 2015, 17(3), 1589-1596.

    16. J. L. Wen, S. L. Sun, B. L. Xue, R. C. Sun*. Structural elucidation of inhomogeneous lignins from bamboo, International Journal of Biological Macromolecules, 2015, 77, 250-259.

    17. X. P. Peng, S.L. Sun, J. L.Wen*, W. L. Yin, R. C. Sun*, Structural characterization of lignins from hydroxycinnamoyl transferase (HCT) down-regulated transgenic poplars, Fuel, 2014, 134, 485?492.

    18. X. J. Shen, B. Wang, P. L. Huang, J.L. Wen *, R. C. Sun. A mild AlCl3-catalyzed ethanol pretreatment and its effects on the structural changes of Eucalyptus wood lignin and the saccharification efficiency, Bioresource Technology, 2016, 206, 57?64.

    19. B. Wang, X. J. Shen, L. Xiao, J.L. Wen *, R. C. Sun*. Evaluation of organosolv pretreatment on the structural characteristics of lignin polymers and follow-up enzymatic hydrolysis of the substrates from Eucalyptus wood, International Journal of Biological Macromolecules, 2017, 97, 447?459.

    20. T. Y. Chen, B. Wang, Y. Y. Wu, J. L. Wen*, C.F. Liu, T. Q. Yuan, R. C. Sun, Structural variations of lignin macromolecule from different growth years of Triploid of Populus tomentosa Carr. International Journal of Biological Macromolecules, 2017,101, 747?757.

    21. T. Y. Chen, J. L. Wen,* B. Wang, H. M. Wang, C.F. Liu, R. C. Sun. Assessment of integrated process based on autohydrolysis and robust delignification process for enzymatic saccharification of bamboo, Bioresource Technology, 2017, 244, 717?725.

    22. X. J. Shen, P. L. Huang, J.L. Wen *, R. C. Sun*. A facile method for char elimination during base-catalyzed depolymerization and hydrogenolysis of lignin, 2017, Fuel Processing Technology, 167, 491?501.

    23. X. J. Shen, J.L. Wen*, P. L. Huang, K. Zheng, S. F. Wang, Q. Y. Liu, A. Charlton, R. C. Sun*. Efficient and product-controlled depolymerization of lignin oriented by raney Ni cooperated with CsxH3-xPW12O40. Bioenergy Research, 2017, 10, 1155?1162.

    24. H. M. Wang, B. Wang, J. L. Wen,* T. Q. Yuan, R. C. Sun*. Structural Characteristics of Lignin Macromolecules from Different Eucalyptus Species, ACS Sustainable Chem. Eng. 2017, 5, 11618?11627.

    25. H. M. Wang, B. Wang, J. L. Wen,* S. F. Wang, Q. Shi. R. C. Sun*. Green and efficient conversion strategy of Eucalyptus based on mechanochemical pretreatment, Energy Conversion and Management, 2018, 175, 112?120

    26. X. J. Shen, J. L. Wen*, Q. Q. Mei, X. Chen, D. Sun, T. Q. Yuan, R. C. Sun*, Facile fractionation of lignocelluloses by biomass-derived deep eutectic solvent (DES) pretreatment for cellulose enzymatic hydrolysis and lignin valorization. Green Chemistry, 2019, 21, 275-283.ESI高被引)

    27. H. M. Wang, C.Y. Ma, H.Y. Li, T.Y. Chen, J.L. Wen*, X.F. Cao, X.L. Wang, T.Q., Yuan, R.C. Sun*; Structural variations of lignin macromolecules from early growth stages of poplar cell walls, ACS Sustainable Chem. Eng., 2020, 8, 1813-1822

    28. X.J. Shen, T.Y. Chen, H.M. Wang, Q.Q. Mei, F. X. Yue, S.N. Sun, J. L. Wen*, T.Q. Yuan, R.C. Sun. Structural and morphological transformations of lignin macromolecules during bio-based deep eutectic solvent (DES) pretreatment, ACS Sustainable Chem. Eng., 2020, 8, 2130-2037 (ESI高被引)

    29. 孙润仓,文甲龙,方桂珍,木材波谱学(第二版,第四章),主编: 李坚,科学出版社,20206月出版

    30. J. L. Wen, H.M. Wang, C.Y. Ma, T.Q. Ma, R.C. Sun. Lignin Biorefinery: Value-added products from lignin: Isolation, characterization and applications in Biomass, Biofuels, Biochemicals: Lignin Biorefinery, Edited by Thallada Bhaskar and Ashok Pandey Elsevier, 2021, 33-55.