曹金珍

点击数:   更新日期: 2018-03-29

曹金珍   教授、博士生导师


性 别:女

电子邮箱caoj@bjfu.edu.cn

办公电话010-62337381

研究方向:木材功能性改良

详细资料

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教育/工作经历

1992.091996.07:北京林业大学,森工系,本科/学士,导师:赵广杰教授

1996.092001.07: 北京林业大学,森工学院,研究生/博士,导师:赵广杰教授

1999.102000.09: 日本岛根大学,综合理工学部,特别研究生,导师:古野 毅教授

2001.072002.02: 北京林业大学,材料科学与技术学院,讲师

2002.032004.01: 美国密西根州立大学,自然资源学院林业系,博士后,导师:Pascal Kamdem教授

2004.01-至今: 北京林业大学教授,2006年遴选为博士生导师。

主讲课程

本科生课程:木材保护与改性

研究生课程:木材功能性改良

科研工作及成果

主要从事木材功能性改良方面的研究,包括木材防腐防霉、防水及尺寸稳定化、耐光老化性能改良和新型木基功能化材料的研究。已主持完成了多项国家级和省部级科研课题,其中国家自然科学基金项目4项。在国内外学术期刊上以第一作者或责任作者发表学术论文134篇,其中68篇被SCI收录。以第一发明人获得PCT优先权1项,获国家发明专利授权9件,完成专利技术转让3件。主编学术专著1部,参编英文专著2部,主持制定国家标准3项。

奖励及荣誉称号

(1)全国优秀教师(2)全国百篇优秀博士论文奖(3)北京市科学技术二等奖(4)中国林业青年科技奖(5)教育部新世纪优秀人才计划入选者(6)北京市青年岗位能手(7)北京市优秀教师(8)北京市青年教学名师(9)宝钢优秀教师(10)北京市师德先锋

学术/社会兼职

(1)学术兼职:国际木材保护研究会执委(2011-2013)、中国林学会木材科学分会常务理事、中国林学会木材工业分会理事、全国木材标准化技术委员会基础分委会委员、中国木材与木制品流通委员会标准化技术委员会委员、中国国家自然科学基金委员会、波兰国家基金委员会、哈萨克斯坦国家基金委员会等项目评审专家。Green ChemistryACS Applied Materials & InterfacesWood Science and TechnologyHolzforschung等国际学术期刊审稿人。Wood Material Science and Engineering编辑。

(2)社会兼职:九三学社海淀区委委员、九三学社北京市委教育委员会委员。

学术成果展示(不超30个)

1. 国家发明专利:一种木材防腐剂和防腐处理方法(曹金珍,余丽萍),ZL200880129962.X,授权日期:2013.5.8

2. 国家发明专利:一种微乳液型木竹材防霉剂、及其制备方法和应用(曹金珍,朱愿),ZL201310268567.22015.12.23

3. 国家发明专利:一种石蜡-硅烷复合防水剂及其制备方法(曹金珍,王望,刘如,朱愿),ZL201310309275.92016.1.20

4. 国家发明专利:一种水载型木材改性剂及其制备方法(曹金珍,朱愿,王望,孙敏洋),ZL201410250780.52016.2.3

5. 国家发明专利:石蜡乳液-硼酸盐复合改性剂及其制备方法与应用(曹金珍,王望,朱愿,崔福通),ZL201410160581.52016.8.17

6. 国家发明专利:一种有机蒙脱土改性剂乳液.其制备方法及应用(曹金珍,刘如,陈玉,王望),ZL201510114317.22016.8.24

7. Ru Liu, Jinzhen Cao, Shupin Luo, Xing Wang. Effects of two types of clay on physical and mechanical properties of poly(lactic acid)/wood flour composites at various wood flour contents, Journal of Applied Polymer Science,2013,127(4): 2566-2573.

8. Zhu Lizhi,Jinzhen Cao, Wang Yi.Evaluation of interfacial compatibility in wood flour/polypropylene composite by using dielectric approach, J. Appl. Poly. Sci.,2013,129(3):1520-1526.

9. Ru Liu, Shupin Luo, Jinzhen Cao, Yao Peng. Characterization of organo-montmorillonite (OMMT) modified wood flour and properties of its composites with poly(lactic acid), Composite part A-Applied Science and Manufacturing, 2013, 51(8): 33-42.

10. Wang WangZhu YuanCao Jinzhen, Liu Ru. In-situ synthesis of organo-montmorillonite in southern yellow pine wood: preparation, characterization and properties, Holzforschung2014,68(1):29–36.

11. Wang Wang, Yuan Zhu, Jinzhen Cao. Morphological, thermal and dynamic mechanical properties of Cathay poplar/organoclay composites prepared by in-situ process, Materials and Design2014,59233–240

12. Ru Liu, Yao Peng, Jinzhen Cao*. A comparison of various ionic surfactant modifiers used in in-situ synthesis of organo-montmorillonite inside wood flour,Industrial Crops and Prodcuts,201462387–394

13. Yao Peng, Ru Liu, Jinzhen Cao*, Yu Chen.Effects of UV weathering on surface properties of polypropylene composites reinforced with wood flour, lignin, and cellulose,Applied Surface Science,2014,317: 385-392.

14. Ru Liu, Yao Peng, Jinzhen Cao*, Yu Chen. Comparison on properties of lignocellulosic flour/polymer composites by using wood, cellulose, and lignin flours as fillers, Composites Science and Technology, 2014,103:1-7.

15. Yao Peng,Ru Liu,Jinzhen Cao. Effects of vitamin E combined with antioxidants on wood flour/polypropylene composites during accelerated weathering, Holzforschung,201569(1): 113-120.

16. Wang Wang, Yuan Zhu, Jinzhen Cao*, Xi Guo. Thermal modification of southern pine combined with wax emulsion pre-impregnation: effect on hydrophobicity and dimensional stability,Holzforschung, 2015,69(4): 405-413.

17. Wang Wang, Yuan Zhu, Jinzhen Cao*, Wenjing Sun. Correlation between dynamic wetting behavior and chemical components of thermally-modified wood,Applied Surface Science, 2015,324: 332-338.

18. Yao Peng, Wen Wang, Jinzhen Cao*, Xi Guo. Effects of layered double hydroxide (LDH) on photostability of wood flour/polypropylene composites during UV weatheringonRSC advances, 2015, 5, 41230-41237.

19. Yao Peng, Ru Liu, Jinzhen Cao*. Characterization of surface chemistry and crystallization behavior of polypropylene composites reinforced with wood flour, cellulose, and lignin during accelerated weathering, Applied Surface Science, 2015, 332: 253-259.

20. Ru Liu, Yu Chen, Jinzhen Cao. Characterization and properties of organo-montmorillonite modified lignocellulosic fibers and their interaction mechanisms, 2015, RSC Advances,5, 76708-76717.

21. Guo Xi, Cao Jinzhen, Peng Yao, Liu Ru. Incorporation of microencapsulated dodecanol into wood flour /high-density polyethylene composite as a phase change material for thermal energy storage, Materials & Design, 2016, 89: 1325–1334

22. Wang Wang, Yuan Zhu, Jinzhen Cao* and Pascal D. Kamdem.Monitoring electrical properties of thermally modified wood as a possible tool for quality assessment, Holzforschung, 2016, 70(4): 351-359.

23. Wenjing Sun, Haiying Shen, Jinzhen Cao. Modification of wood by glutaraldehyde and poly (vinyl alcohol), Materials & Design, 2016, 96: 392–400

24. Ru Liu, Shupin Luo, Jinzhen Cao* and Yu Chen. Mechanical properties of wood flour/poly (lactic acid) composites coupled with waterborne silane-polyacrylate copolymer emulsion,Holzforschung, 2016, 70(5): 439-447. DOI 10.1515/hf-2015-0064

25. Yao Peng, Wen Wang,Jinzhen Cao*. Preparation of Lignin?Clay Complexes and Its Effects on Properties and Weatherability of Wood Flour/Polypropylene Composites,Industrial & Engineering Chemistry Research, 2016, 55, 9657?9666.

26. Ru Liu, Yu Chen, Jinzhen Cao,Effects of modifier types on properties of in-situ organomontmorillonite modified wood flour/poly (lactic acid) compositesACS Applied Materials & Interfaces2016, 8 (1): 161–168

27. Ru Liu?, Wenjing Sun, Jinzhen Cao?, Jiamin Wang. Surface properties of in situ organo-montmorillonite modified wood flour and the influence on mechanical properties of composites with polypropylene,Applied Surface Science,2016, 361:234-241

28. 郭玺,曹金珍*,陈玉. 聚乙二醇改性相变微胶囊制备MicroPCMs

WF/HDPE复合材料物理力学性能,复合材料学报,3312):2725-2731.

29. Zhu Yuan,Xue Jing,Cao Jinzhen*Xiao Hongzhan.A potential mechanism for degradation of 4,5-dichloro-2-(n-octyl)-3[2H]-isothiazolone (DCOIT) by brown-rot fungus Gloeophyllum trabeum,Journal of Hazardous Materials,2017, 337,72-79.

30. Zhu Yuan, Mahaney J., Jellison J., Cao Jinzhen*, Gressler J., Hoffmeister D., Goodell B*. Fungal variegatic acid and extracellular polysaccharides promote the site-specific generation of reactive oxygen species, Journal of Industrial Microbiology & Biotechnology, 2017, 44(3): 329-338.