陈瑶
点击数: 更新日期: 2018-04-03
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陈 瑶 副教授、硕士生导师
性 别:女 电子邮箱:ychen@bjfu.edu.cn 办公电话:(010)62337960 学科:木材科学与技术 研究方向:木材功能性改良;生物质基先进功能材料 |
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教育/工作经历 2016/01- 至 今,北京林业大学,材料科学与技术学院木材科学与工程系,副教授 2013/11-2015/12,北京林业大学,材料科学与技术学院木材科学与工程系,讲师 2012/06-2013/10,美国农业部林务局林产品研究所,博士后 2011/03-2012/03,美国农业部林务局林产品研究所,联合培养博士研究生 2006/09-2012/06,北京林业大学,材料科学与技术学院林产化学加工工程系,博士 2002/09-2006/07,北京林业大学,材料科学与技术学院林产化学加工工程系,学士 |
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主讲课程 本科生课程:《木材制材与干燥学》、《木材干燥学》、《木材制材与干燥学(双语)》、木材干燥学及木材干燥与热改性实验 研究生课程:《木材加工新技术》、《生物基先进材料前沿》、《生物质材料与产品工程》 |
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科研工作及成果 主要从事木材功能性改良、木材热加工、木竹结构解译及新材料、生物质储能材料等的研究。主持的主要科研课题包括国家自然科学基金项目、北京市自然科学基金面上项目、广西林业科技推广示范项目、教育部留学回国择优资助项目、北京林业大学优秀青年教师科技支持专项计划项目等,参与多项国家自然科学基金项目,以及山东省重大科技创新工程项目,林业知识产权转化运用项目及横向课题等。在国内外核心学术期刊上发表研究论文80余篇,其中SCI收录50余篇,H指数15;获得授权发明专利7项;出版科研专著1部;主编国家林草规划教材1部,参编国家级规划教材2部。 |
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奖励及荣誉称号 2025年度优秀研究生班主任。 |
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学术/社会兼职 中国林学会木材科学分会理事 |
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学术成果展示(不超30个) 1. Thermo-reversible transparent wood with tunable optics and mechanics for energy-efficient windows [J]. Advanced Composites and Hybrid Materials. 2025, 9(1):6. 2. A cactus-bioinspired bamboo-based composite phase change material with enhanced photothermal energy storage and superhydrophobic properties [J]. Composites Part B: Engineering, 2026, 317:113622. 3. Lignin-derived hollow carbon microsphere composite phase change materials for solar energy utilization [J]. Chemical Engineering Journal, 2025, 526:170862. 4. Lignin-derived Ti4O7 with high specific surface area for electrocatalytic oxidation and lignin flow fuel cells [J]. Biomass and Bioenergy, 2026, 215:109681. 5. White coloring and superhydrophobic modification of wood via LDHs in-situ formation [J]. Industrial Crops and Products, 2025, 236:121962. 6. Carbonized cork/polyethylene glycol composite phase change materials with high encapsulation for efficient photothermal utilization [J]. Journal of Energy Storage, 2026, 141:119453. 7. Boosting capacitive performance of wood-derived freestanding and thick carbon electrodes by KCl and Na2S2O3 [J]. Journal of Energy Storage, 2025, 130, 117439. 8. Architecting layered double hydroxides: Exploring their structural mastery and transformative influence on wood staining [J]. Industrial Crops and Products, 2024, 221: 119366. 9. Synergetic integration of photothermal and self-cleaning features in a composite phase change material based on layered double hydroxides and polypyrrole [J]. Journal of Energy Storage, 2024, 99: 113339. 10. Effect of polyethylene glycol with different molecular weights on the properties of mytilaria laosensis timber [J]. Forests, 2024, 15(8): 1401. 11. Improving the phase change properties of paraffin wax by regulating the pore structure and surface properties of silica aerogel [J]. Journal of Energy Storage, 2024, 83: 110665. 12. The confinement effect on phase change materials by physicochemical structure of wood-based materials [J]. Industrial Crops and Products, 2024, 212: 118299. 13. Enhancing Performance of Arsenic Adsorption through Ce‐Modified Activated Carbon Derived from Bamboo Shoot Shells [J]. ChemistrySelect, 2024, 9(9): e202305063. 14. Novel composite phase change material of high heat storage with photothermal and self-cleaning function [J]. Industrial Crops and Products, 2023, 192: 116103. 15. Construction of layered double hydroxides on wood surfaces for wood coloring [J]. Industrial Crops and Products, 2023, 198: 116661. 16. Adding gaseous ammonia with heat treatment to improve the mechanical properties of spruce wood [J]. Holzforschung, 2023, vol. 77, no. 6, pp. 416-425. 17. Study on the Discoloration Mechanism of Eucalyptus Wood during Thermal Treatment in Different Media [J]. Polymers 2023, 15, 1599. 18. Enhancing the mechanical properties and hydrophobicity of heat-treated wood by migrating and relocating sulfonated lignin [J]. Holzforschung, 2022, 76(7): 637-644 19. Enhanced mechanical and humidity resistance properties of heat‑treated wood by impregnation of low‑molecular‑weight lignin [J]. Wood Science and Technology, 2022, 56:1551-1565 20. Volume fractal and surface fractal analysis of the pore structure of natural and heat-treated spruce wood using the mercury intrusion porosimetry test [J]. Holzforschung, 2022,76(10): 907-915 21. Polycarbosilane as a modulator for reaction‑bonded silicon carbide processing of GNPs/Si mixtures [J]. Applied Physics A, 2022 22. Enhanced toughness of reed (Phragmites australis) stalk with polyethylene glycol [J]. Bioresouces 2020,15(3):7127-7142 23. Energy Efficiency Performance Enhancement of Industrial Conventional Wood Drying Kiln by Adding Forced Ventilation and Waste Heat Recovery System: A Comparative Study [J]. Maderas-Cienc Tecnol 2019, 21(4):545-558. 24. Mechanical properties and microstructure of reaction sintering SiC ceramics reinforced with graphene‑based fillers [J]. Applied Physics A 2019,125:68 25. Thermal stability of graphene in inert atmosphere at high temperature [J]. Journal of Solid State Chemistry 2019, 276: 100-103. 26. 一种SiO2气凝胶基光热功能型复合相变储能材料的制备方法. CN112521913B. 27. 一种碳化木基复合相变储能材料的制备方法. CN112391149B. 28. 一种实木纤维/SiO2气凝胶复合保温材料及制备方法.CN110615663B. 29. 一种汉麻秆、树根混合活性炭的工艺. CN106608625B. 30. 一种利用红木干燥废液浸渍调控速生材颜色的方法.CN108943261B. |
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