天津科技大学造纸学院导师:司传领
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- 来源:网络整理
- 2024-06-27 11:38

司传领
[所属院校]
天津科技大学
[基本信息]
导师姓名:司传领
性别:男
人气指数:3064
所属院校:天津科技大学
所属院系:造纸学院
职称:教授
导师类型:
招生专业:制浆造纸工程、林产化学加工工程、轻工技术与工程
研究领域:植物资源精细化工与化学、制浆造纸、生物质资源综合利用、天然产物化学
[通讯方式]
办公电话:022-60601313
电子邮件:sichli@tust.edu.cn
[个人简述]
2016年,中国致公党天津科技大学支部主委2015年,天津市优秀硕士论文指导教师2015年,全国青联委员2015年,天津市131创新型人才培养工程第一层次2014年,天津市优秀硕士论文指导教师2014年,天津市特聘教授2014年,第十二届天津青年科技奖提名奖2013年,天津市高等学校学科领军人才2013年,中国致公党天津市委会科技教育委员会副主任2013年,天津科技大学留学归国人员联谊会副会长兼秘书长2013年,第八届天津市河西区十大优秀青年2011年,教育部新世纪优秀人才2011年,天津市青联委员2010年,教育部霍英东教育基金会第十二届高等院校青年教师奖2008年,国家人力资源与社会保障部中国博士后科学基金会第一批中国博士后科学基金特别资助金2007年,国家人力资源与社会保障部中国博士后科学基金会41批中国博士后科学基金一等资助金2007年,留津(来津)工作优秀博士后赴欧洲交流合作(奖励)2002-2006年,韩国BESTKNU全额奖学金
[科研工作]
1. A novel functional lignin-based filler for pyrolysis and feedstock recycling of poly(L-lactide). Green Chemistry 2018 20(8) 1777-1784 (Cover,通讯作者).2. Lignin as a novel tyrosinase inhibitor: effects of sources and isolation processes. ACS Sustainable Chemistry & Engineering 2018 DOI: 10.1021/acssuschemeng.8b02234 (通讯作者).3. A novel and efficient process for lignin fractionation in biomass-derived glycerol-ethanol solvent system. Industrial Crops and Products 2018 111 201-221 (通讯作者).4. Cationic xylan- (2-methacryloyloxyethyl trimethyl ammonium chloride) polymer as a flocculant for pulping wastewater. Carbohydrate Polymers 2018 186 358-366 (通讯作者).5. Antibacterial and hemostatic hydrogel via nanocomposite from cellulose nanofibers. Carbohydrate Polymers 2018 195 63-70 (通讯作者).6. Recent strategies in preparation of cellulose nanocrystals and cellulose nanofibrils derived from raw cellulose materials. International Journal of Polymer Science 2018 Article ID 7923068 (Featured article通讯作者).7. Extractives of Cercidiphyllum japonicumtwigs: isolation and structural elucidation of a new galloylflavonol glycoside anomeric tannins and flavonoids. Holzforschung 2018 DOI: https://doi.org/10.1515/hf-2018-0029(第一作者通讯作者).8. Pretreatment and in situ fly ash systems for improving the performance of sequencing batch reactor in treating thermomechanical pulping effluent. ACS Sustainable Chemistry & Engineering 2017 5(8) 6932-6939 (通讯作者).9. Preparation and characterization of chitosan by a novel deacetylation approach using glycerol as green reaction solvent. ACS Sustainable Chemistry & Engineering 2017 5(6) 4690-4698 (通讯作者).10. Lignin nanoparticle as a novel green carrier for the efficient delivery of resveratrol. ACS Sustainable Chemistry & Engineering 2017 5(9) 8241–8249 (通讯作者).11. Simple and green fabrication of AgCl/Ag-cellulose paper with antibacterial and photocatalytic activity. Carbohydrate Polymers 2017 174 450-445 (通讯作者).12. Isolation and characterization of triterpenoids from the stem barks of Pinus massoniana.Holzforschung 2017 71(9) 697-703 (第一作者通讯作者).13. Isolation and structural elucidation of heartwood extractives of Juglans sigillata. Holzforschung 2017 71(10) 785-792 (通讯作者).14. Recovery of the oligosaccharides from pre-hydrolysis liquors of poplar by microfiltration/ultrafiltration membranes and anion exchange resin. ACS Sustainable Chemistry & Engineering 2016 4(3) 937-943 (通讯作者).15. Preparation and characterization of functional cellulose nanofibrilsvia formic acid hydrolysis pretreatment and the followed high-pressure homogenization. Industrial Crops and Products 2016 94 736-745 (通讯作者).16. Apigenin-7-O-β-D-glucuronide inhibits LPS-induced inflammation through the inactivation of AP-1 and MAPK signalling pathways in RAW 264.7 macrophages and protects mice against endotoxin shock. Food & Function 2016 7 1002-1013 (通讯作者).17. Preparation and characterization of thermally 3 stable cellulose nanocrystals via a sustainable approach of FeCl3-catalyzed formic acid hydrolysis. Cellulose 2016 34(4) 2389-2407 (通讯作者).18. Further characterization of cellulose nanocrystal (CNC) preparation from sulfuric acid hydrolysis of cotton fibers. Cellulose 2016 23(1) 39-450 (通讯作者).19. A new cis-p-coumaroyl flavonol glycoside from the inner barksof Sophora japonicaL. Holzforschung 2016 70(1) 39-46 (通讯作者第一作者).20. New acylated flavonol glycosides with antibacterial activity from root barks of Sophora Japonica.Wood Science and Technology 2016 50(3) 645-659 (通讯作者第一作者).
[教育背景]
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