胡鑫

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性别:男
联系方式:15105790257
学位:博士学位
学科:化学
在职信息:在岗
所在单位:化学与生命科学学院

个人简介

基本资料:胡鑫,男,理学博士,1976年3月生,辽宁辽阳人,现为浙江师范大学化学与生命科学学院副教授,研究生导师。Email: huxin@zjnu.cn研究方向1. 新型吸附剂的制备及性能检测2. 无机功能材料的制备及应用3. 掺杂碳材料的制备及应用教育背景2003, 1~2008, 1加拿大温莎大学材料化学专业攻读博士1998, 9~2001, 3辽宁科技大学化学工艺专业攻读硕士1994, 9~1998, 7鞍山钢铁学院化学工艺专业攻读本科工作科研经历:2001-2003 年鞍山钢铁学院化学工程系工作,从事煤焦油组分的提取和分离等研究工作。2008年加拿大温莎大学(University of Windsor)材料化学专业博士毕业,导师为David Antonelli 教授。2008-2009 期间在美国怀俄明大学化工和石油系做博士后研究员,导师为 Maciej Radosz 教授,2010年9月起在浙江师范大学化学与生命科学学院应用化学系任教。从事新型吸附剂的制备及性能研究,在国际期刊J. Am. Chem. Soc., Nano Energy, Chem. Mater., J. Mater. Chem. A, Environ. Sci. Technol., Carbon, Inorg. Chem.等发表文章30多篇。承担课题1. 国家自然科学基金青年基金,“介孔氧化钛复合材料的制备及其吸附二氧化碳性能研究”(21106136)2. 浙江省自然科学基金,“基于氧化石墨烯的富氮多孔碳材料制备及其吸附CO2性能研究” (Y15B060016)代表性论文:1.Wang, L.; Rao, L.; Xia, B.; Wang, L.; Yue, L.; Liang, Y.; DaCosta, H.; Hu, X. *, Highly efficient CO2 adsorption by nitrogen-doped porous carbons synthesized with low-temperature sodium amide activation. Carbon 2018,130, 31-40.2.Yue, L.; Rao, L.; Wang, L.; Sun, Y.; Wu, Z.; DaCosta, H.; Hu, X. *, Enhanced CO2 Adsorption on Nitrogen-Doped Porous Carbons Derived from Commercial Phenolic Resin. Energy & Fuels 2018,32, (2), 2081-2088.3.Yue, L.; Xia, Q.; Wang, L.; Wang, L.; DaCosta, H.; Yang, J.; Hu, X. *, CO2 adsorption at nitrogen-doped carbons prepared by K2CO3 activation of urea-modified coconut shell. Journal of Colloid and Interface Science 2018,511, 259-267.4.Yue, L.; Rao, L.; Wang, L.; Wang, L.; Wu, J.; Hu, X. *; DaCosta, H.; Yang, J.; Fan, M., Efficient CO2 Capture by Nitrogen-Doped Biocarbons Derived from Rotten Strawberries. Industrial & Engineering Chemistry Research 2017,56, (47), 14115-14122.5.Yang, J.; Yue, L.; Lin, B.; Wang, L.; Zhao, Y.; Lin, Y.; Chang, K.; DaCosta, H.; Hu, X. *, CO2 Adsorption of Nitrogen-Doped Carbons Prepared from Nitric Acid Preoxidized Petroleum Coke. Energy & Fuels 2017,31, (10), 11060-11068.6.Yang, J.; Yue, L.; Hu, X. *; Wang, L.; Zhao, Y.; Lin, Y.; Sun, Y.; DaCosta, H.; Guo, L., Efficient CO2 Capture by Porous Carbons Derived from Coconut Shell. Energy & Fuels 2017,31, (4), 4287-4293. 7.Guo, L.; Yang, J.; Hu, G.; Hu, X.*; DaCosta, H.; Fan, M., CO2 removal from flue gas with amine-impregnated titanate nanotubes. Nano Energy 2016, 25, 1-8.8.Guo, L.; Yang, J.; Hu, G.; Hu, X. *; Wang, L.; Dong, Y.; DaCosta, H.; Fan, M., Role of Hydrogen Peroxide Preoxidizing on CO2 Adsorption of Nitrogen-Doped Carbons Produced from Coconut Shell. ACS Sustainable Chemistry & Engineering 2016,4, (5), 2806-2813.9.Chen, J.; Yang, J.; Hu, G.; Hu, X. *; Li, Z.; Shen, S.; Radosz, M.; Fan, M., Enhanced CO2 Capture Capacity of Nitrogen-Doped Biomass-Derived Porous Carbons. ACS Sustainable Chemistry & Engineering 2016,4, (3), 1439-1445.10.Yang, M.; Guo, L.; Hu, G.; Hu, X.*; Chen, J.; Shen, S.; Dai, W.; Fan, M., Adsorption of CO2 by Petroleum Coke Nitrogen-Doped Porous Carbons Synthesized by Combining Ammoxidation with KOH Activation. Industrial & Engineering Chemistry Research 2016, 55, (3), 757-765.11.Bai, R.; Yang, M.; Hu, G.; Xu, L.; Hu, X.*; Li, Z.; Wang, S.; Dai, W.; Fan, M., A new nanoporous nitrogen-doped highly-efficient carbonaceous CO2 sorbent synthesized with inexpensive urea and petroleum coke. Carbon2015, 81, 465-473.12.Yang, M.; Guo, L.; Hu, G.; Hu, X. *; Xu, L.; Chen, J.; Dai, W.; Fan, M., Highly Cost-Effective Nitrogen-Doped Porous Coconut Shell-Based CO2 Sorbent Synthesized by Combining Ammoxidation with KOH Activation. Environmental Science & Technology 2015, 49, (11), 7063-7070.13.Xu, L.; Guo, L.; Hu, G.; Chen, J.; Hu, X.*; Wang, S.; Dai, W.; Fan, M., Nitrogen-doped porous carbon spheres derived from d-glucose as highly-efficient CO2 sorbents. RSC Advances 2015, 5, (48), 37964-37969.14.Guo, L. P.; Hu, X.*; Hu, G. S.; Chen, J.; Li, Z. M.; Dai, W.; Dacosta, H. F. M.; Fan, M. H., Tetraethylenepentamine modified protonated titanate nanotubes for CO2 capture. Fuel Processing Technology 2015, 138, 663-669.15.Zhao, X.; Hu, X. *; Hu, G.; Bai, R.; Dai, W.; Fan, M.; Luo, M., Enhancement of CO2 adsorption and amine efficiency of titania modified by moderate loading of diethylenetriamine. Journal of Materials Chemistry A 2013, 1, (20), 6208-6215.16.Ma, L.; Bai, R.; Hu, G.; Chen, R.; Hu, X.*; Dai, W.; Dacosta, H. F. M.; Fan, M., Capturing CO2 with Amine-Impregnated Titanium Oxides. Energy & Fuels 2013, 27, (9), 5433-5439.17.Hu, X. *; Radosz, M.; Cychosz, K. A.; Thommes, M., CO2-Filling Capacity and Selectivity of Carbon Nanopores: Synthesis, Texture, and Pore-Size Distribution from Quenched-Solid Density Functional Theory (QSDFT). Environmental Science & Technology 2011, 45, (16), 7068-7074.18.Hu, X.; Trudeau, M.; Antonelli, D. M., Hydrogen Storage in Mesoporous Titanium Oxide-alkali Fulleride Composites. Inorganic Chemistry 2008,47 (7), 2477-2484.19.Hu, X.; Trudeau, M.; Antonelli, D. M., Hydrogen Storage in Microporous Titanium Oxides Reduced by Early Transition Metal Organometallic Sandwich Compounds. Chemistry of Materials 2007,19 (6), 1388-1395.20.Hu, X.; Skadtchenko, B. O.; Trudeau, M.; Antonelli, D. M., Hydrogen Storage in Chemically Reducible Mesoporous and Microporous Ti Oxides. Journal of the American Chemical Society 2006,128 (36), 11740-11741.专著 (book chapter)1. Hu, X.; Fan, M. H.; Towler, B.; Radosz, Bell, D.; Plumb, O., Hydrogen Adsorption and Storage. In Coal Gasification and Its Application, Elsevier, pp 157-245, 2011.联系方式:通讯地址:浙江省金华市迎宾大道688号浙江师范大学生化学院邮编:321004电话:15105790257Email:huxin@zjnu.cn

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