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广西大学轻工与食品工程学院导师教师师资介绍简介-何辉

本站小编 Free考研考试/2021-06-12

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轻工技术与工程
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制浆造纸工程"}],"GH
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何辉
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中共党员
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博士研究生
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1. 2017.03~至今 任教于广西大学,轻工与食品工程学院,轻化工程,教学科研岗,助理教授。2. 2013.08~2016.12 中山大学,化学学院,高分子化学与物理,理学博士。3. 2010.09~2013.06 广西大学,轻工与食品工程学院,制浆造纸工程,工学硕士。4. 2006.09~2010.06 广西大学,轻工与食品工程学院,轻化工程,工学学士。
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Green Chemistry、 Chemical Engineering Journal、Journal of Hazardous Materials、Cellulose、Langmuir、Carbohydrate Polymers等期刊的审稿人。中国造纸学会会员 中国化学会会员
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植物纤维化学造纸湿部化学及化学品的应用纤维素功能化轻化工助剂高等有机化学(研究生)
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生物质基吸附分离功能材料研究纳米纤维基生物医用材料(创口膜、注射型水凝胶)研究纤维素基多功能传感器研究
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(1)广西青年科学基金项目,生物质基高密度氨基型温敏智能材料制备及其构效关系研究,2019.01~2021.12,12万元,在研,主持人。(2)国家自然科学基金项目,短氟碳低聚物定向接枝纤维素的合成机理及其构效关系研究,2019.01.01~2022.12.31,41万元,在研,参与人。(3)广西清洁化制浆造纸与污染控制重点实验室主任基金,超支化固态胺纤维材料的结构设计、制备及其生物沼气纯化性能研究,2017.09~2019.08,8万元,在研,主持人。(4)国家自然科学基金项目,生物质基温敏性固态胺吸附纤维的设计及其吸附性能的研究,2015.01.01~2018.12.31,85万元,已结题,参与人。(5)主持广西大学博士科研启动基金1项。(6) 参与2018国家重点研发计划重点专项。
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代表性论文:2021[1]Xiaoyu Shi, Wei Lu, Yichun Xue, Hang Zhou, Fei Xue, Hui He*, Songlin Wang, Shuangfei Wang. Design of thermo-responsive hyperbranched nanofibre-based adsorbent with high CO2 adsorption capacity and analysis of its ultra-low temperature regeneration mechanism [J], Chemical Engineering Journal, 2021, 424, 130362. (IF=10.652, 一区)[2]Hang Zhou, Hongxiang Zhu, Xiaoyu Shi, Lei Wang, Hui He?, Shuangfei Wang. Design of amphoteric bionic fibers by imitating spider silk for rapid and complete removal of low-level multiple heavy metal ions [J], Chemical Engineering Journal, 2021, 412, 128670-128679.(IF=10.652, 一区)[3]Fei Xue, Hui He?, Hang Zhou, Zongyan Quan, Zhiping Chen, Qi Wu, Hongxiang Zhu?, Shuangfei Wang. Structural design of a cellulose-based hyperbranched adsorbent for the rapid and complete removal of Cr(VI) from water [J], Chemical Engineering Journal, 2021, 418, 128037-128048. (IF=10.652, 一区)[4]Zongyan Quan, Hui He?, Hang Zhou, Yuting Liang, Lei Wang, Songya Tian, Hongxiang Zhu*, Shuangfei Wang*. Designing an intelligent nanofiber ratiometric fluorescent sensor sensitive to biogenic amines for detecting the freshness of shrimp and pork [J], Sensors and Actuators B: Chemical, 2021, 333, 129. (IF=7.100, 一区)2020[5]Hang Zhou, Hongxiang Zhu, Fei Xue, Hui He?, Shuangfei Wang, Cellulose-based amphoteric adsorbent for the complete removal of low-level heavy metal ions via a specialization and cooperation mechanism [J], Chemical Engineering Journal, 2020, 385, 123879-12390. (IF=10.652, 一区,高被引论文)[6]Lei Wang, Wei Guo, Hongxiang Zhu, Hui He*, Shuangfei Wang, Preparation and properties of a dual-function cellulose nanofiber-based bionic biosensor for detecting silver ions and acetylcholinesterase[J], Journal of Hazardous Materials, 2020, 403, 123921-123930. (IF=9.038, 一区)[7]Hui He*, Xiaoyu Shi, Wenbo Chen, Rimei Chen, Chao Zhao, Shuangfei Wang*. Temperature/pH smart nanofibers with excellent biocompatibility and their dual interactions stimulus-responsive mechanism, Journal of Agricultural and Food Chemistry, 2020, 68, 3518-3527. (IF=4.192, 一区)[8]Hui He, Meixiao Cheng, Yuting Liang, Hongxiang Zhu*, Yupei Sun, Die Dong, Shuangfei Wang. Intelligent cellulose nanofibers with excellent biocompatibility enable sustained antibacterial and drug release via a pH-responsive mechanism, Journal of Agricultural and Food Chemistry, 2020, 68, 3518-3527. (IF=4.192, 一区)[9]Yuting Liang, Hongxiang Zhu, Lei Wang, Hui He*, Shuangfei Wang. Biocompatible smart cellulose nanofibres for sustained drug release via pH and temperature dual-responsive mechanism, Carbohydrate Polymers, 2020, 249, 116876-116886. (IF=7.182, 一区)[10]Qi Wu, Hui He, Hang Zhou, Fei Xue, Hongxiang Zhu *, Shile Zhou, Lei Wang, Shuangfei Wang. Multiple active sites cellulose-based adsorbent for the removal of low-level Cu(II), Pb(II) and Cr(VI) via multiple cooperative mechanisms, Carbohydrate Polymers, 2020, 233, 115860-115869. (IF=7.182, 一区)[11]Lei Wang, Hongxiang Zhu, Guotao Xu, Xudong Hou, Hui He?, Shuangfei Wang. A biocompatible cellulose-nanofiber-based multifunctional material for Fe3+ detection and drug delivery [J], Journal of Materials Chemistry C, 2020, 8, 11796-11804. (IF=7.059, 一区)[12]Lei Wang, Cunzhi Zhang, Hui He, Hongxiang Zhu*, Wei Guo, Shile Zhou, Shuangfei Wang, Joe R.Zhao, Jian Zhang*. Cellulose-based colorimetric sensorwith N, S sites for Ag+ detection, International Journal of Biological Macromolecules, 2020, 163, 593-602. (IF=5.162, 二区)[13]Hui He, Qin Lu, Huanhuan Huang, Fei Xue, Wenju Lin, Hang Zhou,Wei Wei. Biomass bagasse-based hyperbranched adsorbent for the complete removal of low-level Cr(VI), Cellulose, 2020, 27, 8121-8134. (IF=4.210, 二区)[14]何辉,周航,薛飞,伍琪,王双飞. 高氨基密度纤维素基固态胺吸附剂的制备及其性能研究, 中国造纸, 2020.08.2019[15]Shile Zhou, Hui He*, Wei Guo, Hongxiang Zhu*, Fei Xue, Meixiao Cheng, Jiehan Lin, Lei Wang, Shuangfei Wang. Structural design of a high sensitivity biomass cellulose-based colorimetric sensor and its in situ visual recognition mechanism for Cu2+[J], Carbohydrate Polymers, 2019, 219, 95-104. (IF=7.182, 一区)[16]Fei Xue, Hui He*, Hongxiang Zhu, Huanhuan Huang, Qi Wu, Shuangfei Wang, Structural design of a cellulose-based solid amine adsorbent for the complete removal and colorimetric detection of Cr(VI), Langmuir, 2019, 35, 12636-12646. (IF=3.557, 二区)[17]Hongxiang Zhu, Wei Guo, Jian Wang, Hui He*, Xudong Hou, Shile Zhou, Shuangfei Wang. Tuneable design of a pulp fibre based colorimetric sensor and its visual recognition mechanism for ppb levels of Ag+[J], Cellulose. 2019, 26, 9149-9161. (IF=4.210, 二区)[18]Wei Guo, Hui He?, Hongxiang Zhu?, Xudong Hou, Xingjuan Chen, Shile Zhou, Shuangfei Wang, Lingtao Huang, Jiehan Lin. Preparation and properties of a biomass cellulose-based colorimetric sensor for Ag+ and Cu2+[J], Industrial Crops & Products, 2019, 137, 410-418. (IF=4.244, 一区)[19]Meixiao Cheng, Hui He?, Hongxiang Zhu?, Wei Guo, Wenbo Chen, Fei Xue, Shile Zhou, Xingjuan Chen, Shuangfei Wang. Preparation and properties of pH-responsive reversible-wettability biomass cellulose-based material for controllable oil/water separation[J], Carbohydrate Polymers, 2019, 203, 246-255. (IF=7.182, 一区)[20]Xinyu Chai1, Hui He1, Hanhan Fan, Xiheng Kang, Xueping Song?. A hydrothermal-carbonization process for simultaneously production of sugars, graphene quantum dots, and porous carbon from sugarcane bagasse[J], Bioresource Technology, 2019, 282, 142-147.(共同一作)(IF=7.539, 一区)2018[21]Hui He*, Hanying Tang, Xingjuan Chen, Xudong Hou, Xiaochong Zhou, Hong Chen, Shanyan Wu, Shuangfei Wang*. Structure design of low-temperature regenerative hyperbranched polyamine adsorbent for CO2 capture[J], Langmuir, 2018, 34, 14169-14179. (IF=3.557, 二区)[22]Yunhua Li, Hongxiang Zhu?, Cunzhi Zhang, Meixiao Cheng, Hui He?. PEI-grafted magnetic cellulose for Cr(VI) removal from aqueous solution[J], Cellulose, 2018, 25, 4757-4769. (IF=4.210, 二区)[23]Wenbo Chen, Hui He*, Hongxiang Zhu*, Meixiao Cheng, Yunhua Li, Shuangfei Wang. Thermo-responsive cellulose-based material with switchable wettability for controllable oil/water separation[J], Polymers, 2018, 10, 592-607. (IF=3.426, 三区)2015-2017[24]Hui He, Linzhou Zhuang, Shuixia Chen*, Hucheng Liu, Qihan Li. Structure design of hyperbranched polyamine adsorbent for CO2 adsorption[J]. Green Chemistry. 2016, 18, 5859-5869. (IF=9.480, 一区)[25]Hui He, Linzhou Zhuang, Shuixia Chen*, Hucheng Liu, Qihan Li. A solid amine adsorbent prepared by molecularly imprinting and its CO2 adsorption properties[J]. Chemistry - An Asian Journal, 2016, 11, 3055-3061. (IF=3.998, 三区[26]Hui He, Xunan Hou, Beibei Ma, Linzhou Zhuang, Chuanfa Li, Shihong He, Shuixia Chen*. The oxidation of viscose fiber optimized by response surface methodology and its further amination with PEI for CO2 adsorption[J]. Cellulose. 2016, 23, 2539-2548. (IF=4.056, 二区)[27]Hui He, Yajie Hu, Shuixia Chen?, Linzhou Zhuang, Beibei Ma, Qinghua Wu. Preparation and properties of a hyperbranch-structured polyamine adsorbent for carbon dioxide capture[J]. Scientific Reports, 2017, 7, 3913-3922. (IF=3.998, 三区)[28]Hongxiang Zhu, Xuejuan Cao, Yucai He*, Qiaoping Kong, Hui He, Jin Wang. Removal of Cu2+ from aqueous solutions by the novel modified bagasse pulp cellulose: Kinetics, isotherm and mechanism[J], Carbohydrate Polymers, 2015, 129, 115-126. (IF=7.182, 一区)
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[1]何辉、程梅笑、朱红祥、李云华,一种pH响应性植物纤维功能材料及其制备方法和应用, ZL 3.2, 2020.08.11.[2]何辉、张存智、朱红祥、郭威、周晓聪,一种生物质纤维素基Ag+检测材料及其制备方法和应用,ZL 7.0, 2020.12.08.[3]何辉、李云华、谢鸿、王磊、朱红祥,磁响应氧化石墨烯植物纤维吸附材料及其制备方法和应用,ZL 1.3, 2020.12.18.[4]何辉、谢鸿、唐汉颖、李云华、戴大壬、陈文博、王磊,一种多重智能响应生物质基功能材料及其制备方法和应用,ZL 4.0, 2020.12.08.[5]何辉、程梅笑、朱红祥、梁渝廷、薛飞、周航,一种多重响应性智能纳米纤维功能材料及其制备方法和应用,ZL 1.1, 2021.04.13.[6]何辉、史霄宇、林杰涵、陈杏娟、黄凌涛、侯旭东,一种温敏/pH双响应智能纳米纤维材料及其制备方法和应用,ZL 1.2, 2021.03.26.[7]何辉、董蝶、周士乐、黄美兰、朱红祥一种功能检测纸及其制备方法和应用,3.3.[8]何辉、周航、王磊、全宗艳、陈智平、覃程荣、朱红祥,一种生物质智能纤维基两性型多功能吸附材料及其制备方法和应用,ZL 2.6, 2021.01.29.[9]何辉、陈日梅、史霄宇、林杰涵、赵超、陆勤、覃程荣、王双飞,一种近红外再生型智能纤维基吸附材料及其制备方法和应用,ZL 7.X, 2021.01.05.[10]何辉、赵超、陈日梅、王磊、卢苇、薛怡春,一种生物质基阶梯式双温度/pH/近红外刺激响应性智能纳米纤维及其制备方法和应用,ZL 2.X, 2021.02.19.[11]何辉、颜德鹏、朱红祥、王双飞、王磊、伍琪,一种超支化碱木素基两性型吸附材料及其制备方法和应用,5.8.[12]覃程荣、何辉、朱红祥、赵超、陈日梅、全宗艳、陈智平、王磊,一种快速高容量智能型纤维素基吸油材料及其制备方法和应用,ZL 6.4, 2021.03.26.[13]王磊、朱红祥、何辉,一种多金属离子快速定量比色检测功能纤维及其制备方法和应用,8.9.[14]何辉、王磊、朱红祥、周航、王双飞,一种仿生纤维功能材料及其制备方法和应用,4.0.[15]陈水挟,何辉. 一种端氨基超支化聚胺固态胺吸附材料及其制备方法和应用[P]. ZL 0.3, 2017.06.20.[16]陈水挟,何辉,李传发. 一种植物纤维基固态胺吸附材料及其制备方法和应用[P]. ZL 2.0, 2017.05.17.[17]陈水挟,何辉,刘虎城. 一种高氨基密度多孔PEI固态胺吸附材料及其制备方法和应用[P]. ZL 1.6, 2017.10.20.[18]陈水挟,王禹,何辉. 一种温敏性固态胺纤维材料及其制备方法和应用[P]. ZL 1.9, 2016.08.24.[19]陈水挟,罗时荷,何辉. 一种双层高氨基密度植物纤维基吸附材料及其制备方法和应用[P]. ZL 6.1, 2017.02.08.[20]朱红祥,夏南南,何辉,穆英啸,覃程荣,周敬红,宋雪萍,王双飞. 一种纤维素基吸水材料的制备方法[P]. ZL9.X, 2013.07.17.[21]潘怀聪,何辉,陈少双,陈水挟. 一种抗菌、耐紫外光照的PP/PE管材及其制备方法[P]. CN A, 2016.02.17.[22]巫莹柱,陈水挟,何辉,李辰,王晓梅. 一种含高密度氨基的微纳米纤维膜及其离心纺丝制备方法和应用[P]. CN A, 2015.12.09.
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教学获奖:[1]第四届中国“互联网+”大学生创新创业大赛全国铜奖项目指导教师。[2]第四届中国“互联网+”大学生创新创业大赛广西区金奖项目指导教师。[3]第五届中国“互联网+”大学生创新创业大赛广西区银奖项目指导教师。[4]第五届中国“互联网+”大学生创新创业大赛广西区铜奖项目指导教师。[5]2018届广西大学优秀本科论文指导老师。[6]2019届广西大学优秀本科论文指导老师。[7]2020届广西大学优秀本科论文指导老师。
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