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扬州大学化学化工学院导师教师师资介绍简介-张淮浩教授简介

本站小编 Free考研考试/2021-03-06




张淮浩,教授,博导
地址:扬州市四望亭180号扬州大学化学化工学院
邮编: 225002
电话:**
E-mail: hhzhang@yzu.edu.cn,huaihaozhang@163.com

个人学习及工作经历
1994-1998: 中国石油大学(华东),化工工艺,本科
2001-2006: 中国石油大学(北京),化学工程与技术,博士
2013-2017: 博士后,化学学科(博士后流动站)
2013-2014: 访问****(国家):加拿大萨斯喀彻温大学生物与化工学院;
2006-至今: 扬州大学,化学化工学院
研究方向及科研项目
研究方向:电化学储能,油田化学
科研项目:
1、主持:国家自然科学基金:前驱体中硫对超级电容器活性炭电极电化学性能的影响规律研究(**)。
2、主持:中国博士后国家科学基金(2014M551668):超声强化热质传递对超高压电极箔蚀孔形貌及分布的影响。
3、主持:“江苏省博士后科研资助计划”: 超高压电极箔腐蚀过程关键技术研究(编号**C)
4、主持:污油脱水新型破乳剂与絮凝剂配方研制及应用(20**2)。中国石油天然气股份有限公司玉门油田分公司(钻采工程研究院)。2016
5、主持:纳米颗粒增强凝胶体系强度及稳定性机理研究,甲方:中石化胜利油田石油工程技术研究院,2017
6、主持:基于超分子缔合交联作用提高凝胶泡沫稳定性及强度研究,甲方:中石化胜利油田石油工程技术研究院,2018-2019,在研中。
获奖情况
1.省博士集聚人才:2013年度江苏“博士集聚计划”资助,江苏省人力资源和社会保障厅;
2.扬州市人才:扬州绿扬金凤计划-优秀博士后,2013;
3.扬州市人才:扬州市 “秦邮人才集聚计划”优秀博士人才,2013;
4.扬州大学“校优秀青年骨干教师”,2016
5.2009、2010连续两年获校“最受学生欢迎教师奖”。
学术兼职
1. 中国化学会会员
2.《材料导报》特约审稿人
3. Chemical Engineering Journal、Electrochimica Acta、Journal of Alloys and Compounds等SCI刊物审稿人
发表论文选列
[1] Huaihao Zhang?, Jinfu Chen, Shaohui Guo. Preparation of natural gas adsorbents from high-sulfur petroleum coke. Fuel, 2008, 87(3): 304–311
[2] Huaihao Zhang?, Yaqiong Wang?, Changwei Liu, Haitao Jiang. Influence of Surfactant CTAB on the electrochemical performance of manganese dioxide used as supercapacitor electrode material. Journal of Alloys and Compounds. 2012, 517: 1-8 IF=2.390(2012)SCI二区
[3] Huaihao Zhang*, Yaqiong Wang*, Chengyin Wang. Influence of surfactant on the capacitive performance of manganese dioxide prepared at different temperatures. Energy conversion & Management, 2013, 74: 286-292.
[4] Huaihao Zhang*, Yuanyuan Jiang?, Jiangna Gu, Jing Zhao, Xiaoxing Zhang, Chengyin Wang. Effect of organic sulfur compounds in the precursor on the capacitance performance of prepared activated carbon. Industrial & Engineering Chemistry Research. 2013, 52 (45): 15801-15807.
[5] Huaihao Zhang*, Jiangna Gu*, Yuanyuan Jiang, Yaqiong Wang, Jing Zhao, Xiaoxing Zhang, Chengyin Wang. Calcination removing soft template cetyl trimethyl ammonium bromide and its effects on capacitance performance of supercapacitor electrode MnO2. Energy conversion & Management, 2014, 86: 605-613.
[6] Huaihao Zhang*, Yuanyuan Jiang*, Yongfeng Hu, Aimee Maclennan, Hui Wang, Chengyin Wang Effect of Pyrite in Precursor on Capacitance Behavior of Prepared Activated Carbon. Ind. Eng. Chem. Res., 2014, 53 (24): 10125–10132.
[7] Huaihao Zhang*, Jiangna Gu*, Jie Tong, Chi Ma, Jing Zhao, Xiaoxing Zhang, Chengyin Wang. Poly(ethylene oxide)-poly(propylene oxide)-poly(ethyl oxide) enhancing capacitance behavior of composite electrode material poly(o-phenylenediamine)/manganese dioxide for supercapacitor. Energy conversion & Management, 2015, 91, 120-131.
[8] Huai-Hao Zhang*, Chi Ma, Jie Tong, Yong-Feng Hu, Jing Zhao, Bin Hu, Chen-Yin Wang. Effect of potassium sulfate in mineral precursor on capacitance behavior of as-prepared activated carbon. Fuel Processing Technology, 2016, 142: 235-241.
[9] Huaihao Zhang*, Jiangna Gu, Jie Tong, Yongfeng Hu, Bing Guan, Bin Hu, Jing Zhao, Chengyin Wang. Hierarchical porous MnO2/CeO2 with high performance for supercapacitor electrodes. Chemical Engineering Journal, 2016, 286: 139-149.
[10] Huaihao Zhang *, Bing Guan, Jiangna Gu, Yu Li, Chi Ma, Jing Zhao, Tianyi Wang and Changjing Cheng*. One-step synthesis of nickel cobalt sulphides particles: tuning the composition for high performance supercapacitors, RSC Advances,2016,6, 58916-58924.
[11] Bing Guan, Jie Tong, Huaihao Zhang*, Chi Ma, Bin Hu, Jing Zhao Changjing Cheng*. Sodium Dodecylbenzene Sulfonate-Assisted Synthesis of Carbon Cloth Based Polyaniline Flexible Material for Supercapacitor. RSC Advances, 2016, 6, 67271-67280.
[12] Bin Hua, Yanzi Suna, Bing Guana, Jing Zhaoa, Huaihao Zhang*a, Deqiu Zhub, Kunsong Mab, Changjing Cheng *c. Ultrasonic effect on etching tunnel morphology and distribution of aluminum foil, Applied Surface Science, 2017, 392, 375-383.
[13] Bing Guan, Yu Li, Biyue Yin, Dawei Wang, Huaihao Zhang*, and Changjing Cheng *. Synthesis of hierarchical NiS microflowers for high performance asymmertric supercapacitor, Chemical Engineering Journal, 2017, 308,1165-1173. 高被引
[14] Jing Zhao, Bing Guan, Bin Hu, Zongying Xu, Dawei Wang, Huaihao Zhang*. Vulcanizing time controlled synthesis of NiS microflowers and its application in asymmetric supercapacitors. Electrochimica Acta, 2017, 230: 428-437.
[15] Yu Li, Bing Guan, Aimee Maclennan, Yongfeng Hu, Dandan Li, Jing Zhao, Yaqiong Wang, Huaihao Zhang*. Porous waxberry-like MnO2/La2O3 microspheres for high performance asymmetric supercapacitor. Electrochimica Acta, 2017, 241, 395-405.
[16] Yu Li, Zongying Xu, Dawei Wang, Jing Zhao, Huaihao Zhang*. Snowflake-like core-shell α-MnO2@δ-MnO2 for high performance asymmetric supercapacitor. Electrochimica Acta, 2017, 251: 344-354
[17] Dandan Li, Yu Li, Zongying Xu, Dawei Wang, Tianpeng Wang, Jing Zhao, Huaihao Zhang*. Core/shell Ni-P@Ni-Co composite with micro/nano-structure for supercapacitor. Journal of Materials Science,2018, 53(5):3647-3660.
[18] Dawei Wang, Bing Guan, Yu Li, Dandan Li, Zongying Xu, Yongfeng Hu, Yaqiong Wang, Huaihao Zhang*. Morphology-controlled synthesis of hierarchical mesoporous α-Ni(OH)2 microspheres for high-performance asymmetric supercapacitors, Journal of Alloys and Compounds. 2018, 737: 238-247.
[19] Zongying Xu, Yu Li, Dandan Li, Dawei Wang, Jing Zhao*, Zhifeng Wang, Mohammad N. Banis, Yongfeng Hu, Huaihao Zhang*. N-enriched multilayered porous carbon derived from natural casings for high-performance supercapacitors. Applied Surface Science, 2018, 444: 661-671.
[20] Jing Zhao a,*, Yu Li a, Zongyin Xu a, Dawei Wang a, Chaolei Ban b, Huaihao Zhang a,*. Unique porous Mn2O3/C cube decorated by Co3O4 nanoparticle:Low-cost and high-performance electrode materials for asymmetric supercapacitors. Electrochimica Acta, 2018, 289: 72-81.
授权专利:
[1] 张淮浩,胡斌等. 一种基于超声强化热质传递提高高压箔容量的装置. ZL9.6。
[2] 张淮浩,李丹丹等. 利用高硫石油焦制备富硫活性炭的方法. ZL5.1
[3] 张淮浩,尹必跃等. 一种高含渣污油的处理工艺. ZL3.X
[4] 张淮浩,胡斌等. 一种高介电常数化成铝箔的制备方法. ZL4.7
[5] 张淮浩,尹必跃等.一种高含渣含水污油的处理工艺. ZL1.1
[6] 张淮浩,王天鹏等. 超声-磁场联合效应强化传热提高化成箔性能的装置. ZL9.5
[7] 张淮浩,王天鹏等. 超声-磁耦合控制离子传递提高电极箔性能的腐蚀装置. ZL2.9


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