张军

个人简介:张军,男,19878月生,湖北监利人,博士,副教授,硕士生导师曾荣获河南省教学标兵、河南省青年科学家、河南省高校科技创新人才和河南省优秀创新创业导师等称号。近年来主持和参与科研项目10余项,其中包括主持国家自然学基金青年基金项目、河南省青年科学家项目、河南省高校科技创新人才计划项目、河南科技攻关项目、教育部重点实验室开放基金项目等。发表SCI论文40余篇,获得中国轻工业联合会科学技术进步三等奖1 项,河南省教育厅科技成果奖一等奖2 项。指导学生获得国家级和省级奖竞赛奖50余项,获全国能源动力类专业百篇优秀毕设论文指导教师。

联系方式:zhangjun@zzuli.edu.cn

教育背景及工作经历:

2023.10-至今,郑州轻工业大学,新能源学院,副教授

2022.01-2023.09,郑州轻工业大学,能源与动力工程学院,副教授

2015.07-2021.12,郑州轻工业大学,能源与动力工程学院,讲师

2010.09-2015.06,重庆大学,动力工程学院,硕/

主要讲授课程:

本科生课程:《空气调节》《食品冷冻冷藏原理与技术》

研究生课程:《研究生论文写作指导》《太阳能制冷技术》《制冷与低温工程学科前沿》

研究领域:

[1] 能源与环境技术中的关键热物理问题

[2] CO2资源化利用

[3] 废弃资源(废水和废气)的能源转化与综合利用

[4] 高效光催化制氢装置系统

学术兼职:

Journal of Hazardous Materials》、《Chemical Engineering Journal》、《Fuel》和《Electrochimica Acta》等国际期刊的审稿人。

近年科研项目、代表性论著、发明专利、荣誉与获奖:

1. 代表性科研项目:

[1] 国家自然科学基金青年基金,项目号:51606172,经费21万,2017/01-2019/12,主持;

[2] 河南省青年科学家项目,项目号:225200810100,经费20万,2023/01-2025/12,主持;

[3] 河南省高校科技创新人才计划,项目号:24HASTIT024,经费30万,2024/01-2026/12,主持;

[4] 河南省科技攻关项目,项目号:222102320109,经费10万,2022/01-2023/12,主持;

[5] 低品位能源利用技术及系统教育部重点实验室开放基金,项目号:LLEUTS-202015,经费2万,2020.01-2021/12,主持;

[6] 2020年众创空间孵化项目,项目号:2020ZCKJ230,经费3万,2021/01-2022/12,主持;

[7] 2018郑州轻工业大学青年骨干教师项目:光催化燃料电池传感器对食品中偶

氮染料和重金属离子检测应用与研究,2018/01-2019/12,主持;

[8] 郑州轻工业大学第十二批教学改革与研究项目:提高学生对培养方案中知识和能力理解的评学体系研究,2018/03-2020/03,主持;

[9] “恒湿+光触媒净化”智能空调系统关键技术研究,横向课题NYY20210018,经费100万,2021/03-2022/12,主持;

[10] PEM电解制氢析氧催化剂筛选及浆料配方研究,横向课题SGTYHT/19-JS-217,经费24万,2022/09-2023/12,主持。

2. 代表性论文:

[1] Zhang Jun, Li Xiaotian, Zheng Jili, Du Miao, Wu Xuehong, Song Jun, Cheng Chuanxiao, Li Tao, Yang Wei. Non-thermal plasma-assisted ammonia production: A review [J]. Energy Conversion and Management. 2023, 293, 117482. (SCI一区, IF =10.5)

[2] Zhang Jun, Fang Ankang, Zheng Jili, Yang Penglin, Lv Shuai, Cheng Chuanxiao, Xu Peiyuan, Cao Shuang. Flowable capacitive cathode for efficiency carbon dioxide reduction in photoelectrochemical cell [J]. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects. 2023, 45 (3): 7294-7302.

[3] Zhang Jun, Li Xiaotian, Li Tiao, Zheng Jili, Yang Wei. Ruthenium Nanoparticles Incorporated Hollow Carbon Nanoshells for Improved Hydrogen Evolution Reaction [J]. International Journal of Hydrogen Energy. 2023.

[4] Zhang Jun, Li Tao, Zheng Jili, Xiao YanQiu, Li Xiaotian, Song Jun, Cheng Chuanxiao, Yang Wei, Chen Gang. Hole Transport layer in photoelectrochemical water splitting [J]. Solar RRL. 2023.

[5] Yang Wei, Sun Licheng, Bao Jingjing, Mo Zhengyu, Du Min, Li Jun, Zhang Jun*. Two-Phase Flow Model to Define the Mass Transport in a Bicarbonate Electrolyzer for a CO2 Reduction Reaction [J]. Industrial & Engineering Chemistry Research. 2023, 62 (40): 1646916480.

[6] Yang Wei, Sun Licheng, Bao Jingjing, Mo Zhengyu, Du Min, Xu Yong, Zhang Jun*. Multiphysics Modeling of Mass and Heat Transfer in a Thermo-Electrochemical Cell [J]. Industrial & Engineering Chemistry Research, 2023, 62(31): 12345-12355.

[7] Yang Wei, Bao Jingjing, Liu Hongtao, Zhang Jun*, Guo Lin. Low-grade heat to hydrogen: Current technologies, challenges and prospective [J]. Renewable and Sustainable Energy Reviews, 2023,188, 113842. (SCI一区, IF =16.7)

[8] Yang Wei, Sun Licheng, Bao Jingjing, Mo Zhengyu, Li Jun, Zhang Jun*. Mathematical Model of Multiphysics in the Hydrogen Evolution Reaction under Near-Neutral pH Conditions [J]. Industrial & Engineering Chemistry Research. 2023, 62 (34): 13666-13676.

[9] Zheng Jili, Zhang Jun, Xu Peiyuan, Li Jun, Yang Wei. Interface design for enhancing carbon dioxide electrolysis in a fluidized electrode of photoelectrochemical cell. Chemical Engineering Journal. 2022, 450 (15): 138158. (SCI一区, IF =15.1)

[10] Zou Yanan, Li Jun, Yu Yongchao, Zhang Jun, Fu Qian, Zhang Liang, Liao Qiang, Zhu Xun. Maximizing Fe-N exposure by tuning surface composition via twice acid treatment based on an ultrathin hollow nanocarbon structure for highly efficient oxygen reduction reaction. Chemical Engineering Journal. 2022, 432, 134362. (SCI一区, IF =15.1)

[11] Zhang Jun, Zheng Jili, Yang Wei*. Green supercapacitor assisted photocatalytic fuel cell system for sustainable hydrogen production; Chemical Engineering Journal. 2021,403, 126368. (SCI一区, IF =15.1)

[12] Zhang Jun, Yang Penglin, Zheng Jili*, Li Jun*, Lv Shuai, Jin Tingxiang, Zou Ya'nan, Xu Peiyuan, Cheng Chuanxiao, Zhang Yeqiang. Degradation of gaseous HCHO in a rotating photocatalytic fuel cell system with an absorption efficiency of up to 94%; Chemical Engineering Journal. 2020, 392, 123634. (SCI一区, IF =15.1)

[13] Zhang Jun, Lv Shuai, Zheng Jili,* Yang Penglin, Li Jun,* Wu Xuehong, Jin Tingxiang, Cheng Chuanxiao, Song Yawen, Li Lun. Self-CO2 Recycling Photocatalytic Fuel Cell for Enhancing Degradation of Pollutants and Production of Carbon-Neutral Fuel; ACS Sustainable Chemistry Engineering. 2020, 8, 11133-11140. (SCI一区, IF =7.6)

[14] Zhang Jun, Yang Penglin, Zheng Jili*, Li Jun*, Fu Qian, He Yongning, Zou Yanan, Wu Xuehong, Cheng Chuanxiao, Wang Fan. Enhanced carbon dioxide reduction in a thin-film rotating-disk photocatalytic reactor; Journal of CO2 Utilization. 2020, 37, 328-334. (SCI一区, IF =5.9)

[15] Zhang Jun, Jili Zheng, Wei Yang*. Co-degradation of ammonia nitrogen and 4-chlorophenol in a photoelectrochemical system by a tandem reaction of chlorine and hydroxyl radicals. Chemical Engineering Science 2020, 226, 115813. (SCI二区, IF =3.8)

[16] Zhang Jun, Li Longwei, Zheng Jili*, Yang Penglin, Wu Xuehong, Cheng Chuanxiao, Li Jun, Tian Yongjia, Wang Fan. Improved organic pollutants removal and simultaneous electricity production via integrating Fenton process and dual rotating disk photocatalytic fuel cell system using bamboo charcoal cathode; Chemical Engineering Journal. 2019, 361, 1198-1206. (SCI一区, IF =15.1)

[17] Zhang Jun, Yang Penglin, Zheng Jili*, Li Longwei, Wu Xuehong, Cheng Chuanxiao, Li Jun*, Wang Fan, Li Lun. Multi-cathode photocatalytic fuel cell with rotating bamboo charcoal electrodes for electricity production and simultaneous organic pollutants removal; International Journal of Hydrogen Energy. 2019, 44, 28803-28811. (SCI二区, IF =4.9)

[18] Zhang Jun, Li Jun, Ye Dingding, Zhu Xun, Liao Qiang, Zhang Biao. Tubular bamboo charcoal for anode in microbial fuel cells; Journal of Power Sources. 2014, 272, 277-282. (SCI一区, IF = 8.2)

[19] Zhang Jun, Li Jun, Ye Dingding, Zhu Xun, Liao Qiang, Zhang Biao. Enhanced performances of microbial fuel cells using surface-modified carbon cloth anodes: a comparative study; International Journal of Hydrogen Energy. 2014, 39, 19148-19155. (SCI 二区, IF = 4.9)

[20] Zheng Jili, Cheng Chuanxiao, Zhang Jun*, Wu Xuehong. Appropriate mechanical strength of carbon black-decorated loofah sponge as anode material in microbial fuel cells; International Journal of Hydrogen Energy. 2016, 41, 23156-23163. (SCI 二区, IF = 4.9)

[21] Liao Qiang, Zhang Jun, Li Jun, Ye Dingding, Zhu Xun, Zhang Biao. Increased performance of a tubular microbial fuel cell with a rotating carbon-brush anode; Biosensors and Bioelectronics; 2015, 63, 558-561. (SCI一区, IF = 10.2)

[22] Li Jun, Zhang Jun, Ye Dingding, Zhu Xun, Liao Qiang, Zheng Jili. Optimization of inner diameters of the tubular bamboo charcoal anode for a microbial fuel cell; International Journal of Hydrogen Energy. 2014, 39, 19242-19248. (SCI 二区, IF = 4.9)

[23] Liao Qiang, Zhang Jun, Li Jun, Ye Dingding, Zhu Xun, Zheng Jili, Zhang Biao. Electricity generation and COD removal of a microbial fuel cell (MFC) operated with an alkaline substrate; International Journal of Hydrogen Energy. 2014, 39, 19349-19354. (SCI 二区, IF = 4.9)

[24] Li Jun, Li Ming, Zhang Jun, Ye Dingding, Zhu Xun, Liao Qiang, A microbial fuel cell capable of converting gaseous toluene to electricity; Biochemical Engineering Journal. 2013, 75, 39-46. (SCI, IF = 3.4)

[25] Zhu Youjian, Patrycja Piotrowska, Philip J. van Eyk, Dan Boström, Wu Xuehong, Christoffer Boman, Markus Broström, Zhang Jun*, Chi Wai Kwong, Dingbiao Wang, Andrew J. Cole, Rocky de Nys, Francesco G. Gentili, Peter J. Ashman*. Fluidized bed co-gasification of algae and wood pellets: gas yields and bed agglomeration analysis. Energy Fuels. 2016, 30, 1800-1809. (SCI, IF = 3.4)

[26] He Yongning, Xing Linfen, Zhang Yeqiang, Zhang Jun, Cao Feng, Xing Ziwen. Development and experimental investigation of an oil-free twin-screw air compressor for fuel cell systems. Applied Thermal Engineering. 2018, 145, 755-762. (SCI 二区, IF = 4.7)

[27] Cheng, C. X.; Wang, F.; Tian, Y.; Wu, X.; Zheng, J.; Zhang, J.; Li, L.; Yang, P.; Zhao, J. Review and prospects of hydrate cold storage technology. Renewable and Sustainable Energy Reviews 2020, 117, 109492. SCI,一区,IF=10.56

[28] Cheng, C.X.; Tian, Y.-J.; Wang, F.; Wu, X.-H.; Zheng, J.-L.; Zhang, J.*; Li, L.-W.; Yang, P.-L., Experimental Study on the Morphology and Memory Effect of Methane Hydrate Reformation. Energy & Fuels 2019, 33 (4), 3439-3447. SCIIF=3.4

[29] ChengC. X.; WangF.; ZhangJ.; QiT.; XuP.; ZhengJ.; ZhaoJ.; ZhangH.; XiaoB.; LiL.; YangP.; LvS. GasLiquidSolid Migration Characteristics of Gas Hydrate Sediments in Depressurization Combined with Thermal Stimulation Dissociation. ACS Omega 2019417547-17555.SCI

[30] ChengC. X.WangF.ZhangJ.QiT.JinT.ZhaoJ.ZhengJ.LiL.LiL.YangP.et al. Cyclic Formation Stability of 1112-Tetrafluoroethane Hydrate in Different SDS Solution Systems and Dissociation Characteristics Using Thermal Stimulation Combined with Depressurization. ACS Omega 2019411397-11407.SCI

[31] 张军,李俊,叶丁丁,朱恂,廖强. 阳极电极电解处理对燃料电池性能影响,工程热物理学报,2014,356):1206-1209.EI收录)

3. 代表性专利:

[1]  张军,郑季历,程传晓, 吴学红, 李龙威, 杨朋林, 田永嘉, 王凡. 一种基于光催化检测甲醛气体浓度的装置[P]. 201810229321.7, 2023.09.01.

[2] 李俊,张军,叶丁丁,朱恂,廖强,陈蓉,王永忠微生物燃料电池阳极表面修饰活性基团的方法[P],发明专利,授权时间: 2015.04,专利号: ZL 201310080323.1.

[3] 吴学红张军王燕令丁昌杨雅浓陆刘记王于曹一种交叉直流式露点间接蒸发式冷却器[P], 发明专利,授权时间: 2018.01,专利号: ZL 201610279736.6.

[4] 张军, 程传晓, 吴学红, 郑季历, 李龙威, 杨朋林, 田永嘉, 王凡一种高效光触媒去除甲醛气体的装置[P]. 201810228828.0, 2018.09.21.

[5] 张军, 程传晓, 吴学红, 郑季历, 李俊丰, 王耿华, 李龙威, 杨朋林, 田永嘉,王凡基于光催化检测甲醛气体浓度的装置[P]. 201820377355.6, 2018.09.25.

[6] 张军, 程传晓, 吴学红, 郑季历, 李龙威, 杨朋林, 田永嘉, 王凡, 潘喜宇, 吴宇航, 李俊丰, 王耿华高效光触媒去除甲醛气体的装置[P]. 201820376641.0, 2018.11.16.

[7] 张军; 徐强; 李俊丰; 郑季历; 张雷; 杨朋林; 李晓添; 吕帅; 胡亚峰; 一种加 速室内甲醛释放和降解的装置[P], 2020-3-17, 中国, ZL 201920972203.5.

[8] 郑季历; 张雷; 徐强; 张军; 程传晓; 王耿华; 杨淏文; 古向杰; 一种集成于空调室内机的空气加湿净化装置[P], 2020-3-17, 中国, ZL 201920972204.X.

4. 代表性荣誉与获奖:

[1] 2023202220212020年河南省创新创业优秀指导教师;

[2] 2022年全国能源动力类专业百篇优秀毕设论文指导教师;

[3] 2020年郑州轻工业大学优秀硕士学位论文指导老师;

[4] 2020年郑州轻工业大学本科优秀创新创业毕业设计指导老师;

[5] 2019年获河南省教育系统2019年度教学技能竞赛一等奖;

[6] 2019年获河南省教学标兵;

[7] 2018年郑州轻工业大学青年骨干教师;

[8] 2018-2020年度郑州轻工业大学优秀教师;

[9] 2023.8 指导学生参加河南省“互联网+”大学生创新创业大赛, 河南省一等奖;

[10] 2023.8 指导学生参加河南省“互联网+”大学生创新创业大赛, 河南省二等奖;

[11] 2023.12指导学生参加全国“挑战杯”大学生课外学术科技作品竞赛,全国三等奖;

[12] 2023.9 指导学生参加河南省“挑战杯”大学生课外学术科技作品竞赛, 河南省特等奖;

[13] 2023.8 指导学生参加第十六届全国大学生节能减排社会实践与科技竞赛, 全国二等奖;

[14] 2023.8 指导学生参加第九届能源经济学术创意大赛,全国二等奖;

[15] 2022.8 指导学生参加河南省“互联网+”大学生创新创业大赛, 河南省二等奖;

[16] 2022.9 指导学生参加河南省“挑战杯”大学生创业计划竞赛,河南省二等奖;

[17] 2021.8 指导学生参加河南省“互联网+”大学生创新创业大赛, 河南省一等奖;

[18] 2021.8 指导学生参加第十四届全国大学生节能减排社会实践与科技竞赛, 全国二等奖;

[19] 2021.8 指导学生参加第十四届全国大学生节能减排社会实践与科技竞赛, 全国三等奖;

[20] 2020.12 指导学生参加河南省“挑战杯”大学生创业计划竞赛,全国铜奖;

[21] 2020.9 指导学生参加2020年创青春全国大学生创业大赛, 河南省特等奖;

[22] 2020.8 指导学生参加赛迪环保杯第十三届全国大学生节能减排社会实践与科技竞赛, 全国二等奖;

[23] 2020.8 指导学生参加赛迪环保杯第十三届全国大学生节能减排社会实践与科技竞赛, 全国三等奖;

[24] 2020.8 指导学生参加河南省“互联网+”大学生创新创业大赛暨第六届中国“互联网+”大学生创新创业大赛, 河南省三等奖;

[25] 2019.8 指导学生参加第二届中国可再生能源学会大学生优秀科技作品竞赛, 全国一等奖;

[26] 2019.8 指导学生参加首钢京唐杯第十二届全国大学生节能减排社会实践与科技竞赛, 全国三等奖;

[27] 2019.8 指导学生参加河南省“互联网+”大学生创新创业大赛暨第五届中国“互联网+”大学生创新创业大赛, 河南省二等奖;

[28] 2019.6 指导学生参加第十四届“挑战杯”河南省大学生课外学术科技作品竞赛, 河南省二等奖;

[29] 2018.11 指导学生参加河南省第16届大学生科技文化艺术节, 河南省一等奖;

[30] 2018.8 指导学生参加第十一届“东风汽车”全国大学生节能减排, 全国三等奖。