
赵然
博士,副教授,硕士生导师,武汉市制冷协会青年委员会委员,教育部学位与研究生教育发展中心通讯评议专家,主要从事能源和环境催化材料、气体资源化利用和气体污染物控制、光催化和等离子体协同催化等方面的研究,主持包括湖北省自然科学基金、湖北省教育厅重大项目、国家重点实验室开放课题、企业委托等教学与科研项目25项,以第一作者或通讯作者发表SCI&EI学术论文24篇,授权发明专利3项。
学习与工作经历:
2011.6~至今英国上市公司官网365,讲师、副教授
2025.11~2026.10欧盟斯洛文尼亚国家化学所,国家公派留学
2007.9~2011.3华中科技大学能源与动力工程公司,获博士学位
2004.9~2007.6华中科技大学数学与统计公司,获硕士学位
2000.9~2004.7湖北师范大学数学与统计公司,获学士学位
研究兴趣:
资源再生与环境科学、功能性先进纺织纤维
实验室与联系方式:
理工楼06-223,邮箱:rzhao@wtu.edu.cn
主持的教学与科研项目:
l [25] 湖北省先进纤维材料综合型技术创新平台开放课题,新型CxNyOz纺织纤维的制备及其自清洁性能研究
l [24] 校企合作项目,洁净室空气化学污染物控制技术咨询项目
l [23] 国家留学基金委项目,欧盟斯洛文尼亚国家化学所
l [22] 湖北省自然科学基金,基于Mo-Zn基功能性纺织纤维的微电子行业洁净室无氮氧化物新技术研究
l [21] 省级大创项目,荧光碳量子点交通警示新技术的应用基础研究
l [20] 省级大创项目,可光降解PVA-co-PE塑料薄膜的应用研究
l [19] 大创项目,光触媒降解汽车尾气涂料新技术研究
l [18] 教研项目,新专业改革形势下建筑环境与能源应用专业的课程体系建设研究
l [17] 校基金,气体污染物吸附与催化先进材料的制备与应用
l [16] 湖北省教育厅重点项目,新型双功能MOFs/ACF复合光催化剂的制备及其联合脱硫脱硝的实验研究
l [15] 纺织新材料及其应用湖北省重点实验室开放课题,新型荧光碳量子点的制备及其在药物靶向、实时监测中的应用基础研究
l [14] 生态染整湖北省重点实验室开放课题,一种新型环保功能性纺织纤维材料的制备及其在燃煤烟气治理领域的应用基础研究
l [13] 校企合作项目,药厂车间洁净空气治理与污染物回用一体化技术与装备
l [12] 教研项目,以特色团队建设为导向的员工培养和团队建设研究
l [11] 湖北省老员工创新创业研究项目,车内空气品质在线智能控制创新创业项目
l [10] 大创项目,车内空调品质控制产品设计
l [9] 大创项目,速热轻量地暖产品设计
l [8] 湖北省教育厅青年人才项目,基于可见光催化深度改性ACF的新型氧燃烧技术烟气联合脱硫脱硝的实验研究
l [7] 教研项目,以学科平台为导向的员工培养和团队建设研究-以大气学科方向为例
l [6] 教研项目,以节能减排为导向的大气污染实验教学的研究与实践
l [5] 煤燃烧国家重点实验室开放基金, 高浓度 CO2 气氛下 SOOT 的生成机理研究
l [4] 校基金,纺织行业新型滤袋及其除尘性能研究
l [3] 国家自然科学基金面上项目,高钙硅酸盐矿物中含硫/氯/碱金属物相的迁移态变与多相反应机理,参与
l [2] 国家自然科学基金面上项目,光化学表面修饰ACFs协同脱除焚烧废气中HCl/SOx/NOx/Hg的机理研究,参与
l [1] 国家自然科学基金面上项目,有毒重金属Hg、As、Se高温联合脱除的机理研究,参与
代表性论文:
l [24] Ran Zhao*, Peixin Yang, Yuyang Xiao, Ningbo Li. Surface-plasmon-resonance-enhanced Bi/Bi2MoO6/NF composite catalysts for efficient photoelectrocatalytic nitrogen fixation. Journal of Applied Electrochemistry, 2026, 56:106
l [23] Ran Zhao*, Ningbo Li, Yahui Nie, Peixin Yang. Construction and performance study of ZIF-based foam for photocatalytic CO2 reduction and oil-water separation. Journal of Environmental Chemical Engineering, 2025, 13(2): 115813
l [22] Dan-dan Zhou, Ran Zhao*, Adaptive distributed unknown input observer for linear systems, Applied Mathematics and Computation. 2025, 486: 129027
l [21] Ningbo Li, Peixin Yang, Yuyang Xiao, Jiayao Liu, Ran Zhao*. Photoelectrocatalytic ammonia synthesis through a Bi2MoO6/CuO/CF composite photocatalyst. Journal of Alloys and Compounds. Journal of Alloys and Compounds, 2024, 1006: 176343
l [20] Dan-Dan Zhou, Ran Zhao*, Ming-Feng Ge. Expoential output consensus tracking for multi-agent systems with uncertain local output function via sampled communication. Journal of the Franklin Institute, 2023, 360: 277-300
l [19] Ran Zhao*, Yahui Nie, Junyi Liu, Yuxi Wang, Ningbo Li, Qin Cheng, Ming Xia. New insight into ZnO@ZIFs composite: an efficient photocatalyst with boosted light response ability and stability for CO2 reduction. Environmental Science and Pollution Research. 2023. S11356-023-28190-9
l [18] Yahui Nie, Junyi Liu, Ningbo Li, Yuxi Wang, Qin Cheng, Shanshan He, Qihao Guo, Ran Zhao*, Fei Pan. 1D/2D heterojunctions of SnS2@MoO3 as an efficient and robust catalyst for boosting the visible photoelectric nitrogen fixation ability. Fuel Processing Technology. 2023(250):107871
l [17] Ran Zhao*, Junyi Liu, Yahui Nie, Hanmei Wang. Bismuth oxide modified V2C MXene as a Schottky catalyst with enhanced photocatalytic oxidation for photo-denitration activities. Environmental Technology. 2022.2152736
l [16] Haoxuan Hu, Xianwei Fan, Xiaoli Gong, Ran Zhao*, Dong Wang*. Experimental study on plasma denitration by a bamboo based composite catalyst, Chemical Engineering and Processing - Process Intensification,
l [15] Xianwei Fan, Haoxuan Hu, Junqi Qin, Xi Cao, Ran Zhao*, Dong Wang*. Mechanism study on NO removal over the CQDs@MIL-100(Fe) composite photocatalyst, Environmental Technology & Innovation
l [14] Junqi Qin, Ran Zhao*, Min Xia. A facile approach to synthesis carbon quantum dots-doped P25 visible-light driven photocatalyst with improved NO removal performance, Atmospheric Pollution Research, 2020, 11:303-309
l [13] Hanmei Wang, Ran Zhao*, Haoxuan Hu, Xianwei Fan, Dajie Zhang, Dong Wang*. 0D/2D Heterojunctions of Ti3C2 MXene QDs/SiC as an efficient and robust photocatalyst for boosting the visible photocatalytic NO pollution removal ability. ACS Applied Materials & Interfaces. 2020, 12, 36, 40176-40185.
l [12] Hanmei Wang, Ran Zhao*, Junqi Qin, Haoxuan Hu, Xianwei Fan, Xi Cao, Dong Wang*. MIL-100(Fe)/Ti3C2 MXene as a schottky catalyst with enhanced photocatalytic oxidation for nitrogen fixation activities. ACS Applied Materials & Interfaces. 2019, 11, 47, 44249-44262.
l [11] Xiaoli Gong, Ran Zhao*, Mengqi Peng, Dong Wang. Experimental study on NO removal by surface activated bamboo charcoal. ATMOSPHERIC POLLUTION RESEARCH, 2019年, 10(2)474-479
l [10] Xiaoli Gong, Ran Zhao*, Junqi Qin, Hanmei Wang, Dong Wang*. Ultra-efficient removal of NO in a MOFs-NTP synergistic process at ambient temperature. Chemical Engineering Journal, 2019, 358:291-298.
l [9] Chongjiu Li, Ran Zhao*, Mengqi Peng, Xiaoli Gong, Min Xia, Ke Li, Zhuangbo Huang, Dongsheng Xia. Mechanism study on denitration by new PMS modified bamboo charcoal bifunctional photocatalyst, Chemical Engineering Journal, 2017, 316:544-552.
l [8] Mengqi Peng, Ran Zhao*, Min Xia, Chongjiu Li, Xiaoli Gong, Dong Wang, Dongsheng Xia. Study on the mechanism of NO removal by plasma-adsorption catalytic process, Fuel, 2017, 200:290-298,
l [7] Min Xia, Ran Zhao*, Xiaoli Gong, Chongjiu Li, Dong Wang, Dongsheng Xia. Denitration and adsorption mechanism of heat-treated bamboo charcoal, Journal of Environmental Chemical Engineering, 2017, 5(6):6194-6200
l [6] Chongjiu Li, Ran Zhao*, Mengqi Peng, Hao Liu, Gang Yu, Dongsheng Xia. Study on desulfurization and denitrification by modified activated carbon fibers with visible-light photocatalysis, Journal of Fuel Chemistry and Technology, 2015, 43(12):1516-1522
l [5] Ran Zhao*. Modeling of flame characteristics under O2/CO2 atmosphere by detailed chemical kinetics. Greenhouse Gases: Science and Technology, 2013, 3(4):281-290
l [4] Ran Zhao*, Hao Liu, Xiaojiao Zhong, Zijian Wang, Han Hu, Jianrong Qiu. Modeling of NOx conversion during combustion under high CO2 concentration using detailed chemical kinetics, Fuel Process Technology, 2011, 92:939-945
l [3] 夏旻,赵然*,龚小丽,秦俊琪,王寒梅,夏东升,王栋,竹炭负载氧空位型BiOI/BiOCl复合光催化剂脱硝机理. 燃料化学学报,2015,43(12):1516-1522
l [2] 李重玖,赵然*,朱德力,刘豪,余刚,夏东升.新型ACF可见光催化剂的制备与比较机理研究,英国上市公司官网365学报,2015,28(3):22-27
l [1] 王子剑,刘豪,赵然,钟孝蛟,胡翰,闫志强,邱建荣. 高浓度CO2气氛下煤焦异相还原NO的量子化学研究. 燃烧科学与技术,2012, 18(1):79-84
授权发明专利:
l 赵然, 李宁博, 聂亚辉, 陈雯, 杨馨婷, 齐芷怡. 一种用于高效二氧化碳还原及油水分离的ZIF基碳海绵的制备方法, 专利号:ZL202310554335.7
l 刘豪,闫志强,赵然,邱建荣. 一种含硫固体废弃物综合资源化利用方法,专利号CN200910062307.3
l 邱建荣,刘豪,刘子红,曾汉才,赵然,闫志强,谭增强. 一种燃煤烟气污染物联合脱除方法及其专用净化反应器,专利号CN200910062370.7,
获奖:
l 2024年,获聘英国上市公司官网365“校聘教授”
l 2024年,获聘全国研究生教育评估检测专家库专家,聘书编号XWZX24104950011
l 2023年,建行杯第16届全国老员工节能减排社会实践与科技竞赛,优秀奖
l 2023年,获聘全国教育部全国本科毕业论文(设计)抽检评审专家库专家,聘书编号XWZXBK2310495013394
l 2019年,获聘教育部学位与研究生教育发展中心通讯评议专家
l 2019年,获聘武汉市制冷学会青年委员会主任委员
l 2016年,获得创青春湖北省老员工创业大赛铜奖
l 2012年,获得第三届青年教师教学大赛优秀奖