姓名:杨仁春 职称:教授 部门:化学与环境工程学院 地址:芜湖市北京中路 邮编:241000 Email: yrclq@163.com | |
学术经历: 2017.09-至今, 化学与环境工程学院,教授(破格) 2013.11-2017.08, 化学与环境工程学院,副教授 2010.07-2013.10, 化学与环境工程学院,讲师
开设课程: 化学反应工程(本科)、反应器设计(本科)、现代合成技术(研究生)
研究方向: 新能源材料开发、环境污染治理、化工工艺开发
获奖情况: (一) 省级奖励 1. 2019年:安徽省科学技术奖(2018-2-R1),二等奖,排名1 2. 2019年:安徽省教学成果奖(2019-jxcgj816-4),二等奖,排名4 3. 2019年:安徽省教学成果奖(2019jxcgj259-5),二等奖,排名5 4. 2013年:安徽省教学成果奖(2013cgj0086-2),三等奖,排名2 5. 2013年:安徽省教坛新秀(2013jtxx044) ,排名1 (二) 校级奖励 1. 2020年: “优秀硕士学位论文”指导教师 2. 2019年: “教学名师” 3. 2019年: “优秀硕士学位论文”指导教师 4. 2016年: “鑫龙奖教金” 5. 2016年: “优秀共产党员” 6. 2015年: “先进个人” 7. 2014年: “教学优秀奖” 一等奖 8. 2013年: “青年教师基本功竞赛” 二等奖 9. 2013年: “青年教师职业规划大赛” 二等奖 10. 2013年: “青年教师论文奖” 特等奖 11. 2012年: “青年教师基本功竞赛” 三等奖 (三)指导学生获奖情况 1. 2020年: 优秀硕士学位论文(李瑶瑶) 2. 2019年:研究生国家奖学金(李瑶瑶) 3. 2019年: 优秀硕士学位论文(滕雪刚) 4. 2018年:第十一届全国大学生节能减排社会实践与科技竞赛(三等奖) 5. 2018年:第十一届全国大学生化工设计竞赛(二等奖) 6. 2017年:第十五届全国大学生挑战杯·安徽赛区(二等奖) 7. 2012年:第一届芜湖市大学生专利创新创业大赛(二等奖)
主持项目: (一)科研项目 1. 国家自然科学基金:反转结构/储氧体的氧空位结构与氧供给行为调变及其催化有机废水研究(51572004) 2. 国家自然科学基金:高能结构纳米粒子/氧化铝的封装构筑及其脱VOCs催化性能研究(51202003) 3. 安徽省教育厅学科拔尖人才项目:二氧化钛表面等离子效应调控及其太阳能转化性能研究(gxbjZD2021064) 4. 安徽省教育厅自然科学基金重大项目:基于氧空位调变的3DOM 过渡金属氧化物构筑及其催化有机废水研究(KJ2016SD06) 5. 安徽省教育厅自然科学基金重点项目:多级孔铝基复合材料的结构设计及其脱VOC 催化性能研究(KJ2012A036) 6. 国家科技基础条件平台子项目:无机材料投试检测分析与数据处理(KZ00005088) 7. 石油天然气精细化工教育部&自治区重点实验室开放基金:CH4-CO2重整制合成气多级孔镍基催化剂的构筑及其性能研究(XJDX0908-2011-02) 8. 煤气化及能源化工教育部重点实验室开放基金:催化重整制合成气镍铜双组份催化剂研究(2016KY11-048) 9. 校企合作项目:高频电阻焊铜线加工工艺技术改造(横向项目) 10. 杰出青年基金项目:催化剂工程(2016JQ01) 11. 中青年拔尖人才培养计划(2016BJRC002)
(二)教研项目 1. 安徽省省级教学团队项目:化学工程与工艺教学团队(2019jxtd064) 2. 安徽省省级教学重点项目:基于工程教育认证导向下的化工传递类实验课程教学改革研究(2016jyxm0089)
代表性论文: 2022年: [1] Hong Wang, Zhongying Liu, Yihai Zhou, Renchun Yang*, The electronegativity modulation of rutile TiO2 nanorods by phosphate and its photocatalytic hydrogen production performance, Materials Letters, 2022, 307, 131056. 2021年: [1] Zhongying Liu, Yihai Zhou, Liangjun Yang, Renchun Yang*, Green preparation of in-situ oxidized TiO2/Ti3C2 heterostructure for photocatalytic hydrogen production[J]. Advanced Powder Technology, 2021, 32, 4857–4861 2020年: [1] Hong Wang, Yaoyao Li, Zhongying Liu, Liu, Jiawang Liu, Renchun Yang*, Hydroxy acid-assisted synthesis of highly dispersed Ni-NiS on CdS as effective photocatalyst for hydrogen evolution[J]. Catalysis Letters, 2020, 10: 1–13. 2019年: [1] Chao Ren, Zhihua Zhang, Renchun Yang*. The construction of three-dimensionally ordered macroporous (Fe, Zn, Cu, Co)/LaMnO3 with controllable gelation rate and their catalytic combustion properties[J]. Journal of Porous Materials, 2019, 26(6): 1649–1656. [2] Chao Ren, Renchun Yang*, Yaoyao Li, et al. Modulating of facets-dependent oxygen vacancies on ceria and its catalytic oxidation performance [J]. Research on Chemical Intermediates, 2019, 45(5): 3019–3032. [3] Yaoyao Li, Hong Wang, Rongli Zhang, Renchun Yang*. Double redox couples manganese oxide nanorods with tunable oxygen defects and their catalytic combustion properties[J]. Journal of Nanoparticle Research, 2019, 21(7): 136. [4] Yaoyao Li, Renchun Yang*, Xingyang Li, et al. Cu7.2S4 nanosheets decorated on the {332} high index facets of Cu2O with controllable oxygen defects and enhanced photocatalytic activity[J]. Advanced Powder Technology, 2019, 30(10): 2363–2368. 2018年: [1] Renchun Yang*, Xuegang Teng, Xiaojia Lu, et al. Effect of interface contact between C and C3N4 on photocatalytic water splitting [J]. Catalysis Letters, 2018, 148(5): 1435–1444. 2017年: [1] Renchun Yang*, Chao Ren, Xuegang Teng, et al. Study of the surface oxygen vacancies evolvement on the single and bi-Components manganese oxide precursors and their catalytic performance [J]. Catalysis Letters, 2017, 147, 727–737. 2016年: [1] Renchun Yang*, Xiaojia Lu, Huan Zhang, et al. Glycol-assisted construction of three dimensionally ordered macroporous ZnO-Cu2O-TiO2 with enhanced photocatalytic properties [J]. Applied Surface Science, 2016, 362, 237–243. 2015年: [1] Renchun Yang*, Xiaojia Lu, Xiang Huang, et al. Bi-component Cu2O–CuCl composites with tunable oxygen vacancies and enhanced photocatalytic properties [J]. Applied Catalysis B: Environmental, 2015, 170, 225–232. [2] Renchun Yang*, Tingxian Tao, Yongming Dai, et al. Green synthesis of bi-component Mn3O4–MnO2 nanorods and enhanced catalytic properties [J]. Catalysis Communications, 2015, 60, 96–99. [3] Renchun Yang*, Xiaojia Lu, Zhihua Zhang, et al. Three-dimensionally ordered macroporous LaMnO3 with tunable oxygen vacancies via nitric acid–aided modulating and their catalytic combustion properties [J]. RSC Advances, 2015, 5, 98404–98411. [4] Renchun Yang*, Zhihua Zhang, Junsheng Wu, et al. Hydrotreating Performance of La-modified Ni/Al2O3 Catalysts Prepared by Hydrothermal Impregnation Method [J]. Kinetics and Catalysis, 2015, 56(2), 222–225. [5] Renchun Yang*, Zhihua Zhang, Yiming Ren, et al. Green synthesis of bi-component copper oxide composites and enhanced photocatalytic performance [J]. Materials Science and Technology, 2015, 31(1), 25–30. 2014年: [1] Renchun Yang*, Liangjun Yang, Tingxian Tao, et al. Contrastive study of structure and photocatalytic performance with three-dimensionally ordered macroporous CuO–TiO2 and CuO/TiO2 [J]. Applied Surface Science, 2014, 288, 363–368. [2] Renchun Yang*, Zhichun Wu, Dingxing Tang, et al. Synthesis of Cu2O crystals with negative surface curvature at various positions via Al3+ ions inducing [J]. Materials Letters, 2014, 117, 211–213. 2013年: [1] Renchun Yang*, Fengyun Ma, Tingxian Tao, et al. Zn2+-assisted synthesis of concave Cu2O crystals and enhanced photocatalytic properties. Catalysis Communications, 2013, 42, 109–112. [2] RenchunYang*, DingxingTang, Tingxian Tao, et al. One-step green synthesis of hierarchical hydrangea shaped Cu2O–CuO composite [J]. Materials Letters, 2013, 113: 156–158. 2012年: [1] Renchun Yang*, Dingxing Tang, Fengyun Ma, et al. One-Pot Low Temperature Synthesis of Monodisperse Silver Nanoparticles [J]. Journal of Nanoscience and Nanotechnology, 2012, 12, 7820–7823. [2] Renchun Yang*, Xiaogang Li, Junsheng Wu, et al. Effects of Lanthanum on the Structure and the Catalytic Performance of Ni/Al2O3 Catalysts for the Hydrotreating of Crude 2-Ethylhexanol [J]. International Journal of Chemical Reactor Engineering, 2012, 10, 1–14. 2010年: [1] Renchun Yang, JunshengWu, Xiaogang Li*, et al. Hydrotreating of crude 2-ethylhexanol over Ni/Al2O3 catalysts: Ni species dispersion-active sites correlation [J]. Applied Catalysis A: General, 2010, 383, 112–118. [2] Renchun Yang, Xiaogang Li*, Junsheng Wu, et al. The difference of hydrogenation performance between Ni-in-Al2O3 and Ni-on-Al2O3 for hydrotreating of crude 2-ethylhexanol [J]. Korean Journal of Chemical Engineering, 2010, 27, 55–61. 2009年: [1] Renchun Yang, Xiaogang Li*, Junsheng Wu, et al. Hydrotreating of crude 2-ethylhexanol over Ni/Al2O3 catalysts: Surface Ni species-catalytic activity correlation [J]. Applied Catalysis A: General, 2009, 368, 105–112. [2] Renchun Yang, Xiaogang Li*, Junsheng Wu, et al. Promotion effects of La and Ce on Ni/γ-Al2O3 catalysts in hydrotreating of crude 2-ethylhexanol [J]. Catalysis letter, 2009, 132, 275–280. [3] Renchun Yang, Xiaogang Li*, Junsheng Wu, et al. Promotion effects of copper and lanthanum oxides on nickel/gamma-alumina catalyst in the hydrotreating of crude 2-ethylhexanol [J]. Journal of Physical Chemistry C, 2009, 113, 17787–17794. |