剪切流场中相间乳化与起泡耦合作用下界/表面膜形成与稳定的影响机制研究,国家自然科学基金,2022~2025,骨干。
(5)M-rGO/Bi2WO6光催化剂的制备及催化机理分析,大庆市科技局,2015~2017,
主持。
(6)铋系半导体光催化剂的制备、表征及催化性能,校基金,2014~2016,主持。
(7)油-水两相管输剪切流场中蜡沉积的作用机制研究,黑龙江省青年创新人才培养计划,2015~2018,骨干。
(8)中国化工集团,仲丁醇气相脱氢工业化试验,2014-2016,骨干。
(9)废油脂制备生物柴油的清洁生产技术,黑龙江省教育厅,2007-2010,骨干。
(10)黑龙江省基金,非均相催化废动植物油制备生物柴油的研究,2009-2011,骨干。(11)指导大学生创新创业项目,国家级,2016~2018,指导教师。
代表性论文
[1]Yanhua Gao, Wei Yang, Xinyao Shan, et al. Synthesis of “walnut‐like” BiOCl/Br solid solution photocatalyst by electrostatic self‐assembly method[J].International Journal of Energy Research, 2020, 44(3): 2226-2242.
[2]Yanhua Gao, Wenli Zhao, XX. g-C3N4 modified by hydroxyl group on the surface prepared by double salt enhanced the visible light photocatalytic activity[J]. Diamond and Related Materials, 2021, 116: 108425.
[3Yanhua Gao, Xinyao Shan, Wei Yang, et al. Structure regulation and photocatalytic activity enhancement of Bi2WO6 by “double-effect modification” mode[J]. International Journal of Energy Research, 2019, 43(13): 7364-7374.
[4]Yanhua Gao, Wenli Zhao, Dongfeng Zhang. Preparation of prismatic g-C3N4 by CTAB hydrothermal method and its degradation performance under visible light[J]. Diamond and Related Materials, 2022, 121:108787.
[5]Yanhua Gao, Wei Yang, Xinyao Shan, et al. Enhanced visible light photocatalytic activity of Cl‐Bi2WO6/g‐C3N4 composite photocatalyst[J].Canadian Journal of Chemical Engineering, 2021, 99(9): 2014-2023.
[6]Yanhua Gao, Xinyao Shan, Dongdong Song, et al. One-Step solvothermal synthesis of hollow Bi2WO6 photocatalyst[J]. Canadian Journal of Chemical Engineering, 2019, 97(9):2440-2446.
[7]Wen li Zhao,Yanhua Gao*,Dongfeng Zhang. Hydrothermal synthesis of spherical g-C3N4 and CdS composite photocatalyst with enhanced visible light photocatalytic activity[J]. Chemical Physics Letters, 2022, 787:139268.
[8]Wei Yang, Xinyao Shan, Ying Chen, Yanhua Gao*. Enhanced photocatalytic performance of C3N4 via doping with π-deficient conjugated pyridine ring and BiOCl composite heterogeneous materials[J]. Diamond and Related Materials, 2020, 108: 107926.
代表性著作
(1)《化工分离工程》,宋华,陈颖,高彦华著,高等教育出版社,在编,2023。
(2)《化工分离工程》,宋华,陈颖,高彦华著,哈尔滨工业大学出版社,2009。
(3)《石油化工产品概论》,张娇静,宋军,高彦华著,石油工业出版社,2011。
(4)《化工分离工程学习指导》,陈颖,高彦华著,东北石油大学校内教材,2009。
专利
(1)一种表征含蜡原油乳状液胶凝成核动力学过程的方法,发明专利,中国 ZL201910335508.X,排名第三。
(2)一种侧积夹层人造岩心的制备方法以及专用工具,发明专利,中国ZL201310627318.8,排名第五。
指导研究生情况:
目前指导研究生已顺利毕业,读研期间均获得国家一等奖学金荣誉,毕业后在厦门、河北等国企工作,其中一名研究生毕业后继续在大连理工大学读博深造,并获得国家一等奖学金。