主要研究项目
1.国家自然科学基金面上项目:
2019.01-2022.12,基于热-湿-气耦合效应的松散煤体氧化高温点形成机制研究(项目编号51874007),主研,结题。
2.国家自然科学基金面上项目:
2021.01-2024.12,煤矿综掘面含抑尘抑爆剂气液双动力射流细水雾抑爆与降尘机制(项目编号52074012),主研,结题。
3.重庆市自然科学基金项目:
2021.10-2024.09,基于协同效应的复合型建筑施工扬尘抑尘剂特性及作用机制研究(项目编号cstc2021jcyj-msxmX0998),主持,结题。
4.重庆市自然科学基金项目:
2022.08-2025.07,复杂条件下瓦斯煤尘爆炸机理及传播特性研究(项目编号CSTB2022NSCQ-MSX0335),主研,在研。
5.重庆市教育委员会项目:
2022.10-2025.09,基于羧甲基瓜尔胶的基建施工土壤尘抑制剂性能及作用机理研究(项目编号KJQN202201547),主持,在研。
6.重庆市教育委员会项目:
2021.09-2024.08,复杂管道系统中铝粉爆炸机制及传播特性研究(项目编号KJQN202101529),主研,结题。
7.企业研究项目:
2024.04-2024.06,井工煤矿喷雾降尘添加剂作用机理研究,主持,结题。
8.企业研究项目:
2024.07-2025.10,长宁公司QHSE管理现状对标评价分析,主研,在研。
9.企业研究项目:
2025.07-2027.07,融媒体时代下主流价值观传播技术路径研究,主研,在研。
10.本科生教改项目:
2021.09-2023.08,基于Sandwich教学法的安全法律法规基础教学体系构建(202139),主持,结题。
11.本科生教改项目:
2024.10-2026.09,基于深度学习的《安全法律法规基础》课程教学改革研究(202461),主持,在研。
12.研究所教改项目:
2021.06-2025.11,基于“共同成长型”导学关系的研究生培养模式构建(YJG2024y014),主持,在研。
代表性研究成果
[1]X.N. Wang, S.J. Yuan, X. Li, B.Y. Jiang, Synergistic effect of surfactant compounding on improving dust suppression in a coal mine in Erdos, China,Powder Technology, 344 (2019) 561-569.(SCI检索,TOP,IF=5.2)
[2]X.N. Wang, S.J. Yuan, B.Y. Jiang, Experimental investigation of the wetting ability of surfactants to coals dust based on physical chemistry characteristics of the different coal samples,Advanced Powder Technology,30 (2019) 1696-1708.(SCI检索,IF=5.2)
[3]X.N. Wang, S.J. Yuan, B.Y. Jiang,Wetting Process and Adsorption Mechanism of Surfactant Solutions on Coal Dust Surface,Journal of Chemistry,vol. 2019, Article ID 9085310, 9 pages, 2019.https://doi.org/10.1155/2019/9085310.(SCI检索,IF=3.0)
[4]X.N. Wang⁎, X. Li, J.N. Yang, Effect of different types of surfactants adsorption characteristics on the wettability of coking coal dust,Journal of Molecular Liquids, 2023, 370.(SCI检索,TOP,IF=6)
[5]X.N. Wang⁎, J.N. Yang, X. Li, Study on characteristics and microscopic mechanism of composite environment-friendly dust suppressant for urban construction site soil fugitive dust based on response surface methodology optimization,Environmental Science and Pollution Research, 2023, 2023.(SCI检索,IF=5.8)
[6]X.N. Wang, J.N. Yang, Y.J. Shi, Y. Lin, H.Y. Chen, X. Li⁎, Study on the mechanism of polymer inhibiting purplish soil fugitive dust at macro–micro scale in Southwest China,Journal of Molecular Liquids, 2024, 396.(SCI检索,TOP,IF=6)
[7]X.N. Wang, J.N. Yang, Y. Lin, Y.J. Shi, H.Y. Chen, X. Li⁎, Static-dynamic wetting characteristics and microscopic synergistic mechanism of compound surfactant on coal dust with different metamorphic degrees,Journal of Molecular Liquids, 2024,124443.(SCI检索,TOP,IF=6)
[8]X.N. Wang, H.Y. Chen, Y.J. Shi, Y. Lin, J.N. Yang, X. Li⁎, Development of an eco-friendly dust suppressant based on modified guar gum: Performance and mechanism analysis,Powder Technology, 2024, 119681.(SCI检索,TOP,IF=5.2)
[9] X.N. Wang, Y.J. Shi, Y. Hu, Y. Lin, H.Y. Chen, C. Y. Zhang, X. Li⁎, Preparation of eco-friendly dust suppressant by extracting biological enzyme from jack bean: Performance evaluation and mechanism exploration, International Journal of Biological Macromolecules, 305, 2025, 140580.(SCI检索,TOP,IF=6)
[10] X.N. Wang, Y. Lin, C. Y. Zhang, Y.J. Shi, D. Y. Luo, K. Chen, X. Li⁎, The influence mechanism of homo-tailed hetero-headed surfactants on the wettability of bituminous coal surface, Journal of Molecular Liquids, 422, 2025, 127138.(SCI检索,TOP,IF=6)
[11]王晓楠,李想,杨珺旎,一种粉尘加工区浓度测量装置, 2021-12-27,中国, ZL 2021 23321141.8.(实用新型专利)
[12]Xiaonan Wang, Junni Yang, Xiang Li, Compound solution for reducing dust concentration, preparation method and application, 2022-1-26, 2022/01217.(国际发明专利)
[13]Xiaonan Wang, Haoyu Chen, Xiang Li, Junni Yang, Yongjie Shi, Composite building soil dust inhibitor and preparation method thereof, 2023-6-22, F/PT/C/2023/8034. (国际发明专利)
[14]王晓楠.表面活性剂复配对煤尘润湿性能调控机制[M].徐州:中国矿业大学出版社, 2024, ISBN 978-7-5646-6570-8.
指导学生成果:
累计指导本科生25人、硕士研究生7人。指导的学生省部级及以上竞赛获奖10余项、获批国家级本科生科技训练计划1项、获批校级本科生科技训练计划3项、获批重庆市研究生科技创新项目2项、获批校级研究生科技创新项目4项、校级优秀本科学位论文1人、研究生国家奖学金1人、校级优秀研究生1人。其中,1人继续攻读高水平院校博士学位。