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个人简介

教育背景 (1)2008/09-2012/06,中国矿业大学,安全工程,学士 (2)2012/09-2017/06,中国矿业大学,安全科学与工程,博士 代表性成果 科研/教学项目:承担国家级项目1项,省部级项目2项,代表性项目如下: (1)国家自然科学基金项目,51804185,2019/01-2021/12,主持 (2)山东省自然基金项目,ZR2018BEE003, 2018/01-2020/12,主持 (3)山东省重点研发计划项目,2019GSF111060,2019/08-2021/07,主持 科研/教学获奖:获省部级科技奖励3项,代表性获奖如下: (1)防治煤炭自燃的绿色高效防灭火材料的研发与工程应用,中国煤炭工业协会科学技术一等奖,2018 (2)基于煤矿火区特征的防灭火材料体系及工程实践研究 ,中国煤炭工业协会科学技术一等奖,2019 (3)含瓦斯煤岩裂隙漏风氧化致灾机制及浆泡材料防控技术,中国职业安全健康协会, 科技进步二等奖,2021-03 代表性论著:累计发表SCI论文30余篇,出版专著1部,代表性论著如下: 亓冠圣. 煤热解与阴燃的动力学反应机理[M]. 延边大学出版社,2019,北京. 其他成果:授权专利10余项,代表性发明专利如下: (1)一种煤层高压热液阻化方法,2019.10.29,中国, 中华人民共和国国家知识产权局, 201810505188.3,发明专利 (2)用于井下防灭火/降温的液态CO2实时制备系统及使用方法,2020.05.15,中国, 中华人民共和国国家知识产权局, 201810505273.X,发明专利 (3)用于采空区煤自燃防治的高孔隙度泡沫体及其制备方法,2021.07.30,中国, 中华人民共和国国家知识产权局, 201910219596.7,发明专利 (4)一种矿用液态CO2地面直注系统与方法,2019.11.22,中国, 中华人民共和国国家知识产权局, 201810505189.8,发明专利 (5)对矿井中硫化氢和粉尘同时治理的装置及方法,2019.03.01,中国, 中华人民共和国国家知识产权局, 201710767394.7,发明专利

研究领域

(1)地下空间火灾防治 (2)防灭火新材料研发 (3)碳捕集、利用与封存

近期论文

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(1)Yuan Y, Lu W, Cheng W M, Qi G S*, Hu X M, Su H, Wang M J, Zhang M Y, Liang Y T. Method for rapid mineralization of CO2 with carbide slag in the constant-pressure and continuous-feed way and its reaction heat [J]. Powder Technology, 2022, 398, 117148. (2)Zhang Q, Lu W, Wu M Y, Qi G S*, He Z L, Li J L. Preparation and properties of self-assembled gels based on electrostatic interactions: Applications for N2/CO2 adsorption and inhibition [J]. Fuel, 2021, 302, 121053. (3)Lu W, Zhang X D, Yuan Y, Qi G S*, Hu X M, Li J L, Liang Y T, Guo B L. Study on the characteristics and mechanism of a new type of antioxidant gel foam for coal spontaneous combustion prevention [J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2021, 628, 127254. (4)Zhang Q, Lu W, Wu M Y, Qi G S*. Application of amine-modified porous materials for CO2 adsorption in mine confined spaces [J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2021, 629, 127483. (5)Lu W, Guo B L, Qi G S*, Yang W Y. Thermal Decomposition Model and Its Reaction Kinetic Parameters for Coal Smoldering with the Use of TG Tests in Oxygen-depleted Air [J]. Combustion Science and Technology, 2021, 193, 1154-1172. (6)Wu L, Qi G S*, Lu W, He Z L, Li J L, Li J L, He M. Study on Preparation and Performance of Calcium Carbide Slag Foam for Coal Mine Disaster Reduction and CO2 Storage [J]. Colloids and Surfaces A, 2020, 606, 125322. (7)Lu W, Guo B L, Qi G S*, Cheng W M, Yang W Y. Experimental study on the effect of preinhibition temperature on the spontaneous combustion of coal based on an MgCl2 solution [J]. Fuel, 2020, 265, 117032. (8)Lu W, Hu H, Qi G S*. Effect of Pipe Diameter and Inlet Parameters on Liquid CO2 Flow in Transportation by Pipeline with Large Height Difference [J]. Processes, 2019, 7, 756. (9)Qi G S*, Lu W, Qi X Y, Zhong X X, Cheng W M, Liu F M. Differences in smoldering characteristics of coal piles with different smoldering propagation directions [J]. Fire Safety Journal, 2018, 102, 77-82. (10)Qi G S*, Wang D M, Zheng K M, Tang Y, Lu X X, Zhong X X. Smoldering combustion of coal under forced air flow: experimental investigation [J]. Journal of Fire Sciences, 2016, 34, 267-288. (11)Qi G S*, Wang D M, Zheng K M, Xu J, Qi X Y, Zhong X X. Kinetics characteristics of coal low-temperature oxidation in oxygen-depleted air [J]. Journal of Loss Prevention in the Process Industries, 2015, 35, 224-231. (12)Qi G S*, Wang D M, Chen Y, Xin H H, Qi X Y, Zhong X X. The application of kinetics based simulation method in thermal risk prediction of coal [J]. Journal of Loss Prevention in the Process Industries, 2014, 29, 22-29.

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