科研情况: ◉ 主要研究方向: 1、天然气水合物资源综合利用 2、二氧化碳地质封存 3、流体相平衡计算 ◉ 科研奖励: 高等学校科学研究优秀成果奖(科学技术), 教育部, 自然科学, 省部二等奖, 2023(陈光进; 孙长宇; 张现仁; 李清平; 刘蓓; 白冬生; 袁青; 王晓辉; 孙漪霏; 杨兰英; 马庆兰; 杨新; 李楠; 钟瑾荣; 王云飞) ◉ 科研项目: 1、国家自然科学基金青年项目,海底水合物稳定带中CO2水合物稳定性与退化机制研究,2025/01-2027/12,30万元,在研,主持; 2、湖南省自然科学基金青年项目,CO2混合气置换开采天然气水合物的反应-传质动力学研究,2023/01-2025/12,5万元,在研,主持; 3、湖南省教育厅优秀青年项目,基于悬滴法对天然气水合物CO2-CH4置换过程的微观机理研究,2023/01-2025/12,6万元,已结题,主持; 4、北京拓新高科科技有限公司,基于冰介质的水合物法甲烷乙烷分离小试实验评价,2024/04-2025/04,12万元,在研,主持; 5、37000vip威尼斯科研启动项目,2022/01-2023/12,12万元,已结题,主持。 ◉ 科研论文: 1. Zhong JR, Tian Y, Sun YF, Wan L, Xie Y, Zhu YJ, Sun CY, Chen GJ, Zhang YF*. The dual action of N2 on morphology regulation and mass-transfer acceleration of CO2 hydrate film. Chinese Journal of Chemical Engineering 2024, 73: 120-129. 2. Zhong JR, Sun YF, Xie Y, Zhu YJ, Sun CY, Chen GJ, Zhang YF. CO2 Hydrate dissolution rates in unsaturated water quantified with laboratory experiments. Chemical Engineering Journal 2022, 430:133137. 3. Xie Y, Zheng T, Zhu YJ, Zhong JR, Feng JC, Sun CY, Chen GJ. Effects of H2/N2 on CO2 hydrate film growth: Morphology and microstructure. Chemical Engineering Journal 2022, 431:134004. 4. Sun YF, Cao BJ, Zhong JR, Kan JY, Li R, Niu JS, Chen HN, Chen GJ, Wu GZ, Sun CY, Chen DY. Gas production from unsealed hydrate-bearing sediments after reservoir reformation in a large-scale simulator. Fuel 2022, 308:121957. 5. Zeng XY, Wu G, Zhang S, Sun L, Sun C, Chen G, Zhong JR, Li P, Yang Z, Feng JC. 2022. In-situ Raman study on kinetics behaviors of hydrated bubble in thickening. Science of The Total Environment 2022, 814:152476. 6. Zhong JR, Sun YF, Xie Y, Sun CY, Chen GJ, Yan W. Effect of N2/H2 injection on CH4 hydrate decomposition. Chemical Engineering Journal 2020, 396:125266. 7. Xie Y, Zheng T, Zhong JR, Zhu YJ, Wang YF, Zhang Y, Li R, Yuan Q, Sun CY, Chen GJ. Experimental research on self-preservation effect of methane hydrate in porous sediments. Applied Energy 2020, 268:115008. 8. Zhong JR, Sun YF, Li WZ, Xie Y, Chen GJ, Sun CY, Yang LY, Qin HB, Pang WX, Li QP. Structural transition range of methane-ethane gas hydrates during decomposition below ice point. Applied Energy 2019, 250:873-81. 9. Zeng XY, Wu G, Zhong JR, Chen DY, Sun CY, Chen GJ. Three-scale in situ investigation on the film morphology and mass transfer channels during the thickening growth of hydrates on gas bubble. Crystal Growth & Design 2019, 19(6):3158-65. 10. Sun YF, Wang YF, Zhong JR, Li WZ, Li R, Cao BJ, Kan JY, Sun CY, Chen GJ. Gas hydrate exploitation using CO2/H2 mixture gas by semi-continuous injection-production mode. Applied Energy 2019, 240:215-25. 11. Sun YF, Zhong JR, Li R, Zhu T, Cao XY, Chen GJ, Wang XH, Yang LY, Sun CY. Natural gas hydrate exploitation by CO2/H2 continuous Injection-Production mode. Applied Energy 2018, 226:10-21. 12. Zhong JR, Chen LT, Liu TC, Zeng XY, Sun YF, Sun CY, Liu B, Chen GJ, Ripmeester JA. Sieving of hydrogen-containing gas mixtures with tetrahydrofuran hydrate. The Journal of Physical Chemistry C 2017, 121(50):27822-9. 13. Zeng XY, Zhong JR, Sun YF, Li SL, Chen GJ, Sun CY. Investigating the partial structure of the hydrate film formed at the gas/water interface by Raman spectra. Chemical Engineering Science 2017, 160:183-90. 14. Zhong JR, Zeng XY, Zhou FH, Ran QD, Sun CY, Zhong RQ, Yang LY, Chen GJ, Koh CA. Self-preservation and structural transition of gas hydrates during dissociation below the ice point: an in situ study using Raman spectroscopy. Scientific reports 2016, 6(1):1-3. |