论文著作:
[1] Chengxiang Li, Yizhou Cui, Linxiao Zhai, Xiaogang Shi, Shuyu Liu, Jinsen Gao, Xingying Lan, Investigation into drag coefficient for sub-millimeter bubbles in gas-liquid bubbly flow: Experiments and CFD simulations, Chemical Engineering Journal, 2023, 478: 147236
[2] Yunpeng Zhao, Huanzhi Liu, Xiaogang Shi, Xingying Lan, Jinsen Gao, Wenheng Jing, Weihong Xing, Simulation analysis of oil droplet-catalyst collision, heat transfer and vaporization in residue fluidized catalytic cracking, Chemical Engineering Journal, 2023, 474: 145871
[3] Chengxiang Li, Yizhou Cui, Xiaogang Shi, Jinsen Gao, Xingying Lan, CFD simulation of mass transfer in bubble columns: Detailed study of mass transfer models, Chemical Engineering Science 2022, 264, 118173.
[4] Yizhou Cui, Chengxiang Li, Wanli Zhang, Xiaoqi Ning, Xiaogang Shi, Jinsen Gao, Xingying Lan, A deep learning-based image processing method for bubble detection, segmentation, and shape reconstruction in high gas holdup sub-millimeter bubbly flows. Chemical Engineering Journal 2022, 449, 137859.
[5] Chengxiang Li, Yizhou Cui, Xiaogang Shi, Jinsen Gao, Xingying Lan, Numerical simulation on the terminal rise velocity and mass transfer rate of single sub-millimeter bubbles. Chemical Engineering Science 2021, 246, 116963.
[6] Mengxuan Zhang, Yunpeng Zhao, Mingzhu Lv, Xingying Lan, Xiaogang Shi, Jinsen Gao, A hybrid safety monitoring framework for industrial FCC disengager coking rate based on FPM, CFD, and ML, Process Safety and Environmental Protection 2023, 175,17.
[7] Mengxuan Zhang, Daofan Cao, Xingying Lan, Xiaogang Shi, Jinsen Gao, An Ensemble-Learning Approach To Predict the Coke Yield of Commercial FCC Unit. Industrial & Engineering Chemistry Research 2022, 61, 8422.
[8] Min Wang, Xingying Lan, Chengxiu Wang, Jinsen Gao, Aibing Yu, Shibo Kuang, Numerical Simulation of the Pilot-Scale High-Density Circulating Fluidized Bed Riser. Industrial & Engineering Chemistry Research 2021, 60 (7), 3184-3197.
[9] Shaoqu Xie, Wanli Zhang, Xingying Lan, Hongfei Lin, CO2 Reduction to Methanol in the Liquid Phase: A Review. ChemSusChem 2020, 13 (23), 6141-6159.
[10] Wu Su, Xiaogang Shi, Yingya Wu, Jinsen Gao, Xingying Lan, Simulation on the effect of particle on flow hydrodynamics in a slurry bed. Powder Technology 2020, 361, 1006-1020.
代表性专利:
[1] Integrated method and integrated device for heavy oil contact lightening and coke gasification, US 11230678B2, 2022
[2] Coupling reaction apparatus for heavy oil pyrolysis-gasification, US 11230671B2, 2022.
[3] Integrated method and apparatus for catalytic cracking of heavy oil and production of syngas, US 11230674B2, 2022
[6] 重油裂解耦合焦炭催化气化的一体化方法及装置,中国专利, CN112538376A
[7] 一种重油轻质化/合成气联产的加工方法和装置,中国专利, CN112538375A
[8] 一种基于距离约束算法的气固鼓泡床内三维气泡识别方法, 中国专利, CN109948694A
[9] 一种基于Delaunay三角剖分的气泡体积测量方法, 中国专利, CN109813266A
[10] 一种预测重油催化裂化沉降器结焦量的方法, 中国专利, CN104361153A
获得奖励:
社会与学术兼职:
[1] 中国化工学会过程模拟及仿真专业委员会副秘书长
[2]中国高等教育学会碳中和与清洁能源教育委员会副秘书长
[3] 中国化工学会青年工作委员会第一届委员会学术顾问
[4] 中国颗粒学会青年理事会青年理事
[5] 中国化工学会女科技工作者第一届委员会委员
[6] 中国化工学会化工过程强化专业委员会第一届青年委员会委员
[7] 《Petroleum Science》副主编
发明专利:
[1] Integrated method and integrated device for heavy oil contact lightening and coke gasification, US 11230678B2, 2022
[2] Coupling reaction apparatus for heavy oil pyrolysis-gasification, US 11230671B2, 2022.
[3] Integrated method and apparatus for catalytic cracking of heavy oil and production of syngas, US 11230674B2, 2022
[6] 重油裂解耦合焦炭催化气化的一体化方法及装置,中国专利, CN112538376A
[7] 一种重油轻质化/合成气联产的加工方法和装置,中国专利, CN112538375A
[8] 一种基于距离约束算法的气固鼓泡床内三维气泡识别方法, 中国专利, CN109948694A
[9] 一种基于Delaunay三角剖分的气泡体积测量方法, 中国专利, CN109813266A
[10] 一种预测重油催化裂化沉降器结焦量的方法, 中国专利, CN104361153A