
林毅雄
福建省高层次人才(C类),福州大学“旗山学者”(海外)
副教授/硕士生导师
研究领域
CO2利用、多孔介质传递过程强化、结构催化剂设计、CFD+深度学习
联系方式:
E-mail: yixionglin@fzu.edu.cn
教育工作经历:
2023/05-至今 福州大学,化工学院,副教授,邱挺教授团队
2019/10-2022/09 日本名古屋大学,化学系统工程,博士
2015/09-2018/06 福州大学,化学工程专业,硕士
2011/09-2015/06 重庆科技大学,应用化学,本科
科研项目:
v 国家自然科学基金青年科学基金,甲烷干重整等级孔泡沫反应器中对流传热与辐射传热协同强化机制研究,项目编号:22308058,2024.01-2026.12, 主持,在研.
v 福建省自然科学基金面上项目,太阳能超高温DRM等级孔泡沫反应器内热量传递机制研究,项目编号:2024J0113,2024.05-2027.04, 主持,在研.
v 福建省自然科学基金重点项目,催化精馏塔内催化剂颗粒微观孔道内反应与传质特性研究,项目编号:2022J02019,2022.08-2025.08, 参与,在研.
v 国家自然科学基金重大研究计划培育项目,催化精馏过程多孔介质内多组分传递与反应特性研究,项目编号:91534106,2016.01-2018.12, 参与,已结题.
主要获奖情况:
v 第九届福建省“互联网+”大学生创新创业大赛(高教主赛道)金奖(指导老师)
v 第九届福建省“互联网+”大学生创新创业大赛(产业命题赛道)金奖(指导老师)
v “天正设计杯”第十八届全国大学生化工设计竞赛二等奖(指导老师)
v 第三届福建省大学生化工设计竞赛一等奖(指导老师)
发表论文:
[1] Yixiong Lin, Zhibin Huang, Pengze Jiang, Qinglian Wang, Wang Yin, Chen Yang*, Ting Qiu*, Separation process intensification for zero-gravity distillation through sandwich internal structure with ordered hierarchical metal foam. Separation and Purification Technology, 2025, 360, 131060.
[2] Yixiong Lin, Minkai Yu, Qinglian Wang*, Wei Zhang, Wang Yin, Chen Yang*, Ting Qiu. Unraveling the structure-performance relationship of foam reactor with hierarchical pore structure for dry reforming of methane reaction. Fuel, 2025, 389, 134596
[3] Yixiong Lin, Yun Sun, Chen Yang*, Wei Zhang, Qinglian Wang, Zhongmin Wan, Changshen Ye*, Ting Qiu. Liquid water discharge capability enhancement of hierarchical pore structure in metal foam flow field of proton exchange membrane fuel cell. AIChE Journal, 2024, 70, e18256.
[4] Yun Sun, Yixiong Lin*, Zhongmin Wan, Qinglian Wang, Chen Yang*, Wang Yin, Ting Qiu. Water management and performance enhancement in proton exchange membrane fuel cell through metal foam flow field with hierarchical pore structure. Chemical Engineering Journal, 2024, 494, 152944.
[5] Yixiong Lin, Zhengqi Wu, Shiqi You, Chen Yang*, Qinglian Wang, Wang Yin, Ting Qiu*. Deep learning-based prediction of velocity and temperature distributions in metal foam with hierarchical pore structure. Green Chemical Engineering, 2024.
[6] Wei Zhang, Yixiong Lin*, Yuming Zhang, Tailin Li, Jiazhou Li, Zhewen Chen, Koyo Norinaga.Regulation of temperature distribution in fixed bed reactor for CO2 methanation through “CHESS” monolith structure catalyst.Applied Thermal Engineering, 2024, 236, 121826.
[7] Wei Zhang, Yixiong Lin*, Koyo Norinaga. Insights into structure-performance relationship in radial flow fixed bed reactor for CO2 methanation.International Journal of Hydrogen Energy. 2023, 48, 24594-24606
[8] Yixiong Lin, Chen Yang*, Wei Zhang, Hiroshi Machida, Koyo Norinaga. Lattice Boltzmann study on the effect of hierarchical pore structure on fluid flow and coke formation characteristics in open-cell foam for dry reforming of methane, Chemical Engineering Science, 2023, 268, 118380.
[9] Yixiong Lin, Chen Yang*, Wei Zhang, Kazui Fukumoto, Yasuhiro Saito, Hiroshi Machida,
Koyo Norinag. Estimation of effective thermal conductivity in open-cell foam with hierarchical pore structure using lattice Boltzmann method. Applied Thermal Engineering 2023, 218, 119314.
[10] Yuzhang Bi, Dongpo Wang*, Xianlei Fu, Yixiong Lin*, Xinpo Sun, Zheyuan Jiang. Optimal array layout of cylindrical baffles to reduce energy of rock avalanche. Journal of Mountain Science, 2022, 19, 493–512.
[11] Yixiong Lin, Wei Zhang*, Hiroshi Machida, Koyo Norinaga*. CFD simulation of the Sabatier process in a shell-and-tube reactor under local thermal non-equilibrium conditions: Parameter sensitivity and reaction mechanism analysis, International Journal of Hydrogen Energy, 2022, 47, 15254-15269.
[12] Yixiong Lin, Chen Yang, Cheolyong Choi, Wei Zhang, Hiroshi Machida, Koyo Norinaga*. Lattice Boltzmann simulation of multicomponent reaction-diffusion and coke formation in a catalyst with hierarchical pore structure for dry reforming of methane. Chemical Engineering Science, 2021, 229, 116105.
[13] Yixiong Lin, Chen Yang, Cheolyong Choi, Wei Zhang, Kazui Fukumoto, Hiroshi Machida, Koyo Norinaga*. Inhibition of temperature runaway phenomenon in the Sabatier process using bed dilution structure: LBM-DEM simulation. AIChE Journal. 2021, e17304.
[14] Yixiong Lin, Chen Yang, Zhongmin Wan, Ting Qiu*. Lattice Boltzmann simulation of intraparticle diffusivity in porous pellets with macro-mesopore structure. International Journal of Heat and Mass Transfer, 2019, 138, 1014-1028