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重庆大学土木工程学院导师教师师资介绍简介-刘鲁萌

本站小编 Free考研考试/2021-10-04

个人简介

本科毕业于重庆大学,取得工学学士与管理学学士双学位。博士毕业于天津大学环境科学与工程学院、天津市室内空气品质控制重点实验室。迄今在澳大利亚昆士兰大学联培2年,访学1年。现任职于重庆大学土木工程学院建筑环境研究所,研究方向为室内空气品质,空气净化技术,新型净化材料、多组分气体污染物检测平台的设计与建造。目前主持的项目包括国家自然科学基金青年项目1项,中国博士后面上基金1项,企业横向项目1项,重庆大学基础研究与前沿交叉学科培育项目1项,参与企业横向项目2项;发表SCI论文十余篇,以第一作者/通讯作者在高水平期刊《Chemical Engineering Journal, IF 10.56》, 《Carbon,IF 8.82》 《Advances in Colloid and Interface Science, IF 9.92》等发表论文10篇。




研究方向
室内空气品质
空气净化技术
新型净化材料
气体吸附/分子模拟

学术兼职
中国环境科学学会室内环境与健康分会青年委员会 委员

主要成果
科研项目:
国家自然科学基金青年项目,室内多组分气态污染物竞争/协同吸附净化机理研究,主持,在研
中国博士后面上基金,建筑内二氧化碳直接空气捕集的多物理场测量与模拟研究,主持,在研
企业横向项目(美的集团),中国家庭厨房热环境调研与热舒适模型开发,主持,在研
重庆大学基础研究与前沿交叉学科培育项目,人居封闭空间内二氧化碳吸附捕集机理研究,主持,在研

期刊论文
1. Liu, L.; Zeng, W.; Tan, S.; Liu, M.; Do, D. D., On the Characterization of Bimodal Porous Carbon Via Water Adsorption: The Role of Pore Connectivity and Temperature. Carbon 2021, 179, 477-485.
2. Liu, L.; Liu, J.; Zeng, Y.; Tan, S. J.; Do, D. D.; Nicholson, D., Formaldehyde Adsorption in Carbon Nanopores – New Insights from Molecular Simulation. Chem. Eng. J. 2019, 370, 866-874.
3. Liu, L.; Zeng, Y.; Tan, S. J.; Xu, H.; Do, D. D.; Nicholson, D.; Liu, J., On the Mechanism of Water Adsorption in Carbon Micropores – a Molecular Simulation Study. Chem. Eng. J. 2019, 357, 358-366.
4. Liu, L.; Tan, S.; Horikawa, T.; Do, D. D.; Nicholson, D.; Liu, J., Water Adsorption on Carbon - a Review. Adv. Colloid Interface Sci. 2017, 250, 64-78.
5. Zhang, D.; Liu, J.; Liu, M.; Liu, L.; Do, D. D., On the Capture of Ultralow-Level Benzene in Indoor Environments: Experiments, Modeling and Molecular Simulation. Sep. Purif. Technol. 2020, 251, 117306.
6. Liu, L.; Liu, J.; Pei, J., Towards a Better Understanding of Adsorption of Indoor Air Pollutants in Porous Media—from Mechanistic Model to Molecular Simulation. Build. Simul. 2018, 11, 997-1010.
7. Zhang, D.; Liu, J.; Liu, L., On the Capture of Polar Indoor Air Pollutants at Sub-Ppm Level— a Molecular Simulation Study. Build. Simul. 2020, 13, 989-997.
8. Liu, L.; Zeng, W.; Tan, S.; Liu, M.; Do, D. D., Microscopic Insights into Water Adsorption in Carbon Nanopores – the Role of Acidic and Basic Functional Groups and Their Configurations. PCCP 2021, doi.org/10.1039/D1CP02308J.
9. Liu, L.; Zhang, H.; Do, D. D.; Nicholson, D.; Liu, J., On the Microscopic Origin of the Temperature Evolution of Isosteric Heat for Methane Adsorption on Graphite. PCCP 2017, 19, 27105-27115.
10. Liu, L.; Zeng, Y.; Do, D. D.; Nicholson, D.; Liu, J., Development of Averaged Solid–Fluid Potential Energies for Layers and Solids of Various Geometries and Dimensionality. Adsorption 2018, 24, 1-9.
11. Hu, M.; Liu, L.; Liu, M., Calculation Method of State Transfer Matrix in Markov Chain Model for Airborne Contaminant Transport: Investigation and Improvement. Build. Environ. 2020, 107295.
12. Zeng, Y.; Liu, L.; Zhang, H.; Do, D. D.; Nicholson, D., A Monte Carlo Study of Adsorption-Induced Deformation in Wedge-Shaped Graphitic Micropores. Chem. Eng. J. 2018, 346, 672-681.
13. Zhang, H.; Tan, S. J.; Liu, L.; Do, D. D.; Nicholson, D., Comparison of the Adsorption Transitions of Methane and Krypton on Graphite at Sub-Monolayer Coverage. The Journal of Physical Chemistry C 2018, 122, 7737-7748.
14. Liu, M.; Liu, J.; Ren, J.; Liu, L.; Chen, R.; Li, Y., Bacterial Community in Commercial Airliner Cabins in China. Int. J. Environ. Health Res. 2019, 1-12.
会议论文:
[1] L. Liu, Y. Lu, J. Pei, J. Liu, Development and Validation of a State-of-the-art Test Rig for Particulate and Gaseous Filtration Evaluation for Road Vehicle Air Filters, Indoor Air 2014: Proceedings of the 13th International Conference on Indoor Air Quality and Climates, Hong Kong.
[2] L. Liu, J. Liu, J. Pei, An overview of ozone removal by passive removal materials, COBEE 2015: Proceedings of the 3rd International Conference on Building Energy & Environment, Paper ID: T6130, Tianjin.
[3] L. Liu, J. Liu, J. Pei, Is the Wheeler-Jonas Equation Applicable to Describe the Breakthrough Curve of an Oxidizing Gas: Ozone? ASHRAE Winter Conference 2016, Paper ID: 17949, Orlando.
[4] L. Liu, J. Liu, D.D. Do, Toward a better understanding of how functional groups and pore size affect formaldehyde adsorption in carbonaceous materials: A Monte Carlo simulation study, COBEE 2018: Proceedings of the 4th International Conference on Building Energy & Environment, Paper ID: 344, Melbourne.

联系方式
lumeng.liu@cqu.edu.cn



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