Professor Meihong Wang
FEurASc, FEASA, FIET, CEng, PhD, MSc
School of Chemical, Materials and Biological Engineering
Professor of Energy Systems
+44 114 222 7160
Full contact details
School of Chemical, Materials and Biological Engineering
Room F61
Sir Robert Hadfield Building
Mappin Street
葫芦影业
S1 3JD
- Profile
-
I lead the Process and Energy Systems Engineering Research Group at University of 葫芦影业, UK with expertise in modelling, optimisation and control of power plants, carbon capture utilisation and storage (CCUS), energy storage and bio-energy.
I have been an investigator in 27 research projects worth over 拢20 million from UK Research Councils, European Commission and Industry. I have published over 200 papers and am one of the top 2% most-cited scientists in the world.
One of my publications (Lazic et al. 2014) on CO2 transport pipeline network design for the Humber Region (largest CO2 emitter in the UK) was awarded the Ludwig Mond Prize 2014 by IMechE. The content of this paper was also widely used by a UK Department for Business, Energy and Industrial Strategy (BEIS) report in 2020 titled 鈥淐arbon capture, usage and storage (CCUS) deployment at dispersed sites鈥.
The paper on large-scale energy storage (Aneke and Wang, 2016) was given Award for the Most Cited Review Paper in Applied Energy by Elsevier. A research project on applying process intensified techniques for carbon capture, which I led, was runner-up in IChemE Global Award 2019 (Energy Category).
I was Siemens PSE Model-based Innovation (MBI) Prize Winner 2022 for 鈥渁n excellent work illustrating the use of gPROMS in the modelling, simulation and analysis of a complex process for efficient carbon capture鈥. I was joint winner of Nigeria Prize for Science 2019 and 2024 (the most important prize in the African Continent) for my long term research contribution to CCUS to combat climate change.
In Sept. 2024, I was elected Fellow of European Academy of Sciences (EurASc). In Jun. 2024, I was elected Fellow of European Academy of Sciences and Arts (EASA).
- Qualifications
-
- PhD from Centre for Process Systems Engineering (CPSE) at University College London (UCL) and Imperial College London from Jan. 1999 to Dec. 2001. Viva held in Nov. 2002.
- MSc from East China University of Science and Technology (ECUST), China from Sept. 1992 to Jul. 1995.
- Diploma from Nanjing Chemical Engineering and Power College (now part of Nanjing Normal University), China from Sept. 1985 to Jul. 1988.
- Research interests
-
Using process systems engineering technologies (e.g. molecular simulation, process modelling\simulation, optimisation and control) to deal with optimal design, optimal operation, optimal control and performance evaluation of energy systems (e.g. power plants, carbon capture plants, CO2 transport pipelines, CO2 utilisation processes, large scale compressed air energy storage processes, biomass pyrolysis and gasification).
My main research areas is in Process/Energy Systems Engineering for Energy and Environment. The sub areas are:
- Process Modelling, Simulation, Control and Optimisation
- Big Data and Artificial Intelligence (AI)
- Carbon Capture, Utilisation and Storage (CCUS)
- Grid-scale Energy Storage
- Bio-fuel Production
- Power Plants
- Refinery Planning and Scheduling
- Process Control (e.g. Condition Monitoring and System Identification)
- Publications
-
Journal articles
- . Fuel, 381, 133656-133656.
- . Fuel, 381, 133340-133340.
- . Applied Thermal Engineering, 258, 124838-124838.
- . Separation and Purification Technology, 130636-130636.
- . Fuel, 373, 132154-132154.
- . Journal of Energy Storage, 94, 112372-112372.
- . Journal of Energy Storage, 94, 112496-112496.
- . Journal of Energy Storage, 75, 109552-109552.
- . Chemical Engineering Journal, 149098-149098.
- , 691-696.
- . Carbon Capture Science & Technology, 100178-100178.
- . Applied Energy, 350, 121603-121603.
- . Chemical Engineering Science, 119531-119531.
- . Chemical Engineering Journal, 462.
- . Applied Energy, 335.
- . International Journal of Greenhouse Gas Control, 123, 103831-103831.
- . Fuel, 331, 125604-125604.
- . Biomass and Bioenergy, 168, 106654-106654.
- . Separation and Purification Technology, 122680-122680.
- . Journal of Cleaner Production, 135133-135133.
- . Applied Energy, 324, 119684-119684.
- . Fuel, 321, 124071-124071.
- . Frontiers in Energy Research, 10.
- . Applied Energy, 317, 119156.
- . Fuel, 324.
- . Fuel, 317.
- . Chemical Engineering Journal, 429.
- . Applied Energy.
- . Applied Energy, 301.
- . Applied Energy, 292.
- . Chemical Engineering Journal, 409.
- . Journal of Industrial and Engineering Chemistry, 93, 394-406.
- Molecular Simulation of Post-combustion Carbon Capture using Hydrotalcites. 15th Greenhouse Gas Control Technologies Conference 2021, GHGT 2021.
- Energy Performance Analysis of Post-combustion Carbon Capture using Piperazine for Large-scale Natural Gas Combined Cycle Power Plants. 15th Greenhouse Gas Control Technologies Conference 2021, GHGT 2021.
- . Energy & Environmental Science.
- . Energy, 213.
- . Energy & Fuels, 34(11), 14439-14446.
- . Chemical Engineering Journal, 396.
- . Energy, 206.
- . Chemical Engineering Journal, 393.
- . International Journal of Greenhouse Gas Control, 95.
- . Energy, 196.
- . Journal of Membrane Science, 598.
- . International Journal of Greenhouse Gas Control, 93.
- . Applied Energy, 257.
- . International Journal of Greenhouse Gas Control, 91.
- . Applied Energy, 254.
- . Renewable and Sustainable Energy Reviews, 114.
- . Chemical Engineering Journal.
- . Fuel, 249, 89-102.
- . Journal of Industrial and Engineering Chemistry, 75, 285-295.
- . Renewable Energy, 136, 923-936.
- . Fuel, 244(ACS Sustain Chem Eng 5 2017), 439-446.
- . Fuel, 242, 624-637.
- . Applied Energy, 238, 495-515.
- . International Journal of Greenhouse Gas Control, 82, 138-151.
- . Fuel, 239, 1213-1223.
- . Fuel, 236, 135-146.
- . Energy, 166, 1074-1088.
- . Fuel, 234, 526-537.
- . Journal of Cleaner Production, 204, 1124-1142.
- . Journal of the Energy Institute.
- . Applied Thermal Engineering, 142, 444-456.
- . Greenhouse Gases: Science and Technology, 8(4), 686-700.
- . Applied Energy, 223, 302-316.
- . Fuel, 224, 637-643.
- . Computers & Chemical Engineering, 115, 397-406.
- . RSC Advances, 8(39), 22004-22022.
- . Fuel, 220, 931-941.
- . Fuel, 219, 364-374.
- . Applied Thermal Engineering, 130, 997-1003.
- . Fuel, 211, 318-330.
2 Capture. GHGT 2018 - 14th International Conference on Greenhouse Gas Control Technologies.
Dynamic Simulation and Plant-wide Control for Flexible Operation of Subcritical Coal-fired Power Plant Integrated with Solvent-based Post-combustion CO- . Applied Energy, 203, 11-25.
- . International Journal of Greenhouse Gas Control, 64, 246-256.
- . J. Mater. Chem. A, 5(35), 18801-18807.
- . International Journal of Greenhouse Gas Control, 63, 37-46.
- . Applied Energy, 195, 402-413.
- . Engineering, 3(2), 257-265.
- . Engineering, 3(2), 232-243.
- . Applied Energy, 191, 436-453.
- . International Journal of Coal Science & Technology, 4(1), 25-32.
- . International Journal of Coal Science & Technology, 4(1), 33-40.
- . International Journal of Coal Science & Technology, 4(1), 1-4.
- . International Journal of Coal Science & Technology, 4(1), 5-14.
- . International Journal of Coal Science & Technology.
- . Applied Energy, 179, 350-377.
- . Fuel, 180, 694-717.
- . International Journal of Greenhouse Gas Control, 48, 312-320.
- . Huaxue Gongcheng/Chemical Engineering (China), 44(2), 1-6.
- . Applied Energy, 158, 275-291.
- . Fuel, 159, 241-249.
- . Applied Energy, 157, 533-539.
- . Fuel, 158, 424-434.
- . Fuel, 158, 625-633.
- . Applied Energy, 154, 556-566.
- . Fuel, 151, 156-163.
- . FUEL, 151, 110-117.
- . Fuel, 151, 139-145.
- . Fuel, 151, 57-72.
- . Applied Thermal Engineering, 81, 223-231.
- . Fuel, 142, 87-93.
- Modelling a fast track to CCS. TCE The Chemical Engineer(886), 46-48.
- . Applied Thermal Engineering, 74, 47-53.
- . Applied Thermal Engineering, 74, 10-19.
- . Fuel, 137, 364-374.
- . Applied Energy, 132, 610-620.
- . Fuel, 135, 292-300.
- . Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering, 228(3), 210-225.
- . Fuel, 124, 221-231.
- . International Journal of Greenhouse Gas Control, 21, 91-100.
- . Computers & Chemical Engineering, 55, 134-147.
- . Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering, 227(2), 87-88.
- . Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering, 227(2), 89-105.
- . Fuel, 101, 115-128.
- . Fuel, 101, 244-253.
- . International Journal of Greenhouse Gas Control, 9, 428-445.
- . Computers & Chemical Engineering, 35(12), 2876-2885.
- . Chemical Engineering Research and Design, 89(9), 1609-1624.
- . Energy Procedia, 4, 1035-1042.
- . Fuel, 89(10), 2791-2801.
- . Fuel, 88(12), 2455-2462.
- . Asia-Pacific Journal of Chemical Engineering, 4(6), 885-892.
- . Journal of Process Control, 15(6), 729-740.
- . Underwater Technology, 26(2), 57-63.
- Time series reconstruction from quantized measurements. American Institute of Chemical Engineering (AIChE) Symposium Series, 326(98), 448-452.
- Development of a novel optical fiber sensor. Process Automation Instrumentation, 17(8), 14-17.
- Automatic pH detection: Difficulties and strategies. Process Automation Instrumentation, 16(11), 1-4.
- . Processes, 11(8), 2278-2278.
- . Energy & Environmental Science.
- Process Design and Analysis of a Novel Heat Recovery Energy System for an Aromatics Complex.
- Novel Cost-Effective Carbon Capture Process Using Phase Change Solvents and Rotating Packed Bed (Rpb) Columns 鈥揝tudy Through Process Modelling and Simulation.
- Heat Integration, Simultaneous Structure and Parameter Optimisation, and Techno-Economic Evaluation of Waste Heat Recovery Systems for Petrochemical Industry.
- Techno-Economic Assessment of Modified Fischer-Tropsch Synthesis Process for Direct Co2 Conversion into Jet Fuel.
Chapters
- , Computer Aided Chemical Engineering (pp. 1507-1512). Elsevier
- , Exergy for A Better Environment and Improved Sustainability 2 (pp. 299-313). Springer International Publishing
- , Green Chemistry and Chemical Engineering (pp. 457-632). CRC Press
- , The Water鈥揊ood鈥揈nergy Nexus (pp. 457-632).
- Chapter 18 Improved design and operation of post-combustion CO2 capture processes with process modelling In Papadopoulos AI & Seferlis P (Ed.), Process Systems and Materials for CO2 Capture Modelling, Design, Control and Integration John Wiley & Sons
- , Clean Coal Technology and Sustainable Development (pp. 621-627). Springer Singapore
- , Process Systems and Materials for CO2Capture (pp. 463-499). John Wiley & Sons, Ltd
- CRC Press
Conference proceedings papers
- . IFAC-PapersOnLine, Vol. 55(9) (pp 553-558)
- . MATEC Web of Conferences, Vol. 272 (pp 01004-01004)
- . MATEC Web of Conferences, Vol. 272 (pp 01002-01002)
- . MATEC Web of Conferences, Vol. 272 (pp 01003-01003)
- . Energy Procedia, Vol. 158 (pp 4810-4815)
- (pp 271-287)
- (pp 1235-1248)
- (pp 1393-1411)
- (pp 1377-1391)
- . Energy Procedia, Vol. 142 (pp 829-834)
- . Energy Procedia, Vol. 142 (pp 3511-3516)
- . IFAC-PapersOnLine, Vol. 50(1) (pp 3244-3249)
- . Energy Procedia, Vol. 142 (pp 3505-3510)
- . Energy Procedia, Vol. 114 (pp 1630-1636)
- . Energy Procedia, Vol. 114 (pp 1637-1642)
- . 2016 21st International Conference on Methods and Models in Automation and Robotics (MMAR), 29 August 2016 - 1 September 2016.
- (pp 359-363)
- , Vol. 38 (pp 2007-2012)
- Dynamic modelling of steam generation in once-through supercritical boiler: Distributed vs Lumped parameter approach. Industrial Furnaces and Boilers (Infub-10)
- Neural network model predictive controller for drum level control in coal-fired subcritical power plants. Industrial Furnaces and Boilers (Infub-10)
- (pp 2375-2380)
- (pp 1123-1128)
- (pp 1537-1542)
- (pp 1633-1638)
- (pp 187-192)
- (pp 631-636)
- (pp 433-438)
- (pp 132-136)
- (pp 807-811)
- (pp 917-921)
- Comparative Techno-economic Analysis of Biodiesel Production from Microalgae via Transesterification Methods. 22 EUROPEAN SYMPOSIUM ON COMPUTER AIDED PROCESS ENGINEERING, Vol. 30 (pp 132-136)
- (pp 955-959)
- (pp 950-954)
- Modelling and simulation of biomass to liquid process by biomass integrated gasification and Fischer-Tropsch (BIG-FT) synthesis. Renewable and Alternative Energy Society of Nigeria, Federal University of Technology, OWERRI (FUTO)
- (pp 1725-1730)
- (pp 501-506)
- The development of a virtual plant demonstration model. 18th International Conference on System Engineering
- VPDM: enabling framework for secure distributed whole power plant modeling. UK Automatic Control International Conference (UKACC)
- System identification of a remotely-operated flight vehicle. Proceedings of the Institute of Marine Engineering, Science and Technology Part A: Journal of Marine Engineering and Technology(6) (pp 17-22)
- The application of closed loop identification methods to a remotely operated flight vehicle. Advances in Technology for Underwater Vehicles, Oceanology International 2004 (pp 70-81)
- Model predictive control of a remotely operated flight vehicle. Control Applications in Marine Systems (CAMS 2004) (pp 327-332)
- . IFAC Proceedings Volumes, Vol. 35(1) (pp 319-324)
- Software Development of the computer-controlled system for the manufacturing process of bursting disc. Proceedings of the Association of China Process Control and Instrumentation
Preprints
- Research group
-
Postdoc Researchers:
- Dr T. E. Akinola 鈥 EPSRC & BEIS & EU - from Mar. 2020 to present
- Dr Olajide Otitoju 鈥 EPSRC & BEIS & EU - from Apr. 2022 to present
Visiting Scholar:
- Dr G. Hu 鈥 funded by OPTIMAL - from Jun. 2024 to present
Current PhD students:
- Mr Y. Zhang - Project: Modelling and analysis of thermal cracking furnace in ethylene manufacturing: Sponsor: self-funded - PhD Duration: Mar. 2021 to Feb. 2025
- Miss J. Ren 鈥 Project: Carbon Capture using solvents for biomass-fired power plant: Sponsor: self-funded - PhD Duration: Feb. 2021 to Feb. 2025
- Mr Shengyuan Huang 鈥 Project: Modelling, simulation and analysis of direct air capture system. Sponsor: self-funded - PhD Duration: Jan. 2022 to Dec. 2025
- Mr Jin Ma 鈥 Project: Carbon Capture for Ethylene Plants 鈥 Sponsor: ECUST 鈥 PhD Duration: May 2024 to May 2025
- Miss Abiodun Tolulope Okeleye - Project title: Modelling, analysis and control of solvent-based carbon capture for biomass-fired power plants 鈥 Sponsor: self-funded 鈥 PhD Duration: Dec. 2023 to Nov. 2027
- Mr Mohammed S. Alshemali 鈥 Project title: Modelling, analysis and control of solvent- based carbon capture for petrochemical processes 鈥 Sponsor: Kuwait Government 鈥 PhD Duration: Jan. 2024 to Jan. 2028
- Mr Idris Jibrin 鈥 Project title: Direct air capture with process intensification 鈥 Sponsor: Nigeria PTDF 鈥 PhD Duration: Apr. 2024 to Apr. 2028
- Grants
-
- Jan. 2025 to Dec. 2028 鈥 Co-I in EU RISE Project CATALYSE, 鈧1.5 million. My share is 拢160,000
- Mar. 2024 to May 2025 鈥 PI in Intensified carbon capture using RPB for offshore NGCC power plants, total budget, 拢183,934, funded by industry.
- Feb. 2024 to Aug. 2025 鈥 Co-I in Crossflow absorber modelling for post-combustion CO 2 capture, total budget, 拢256,877, funded by industry.
- Dec. 2022 to Jan. 2024 鈥 PI in EPSRC IAA (collaborated with Atkins Global) - Development of direct air capture technology and CO2 conversion to fuel, total budget 拢81,799
- Sept. 2022 to Feb. 2023 鈥 Co-I in End-to-end system for generation and use of green hydrogen for fuel switching in ceramics manufacturing (PRO- GREEN H2), Dept of Business, Energy and Industrial Strategy (BEIS), led by CPI, total 拢369,883.
- Aug. 2021 to Dec. 2025 鈥 Project Coordinator - EU RISE - Smart and CO2 neutral Olefin Production by arTificial Intelligence and MAchine Learning (OPTIMAL), total budget 鈧1.2 million. Grant Agreement No: 101007963.
- Jan. 2021 to Nov. 2021 - PI in EPSRC IAA with CCS Ltd 鈥 Scale-up of RPB Absorber 拢42,666.&苍产蝉辫;
- Mar. 2019 to Oct. 2021 鈥 PI in Royal Society 鈥 Sino-British Research Fellow (part of Newton International Fellow), China, total 拢80,332.
- Sept. 2018 to Jul. 2021 鈥 PI in Royal Academy of Engineering (RAEng) UK to host Visiting Prof with Greg Kelsall 拢29,925
- Jan. 2018 to Mar. 2022 Co-I in Department of Business, Energy and Industrial Strategy (BEIS) project 鈥 led by CCS Ltd - Advancing RPB Technology for Reduced CO2 Emissions (ARTEMIS), total budget 拢891 k.
- Apr. 2017 to Dec. 2022: Co-I of the Consortium UK CCS Research Centre, total budget 拢6.23 million. EPSRC Ref: EP/P026214/1.
- Nov. 2016 to Nov. 2019: Co-I of the Consortium (and PI at 葫芦影业) for EU H2020 Low Carbon Energy: Systematic design and testing of advanced rotating packed bed process and phase change solvents for intensified post-combustion CO2 capture (ROLINCAP), total project budget: 鈧3.2 million. Project ID: 727503
- Oct. 2016 to Mar. 2020: Co-I of the Consortium (and PI at 葫芦影业) for EPSRC funded project: Novel adsorbents applied to integrated energy-efficient industrial CO2 capture, total project budget: 拢985 k, in collaboration with Heriot-Watt and Newcastle. EPSRC Ref: EP/N024540/1
- Oct. 2016 to Jul. 2020: Co-I of the Consortium (and PI at 葫芦影业) for EPSRC funded project: A compact CO2 capture process to combat industrial emissions, total project budget: 拢982 k, in collaboration with Edinburgh and Newcastle. EPSRC Ref: EP/N024672/1
- Jan. 2015 to Aug. 2018: Co-I of the consortium (and PI at 葫芦影业) for EPSRC funded project: Novel low energy plasma/catalytic gas cleaning process to deliver high quality syngas from the gasification of waste biomass, total project budget: 拢912 k, in collaboration with Leeds, Liverpool and Surrey. EPSRC Ref: EP/M013162/1
- May 2015 to Oct. 2016: Co-I (and PI at Hull) for DECC (UK Government) funded project: Process Intensification for carbon capture with new solvents, total 拢167.5 k
- Jan. 2015 to Dec. 2018: Co-I (and PI at 葫芦影业) for EU Horizon 2020 RISE funded project Development of flexible pyrolysis-catalysis processing of waste plastics for selective production of high value products through research and innovation, total 鈧405 k, Proposal Ref: 643322-FLEXI-PYROCAT
- Oct. 2014 to Jun. 2019: PI for EPSRC funded 鈥Process Intensification for Post-combustion Carbon Capture using Rotating Packed Bed through Systems Engineering Techniques鈥 鈥 total 拢1.27 million, in collaboration with Imperial College London, Newcastle University. EPSRC Ref: EP/M001458/1 & EP/M001458/2
- Jan. 2014 to Nov. 2017: PI in ALSTOM Power sponsored PhD studentship 拢50,000 Supercritical CO2 Brayton Cycle Feasibility Study 鈥 Small Modular Reactor (SMR) Power Conversion System (PCS) Operation.
- Jan. 2014 to Dec. 2017: Project coordinator: 鈧352.8k funded by EU Marie Curie IRSES. Project title: Research and Development in Coal-fired Supercritical Power Plant with Post-combustion Carbon Capture using Process Systems Engineering techniques (Acronym: R-D-CSPP-PCC-PSE) 鈥 Grant Agreement no. PIRSES-GA-2013-612230
- Jan. 2014 to Jan. 2016: Ministry of Science and Technology (MOST) of China: Scheme - Collaborations between China and Europe for Process Energy Saving: TianJin University and University of Hull won 1.4 million RMB.
- Sept. 2013 to Mar. 2015: Co-I for EPSRC Capital Investment on Energy Storage. The successful proposal was led by Prof Richard Williams at the University of Birmingham and coordinated by Dr Jonathan Radcliffe. The total grant is around 拢3 million. I was the only Co-I outside Birmingham University. EPSRC Ref: EP/L017725/1
- Jun. 2010 to Dec. 2014: PI at Cranfield University and Uni. of Hull (due to job move): 拢332 k from Natural Environmental Research Council (NERC) - project title Multiscale whole systems modeling and analysis for CO2 capture, transport and storage. The other partners are Imperial College London, British Geological Survey and University of Sussex. The total project budget is 拢1.42 million. Ref: NE/H013865/1
- Oct. 2012 to Dec. 2015: Co-I for Gas-FACTS project: Gas 鈥 Future Advanced Capture: Technology Options 鈥 EPSRC funded Consortium Proposal by Cranfield/Hull, Edinburgh, Imperial, Leeds and 葫芦影业 - total: 拢2.46 million.
- Mar. 2011 to Dec. 2015: PI: 拢50 k funded by BF2RA for PhD studentship on dynamic modelling for supercritical coal-fired power plant with carbon capture in collaboration with ALSTOM Power and E.ON UK.
- Oct. 2009 to Sept. 2011: Co-I for EU (Leonardo da Vinci) Agreement No. 2009-1-FR1-LEO05-06761 with project title Distance Skill Transfer Validation Assessment System (DSTVAS) 鈥 total: 鈧220 k, PI at Cranfield University.
- May 2008 to May 2011: PI 拢61.828k from EPSRC DTA for PhD studentship - Project title: Dynamic modelling and simulation of Thermal Cracking Furnace in Ethylene plant.
Nov. 2007 to Nov. 2010: PI 拢33.75k funded by RWE npower for PhD project - Project title: Dynamic modelling and simulation of CO2 capture plant.
- Professional activities and memberships
-
- Fellow of European Academy of Sciences (FEurASc)
- Fellow of European Academy of Sciences and Arts (FEASA)
- Fellow of Institute of Engineering and Technology (FIET)
- Invited to be EPSRC Peer Review College Member since 2012.
- Invited by Portugal FCT for Research Unit Evaluation in 2024 & proposal review for Christian Doppler Research Association (CDG) of Austria in 2024 & proposal review for Singapore A Star in 2023 & Cyprus Research and Innovation Foundation in 2022 & EU Horizon 2020 Programme in 2019 & proposal review and panel meeting by Norway Research Council in 2017 & South Africa National Research Foundation in 2016 & proposal reviews by Ghent Univ., Belgium in 2014.
- Invited to be Member of the Science Board of the EPSRC funded Energy Storage Supergen Hub from 2015
- Invited to be Member of the EPSRC funded UK CCS Research Centre (UKCCSRC) Scientific Council from 2017
- Invited to be Member of (University of 葫芦影业) Energy Institute Strategy Group (EISG) from 2020 to 2023
- Invited to be Organising Committee Member for 2nd European Conference on Fuel and Energy Research and Its Applications (FERIA), 葫芦影业, UK 2023 & 3rd FERIA, Leeds, UK 2025
- Invited to be Organising Committee Member and Programme Chair in International Symposium on Smart and Optimal Process Manufacturing, Shanghai, China 2017
- Invited to be Member of Scientific Committee for 7th International Exergy, Energy and Environment Symposium, (IEEES7) held in France 2015
- Invited to be Organising Committee Member and Programme Sub-Group Coordinator for 10th European Conference on Coal Research and Its Application (ECCRIA 10) held at University of Hull UK in 2014
- Invited to be Member of Science Committee for 22nd European Symposium of Computer-Aided Process Engineering (ESCAPE22) held in London 2012
- Invited to be Member of Editorial Board for Frontiers of Chemical Science and Engineering from 2023 to 2026
- Invited to be Advisory Board Member and Associate Editor for (Elsevier and IChemE) journal - Carbon Capture Science & Technology from 2021
- Invited to be Guest Editor (from 2020 to 2022) for the Journal Applied Energy
- Invited to be Advisory Board Member and Guest Editor (from 2015 to present) for International Journal of Coal Science and Technology
- Invited to be Advisory Board Member, Guest Editor (from 2012) and then Associate Editor (from 2017 to 2018) for Journal of Process Mechanical Engineering (IMechE Part E)
- Experience
- Sept. 2016 to present: Professor of Energy Systems Engineering at 葫芦影业, UK.
- Aug. 2014 to Sept 2016: Professor in Process and Energy Systems Engineering and CCUS at the University of Hull, UK.
- Oct. 2012 to Jul. 2014: Reader in Process Systems Engineering and CCUS at University of Hull, UK.
- Sept. 2006 to Sept. 2012: MSc Course Director for Carbon Capture and Transport & Lecturer in Process Systems Engineering at School of Engineering, Cranfield University, UK.
- Jun. 2004 to Sept. 2006: Senior Engineer at ALSTOM Power Technology Centre, UK.
- Mar. 2003 to May 2004: Postdoctoral Research Fellow at University of Plymouth.
- Jan. 1999 to Mar. 2003: Research Assistant and then Postdoctoral Research Fellow at CPSE, Imperial College London, UK.
- Sept. 1995 to Dec. 1998: Lecturer in Beijing University of Chemical Technology (BUCT), China.
- Aug. 1988 to Aug. 1992: Assistant Process Engineer in Jiangsu Province Chemical Fertilizer Plant, China.
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