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Showing 24 publications by Xusheng Wang

Performance enhancement strategies for magnesium oxide water based thermochemical energy storage

Zhou Z, Guo H, Wang X, Hu Z, Zou J et al. (2026), Renewable and Sustainable Energy Reviews, 239, 117161-117161

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@article{performanceenha-2026/10,
  title={Performance enhancement strategies for magnesium oxide water based thermochemical energy storage},
  author={Zhou Z, Guo H, Wang X, Hu Z, Zou J et al.},
  journal={Renewable and Sustainable Energy Reviews},
  volume={239},
  number={117161},
  pages={117161-117161},
  publisher={Elsevier BV},
  year = "2026"
}

Key strategies for hydrogen separation in hydrogen-blended natural gas using magnesium-based solid hydrogen storage materials: a review

Liu Z, Wang X, Du H, Wang Y, Lin X et al. (2026), Renewable and Sustainable Energy Reviews, 234, 116851

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@article{keystrategiesfo-2026/7,
  title={Key strategies for hydrogen separation in hydrogen-blended natural gas using magnesium-based solid hydrogen storage materials: a review},
  author={Liu Z, Wang X, Du H, Wang Y, Lin X et al.},
  journal={Renewable and Sustainable Energy Reviews},
  volume={234},
  pages={116851},
  publisher={Elsevier},
  year = "2026"
}

Nitrogen-doped carbon materials from fruit peels for sustainable and techno-economic CO₂ capture

Khan MN, Zhang J, Peng D, Wang X, Zhang D et al. (2026), Journal of Environmental Chemical Engineering, 14(2), 121954-121954

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@article{nitrogendopedca-2026/4,
  title={Nitrogen-doped carbon materials from fruit peels for sustainable and techno-economic CO₂ capture},
  author={Khan MN, Zhang J, Peng D, Wang X, Zhang D et al.},
  journal={Journal of Environmental Chemical Engineering},
  volume={14},
  number={121954},
  pages={121954-121954},
  publisher={Elsevier BV},
  year = "2026"
}

Developing Oxygen Vacancy Rich Perovskite for Broad‐Spectrum‐Responsive Photothermal Assisted Photocatalytic Dehydrogenation of MgH <sub>2</sub>

Zhao Y, Wang B, Li Y, Wang X, Sun F et al. (2025), Advanced Energy Materials, 15(47)

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@article{developingoxyge-2025/12,
  title={Developing Oxygen Vacancy Rich Perovskite for Broad‐Spectrum‐Responsive Photothermal Assisted Photocatalytic Dehydrogenation of MgH
                    <sub>2</sub>},
  author={Zhao Y, Wang B, Li Y, Wang X, Sun F et al.},
  journal={Advanced Energy Materials},
  volume={15},
  number={e04765},
  publisher={Wiley},
  year = "2025"
}

MOFs derived Ni-Mn bimetal nano-catalysts with enhanced hydrogen pump effect for boosting hydrogen sorption performance of MgH2

Huang T, Zhao Y, Wang B, Li Y, Zhang J et al. (2025), Journal of Magnesium and Alloys, 13(11), 5589-5599

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@article{mofsderivednimn-2025/11,
  title={MOFs derived Ni-Mn bimetal nano-catalysts with enhanced hydrogen pump effect for boosting hydrogen sorption performance of MgH2},
  author={Huang T, Zhao Y, Wang B, Li Y, Zhang J et al.},
  journal={Journal of Magnesium and Alloys},
  volume={13},
  pages={5589-5599},
  publisher={Elsevier BV},
  year = "2025"
}

Roadmap Toward the Production, Storage, Transportation, and Applications of Green Hydrogen

Wang X, Yang X, Wang X, Zhao Y, Lin X et al. (2025), Carbon and Hydrogen, 27(3), 241-267

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@article{roadmaptowardth-2025/9,
  title={Roadmap Toward the Production, Storage, Transportation, and Applications of Green Hydrogen},
  author={Wang X, Yang X, Wang X, Zhao Y, Lin X et al.},
  journal={Carbon and Hydrogen},
  volume={27},
  pages={241-267},
  publisher={Wiley},
  year = "2025"
}

Enhancing hydrogen sorption performances of MgH2 by in-situ introduction of molybdate derived FeMo nano catalysts

Zhang J, Bian L, Zhang N, Wang B, Cao S et al. (2025), Journal of Energy Storage, 130, 117418-117418

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@article{enhancinghydrog-2025/9,
  title={Enhancing hydrogen sorption performances of MgH2 by in-situ introduction of molybdate derived FeMo nano catalysts},
  author={Zhang J, Bian L, Zhang N, Wang B, Cao S et al.},
  journal={Journal of Energy Storage},
  volume={130},
  number={117418},
  pages={117418-117418},
  publisher={Elsevier BV},
  year = "2025"
}

Challenges and opportunities in hydrogen storage and transportation: A comprehensive review

Wang X, Cheng T, Hong H, Guo H, Lin X et al. (2025), Renewable and Sustainable Energy Reviews, 219, 115881

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@article{challengesandop-2025/9,
  title={Challenges and opportunities in hydrogen storage and transportation: A comprehensive review},
  author={Wang X, Cheng T, Hong H, Guo H, Lin X et al.},
  journal={Renewable and Sustainable Energy Reviews},
  volume={219},
  pages={115881},
  publisher={Elsevier},
  year = "2025"
}

A Green Ammonia Utilization Pathway: Integrated Ammonia-Solid Oxide Fuel Cell Systems for Efficient Power Generation

Wang X, Gao M, Harrison ARP, Irfan M, Lin X et al. (2025), EnergyChem, 100167

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@article{agreenammoniaut-2025/7,
  title={A Green Ammonia Utilization Pathway: Integrated Ammonia-Solid Oxide Fuel Cell Systems for Efficient Power Generation},
  author={Wang X, Gao M, Harrison ARP, Irfan M, Lin X et al.},
  journal={EnergyChem},
  pages={100167},
  publisher={Elsevier},
  year = "2025"
}

Empowering deep urban decarbonization through smart and renewable district cooling

Huang Z, Wang X, Chen W, Islam MR & Chua KJ (2025), Sustainable Cities and Society, 129, 106488-106488

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@article{empoweringdeepu-2025/7,
  title={Empowering deep urban decarbonization through smart and renewable district cooling},
  author={Huang Z, Wang X, Chen W, Islam MR & Chua KJ},
  journal={Sustainable Cities and Society},
  volume={129},
  number={106488},
  pages={106488-106488},
  publisher={Elsevier BV},
  year = "2025"
}

Dual-function hydrogen selective catalytic reduction (H2-SCR): enabling NOx reduction to ammonia synthesis

Khan MN, Peng D, Hu S, Wang X, Lin X et al. (2025), International Journal of Hydrogen Energy, 151, 150183-150183

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@article{dualfunctionhyd-2025/7,
  title={Dual-function hydrogen selective catalytic reduction (H2-SCR): enabling NOx reduction to ammonia synthesis},
  author={Khan MN, Peng D, Hu S, Wang X, Lin X et al.},
  journal={International Journal of Hydrogen Energy},
  volume={151},
  number={150183},
  pages={150183-150183},
  publisher={Elsevier BV},
  year = "2025"
}

A techno-economic study of photovoltaic-solid oxide electrolysis cell coupled magnesium hydride-based hydrogen storage and transportation toward large-scale applications of green hydrogen

Wang X, Shao L, Hu S, Li Z, Guo H et al. (2024), Energy & Environmental Science, 17(22), 8429-8456

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@article{atechnoeconomic-2024/11,
  title={A techno-economic study of photovoltaic-solid oxide electrolysis cell coupled magnesium hydride-based hydrogen storage and transportation toward large-scale applications of green hydrogen},
  author={Wang X, Shao L, Hu S, Li Z, Guo H et al.},
  journal={Energy & Environmental Science},
  volume={17},
  pages={8429-8456},
  publisher={Royal Society of Chemistry (RSC)},
  year = "2024"
}

Multidimensional analysis and performance prediction of heavy-duty gas turbine based on actual operational data

Guan J, Wang X, Lv X & Weng Y (2023), Applied Thermal Engineering, 234, 121280-121280

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@article{multidimensiona-2023/11,
  title={Multidimensional analysis and performance prediction of heavy-duty gas turbine based on actual operational data},
  author={Guan J, Wang X, Lv X & Weng Y},
  journal={Applied Thermal Engineering},
  volume={234},
  number={121280},
  pages={121280-121280},
  publisher={Elsevier BV},
  year = "2023"
}

Hydrogen Production Characteristic of Diesel Reforming under Ship SOFC-GT Operation Environment

Mi X, Wang X, Spataru C, Lv X & Weng Y (2022)

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@misc{hydrogenproduct-2022/11,
  title={Hydrogen Production Characteristic of Diesel Reforming under Ship SOFC-GT  Operation Environment},
  author={Mi X, Wang X, Spataru C, Lv X & Weng Y},
  year = "2022"
}

Fast and stable operation approach of ship solid oxide fuel cell-gas turbine hybrid system under uncertain factors

Wang X, Mi X, Lv X & Weng Y (2022), International Journal of Hydrogen Energy, 47(50), 21472-21491

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@article{fastandstableop-2022/6,
  title={Fast and stable operation approach of ship solid oxide fuel cell-gas turbine hybrid system under uncertain factors},
  author={Wang X, Mi X, Lv X & Weng Y},
  journal={International Journal of Hydrogen Energy},
  volume={47},
  pages={21472-21491},
  publisher={Elsevier BV},
  year = "2022"
}

Coordinated control approach for load following operation of SOFC-GT hybrid system

Wang X, Lv X, Mi X, Spataru C & Weng Y (2022), Energy, 248, 123548-123548

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@article{coordinatedcont-2022/6,
  title={Coordinated control approach for load following operation of SOFC-GT hybrid system},
  author={Wang X, Lv X, Mi X, Spataru C & Weng Y},
  journal={Energy},
  volume={248},
  number={123548},
  pages={123548-123548},
  publisher={Elsevier BV},
  year = "2022"
}

Design and simulation of LNG-fueled SOFC-GT Hybrid System for ship application

Weng X (2022)

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@misc{designandsimula-2022/2,
  title={Design and simulation of LNG-fueled SOFC-GT Hybrid System for ship application},
  author={Weng X},
  year = "2022"
}

Performance analysis of a biogas-fueled SOFC/GT hybrid system integrated with anode-combustor exhaust gas recirculation loops

Wang X, Lv X & Weng Y (2020), Energy, 197, 117213-117213

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@article{performanceanal-2020/4,
  title={Performance analysis of a biogas-fueled SOFC/GT hybrid system integrated with anode-combustor exhaust gas recirculation loops},
  author={Wang X, Lv X & Weng Y},
  journal={Energy},
  volume={197},
  number={117213},
  pages={117213-117213},
  publisher={Elsevier BV},
  year = "2020"
}

Multi-objective optimization of a gas turbine-based CCHP combined with solar and compressed air energy storage system

Wang X, Yang C, Huang M & Ma X (2018), Energy Conversion and Management, 164, 93-101

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@article{multiobjectiveo-2018/5,
  title={Multi-objective optimization of a gas turbine-based CCHP combined with solar and compressed air energy storage system},
  author={Wang X, Yang C, Huang M & Ma X},
  journal={Energy Conversion and Management},
  volume={164},
  pages={93-101},
  publisher={Elsevier BV},
  year = "2018"
}

Off-design performances of gas turbine-based CCHP combined with solar and compressed air energy storage with organic Rankine cycle

Wang X, Yang C, Huang M & Ma X (2018), Energy Conversion and Management, 156, 626-638

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@article{offdesignperfor-2018/1,
  title={Off-design performances of gas turbine-based CCHP combined with solar and compressed air energy storage with organic Rankine cycle},
  author={Wang X, Yang C, Huang M & Ma X},
  journal={Energy Conversion and Management},
  volume={156},
  pages={626-638},
  publisher={Elsevier BV},
  year = "2018"
}

Design and simulation of gas turbine-based CCHP combined with solar and compressed air energy storage in a hotel building

Yang C, Wang X, Huang M, Ding S & Ma X (2017), Energy and Buildings, 153, 412-420

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@article{designandsimula-2017/10,
  title={Design and simulation of gas turbine-based CCHP combined with solar and compressed air energy storage in a hotel building},
  author={Yang C, Wang X, Huang M, Ding S & Ma X},
  journal={Energy and Buildings},
  volume={153},
  pages={412-420},
  publisher={Elsevier BV},
  year = "2017"
}

Control Strategies of Steam-injected Gas Turbine in CCHP System

Zhang C, Wang X, Yang C & Yang Z (2017), Energy Procedia, 105, 1520-1525

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@article{controlstrategi-2017/5,
  title={Control Strategies of Steam-injected Gas Turbine in CCHP System},
  author={Zhang C, Wang X, Yang C & Yang Z},
  journal={Energy Procedia},
  volume={105},
  pages={1520-1525},
  publisher={Elsevier BV},
  year = "2017"
}

Effect of process parameters on solvolysis liquefaction of Chlorella pyrenoidosa in ethanol–water system and energy evaluation

Peng X, Ma X, Lin Y, Wang X, Zhang X et al. (2016), Energy Conversion and Management, 117, 43-53

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@article{effectofprocess-2016/6,
  title={Effect of process parameters on solvolysis liquefaction of Chlorella pyrenoidosa in ethanol–water system and energy evaluation},
  author={Peng X, Ma X, Lin Y, Wang X, Zhang X et al.},
  journal={Energy Conversion and Management},
  volume={117},
  pages={43-53},
  publisher={Elsevier BV},
  year = "2016"
}

Balancing Nucleation and Growth Kinetics Enables Fully‐Coordinated Acetic Acid‐Tethered Metal–Organic Frameworks for Technoeconomic‐Viable Hydrogen Storage

Li Z, Li Y, Huang K, Hu S, Li Y et al. (0), Advanced Energy Materials

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@article{balancingnuclea-/,
  title={Balancing Nucleation and Growth Kinetics Enables Fully‐Coordinated Acetic Acid‐Tethered Metal–Organic Frameworks for Technoeconomic‐Viable Hydrogen Storage},
  author={Li Z, Li Y, Huang K, Hu S, Li Y et al.},
  journal={Advanced Energy Materials},
  publisher={Wiley}
}