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D-Index
66
Citations
13572
World Ranking
1446
National Ranking
87

Overview

Vasilije Manovic is affiliated with Cranfield University in the United Kingdom and has an extensive research background in engineering, with a focus on carbon dioxide capture technologies and related areas.

Their main field of study is Engineering, with significant contributions across various subfields including:

  • Mechanical Engineering
  • Biomedical Engineering
  • Materials Chemistry
  • Catalysis
  • Environmental Engineering

Manovic's research topics prominently feature the following areas:

  • Carbon Dioxide Capture Technologies
  • Chemical Looping and Thermochemical Processes
  • Catalysts for Methane Reforming
  • Membrane Separation and Gas Transport
  • Phase Equilibria and Thermodynamics
  • CO2 Sequestration and Geologic Interactions
  • Catalytic Processes in Materials Science

Their research output includes publications in several frequent scientific venues such as:

  • Energy Conversion and Management
  • Chemical Engineering Journal
  • Energies
  • Fuel
  • Journal of Environmental Management

Recent notable papers authored or co-authored by Manovic include:

  • "Recent advances in carbon dioxide utilization," 2020, Renewable and Sustainable Energy Reviews
  • "Harnessing the power of machine learning for carbon capture, utilisation, and storage (CCUS) - a state-of-the-art review," 2021, Energy & Environmental Science
  • "Advances, challenges, and perspectives of biogas cleaning, upgrading, and utilisation," 2022, Fuel
  • "Process simulations of blue hydrogen production by upgraded sorption enhanced steam methane reforming (SE-SMR) processes," 2020, Energy Conversion and Management
  • "Techno-economic analysis of low-carbon hydrogen production by sorption enhanced steam methane reforming (SE-SMR) processes," 2020, Energy Conversion and Management

Frequent collaborators in their research include:

  • Seyed Ali Nabavi
  • Peter T. Clough
  • Basil Wadi
  • Ayub Golmakani
  • Dawid P. Hanak

Best Publications

  • A review of developments in carbon dioxide storage

    Mohammed D. Aminu;Seyed Ali Nabavi;Christopher A. Rochelle;Vasilije Manovic

  • Recent advances in carbon dioxide utilization

    Zhien Zhang;Shu-Yuan Pan;Hao Li;Jianchao Cai

  • Thermal activation of CaO-based sorbent and self-reactivation during CO2 capture looping cycles.

    Vasilije Manovic;Edward J. Anthony

  • Biomass resources and biofuels potential for the production of transportation fuels in Nigeria

    Juliet Ben-Iwo;Vasilije Manovic;Philip Longhurst

  • Calcium looping sorbents for CO2 capture

    María Erans;Vasilije Manovic;Edward J. Anthony

  • Steam reactivation of spent CaO-based sorbent for multiple CO2 capture cycles.

    Vasilije Manovic;Edward J Anthony

  • A review of developments in pilot-plant testing and modelling of calcium looping process for CO2 capture from power generation systems

    Dawid P. Hanak;Edward J. Anthony;Vasilije Manovic

  • Carbonation of CaO-Based Sorbents Enhanced by Steam Addition

    Vasilije Manovic;Edward J. Anthony

  • Harnessing the power of machine learning for carbon capture, utilisation, and storage (CCUS) – a state-of-the-art review

    Yongliang Yan;Yongliang Yan;Tohid N. Borhani;Sai Gokul Subraveti;Kasturi Nagesh Pai

  • A systematic review of key challenges of CO2 transport via pipelines

    Victor E. Onyebuchi;Athanasios Kolios;Dawid P. Hanak;Chechet Biliyok

  • Influence of calcination conditions on carrying capacity of CaO-based sorbent in CO2 looping cycles

    Vasilije Manovic;Jean-Pierre Charland;John Blamey;Paul S. Fennell

  • CaO-based pellets supported by calcium aluminate cements for high-temperature CO2 capture.

    Vasilije Manovic;Edward J Anthony

  • Advances, challenges, and perspectives of biogas cleaning, upgrading, and utilisation

    Unknown

  • Long-Term Behavior of CaO-Based Pellets Supported by Calcium Aluminate Cements in a Long Series of CO2 Capture Cycles

    Vasilije Manovic;Edward J. Anthony

  • CO2 looping cycle performance of a high-purity limestone after thermal activation/doping

    Vasilije Manovic;Edward J. Anthony;Gemma Grasa;J. Carlos Abanades

  • Lime-Based Sorbents for High-Temperature CO2 Capture—A Review of Sorbent Modification Methods

    Vasilije Manovic;Edward J. Anthony

  • Screening of Binders for Pelletization of CaO-Based Sorbents for CO2 Capture†

    Vasilije Manovic;Edward J. Anthony

  • Sequential SO2/CO2 capture enhanced by steam reactivation of a CaO-based sorbent

    Vasilije Manovic;Edward J. Anthony

  • High-purity hydrogen via the sorption-enhanced steam methane reforming reaction over a synthetic CaO-based sorbent and a Ni catalyst.

    Marcin Broda;Vasilije Manovic;Qasim Imtiaz;Agnieszka M. Kierzkowska

  • Parametric Study on the CO2 Capture Capacity of CaO-Based Sorbents in Looping Cycles

    Vasilije Manovic;Edward J. Anthony

  • Steam hydration of sorbents from a dual fluidized bed CO2 looping cycle reactor

    Vasilije Manovic;Dennis Lu;Edward J. Anthony

Frequent Co-Authors

Edward J. Anthony
Edward J. Anthony Cranfield University
Dawid P. Hanak
Dawid P. Hanak Teesside University
Goran T. Vladisavljevic
Goran T. Vladisavljevic Loughborough University
Arturo Macchi
Arturo Macchi University of Ottawa
Paul S. Fennell
Paul S. Fennell Imperial College London
Lunbo Duan
Lunbo Duan Southeast University
Dennis Y. Lu
Dennis Y. Lu Natural Resources Canada
Changlei Qin
Changlei Qin Chongqing University
Jingyu Ran
Jingyu Ran Chongqing University
Fabio Montagnaro
Fabio Montagnaro University of Naples Federico II

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