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Antonio Perejón

Antonio Perejón

D-Index & Metrics

Engineering and Technology

D-Index
43
Citations
6328
World Ranking
6268
National Ranking
147

Overview

Antonio Perejón is affiliated with the University of Seville in Spain. Their research spans several areas within engineering and materials science, focusing particularly on chemical looping, thermochemical processes, and advanced ceramic materials synthesis.

The primary fields of study for Antonio Perejón are Engineering and Materials Science. Their research subfields include Mechanical Engineering, Materials Chemistry, Biomedical Engineering, Electronic, Optical and Magnetic Materials, and Electrical and Electronic Engineering.

Antonio Perejón has contributed to research on diverse topics, including:

  • Adsorption and Cooling Systems
  • Chemical Looping and Thermochemical Processes
  • Thermal and Kinetic Analysis
  • Carbon Dioxide Capture Technologies
  • Ferroelectric and Piezoelectric Materials
  • Multiferroics and related materials
  • Advanced ceramic materials synthesis

Perejón's recent papers reflect a focus on thermochemical energy storage and ceramic materials. Some notable works include:

  • "Kinetics and cyclability of limestone (CaCO3) in presence of steam during calcination in the CaL scheme for thermochemical energy storage," 2021, Chemical Engineering Journal
  • "Pure perovskite BiFeO3-BaTiO3 ceramics prepared by reaction flash sintering of Bi2O3-Fe2O3-BaTiO3 mixed powders," 2021, Ceramics International
  • "Calcination under low CO2 pressure enhances the calcium Looping performance of limestone for thermochemical energy storage," 2020, Chemical Engineering Journal
  • "Calcium-Looping Performance of Biomineralized CaCO3 for CO2 Capture and Thermochemical Energy Storage," 2020, Industrial & Engineering Chemistry Research
  • "Steam-enhanced calcium-looping performance of limestone for thermochemical energy storage: The role of particle size," 2022, Journal of Energy Storage

Frequent coauthors of Antonio Perejón include Luis A. Pérez-Maqueda, Pedro E. Sánchez-Jiménez, Juan Arcenegui-Troya, A.F. Manchón-Gordón, and José Manuel Valverde.

Antonio Perejón's research has been published frequently in several key venues, with notable numbers of papers appearing in:

  • SSRN Electronic Journal
  • Ceramics International
  • Journal of Energy Storage
  • Journal of the American Ceramic Society
  • Chemical Engineering Journal

Best Publications

  • Kinetic analysis of complex solid-state reactions. A new deconvolution procedure.

    Antonio Perejón;Pedro E. Sánchez-Jiménez;José M. Criado;Luis A. Pérez-Maqueda

  • The Calcium-Looping technology for CO2 capture: On the important roles of energy integration and sorbent behavior

    Antonio Perejón;Antonio Perejón;Luis M. Romeo;Yolanda Lara;Pilar Lisbona

  • Kinetic model for thermal dehydrochlorination of poly(vinyl chloride)

    Pedro E. Sánchez-Jiménez;Antonio Perejón;José M. Criado;María J. Diánez

  • Calcium-Looping performance of mechanically modified Al2O3-CaO composites for energy storage and CO2 capture

    Monica Benitez-Guerrero;Monica Benitez-Guerrero;Jose Manuel Valverde;Pedro E. Sanchez-Jimenez;Antonio Perejon;Antonio Perejon

  • Generalized master plots as a straightforward approach for determining the kinetic model: The case of cellulose pyrolysis

    Pedro E. Sánchez-Jiménez;Luis A. Pérez-Maqueda;Antonio Perejón;José M. Criado

  • A new model for the kinetic analysis of thermal degradation of polymers driven by random scission

    Pedro E. Sánchez-Jiménez;Luis A. Pérez-Maqueda;Antonio Perejón;José M. Criado

  • Large-scale high-temperature solar energy storage using natural minerals

    Monica Benitez-Guerrero;Monica Benitez-Guerrero;Beatriz Sarrion;Antonio Perejon;Antonio Perejon;Pedro E. Sanchez-Jimenez

  • Multicycle activity of natural CaCO3 minerals for thermochemical energy storage in Concentrated Solar Power plants

    Monica Benitez-Guerrero;Monica Benitez-Guerrero;Jose Manuel Valverde;Pedro E. Sanchez-Jimenez;Antonio Perejon;Antonio Perejon

  • Role of calcium looping conditions on the performance of natural and synthetic Ca-based materials for energy storage

    Beatriz Sarrión;Antonio Perejón;Antonio Perejón;Pedro E. Sánchez-Jiménez;Luis A. Pérez-Maqueda

  • High-performance and low-cost macroporous calcium oxide based materials for thermochemical energy storage in concentrated solar power plants

    Pedro E. Sánchez Jiménez;Antonio Perejón;Mónica Benítez Guerrero;José M. Valverde

  • Enhancement of Fast CO2 Capture by a Nano-SiO2/CaO Composite at Ca-Looping Conditions

    J.M. Valverde;Antonio Perejón;Luis A. Pérez-Maqueda

  • Thermal decomposition of dolomite under CO2: insights from TGA and in situ XRD analysis

    Jose Manuel Valverde;Antonio Perejon;Antonio Perejon;Santiago Medina;Luis A. Perez-Maqueda

  • Low-cost Ca-based composites synthesized by biotemplate method for thermochemical energy storage of concentrated solar power

    Monica Benitez-Guerrero;Monica Benitez-Guerrero;Jose Manuel Valverde;Antonio Perejon;Antonio Perejon;Pedro E. Sanchez-Jimenez

  • Combined kinetic analysis of thermal degradation of polymeric materials under any thermal pathway

    P.E. Sánchez-Jiménez;L.A. Pérez-Maqueda;A. Perejón;J.M. Criado

  • On the Multicycle Activity of Natural Limestone/Dolomite for Thermochemical Energy Storage of Concentrated Solar Power

    Beatriz Sarrion;Jose Manuel Valverde;Antonio Perejon;Antonio Perejon;Luis Perez-Maqueda

  • Phase-pure BiFeO3 produced by reaction flash-sintering of Bi2O3 and Fe2O3

    Eva Gil-González;Antonio Perejón;Antonio Perejón;Pedro E. Sánchez-Jiménez;María J. Sayagués

  • Multicycle CO2 capture activity and fluidizability of Al-based synthesized CaO sorbents

    Babak Azimi;Maryam Tahmasebpoor;Pedro E. Sanchez-Jimenez;Antonio Perejon;Antonio Perejon

  • Effect of Thermal Pretreatment and Nanosilica Addition on Limestone Performance at Calcium-Looping Conditions for Thermochemical Energy Storage of Concentrated Solar Power

    Jose Manuel Valverde;Manuel Barea-López;Antonio Perejón;Pedro E. Sánchez-Jiménez

  • Nanoclay Nucleation Effect in the Thermal Stabilization of a Polymer Nanocomposite: A Kinetic Mechanism Change

    Pedro E. Sánchez-Jiménez;Luis A. Pérez-Maqueda;Antonio Perejón;José M. Criado

  • Generalized kinetic master plots for the thermal degradation of polymers following a random scission mechanism.

    Pedro E. Sánchez-Jiménez;Luis A. Pérez-Maqueda;Antonio Perejón;José M. Criado

Frequent Co-Authors

Luis A. Pérez-Maqueda
Luis A. Pérez-Maqueda Spanish National Research Council
Pedro E. Sánchez-Jiménez
Pedro E. Sánchez-Jiménez Spanish National Research Council
José M. Criado
José M. Criado Spanish National Research Council
Jose Manuel Valverde
Jose Manuel Valverde University of Seville
Anthony R. West
Anthony R. West University of Sheffield
Rishi Raj
Rishi Raj University of Colorado Boulder
Michael A. Hayward
Michael A. Hayward University of Oxford
Luis M. Romeo
Luis M. Romeo University of Zaragoza
Emmanuelle Vennin
Emmanuelle Vennin University of Burgundy
Ricardo Chacartegui
Ricardo Chacartegui University of Seville

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