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Engineering and Technology

D-Index
48
Citations
13339
World Ranking
4466
National Ranking
1282

Overview

Larry L. Baxter is a researcher affiliated with Brigham Young University in the United States. Their scholarly work spans the field of Engineering, with particular expertise in Biomedical Engineering, Mechanical Engineering, Aerospace Engineering, Catalysis, and Epidemiology.

The main focus of Baxter's research involves several key topics, including:

  • Carbon Dioxide Capture Technologies
  • Thermochemical Biomass Conversion Processes
  • Spacecraft and Cryogenic Technologies
  • Subcritical and Supercritical Water Processes
  • Phase Equilibria and Thermodynamics
  • Chronic Disease Management Strategies
  • Interprofessional Education and Collaboration

Baxter has published a number of articles in various academic venues. Frequent publication outlets include:

  • SSRN Electronic Journal
  • Energy
  • Health Expectations
  • Separation and Purification Technology
  • International Journal of Hydrogen Energy

Their recent published papers provide insight into the breadth and application of their research:

  • "Patient perspectives on primary care for multimorbidity: An integrative review," 2022, Health Expectations
  • "Biomass char gasification kinetic rates compared to data, including ash effects," 2022, Energy
  • "Analysis of cryogenic CO2 capture technology integrated with Water-Ammonia Absorption refrigeration cycle for CO2 capture and separation in cement plants," 2024, Separation and Purification Technology
  • "Cryogenic Carbon Capture™ Technoeconomic Analysis," 2021, SSRN Electronic Journal
  • "Techno-economic analysis of blue ammonia synthesis using cryogenic CO2 capture Process-A Danish case investigation," 2024, International Journal of Hydrogen Energy

They have collaborated frequently with a number of coauthors, including:

  • Ruochen Wu
  • Stephanie Burt
  • Hossein Asgharian
  • Florin Iov
  • Mads Pagh Nielsen

Best Publications

  • Combustion properties of biomass

    B.M Jenkins;L.L Baxter;T.R Miles

  • The implications of chlorine-associated corrosion on the operation of biomass-fired boilers

    H.P. Nielsen;F.J. Frandsen;K. Dam-Johansen;L.L. Baxter

  • Biomass-coal co-combustion: opportunity for affordable renewable energy

    Larry Lin Baxter

  • The behavior of inorganic material in biomass-fired power boilers: Field and laboratory experiences

    Larry L. Baxter;Thomas R. Miles;Bryan M. Jenkins;Thomas Milne

  • Ash deposition during biomass and coal combustion: A mechanistic approach

    Larry L. Baxter

  • Boiler deposits from firing biomass fuels

    Thomas R. Miles;Larry L. Baxter;Richard W. Bryers;Bryan M. Jenkins

  • Effects of particle shape and size on devolatilization of biomass particle

    Hong Lu;Elvin Ip;Justin Scott;Paul Foster

  • Comprehensive Study of Biomass Particle Combustion

    Hong Lu;Warren Robert;Gregory Peirce;Bryan Ripa

  • Alkali deposits found in biomass power plants: A preliminary investigation of their extent and nature. Volume 1

    T.R. Miles;L.L. Baxter;R.W. Bryers;B.M. Jenkins

  • Deposition of potassium salts on heat transfer surfaces in straw-fired boilers: a pilot-scale study

    H.P Nielsen;L.L Baxter;G Sclippab;C Morey

  • Biomass fly ash in concrete: Mixture proportioning and mechanical properties

    Shuangzhen Wang;Amber Miller;Emilio Llamazos;Fernando Fonseca

  • Mechanisms and kinetics of CO2 hydrogenation to value-added products: A detailed review on current status and future trends

    Samrand Saeidi;Sara Najari;Farhad Fazlollahi;Maryam Khoshtinat Nikoo

  • Pilot-Scale Investigation of the Influence of Coal−Biomass Cofiring on Ash Deposition

    Allen L. Robinson;and Helle Junker;Larry L. Baxter

  • Effects of sulfate species on V2O5/TiO2 SCR catalysts in coal and biomass-fired systems

    Xiaoyu Guo;Calvin Bartholomew;William Hecker;Larry L. Baxter

  • A CFD model for thermal conversion of thermally thick biomass particles

    Ramin Mehrabian;Selma Zahirovic;Robert Scharler;Ingwald Obernberger

  • Char fragmentation and fly ash formation during pulverized-coal combustion

    Larry L. Baxter

  • Durability of biomass fly ash concrete : Freezing and thawing and rapid chloride permeability tests

    Shuangzhen Wang;Emilio Llamazos;Larry Baxter;Fernando Fonseca

  • Comprehensive study of biomass fly ash in concrete: Strength, microscopy, kinetics and durability

    Shuangzhen Wang;Larry Baxter

  • Biomass fly ash in concrete: SEM, EDX and ESEM analysis

    Shuangzhen Wang;Larry Baxter;Fernando Fonseca

  • Impact of Mineral Impurities in Solid Fuel Combustion

    R. P. Gupta;T. F. Wall;L. Baxter

  • Nitrogen release during coal combustion

    Larry L. Baxter;Reginald E. Mitchell;Thomas H. Fletcher;Robert H. Hurt

Frequent Co-Authors

Bryan M. Jenkins
Bryan M. Jenkins University of California, Davis
Thomas H. Fletcher
Thomas H. Fletcher Brigham Young University
Allen L. Robinson
Allen L. Robinson Colorado State University
Terry Wall
Terry Wall University of Newcastle Australia
Robert H. Hurt
Robert H. Hurt Brown University
Calvin H. Bartholomew
Calvin H. Bartholomew Brigham Young University
Søren Knudsen Kær
Søren Knudsen Kær Aalborg University
Rajender Gupta
Rajender Gupta University of Alberta
Peter F. Bernath
Peter F. Bernath Old Dominion University
Lasse Rosendahl
Lasse Rosendahl Aarhus University

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