World's Best Scientists 2026 revealed!

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Chemistry

D-Index
56
Citations
13471
World Ranking
11495
National Ranking
650

Research.com Recognitions

  • 2006 - Fellow of the Royal Academy of Engineering (UK)

Overview

Geoffrey C. Maitland is affiliated with Imperial College London in the United Kingdom. Their research spans multiple domains primarily within engineering and environmental science, with a particular focus on hydrocarbon exploration and reservoir analysis as well as CO2 sequestration and geologic interactions.

The scientist's work further covers several specialized topics, including:

  • Hydrocarbon exploration and reservoir analysis
  • CO2 Sequestration and Geologic Interactions
  • Phase Equilibria and Thermodynamics
  • Methane Hydrates and Related Phenomena
  • Atmospheric and Environmental Gas Dynamics
  • Adsorption, diffusion, and thermodynamic properties of materials
  • Zeolite Catalysis and Synthesis

Maitland's subfields of study reflect an interdisciplinary approach combining materials mechanics and environmental sciences. Their contributions span:

  • Mechanics of Materials
  • Biomedical Engineering
  • Environmental Engineering
  • Environmental Chemistry
  • Global and Planetary Change

Their recent publications include:

  • "Supercritical adsorption in micro- and meso-porous carbons and its utilisation for textural characterisation," 2020, Microporous and Mesoporous Materials
  • "Effects of chemical potential differences on methane hydrate formation kinetics," 2022, Chemical Engineering Journal
  • "Hybrid Pore-Scale Adsorption Model for CO2 and CH4 Storage in Shale," 2022, Energy & Fuels
  • "Phase Behaviour of Methane Hydrates in Confined Media," 2021, Crystals
  • "The Gas-in-Place and CO2 Storage Capacity of Shale Reservoirs at Subsurface Conditions," 2021, SSRN Electronic Journal

Frequent collaborators in their research include:

  • Humera Ansari
  • J. P. Martin Trusler
  • Ronny Pini
  • Lu Ai
  • Klaus Hellgardt

Publications are often found in specialized journals relevant to their fields of expertise, including:

  • Microporous and Mesoporous Materials
  • Crystals
  • Chemical Engineering Journal
  • Energy & Fuels
  • SSRN Electronic Journal

Geoffrey C. Maitland was awarded the status of Fellow of the Royal Academy of Engineering (UK) in 2006. This recognition reflects their standing within the engineering community.

Best Publications

  • Carbon capture and storage (CCS): the way forward

    Mai Bui;Claire S. Adjiman;André Bardow;Edward J. Anthony

  • Intermolecular Forces: Their Origin and Determination

    G. Maitland;M. Rigby;E. Smith;W. Wakeham

  • Interfacial Tension Measurements of the (H2O + CO2) System at Elevated Pressures and Temperatures†

    Apostolos Georgiadis;Geoffrey Maitland;J. P. Martin Trusler;Alexander Bismarck

  • Diffusion Coefficients of CO2 and N2 in Water at Temperatures between 298.15 K and 423.15 K at Pressures up to 45 MPa

    Shane P. Cadogan;Geoffrey C. Maitland;J. P. Martin Trusler

  • Measurement and modeling of the phase behavior of the (carbon dioxide + water) mixture at temperatures from 298.15 K to 448.15 K

    Shu-Xin Hou;Geoffrey C. Maitland;J.P. Martin Trusler

  • The pH of CO2-saturated water at temperatures between 308 K and 423 K at pressures up to 15 MPa

    Cheng Peng;John P. Crawshaw;Geoffrey C. Maitland;J.P. Martin Trusler

  • Critical reassessment of viscosities of 11 common gases

    Geoffrey C. Maitland;E. Brian Smith

  • A simplified representation of intermolecular potential energy

    G.C. Maitland;E.B. Smith

  • Interfacial Tension of (Brines + CO2): (0.864 NaCl + 0.136 KCl) at Temperatures between (298 and 448) K, Pressures between (2 and 50) MPa, and Total Molalities of (1 to 5) mol·kg–1

    Xuesong Li;Edo Boek;Geoffrey C. Maitland;J. P. Martin Trusler

  • Interfacial tensions of (H2O + H2) and (H2O + CO2 + H2) systems at temperatures of (298–448) K and pressures up to 45 MPa

    Y.T. Florence Chow;Geoffrey C. Maitland;J.P. Martin Trusler

  • Interfacial tension measurements and modelling of (carbon dioxide + n-alkane) and (carbon dioxide + water) binary mixtures at elevated pressures and temperatures

    Apostolos Georgiadis;Felix Llovell;Alexander Bismarck;Felipe J. Blas

  • The intermolecular pair potential of argon

    G.C. Maitland;E.B. Smith

  • Densities of Aqueous MgCl2(aq), CaCl2(aq), KI(aq), NaCl(aq), KCl(aq), AlCl3(aq), and (0.964 NaCl + 0.136 KCl)(aq) at Temperatures Between (283 and 472) K, Pressures up to 68.5 MPa, and Molalities up to 6 mol·kg–1

    Saif Al Ghafri;Geoffrey C. Maitland;J. P. Martin Trusler

  • Kinetics of calcite dissolution in CO2-saturated water at temperatures between (323 and 373) K and pressures up to 13.8 MPa

    Cheng Peng;John P. Crawshaw;Geoffrey C. Maitland;J.P. Martin Trusler

  • Solubility of carbon dioxide in aqueous solution of monoethanolamine or 2-amino-2-methyl-1-propanol: Experimental measurements and modelling

    Danlu Tong;J.P. Martin Trusler;Geoffrey C. Maitland;Jon Gibbins

  • Prediction of the Salting-Out Effect of Strong Electrolytes on Water + Alkane Solutions

    Birju. H. Patel;Patrice Paricaud;Amparo Galindo;Geoffrey. C. Maitland

  • Interfacial Tension of (Brines+CO2): CaCl2(aq), MgCl2(aq), and Na2SO4(aq) at Temperatures between (343 and 423) K, Pressures between (2 and 50) MPa, and Molalities of (0.5 to 5) mol.kg-1

    X Li;ES Boek;GC Maitland;Jpm Trusler

  • Interfacial Tension Measurements of the (H2O + n-Decane + CO2) Ternary System at Elevated Pressures and Temperatures

    Apostolos Georgiadis;Geoffrey Maitland;J. P. Martin Trusler;Alexander Bismarck

  • The direct determination of intermolecular potential energy functions from gas viscosity measurements

    D.W. Gough;G.C. Maitland;E.B. Smith

  • Molecular Dynamics Simulations of CO2 and Brine Interfacial Tension at High Temperatures and Pressures

    Xuesong Li;Daniel A. Ross;J. P. Martin Trusler;Geoffrey C. Maitland

  • Design of a novel flat-plate photobioreactor system for green algal hydrogen production

    Bojan Tamburic;Fessehaye W. Zemichael;Paul Crudge;Geoffrey C. Maitland

Frequent Co-Authors

J. P. Martin Trusler
J. P. Martin Trusler Imperial College London
William A. Wakeham
William A. Wakeham Imperial College London
Paul S. Fennell
Paul S. Fennell Imperial College London
Klaus Hellgardt
Klaus Hellgardt Imperial College London
Alexander Bismarck
Alexander Bismarck University of Vienna
Amparo Galindo
Amparo Galindo Imperial College London
Berend Smit
Berend Smit University of California, Berkeley
Edo S. Boek
Edo S. Boek Queen Mary University of London
George Jackson
George Jackson Imperial College London
Steffen Berg
Steffen Berg Shell (Netherlands)

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