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Chemistry

D-Index
72
Citations
17211
World Ranking
5308
National Ranking
12

Overview

Hallvard F. Svendsen is affiliated with the Norwegian University of Science and Technology in Norway and has a research profile focused on engineering with particular emphasis on mechanical engineering, biomedical engineering, and industrial and manufacturing engineering.

Their recent publications cover topics related to carbon dioxide capture and lithium recovery processes. These include:

  • Available data and knowledge gaps of the CESAR1 solvent system, 2024, Carbon Capture Science & Technology
  • Optimizing Lithium CarBonate Recovery Through Gas-Liquid Reactive Crystallization of Lithium Hydroxide and Carbon Dioxide, 2024, SSRN Electronic Journal
  • Sustainable Lithium Recovery: Flue Gas Induced Lithium Carbonate Recovery from Industrial Black Mass, 2025, SSRN Electronic Journal

Svendsen's work spans several main research topics, including:

  • Carbon Dioxide Capture Technologies
  • Phase Equilibria and Thermodynamics
  • Membrane Separation and Gas Transport
  • Extraction and Separation Processes
  • Recycling and Waste Management Techniques

The scientist collaborates regularly with several coauthors, with frequent partnerships including Hanna K. Knuutila, Bhaskar Joshi, Seniz Ucar, Jens-Petter Andreassen, and Sulalit Bandyopadhyay.

Their publications most commonly appear in the journals:

  • SSRN Electronic Journal
  • Carbon Capture Science & Technology

Hallvard F. Svendsen's research integrates knowledge across multiple subfields of engineering, focusing particularly on developing and optimizing chemical and physical separation processes related to environmental and sustainable technologies.

Best Publications

  • Theoretical model for drop and bubble breakup in turbulent dispersions

    Hean Luo;Hallvard F. Svendsen

  • Heat of Absorption of Carbon Dioxide (CO2) in Monoethanolamine (MEA) and 2-(Aminoethyl)ethanolamine (AEEA) Solutions

    Inna Kim and;Hallvard F. Svendsen

  • Selection of new absorbents for carbon dioxide capture

    Sholeh Ma’mun;Hallvard F. Svendsen;Karl A. Hoff;Olav Juliussen

  • Solubility of CO2 in 15, 30, 45 and 60 mass% MEA from 40 to 120 °C and model representation using the extended UNIQUAC framework

    Ugochukwu E. Aronu;Shahla Gondal;Erik T. Hessen;Tore Haug-Warberg

  • Modeling of Vertical Bubble-Driven Flows

    Hugo A. Jakobsen;Bente H. Sannæs;Sverre Grevskott;Hallvard F. Svendsen

  • Ab Initio Study of the Reaction of Carbamate Formation from CO2 and Alkanolamines

    Eirik F. da Silva and;Hallvard F. Svendsen

  • Solubility of Carbon Dioxide in 30 mass % Monoethanolamine and 50 mass % Methyldiethanolamine Solutions

    † Sholeh Ma'mun;and Roger Nilsen;Hallvard F. Svendsen;Olav Juliussen

  • Liquid-Phase Composition Determination in CO2−H2O−Alkanolamine Systems: An NMR Study

    Jana Poplsteinova Jakobsen;Jostein Krane;Hallvard F. Svendsen

  • Carbon dioxide capture by absorption, challenges and possibilities

    Hallvard F. Svendsen;Erik T. Hessen;Thor Mejdell

  • Comparison of MEA degradation in pilot-scale with lab-scale experiments

    Hélène Lepaumier;Eirik F. da Silva;Aslak Einbu;Andreas Grimstvedt

  • Computational chemistry study of reactions, equilibrium and kinetics of chemical CO2 absorption

    Eirik F. da Silva;Eirik F. da Silva;Hallvard F. Svendsen

  • Experimental validation of a rigorous absorber model for CO2 postcombustion capture

    Finn Andrew Tobiesen;Hallvard F. Svendsen;Olav Juliussen

  • Ebulliometric Determination of Vapor−Liquid Equilibria for Pure Water, Monoethanolamine, N-Methyldiethanolamine, 3-(Methylamino)-propylamine, and Their Binary and Ternary Solutions

    Inna Kim;Hallvard F. Svendsen;Eli Børresen

  • Investigation of amine amino acid salts for carbon dioxide absorption

    Ugochukwu E. Aronu;Hallvard F. Svendsen;Karl Anders Hoff

  • Experimental and Modeling Study of the Solubility of Carbon Dioxide in Aqueous 30 Mass % 2-((2-Aminoethyl)amino)ethanol Solution

    Sholeh Ma'mun;Jana P Jakobsen;Hallvard F Svendsen;Olav Juliussen

  • Environmental impact of amines

    Ingvild Eide-Haugmo;Odd Gunnar Brakstad;Karl Anders Hoff;Kristin Rist Sørheim

  • Effect of viscosity on droplet-droplet collision outcome: Experimental study and numerical comparison

    Cecilie Gotaas;Pavel Havelka;Hugo A. Jakobsen;Hallvard F. Svendsen

  • Modeling and Experimental Study of Carbon Dioxide Absorption in Aqueous Alkanolamine Solutions Using a Membrane Contactor

    Karl Anders Hoff;Olav Juliussen;§ and Olav Falk-Pedersen;Hallvard F. Svendsen

  • A model for turbulent binary breakup of dispersed fluid particles

    Lars Hagesaether;Hugo A Jakobsen;Hallvard F Svendsen

  • Capital costs and energy considerations of different alternative stripper configurations for post combustion CO2 capture

    Mehdi Karimi;Magne Hillestad;Hallvard F. Svendsen

  • Modelling of slurry reactors. A fundamental approach

    R. Torvik;H.F. Svendsen

Frequent Co-Authors

Hugo A. Jakobsen
Hugo A. Jakobsen Norwegian University of Science and Technology
Nicolas von Solms
Nicolas von Solms Technical University of Denmark
Kaj Thomsen
Kaj Thomsen Technical University of Denmark
Olav Bolland
Olav Bolland Norwegian University of Science and Technology
Erling Rytter
Erling Rytter Norwegian University of Science and Technology
Timothy F. L. McKenna
Timothy F. L. McKenna Claude Bernard University Lyon 1
Liyuan Deng
Liyuan Deng Norwegian University of Science and Technology
Francisco J. Cervantes
Francisco J. Cervantes National Autonomous University of Mexico
May-Britt Hägg
May-Britt Hägg Norwegian University of Science and Technology
Zhiwu Liang
Zhiwu Liang Hunan University

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