World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
39
Citations
5611
World Ranking
7747
National Ranking
397

Overview

Hui Tong Chua is affiliated with the University of Western Australia in Australia. Their primary fields of study include Engineering and Materials Science, with a focus on subfields such as Materials Chemistry, Mechanical Engineering, Biomedical Engineering, Building and Construction, and Renewable Energy, Sustainability and the Environment.

The scientist's research primarily investigates topics including Building Energy and Comfort Optimization, Geothermal Energy Systems and Applications, Graphene Research and Applications, MXene and MAX Phase Materials, 2D Materials and Applications, Flame Retardant Materials and Properties, and Carbon Dioxide Capture Technologies.

Recent publications by Hui Tong Chua reflect a broad engagement with materials and energy systems. Notable papers include:

  • "Carbon-based Flame Retardants for Polymers: A Bottom-up Review" (2024, Advanced Materials)
  • "Enhanced natural gas production using CO2 injection: Application to sustainable hydrogen production" (2023, Fuel)
  • "A comparison of ground and air source heat pump performance for domestic applications: A case study in Perth, Australia" (2021, International Journal of Energy Research)
  • "Methane production test of the anaerobic sludge from rice parboiling industries with the addition of biodiesel glycerol from rice bran oil in Brazil" (2021, Renewable and Sustainable Energy Reviews)
  • "A new zero-liquid-discharge brine concentrator using a Cascaded Fluidised Bed Ice Slurry Generator" (2021, Desalination)

Hui Tong Chua frequently publishes in venues including Advanced Materials, Teknomekanik, Fuel, International Journal of Energy Research, and Renewable and Sustainable Energy Reviews.

The scientist has collaborated extensively with several researchers, including:

  • Weike Zhang
  • Tine Aprianti
  • K. Srinivasan
  • Jeffrey M. Gordon
  • Jijiang He

Best Publications

  • Experimental investigation of the silica gel–water adsorption isotherm characteristics

    K. C. Ng;H. T. Chua;C. Y. Chung;C. H. Loke

  • Modeling the performance of two-bed, sillica gel-water adsorption chillers

    H.T. Chua;K.C. Ng;A. Malek;T. Kashiwagi

  • Adsorption Characteristics of Silica Gel + Water Systems

    Hui T. Chua;Kim C. Ng;Anutosh Chakraborty;Nay M. Oo

  • Waste heat driven dual-mode, multi-stage, multi-bed regenerative adsorption system

    B.B. Saha;S. Koyama;T. Kashiwagi;A. Akisawa

  • Transient modeling of a two-bed silica gel–water adsorption chiller

    Hui Chua;K.C. Ng;W. Wang;C. Yap

  • Centrifugal chillers: Thermodynamic modelling and a diagnostic case study

    J.M Gordon;Kim Choon Ng;Hui Tong Chua

  • Improved thermodynamic property fields of LiBr-H2O solution

    H. T. Chua;H. K. Toh;Abdul Malek;K. C. Ng

  • Multi-bed regenerative adsorption chiller - improving the utilization of waste heat and reducing the chilled water outlet temperature fluctuation

    H.T. Chua;K.C. Ng;A. Malek;T. Kashiwagi

  • The maximum temperature difference and polar characteristic of two-stage thermoelectric coolers

    X. C. Xuan;Kim Choon Ng;C. Yap;H. T. Chua

  • Experimental investigation of silica gel-water adsorption chillers with and without a passive heat recovery scheme

    Xiaolin Wang;Hui Tong Chua;Kim Choon Ng

  • Two bed silica gel - water adsorption chillers: An effectual lumped parameter model

    Xiaolin Wang;H.T. Chua

  • Low grade heat driven multi-effect distillation technology

    Xiaolin Wang;Xiaolin Wang;Alexander Christ;Alexander Christ;Klaus Regenauer-Lieb;Klaus Regenauer-Lieb;Kamel Hooman

  • A general model for studying effects of interface layers on thermoelectric devices performance

    X.C Xuan;K.C Ng;C Yap;H.T Chua

  • Thermodynamic modeling of an ammonia-water absorption chiller

    H.T. Chua;H.K. Toh;K.C. Ng

  • Optimization of two-stage thermoelectric coolers with two design configurations

    X.C Xuan;K.C Ng;C Yap;H.T Chua

  • The electro-adsorption chiller: a miniaturized cooling cycle with applications to micro-electronics

    Jeffrey M Gordon;K.C Ng;H.T Chua;A Chakraborty

  • How varying condenser coolant flow rate affects chiller performance: thermodynamic modeling and experimental confirmation

    J.M Gordon;K.C Ng;H.T Chua;C.K Lim

  • Optimizing chiller operation based on finite-time thermodynamics: universal modeling and experimental confirmation

    J.M Gordon;K.C Ng;H.T Chua

  • A novel process for low grade heat driven desalination

    Bijan Rahimi;Alexander Christ;Klaus Regenauer-Lieb;Hui Tong Chua;Hui Tong Chua

  • Microfluidic size selective growth of palladium nano-particles on carbon nano-onions

    Faizah Md Yasin;Ramiz A. Boulos;Boon Yong Hong;Andrew Cornejo

  • Diagnostics and optimization of reciprocating chillers: theory and experiment

    K.C. Ng;H.T. Chua;W. Ong;S.S. Lee

Frequent Co-Authors

Kim Choon Ng
Kim Choon Ng King Abdullah University of Science and Technology
Xiaolin Wang
Xiaolin Wang University of Tasmania
Klaus Regenauer-Lieb
Klaus Regenauer-Lieb University of New South Wales
Jeffrey M. Gordon
Jeffrey M. Gordon Ben-Gurion University of the Negev
Atsushi Akisawa
Atsushi Akisawa Tokyo University of Agriculture and Technology
Bidyut Baran Saha
Bidyut Baran Saha Kyushu University
Colin L. Raston
Colin L. Raston Flinders University
Xiangchun Xuan
Xiangchun Xuan Clemson University
Christopher Yap
Christopher Yap National University of Singapore
Shigeru Koyama
Shigeru Koyama Kyushu University

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