Mohammad Rasaei | Chemical Engineering | Best Researcher Award

Dr. Mohammad Rasaei | Chemical Engineering | Best Researcher Award

Associate Professor at University of Tehran, Iran

Dr. Mohammad Reza Rasaei is an Associate Professor at the University of Tehran’s Institute of Petroleum Engineering, specializing in reservoir management, fluid flow in porous media, reservoir simulation, and geostatistics. With a Ph.D. in Petroleum Engineering and over 90 research publications, his contributions to the field are extensive, covering both theoretical advancements and practical applications in oil and gas reservoir studies. He has played a pivotal role in large-scale petroleum projects, including Azadegan and Yadavaran Oil Field studies, collaborating with NIOC and other major industry players. As a member of the Supreme Reservoir Advisory Committee and a technical consultant for various energy firms, he bridges the gap between academia and industry. Additionally, his mentorship of over 100 MSc and multiple PhD students has significantly contributed to academic growth in petroleum engineering. While he has strong national recognition, expanding his international collaborations, patent contributions, and research citations could further elevate his global impact.

Professional Profile

Education

Dr. Mohammad Reza Rasaei holds a Ph.D. in Petroleum Engineering from the University of Tehran, which he earned in 2005. Prior to that, he completed his M.Sc. in Chemical Engineering from the same university in 2000, following his B.Sc. in Chemical Engineering in 1998. His educational background provided a strong foundation in reservoir engineering, fluid mechanics, and geostatistics, enabling him to excel in both academic research and industry-driven projects in the field of petroleum engineering.

Professional Experience

Dr. Mohammad Reza Rasaei has an extensive professional background in petroleum engineering, combining academic leadership, industry consultancy, and project management. Since 2005, he has served as an Associate Professor at the University of Tehran’s Institute of Petroleum Engineering, mentoring over 100 MSc and multiple PhD students while teaching advanced courses in reservoir simulation, geostatistics, and production engineering. Beyond academia, he plays a crucial role in industry collaborations, serving as a member of the Supreme Reservoir Advisory Committee of NIOC, where he has evaluated over 30 oil and gas field development plans. His expertise extends to leading large-scale oil field projects, such as the Azadegan and Yadavaran Oil Field research and technology studies, which are 10-year mega projects in collaboration with NIOC. Additionally, he has held key technical advisory and managerial positions in various organizations, including Hofreh-Kavan Company, Keyson Oil Gas Energy Co., and Sarvak Azar Engineering Development Co. His contributions to reservoir engineering, field development, and subsurface modeling have significantly influenced both research advancements and practical industry solutions.

Research Interest

Dr. Mohammad Reza Rasaei’s research interests lie in the advanced study of reservoir engineering, focusing on reservoir management, fluid flow in porous media, reservoir simulation, and geostatistics. His work extensively explores fractured reservoirs, integrated pore-to-field upscaling, and flow assurance, aiming to optimize oil and gas recovery processes. Through his expertise in production optimization and reservoir modeling, he contributes to the development of innovative techniques for efficient hydrocarbon extraction and enhanced reservoir performance. His research bridges theoretical advancements with practical industry applications, making significant contributions to the field of petroleum engineering.

Award and Honor

There is no specific mention of awards and honors in the provided information for Dr. Mohammad Reza Rasaei. However, his prestigious roles and contributions in petroleum engineering, including his position as a member of the Supreme Reservoir Advisory Committee of NIOC, leadership in major oil field development projects, and 90+ research publications, highlight his recognition and influence in both academia and industry. His extensive mentorship of MSc and PhD students, along with his technical consultancy for leading energy firms, further reflects his impact and professional distinction. If additional details on awards or honors are available, they would further reinforce his eligibility for prestigious research accolades.

Conclusion

Dr. Mohammad Reza Rasaei is a highly accomplished researcher with significant contributions to petroleum engineering, particularly in reservoir management, simulation, and fractured reservoir studies. His academic leadership, industry collaborations, and technical expertise make him a strong candidate for the Best Researcher Award. However, expanding his international recognition, patent portfolio, and citation impact would further strengthen his case for prestigious global research honors.

Publications Top Noted

  • Title: Uncovering the impact of morphology of porous media and capillary number on immiscible oil recovery using computational fluid dynamics
    Authors: Ghodsi, M., Rasaei, M.R.
    Year: 2025
    Citations: 1
  • Title: Machine Learning Techniques in Enhanced Oil Recovery Screening Using Semisupervised Label Propagation
    Authors: Vaziri, P., Ahmadi, S., Daneshfar, F., Alimohammadi, H., Rasaei, M.R.
    Year: 2024
    Citations: 8
  • Title: Effect of alumina and silica nanocomposite based on polyacrylamide on light and heavy oil recovery in presence of formation water using micromodel
    Authors: Maleki, A., Sedaee, B., Bahramian, A., Rasaei, M.R., Dehghan, A.
    Year: 2024
    Citations: 6
  • Title: Experimental study of hydrophilic additives on filter cake permeability and filtrate losses
    Authors: Abed, M.A., Rasaei, M.R.
    Year: 2024
    Citations: 3
  • Title: Study the effect of cohesion on fine particle transportation through a pore doublet model: A CFD-DEM study
    Authors: Ghodsi, M., Rasaei, M.R.
    Year: 2024
    Citations: 1
  • Title: Lattice Boltzmann simulation of cross-linked polymer gel injection in porous media
    Authors: Kamel Targhi, E., Emami Niri, M., Rasaei, M.R., Zitha, P.L.J.
    Year: 2024
    Citations: 0
  • Title: Formulating a novel drilling mud using bio-polymers, nanoparticles, and SDS and investigating its rheological behavior, interfacial tension, and formation damage
    Authors: Taghdimi, R., Kaffashi, B., Rasaei, M.R., Dabiri, M.-S., Hemmati-Sarapardeh, A.
    Year: 2023
    Citations: 6
  • Title: Multi-objective optimization of WAG injection using machine learning and data-driven Proxy models
    Authors: Bocoum, A.O., Rasaei, M.R.
    Year: 2023
    Citations: 6
  • Title: Calculating porosity and permeability from synthetic micro-CT scan images based on a hybrid artificial intelligence
    Authors: Mohyeddini, A., Rasaei, M.R.
    Year: 2023
    Citations: 1
  • Title: Pore-network modelling of combined molecular diffusion and gravity drainage mechanisms in a porous matrix block: The competitive role of driving forces
    Authors: Mohammadi, A., Rasaei, M.R., Mashayekhizadeh, V., Nakhaee, A.
    Year: 2023
    Citations: 0

Xili Cui | Chemical Engineering | Best Researcher Award

Prof. Dr. Xili Cui | Chemical Engineering | Best Researcher Award

Deputy Director of Engineering Research Center of Functional Materials Intelligent Manufacturing of Zhejiang Province at Zhejiang University, China

Dr. Xili Cui is a distinguished researcher in the College of Chemical and Biological Engineering at Zhejiang University, recognized for her contributions to high-purity chemical separation and purification. A part of Zhejiang University’s “Hundred Talent Program,” she has received prestigious awards, including the National Science Foundation for Excellent Young Scholars and Zhejiang’s Distinguished Young Scholars. Dr. Cui’s work focuses on the “molecular recognition mechanism” to enhance separation processes, notably achieving breakthroughs in electronic-grade chemical separation. Her innovative methods, such as using anion-pillared porous materials for selective removal of gases, address critical industrial needs. She has published over 60 research papers in high-impact journals, including Science and Nature Communications, and holds 12 patents. Her accomplishments have earned her national awards like the First Prize in Natural Science from the Ministry of Education, making her a leading figure in chemical engineering and materials science.

Professional profile

EducationπŸ“š

Dr. Xili Cui has a robust academic background in chemical engineering, beginning with a Bachelor’s degree in Applied Chemistry from Qufu Normal University in 2010. She then pursued a Master’s degree in Chemical Technology at Tianjin University, working under the guidance of Professor Shaokun Tang, and graduated in 2013. Dr. Cui continued her studies at Zhejiang University, where she earned her Ph.D. in Chemical Engineering and Technology in 2016, supervised by Professor Huabin Xing. Following her doctoral studies, she expanded her expertise internationally as a Postdoctoral Research Associate at the University of South Florida’s Department of Chemistry, working with Professor Shengqian Ma from 2018 to 2019. Her education laid a solid foundation for her research in high-purity chemical separation, ultimately leading to her current role as a Researcher in Zhejiang University’s “Hundred Talent Program.” This extensive education has driven her contributions to advanced material synthesis and separation technology.

Professional ExperienceπŸ›οΈ

Dr. Xili Cui is a distinguished researcher at Zhejiang University, where she holds a position in the “Hundred Talent Program” within the College of Chemical and Biological Engineering. Her career began at Zhejiang University as a Research Assistant following her Ph.D. completion in 2016. In 2018, she broadened her research experience internationally, working as a Postdoctoral Research Associate in the Department of Chemistry at the University of South Florida with Professor Shengqian Ma. In 2019, she returned to Zhejiang University as a full-time researcher in the prestigious “Hundred Talent Program.” Her work focuses on the selective separation and purification of high-purity chemicals, with notable contributions to the molecular recognition mechanism and process enhancements for electronic and polymer-grade materials. In addition to her research roles, Dr. Cui has led major projects, including the National Key R&D Program of China, and collaborates closely with industry, securing substantial funding for innovative research projects.

πŸ”¬ Research Interest

Dr. Xili Cui’s research centers on the separation and purification of high-purity chemicals, with a specific focus on advancing molecular recognition mechanisms and enhancing separation processes. Her work addresses critical national needs for electronic and polymer-grade chemicals, where she has pioneered methods for selectively removing impurities from complex chemical mixtures. Dr. Cui’s innovative approaches include the design and synthesis of porous adsorbents with high anion density and precise pore size control, enabling efficient removal of acidic gases like sulfur dioxide and separation of olefins and alkynes. These technologies support the production of high-purity materials, particularly electronic-grade propylene and specialized fluorinated compounds for advanced manufacturing. Her research not only pushes the boundaries of chemical engineering but also contributes to sustainable practices by creating more efficient and selective separation processes, thus reducing waste and energy consumption in industrial applications.

πŸ†Awards and Honors

Dr. Xili Cui has earned numerous prestigious awards and honors recognizing her groundbreaking work in chemical engineering and her contributions to high-purity chemical separation technology. Among her notable accolades are the National Science Foundation for Excellent Young Scholars (2021) and the Zhejiang Provincial Distinguished Young Scholars Foundation (2019). In 2022, she received the First Prize in Natural Science from the Ministry of Education, affirming her research’s high impact on the field. Dr. Cui has also been recognized with the Hou Debang Chemical Science and Technology Award for young scientists and the CPCIF-Clariant Youth Innovation Award for Sustainable Development. Her achievements include the Ionic Liquids and Green Processes Youth Innovation Award and the Excellent Doctoral Dissertation Award in Zhejiang Province. Additionally, her work on acetylene capture and chemical separations earned her a spot in China’s “100 Most Influential Academic Papers” list, underscoring her role as a leading innovator in sustainable chemical engineering.

Conclusion

Dr. Xili Cui is a highly qualified candidate for the Best Researcher Award due to her extensive contributions to chemical engineering, especially in high-purity materials. Her record of publication, patents, and funded projects demonstrates strong research capabilities, while her leadership in the field of chemical separation and recognition as a young innovator further solidify her candidacy. With minor enhancements in global collaboration and interdisciplinary research, Dr. Cui would not only continue her impactful work but also potentially elevate her standing on an international scale.

Publications top notedπŸ“œ

  • Qi, H.-O., Lu, M., Qi, S.-C., Liu, X.-Q., Sun, L.-B.
    Year: 2025
    Title: Indolo[3,2-b]carbazole-based Hyper-Crosslinked Organic Polymers for Adsorptive Separation of C3H6/C2H4
    Journal: Separation and Purification Technology, Volume: 353, Article ID: 128349
    Citations: 0
  • Chen, H., Jiang, X., Wang, B., Li, J., Li, L.
    Year: 2025
    Title: Decoding the Zeolite Cage Effect in One-Step Ethylene Purification from CO2/C2H2/C2H4 Mixtures
    Journal: Chemical Engineering Science, Volume: 301, Article ID: 120729
    Citations: 0
  • Wang, Q., Yang, L., Ke, T., Cui, X., Xing, H.
    Year: 2024
    Title: Selective Sorting of Hexane Isomers by Anion-Functionalized Metal-Organic Frameworks with Optimal Energy Regulation
    Journal: Nature Communications, Volume: 15(1), Article ID: 2620
    Citations: 7
  • Pan, H., Zhao, J., Yang, L., Cui, X., Xing, H.
    Year: 2024
    Title: Modulating Pore Microenvironment in a Robust Ionic Porous Polymer for Efficient Propyne/Propylene Separation
    Journal: Chemical Engineering Science, Volume: 298, Article ID: 120413
    Citations: 0
  • Chen, S., Huang, S., Yang, Z., Xing, H., Cui, X.
    Year: 2024
    Title: Precise Construction of Nitrogen-Enriched Porous Ionic Polymers as Highly Efficient Sulfur Dioxide Adsorbent
    Journal: Small, Volume: 20(35), Article ID: 2400746
    Citations: 1
  • Cui, J., Qiu, Z., Yang, Z., Yang, L., Xing, H.
    Year: 2024
    Title: One-Step Butadiene Purification in a Sulfonate-Functionalized Metal–Organic Framework through Synergistic Separation Mechanism
    Journal: Angewandte Chemie – International Edition, Volume: 63(23), Article ID: e202403345
    Citations: 3
  • Zhang, P., Yin, P., Yang, L., Xing, H., Suo, X.
    Year: 2024
    Title: Recent Advances and Challenges in Ionic Materials for Post-Combustion Carbon Capture
    Journal: Carbon Capture Science and Technology, Volume: 11, Article ID: 100180
    Citations: 0
  • Guo, Z., Yang, L., Li, Y., Cui, X., Xing, H.
    Year: 2024
    Title: Pore-Environment Engineering of Pillared Metal-Organic Frameworks for Boosting the Removal of Acetylene from Ethylene
    Journal: Industrial and Engineering Chemistry Research, Volume: 63(19), Pages: 8751–8760
    Citations: 3
  • Zhang, W., Tang, R., Cui, X., Xing, H.
    Year: 2024
    Title: Fluorine Spectrum Analysis and Structural Characterization of Y-Type Perfluoropolyether Carboxylic Acid
    Journal: Huagong Xuebao/CIESC Journal, Volume: 75(4), Pages: 1718–1723
    Citations: 0
  • Qiu, Z., Cui, J., Yang, L., Cui, X., Xing, H.
    Year: 2024
    Title: Sulfonate Functional Ultramicroporous Materials with Suitable Pore Size and Layer-Stacked Structure for C4 Olefins Purification
    Journal: Journal of the American Chemical Society, Volume: 146(14), Pages: 9939–9946
    Citations: 3

Zhiwei Yao | Chemical Engineering | Best Researcher Award

Prof Dr. Zhiwei Yao | Chemical Engineering | Best Researcher Award

Professor at Liaoning Petrochemical University, China

Adhitiyan Tamilarasan is a passionate and dynamic Chemical Engineering professional with a strong academic foundation and a deep interest in research. Currently pursuing a Master’s degree at the Indian Institute of Technology, Tirupati, he has consistently demonstrated excellence in both academics and project work. His diverse experience ranges from molecular dynamics simulations to advanced projects on water treatment, biofuel production, and nanomaterials for medical applications. Adhitiyan’s commitment to learning, coupled with his creativity and curiosity, drives his pursuit of innovative solutions in chemical engineering. πŸŒŸπŸ”¬ His proactive approach to internships, training, and research collaborations highlights his determination to make meaningful contributions to the field. Adhitiyan is an avid learner with expertise in simulation software and programming languages, and his collaborative skills make him an invaluable team player in any research or professional setting. πŸš€πŸ“š

Professional profile

  • Scopus Profile
  • ORCID Profile
EducationπŸ“š

Adhitiyan Tamilarasan’s educational journey reflects his dedication to academic excellence and passion for Chemical Engineering. He is currently pursuing a Master of Technology in Chemical Engineering at the prestigious Indian Institute of Technology, Tirupati, where he holds an impressive CGPA of 9.81. Prior to this, Adhitiyan graduated with a Bachelor of Technology in Chemical Engineering from Arunai Engineering College, Tiruvannamalai, where he earned the Gold Medal for outstanding performance, maintaining a CGPA of 9.60. πŸ…πŸ“˜ His solid academic foundation was built during his school years at Seventh Day Adventist Matriculation Higher Secondary School, where he scored 91.67% in his intermediate Bio-Maths studies and 96.80% in matriculation. Adhitiyan’s continuous pursuit of learning through certifications in MATLAB, Aspen Plus Simulation, and Machine Learning demonstrates his commitment to enhancing his technical skills and staying at the forefront of modern engineering advancements. πŸ’»πŸ”§

Professional ExperienceπŸ›οΈ

Adhitiyan Tamilarasan has gained valuable professional experience through various internships and research training programs. He completed a two-month summer research internship in Molecular Dynamics Simulation at IIT Guwahati, under the guidance of Prof. Tamal Banerjee, where he explored advanced simulation techniques. πŸ§‘β€πŸ”¬ During his internship with NoobTron Pvt. Ltd., Adhitiyan contributed to a project reviewing the chemical catalytic reaction in biodiesel extraction. Additionally, he completed in-plant training at Cetex Petrochemicals Ltd., focusing on process instrumentation, safety, and control systems, gaining hands-on experience in the petrochemical industry. πŸ›’οΈ His internship at DFA Pharma India Pvt. Ltd. further enhanced his practical knowledge in the pharmaceutical field. These diverse experiences have equipped Adhitiyan with a well-rounded understanding of chemical engineering applications, including renewable energy, biodiesel production, and industrial water treatment. His exposure to research and development has strengthened his problem-solving abilities and collaborative skills. βš™οΈπŸŒ

πŸ”¬ Research Interest

Adhitiyan Tamilarasan’s research interests lie at the intersection of chemical engineering, nanotechnology, and sustainability. He is deeply engaged in studying molecular dynamics simulations for carbon dioxide adsorption, aiming to develop efficient deep eutectic solvents for CO2 capture. πŸŒ±πŸ’§ His passion for environmental sustainability is reflected in his projects on bioethanol production from brown algae and the development of advanced membrane systems for zero liquid discharge effluent treatment. Adhitiyan also explores the biomedical applications of nanotechnology, particularly in the biogenesis of Ag- and Zn-doped nanohydroxyapatite for antimicrobial uses in bone tissue engineering. πŸ”¬ His work on green synthesis of nanoparticles for photocatalytic degradation of industrial dyes showcases his dedication to developing eco-friendly solutions for water treatment. With a keen interest in renewable energy, water purification, and nanomaterials, Adhitiyan aspires to contribute to the advancement of sustainable technologies. πŸŒΏπŸ”§

πŸ†Awards and Honors

Adhitiyan Tamilarasan has earned several prestigious awards and accolades throughout his academic and research journey. He was awarded the esteemed DAAD Scholarship under the KOSPIE program for studying and researching as an exchange student at the Technical University of Munich, Germany. πŸŒπŸŽ“ His academic excellence was further recognized when he won the Gold Medal for his exceptional performance during his undergraduate studies at Arunai Engineering College. He also secured 1st place in a national essay contest on renewable energy and electric vehicles, organized by the National Institute of Wind Energy and the Ministry of New and Renewable Energy, India. πŸ†πŸŒΏ Adhitiyan’s research work has been equally distinguished, as he received the Best Paper Award at the National Conference on Sustainable Technologies in Chemical-Biological Systems (STCBS-2023) for his innovative work on nanohydroxyapatite for medical applications. These achievements underscore his commitment to excellence in both academia and research. πŸŒŸπŸ“œ

Conclusion

Adhitiyan Tamilarasan is a highly promising candidate for the Best Researcher Award, with significant academic achievements, strong research background, and relevant technical skills. His projects tackle critical global challenges like CO2 capture, water treatment, bioethanol production, and waste management, making his work impactful. While there are areas where he could expand, such as further specialization, international collaborations, and more high-impact publications, his overall profile demonstrates substantial potential as a researcher who can contribute to addressing environmental and energy-related challenges. Therefore, he is a suitable candidate for the award.

Publications top notedπŸ“œ
  • Ecological and Economic Impacts on Biofuel Production 🌱🌍

Authors: S. Sivarathnakumar, T. Adhitiyan, S. Gubendhiran, R. Praveenkumar
Published in: International Conference on Advances and Innovations in Recycling
Cited by: 1
Year: 2021

  • Green Synthesized Silver and Zinc Doped Hydroxyapatite Photocatalysts to Remove Methylene Blue and Rhodamine B Dyes from Industrial Wastewater πŸ§ͺπŸ’§

Authors: T. Adhitiyan, K. Dhanaraj, S. Gubendhiran, G. Suresh, E. Thenpandiyan
Published in: Chemical Physics Impact
Cited by: —
Year: 2024

  • Cardiospermum Halicacabum Leaf Extract Assisted Ag and Zn Doped Biocompatible Nanohydroxyapatite Photocatalyst for Efficient Dye Degradation from Wastewater πŸŒΏπŸ”¬

Authors: K. Dhanaraj, T. Adhitiyan, S. Gubendhiran, E. Thenpandiyan, P. Ilaiyaraja
Published in: Materials Science and Engineering: B
Cited by: —
Year: 2024

  • Ecological and Economic Impacts on Biofuel Production 🌱⚑

Authors: S. Sivarathnakumar, T. Adhitiyan, S. Gubendhiran, R. Praveenkumar
Published in: Advances in Waste Management: Proceedings of the International Conference on…
Cited by: —
Year: 2023

Adhitiyan Tamilarasan | Chemical Engineering | Best Researcher Award

Mr. Adhitiyan Tamilarasan | Chemical Engineering | Best Researcher Award

Masters in Chemical EngineeringΒ at Indian Institute of Technology, Tirupati, India

Adhitiyan Tamilarasan is a passionate and dynamic Chemical Engineering professional with a strong academic foundation and a deep interest in research. Currently pursuing a Master’s degree at the Indian Institute of Technology, Tirupati, he has consistently demonstrated excellence in both academics and project work. His diverse experience ranges from molecular dynamics simulations to advanced projects on water treatment, biofuel production, and nanomaterials for medical applications. Adhitiyan’s commitment to learning, coupled with his creativity and curiosity, drives his pursuit of innovative solutions in chemical engineering. πŸŒŸπŸ”¬ His proactive approach to internships, training, and research collaborations highlights his determination to make meaningful contributions to the field. Adhitiyan is an avid learner with expertise in simulation software and programming languages, and his collaborative skills make him an invaluable team player in any research or professional setting. πŸš€πŸ“š

Professional profile

EducationπŸ“š

Adhitiyan Tamilarasan’s educational journey reflects his dedication to academic excellence and passion for Chemical Engineering. He is currently pursuing a Master of Technology in Chemical Engineering at the prestigious Indian Institute of Technology, Tirupati, where he holds an impressive CGPA of 9.81. Prior to this, Adhitiyan graduated with a Bachelor of Technology in Chemical Engineering from Arunai Engineering College, Tiruvannamalai, where he earned the Gold Medal for outstanding performance, maintaining a CGPA of 9.60. πŸ…πŸ“˜ His solid academic foundation was built during his school years at Seventh Day Adventist Matriculation Higher Secondary School, where he scored 91.67% in his intermediate Bio-Maths studies and 96.80% in matriculation. Adhitiyan’s continuous pursuit of learning through certifications in MATLAB, Aspen Plus Simulation, and Machine Learning demonstrates his commitment to enhancing his technical skills and staying at the forefront of modern engineering advancements. πŸ’»πŸ”§

Professional ExperienceπŸ›οΈ

Adhitiyan Tamilarasan has gained valuable professional experience through various internships and research training programs. He completed a two-month summer research internship in Molecular Dynamics Simulation at IIT Guwahati, under the guidance of Prof. Tamal Banerjee, where he explored advanced simulation techniques. πŸ§‘β€πŸ”¬ During his internship with NoobTron Pvt. Ltd., Adhitiyan contributed to a project reviewing the chemical catalytic reaction in biodiesel extraction. Additionally, he completed in-plant training at Cetex Petrochemicals Ltd., focusing on process instrumentation, safety, and control systems, gaining hands-on experience in the petrochemical industry. πŸ›’οΈ His internship at DFA Pharma India Pvt. Ltd. further enhanced his practical knowledge in the pharmaceutical field. These diverse experiences have equipped Adhitiyan with a well-rounded understanding of chemical engineering applications, including renewable energy, biodiesel production, and industrial water treatment. His exposure to research and development has strengthened his problem-solving abilities and collaborative skills. βš™οΈπŸŒ

πŸ”¬ Research Interest

Adhitiyan Tamilarasan’s research interests lie at the intersection of chemical engineering, nanotechnology, and sustainability. He is deeply engaged in studying molecular dynamics simulations for carbon dioxide adsorption, aiming to develop efficient deep eutectic solvents for CO2 capture. πŸŒ±πŸ’§ His passion for environmental sustainability is reflected in his projects on bioethanol production from brown algae and the development of advanced membrane systems for zero liquid discharge effluent treatment. Adhitiyan also explores the biomedical applications of nanotechnology, particularly in the biogenesis of Ag- and Zn-doped nanohydroxyapatite for antimicrobial uses in bone tissue engineering. πŸ”¬ His work on green synthesis of nanoparticles for photocatalytic degradation of industrial dyes showcases his dedication to developing eco-friendly solutions for water treatment. With a keen interest in renewable energy, water purification, and nanomaterials, Adhitiyan aspires to contribute to the advancement of sustainable technologies. πŸŒΏπŸ”§

πŸ†Awards and Honors

Adhitiyan Tamilarasan has earned several prestigious awards and accolades throughout his academic and research journey. He was awarded the esteemed DAAD Scholarship under the KOSPIE program for studying and researching as an exchange student at the Technical University of Munich, Germany. πŸŒπŸŽ“ His academic excellence was further recognized when he won the Gold Medal for his exceptional performance during his undergraduate studies at Arunai Engineering College. He also secured 1st place in a national essay contest on renewable energy and electric vehicles, organized by the National Institute of Wind Energy and the Ministry of New and Renewable Energy, India. πŸ†πŸŒΏ Adhitiyan’s research work has been equally distinguished, as he received the Best Paper Award at the National Conference on Sustainable Technologies in Chemical-Biological Systems (STCBS-2023) for his innovative work on nanohydroxyapatite for medical applications. These achievements underscore his commitment to excellence in both academia and research. πŸŒŸπŸ“œ

Conclusion

Adhitiyan Tamilarasan is a highly promising candidate for the Best Researcher Award, with significant academic achievements, strong research background, and relevant technical skills. His projects tackle critical global challenges like CO2 capture, water treatment, bioethanol production, and waste management, making his work impactful. While there are areas where he could expand, such as further specialization, international collaborations, and more high-impact publications, his overall profile demonstrates substantial potential as a researcher who can contribute to addressing environmental and energy-related challenges. Therefore, he is a suitable candidate for the award.

Publications top notedπŸ“œ
  • Ecological and Economic Impacts on Biofuel Production 🌱🌍

Authors: S. Sivarathnakumar, T. Adhitiyan, S. Gubendhiran, R. Praveenkumar
Published in: International Conference on Advances and Innovations in Recycling
Cited by: 1
Year: 2021

  • Green Synthesized Silver and Zinc Doped Hydroxyapatite Photocatalysts to Remove Methylene Blue and Rhodamine B Dyes from Industrial Wastewater πŸ§ͺπŸ’§

Authors: T. Adhitiyan, K. Dhanaraj, S. Gubendhiran, G. Suresh, E. Thenpandiyan
Published in: Chemical Physics Impact
Cited by: —
Year: 2024

  • Cardiospermum Halicacabum Leaf Extract Assisted Ag and Zn Doped Biocompatible Nanohydroxyapatite Photocatalyst for Efficient Dye Degradation from Wastewater πŸŒΏπŸ”¬

Authors: K. Dhanaraj, T. Adhitiyan, S. Gubendhiran, E. Thenpandiyan, P. Ilaiyaraja
Published in: Materials Science and Engineering: B
Cited by: —
Year: 2024

  • Ecological and Economic Impacts on Biofuel Production 🌱⚑

Authors: S. Sivarathnakumar, T. Adhitiyan, S. Gubendhiran, R. Praveenkumar
Published in: Advances in Waste Management: Proceedings of the International Conference on…
Cited by: —
Year: 2023

Ming Xia | Chemical Engineering | Best Researcher Award

Dr. Ming Xia | Chemical Engineering | Best Researcher Award

Prof. at Nanjing Tech University, China

Ming Xia is a distinguished professor of Chemical Engineering at Nanjing Tech University, specializing in Green Intelligent Chemical Product Development and Environmental Protection. His career is marked by impactful contributions to catalytic reaction engineering, industrial catalysis, and process systems engineering. With over a decade of academic and industrial experience, Ming has established himself as a leader in innovative technologies for sustainable processes. His achievements include scaling up industrial demonstration equipment for Fischer-Tropsch synthesis and advancing green chemistry methods for CO2 conversion. Ming’s prolific research output includes publications in top-tier journals and multiple China Patents, highlighting his role in bridging the gap between fundamental research and practical industrial applications. 🌱πŸ§ͺ His research is focused on developing cleaner, greener chemical processes and is recognized for its sustainability-driven solutions.

Professional profile

EducationπŸ“š

Ming Xia’s academic journey began with a Bachelor’s degree in Chemical Engineering & Technology from Zhengzhou University (2005-2009), where he laid the foundation for his passion for sustainable chemical processes. He further honed his expertise by pursuing a Ph.D. in Chemical Engineering at Tianjin University (2009-2014). His doctoral studies focused on catalytic reaction engineering and industrial catalysis, setting the stage for his future work in developing greener chemical production methods. πŸŽ“πŸ“˜ Ming’s pursuit of knowledge didn’t stop there; he continued his postdoctoral research at the Institute of Coal Chemistry, CAS-Lutianhua Group Corporation (2018-2021). This period of study was key to his innovations in process systems engineering and novel reactors for sustainable chemical processes. His academic background provides a solid foundation for his impressive research career.

Professional ExperienceπŸ›οΈ

Ming Xia has a rich professional background in both academia and industry. He began as a professor at the Institute of Coal Chemistry, CAS (2014-2022), where he led key projects on CO2 to dimethyl carbonate conversion, acetate to ethanol, and other sustainable chemical processes. During his time there, he played an instrumental role in scaling up Fischer-Tropsch synthesis technologies. In 2022, Ming joined Nanjing Tech University as a professor in Chemical Engineering, continuing his pioneering work in green and intelligent chemical processes. πŸ’πŸ§‘β€πŸ« His hands-on involvement in industrial projects, coupled with academic leadership, underscores his dual commitment to research and practical application. Additionally, his role in obtaining patents and developing novel reactor designs further solidifies his reputation as a leader in catalytic engineering.

πŸ”¬ Research Interest

Ming Xia’s research focuses on green intelligent chemical processes that aim to make industrial practices more sustainable and efficient. His primary areas of interest include catalytic reaction engineering, industrial catalysis, and process systems engineering. πŸ§‘β€πŸ”¬πŸ”¬ His work combines experimental and simulation-based methods to innovate in areas such as CO2 conversion, dimethyl carbonate production, and the synthesis of long-chain alpha-olefins. Ming’s passion lies in the development of novel reactors that enhance process efficiency while minimizing environmental impact. πŸŒ±πŸ’‘ His research also extends to Fischer-Tropsch synthesis, where he has explored new kinetic models and mass transfer advantages for industrial catalysts. Through his research, Ming aims to create cleaner, more efficient chemical processes that can be scaled up for industrial use, contributing to both academic knowledge and practical solutions for global environmental challenges.

πŸ† Awards and Honors

Ming Xia has earned numerous accolades for his research achievements. One of his most significant accomplishments was the successful scale-up of a 30,000-ton/a lubricant base oil demonstration project, for which he received industry recognition. πŸ† His work on novel catalytic systems and process optimization has garnered several China Patents, underscoring his contribution to industrial innovation. Ming has also been a recipient of prestigious grants and awards from national research organizations, recognizing his groundbreaking work in green chemistry and environmental protection. 🌍 His extensive publication record in highly reputed journals, such as the Chemical Engineering Journal and the AIChE Journal, reflects his research excellence. Ming’s work not only advances scientific knowledge but also has a tangible impact on sustainable industrial practices, earning him respect and recognition across academic and industrial fields alike.

Conclusion

Ming Xia is an excellent candidate for the Best Researcher Award due to his significant contributions to catalytic engineering, novel reactor designs, and green chemical processes. His ability to balance theoretical research with practical industrial applications sets him apart as an impactful researcher. With minor enhancements in global research presence and academic leadership, he would be an even stronger contender for such prestigious awards.

Publications top notedπŸ“œ
  1. Comparison of pressure-swing distillation and extractive distillation methods for isopropyl alcohol/diisopropyl ether separation
    • Authors: H. Luo, K. Liang, W. Li, Y. Li, M. Xia, C. Xu
    • Year: 2014
    • Citations: 108 πŸ”¬πŸ“˜
  2. Design and control of distillation system for methylal/methanol separation. Part 2: pressure swing distillation with full heat integration
    • Authors: B. Yu, Q. Wang, C. Xu
    • Year: 2012
    • Citations: 104 πŸ”§βš™οΈ
  3. Design and control of distillation system for methylal/methanol separation. Part 1: extractive distillation using DMF as an entrainer
    • Authors: Q. Wang, B. Yu, C. Xu
    • Year: 2012
    • Citations: 103 πŸ”πŸ“Š
  4. Design and control of extractive dividing-wall column for separating methylal–methanol mixture
    • Authors: M. Xia, B. Yu, Q. Wang, H. Jiao, C. Xu
    • Year: 2012
    • Citations: 96 πŸ—οΈβš—οΈ
  5. Energy-efficient extractive distillation process by combining preconcentration column and entrainer recovery column
    • Authors: K. Liang, W. Li, H. Luo, M. Xia, C. Xu
    • Year: 2014
    • Citations: 83 πŸ’‘πŸŒ
  6. New pressure-swing distillation for separating pressure-insensitive maximum boiling azeotrope via introducing a heavy entrainer: design and control
    • Authors: W. Li, L. Shi, B. Yu, M. Xia, J. Luo, H. Shi, C. Xu
    • Year: 2013
    • Citations: 61 πŸ› οΈπŸ”¬
  7. Design and control of reactive dividing-wall column for the production of methyl acetate
    • Authors: D. An, W. Cai, M. Xia, X. Zhang, F. Wang
    • Year: 2015
    • Citations: 52 πŸ­βš›οΈ
  8. Temperature control for extractive dividing-wall column with an adjustable vapor split: methylal/methanol azeotrope separation
    • Authors: M. Xia, Y. Xin, J. Luo, W. Li, L. Shi, Y. Min, C. Xu
    • Year: 2013
    • Citations: 46 πŸŒ‘οΈπŸ“
  9. Au-Pd nanoparticles immobilized on TiO2 nanosheet as an active and durable catalyst for solvent-free selective oxidation of benzyl alcohol
    • Authors: Z. Wang, J. Feng, X. Li, R. Oh, D. Shi, O. Akdim, M. Xia, L. Zhao, X. Huang, …
    • Year: 2021
    • Citations: 41 πŸ§ͺ🌿
  10. Unlocking biomass energy: continuous high-yield production of 5-hydroxymethylfurfural in water
  • Authors: P. Yan, M. Xia, S. Chen, W. Han, H. Wang, W. Zhu
  • Year: 2020
  • Citations: 37 🌱🌊
  1. Effect of process conditions on the product distribution of Fischer-Tropsch synthesis over an industrial cobalt-based catalyst using a fixed-bed reactor
  • Authors: C. Niu, M. Xia, C. Chen, Z. Ma, L. Jia, B. Hou, D. Li
  • Year: 2020
  • Citations: 33 πŸ›’οΈπŸ”₯
  1. A comprehensive insight into the role of barium in catalytic performance of Co/Al2O3 catalyst for Fischer-Tropsch synthesis
  • Authors: S. Guo, Q. Wang, M. Wang, Z. Ma, J. Wang, B. Hou, C. Chen, M. Xia, L. Jia, D. Li
  • Year: 2019
  • Citations: 31 πŸ§«βš™οΈ
  1. Comparative study of CO adsorption on zirconia polymorphs with DRIFT and transmission FT-IR spectroscopy
  • Authors: W. Zhou, Z. Ma, S. Guo, M. Wang, J. Wang, M. Xia, L. Jia, B. Hou, D. Li, Y. Zhao
  • Year: 2018
  • Citations: 27 πŸ’¨πŸ§¬
  1. Deep eutectic solvent-based liquid-liquid microextraction for the HPLC-DAD analysis of bisphenol A in edible oils
  • Authors: Q. Xie, M. Xia, H. Lu, H. Shi, D. Sun, B. Hou, L. Jia, D. Li
  • Year: 2020
  • Citations: 24 πŸ§ͺ🍢
  1. The Fischer–Tropsch synthesis performance over cobalt supported on silicon-based materials: the effect of thermal conductivity of the support
  • Authors: M. Zhong, Y. Guo, J. Wang, Z. Ma, M. Xia, C. Chen, L. Jia, B. Hou, D. Li
  • Year: 2019
  • Citations: 20 πŸ”₯🧱

Teerawat Sema | Chemical Engineering | Best Researcher Award

Assist Prof Dr Teerawat Sema | Chemical Engineering | Best Researcher Award

University Professor atΒ Department of Chemical Technology, Faculty of Science, Chulalongkorn University,Β Thailand

Dr. Teerawat Sema is an esteemed Assistant Professor in the Department of Chemical Technology at Chulalongkorn University, Thailand, and an Adjunct Professor in Process Systems Engineering at the University of Regina, Canada. With a solid academic and professional background in chemical engineering, Dr. Sema has significantly contributed to the fields of gas separation, carbon capture, and AI-driven systems for the petroleum industry. His work is recognized both in academia and industry, reflected in numerous awards and collaborations with leading global energy companies.

Professional profile

EducationπŸ“š

πŸŽ“ Professor Hui Tong Chua’s educational journey is marked by excellence and depth. He earned his Ph.D. (1999), M.Eng (1995), and B.Eng (First Class Honors, 1993) from the Mechanical Engineering Department at the National University of Singapore. πŸ“š His solid foundation in engineering is complemented by prestigious professional qualifications, including HonFIEAust, CPEng, and FIChemE, showcasing his commitment to advancing his expertise in chemical and mechanical engineering. 🌟 His educational achievements underscore his dedication to both academic rigor and professional excellence in the field.

Professional ExperienceπŸ›οΈ

πŸ‘¨β€πŸ”¬ Professor Hui Tong Chua boasts an illustrious career in Chemical Engineering. He currently serves as the Head of the Department of Chemical Engineering at The University of Western Australia. 🌏 His extensive roles include Vice President of the Asian Pacific Confederation of Chemical Engineering, Chair of ARC CoE for Carbon Science & Innovation, and Chief Scientific Officer at Ablano.

πŸŽ“ Education:

Dr. Sema earned his Ph.D. in Engineering from the University of Regina, Canada, where he conducted pioneering research on carbon dioxide absorption kinetics. He also holds an M.S. in Petrochemical Technology from Chulalongkorn University, Thailand, and a B.Eng. in Petrochemicals and Polymeric Materials from Silpakorn University, Thailand.

πŸ’Ό Work Experience:

With over a decade of experience, Dr. Sema has held various academic and industry roles. He has served as a Postdoctoral Fellow at the University of Regina and Hunan University, China, and worked as a Senior Consulting Engineer on confidential projects with leading energy companies. His academic career includes positions as a Lecturer at Mahidol University and Chulalongkorn University, where he has been instrumental in developing innovative educational programs.

πŸ”¬ Research Focus:

Dr. Sema’s research interests are centered on gas separation and purification, carbon capture, and the application of AI in the chemical and petroleum industries. His work integrates advanced heat and mass transfer processes with chemical reactions, aiming to develop sustainable and efficient technologies.

πŸ† Awards and Honors:

Dr. Sema has received numerous accolades, including the 2024 Mid-Career Outstanding Research Fellow and the 2020 Young Outstanding Research Fellow at Chulalongkorn University. He was also awarded the Young International Scientist Award by the Chinese government in 2014.

πŸ›  Skills:

Dr. Sema possesses a diverse skill set, including expertise in chemical process simulation, knowledge-based systems, and the development of thermoplastic starch. He is also proficient in project management, particularly in construction and industrial collaborations.

πŸ“š Teaching Experience:

Dr. Sema has a rich teaching background, having designed and delivered courses in chemical engineering and technology. His commitment to education is further demonstrated by his involvement in curriculum development and accreditation processes at Mahidol University and Chulalongkorn University.

🌐 Professional Memberships and Services:

An active contributor to the academic community, Dr. Sema serves on the editorial boards of several journals, including Discovery Chemical Engineering and the Petroleum & Petrochemical Engineering Journal. He is also a regular reviewer for international journals and a research grant reviewer for organizations such as the Natural Sciences and Engineering Research Council of Canada.

Conclusion

The individual’s extensive research in gas separation, carbon capture, and knowledge-based systems, coupled with a solid academic background and significant professional achievements, makes them an excellent candidate for the Best Researcher Award. Their contributions to both academia and industry, along with their recognition through various awards and professional services, underscore their suitability for this prestigious recognition.

Publications top notedπŸ“œ
  • Performance assessment of novel catalytic spouted-bed vapor jet flow heat exchanger in amine-based carbon capture process
    πŸ—“οΈ Year: 2025
    πŸ“š Journal: Separation and Purification Technology
    πŸ‘₯ Authors: Yang, C., Li, T., Sema, T., Chan, C., Tontiwachwuthikul, P.
  • Oxidative stability of structurally varied amines for post-combustion CO2 capture
    πŸ—“οΈ Year: 2024
    πŸ“š Journal: Chemical Engineering Science
    πŸ‘₯ Authors: Liu, Q., Luo, T., Yin, Y., Sema, T., Liang, Z.
  • Exploring competitive CO2 and H2S absorption into polyethylene glycol PEG200 by molecular dynamics simulation
    πŸ—“οΈ Year: 2024
    πŸ“š Journal: Journal of Molecular Liquids
    πŸ‘₯ Authors: Haghani, H., Imran-Shukat, M., Apaiyakul, R., Mosaddeghi, H., Hoffmann, M.M.
  • Cerium-MOF-Derived Composite Hierarchical Catalyst Enables Energy-Efficient and Green Amine Regeneration for CO2 Capture
    πŸ—“οΈ Year: 2024
    πŸ“š Journal: Environmental Science and Technology
    πŸ‘₯ Authors: Sun, Q., Gao, H., Xiao, M., Sema, T., Liang, Z.
  • Effect of hydrocyclone design in microplastics-water separation by using computational fluid dynamics simulations
    πŸ—“οΈ Year: 2024
    πŸ“š Journal: Results in Engineering
    πŸ‘₯ Authors: Thiemsakul, D., Piemjaiswang, R., Sema, T., Piumsomboon, P., Chalermsinsuwan, B.
  • Volumetric and viscometric properties of aqueous 1,2-dimethylethylenediamine solution for carbon capture application
    πŸ—“οΈ Year: 2024
    πŸ“š Journal: Petroleum
    πŸ‘₯ Authors: Haghani, H., Sema, T., Ranong, P.N., Liang, Z., Tontiwachwuthikul, P.
  • CO2 Capture Performance on Wall Paint Modified by K2CO3 and Ca(OH)2 for Added-Value CO2 Capture Paint Development
    πŸ—“οΈ Year: 2024
    πŸ“š Journal: Engineering Journal
    πŸ‘₯ Authors: Khantiudom, W., Sema, T., Chalermsinsuwan, B., Piumsomboon, P.
  • 3D models guide the design of hollow fiber membrane contactors with complex internal structures for CO2 capture
    πŸ—“οΈ Year: 2024
    πŸ“š Journal: AIChE Journal
    πŸ‘₯ Authors: Yin, Y., Liu, Q., Gao, H., Sema, T., Liang, Z.
  • Heat and mass transfer of a novel CO2 desorption process integrated with highly turbulent catalytic heat exchanger
    πŸ—“οΈ Year: 2024
    πŸ“š Journal: Fuel
    πŸ‘₯ Authors: Yang, C., Li, T., Sema, T., Chan, C., Tontiwachwuthikul, P.
  • Analysis and insights of the second-generation ternary AMP-PZ-MEA solvents for post-combustion carbon capture: Absorption-regeneration performance
    πŸ—“οΈ Year: 2024
    πŸ“š Journal: International Journal of Greenhouse Gas Control
    πŸ‘₯ Authors: Apaiyakul, R., Nimmanterdwong, P., Kanchanakungval, T., Tontiwachwuthikul, P., Sema, T.

Hui Tong Chua | Chemical Engineering | Best Researcher Award

Prof. Hui Tong Chua | Chemical Engineering | Best Researcher Award

Professor of The University of Western Australia Country, Australia

πŸ‘¨β€πŸ”¬ Professor Hui Tong Chua is a leading figure in Chemical Engineering, currently heading the Department of Chemical Engineering at The University of Western Australia. πŸŽ“ With a Ph.D. and a First-Class Honors degree from the National University of Singapore, he holds prestigious professional qualifications such as HonFIEAust and FIChemE. 🌟 His influential roles include Vice President of the Asian Pacific Confederation of Chemical Engineering and Chief Scientific Officer at Ablano. 🌍 His career spans senior positions, including Chair of ARC CoE for Carbon Science & Innovation and various board memberships, reflecting his commitment to advancing chemical engineering and fostering innovation. 🌱

Professional profile

EducationπŸ“š

πŸŽ“ Professor Hui Tong Chua’s educational journey is marked by excellence and depth. He earned his Ph.D. (1999), M.Eng (1995), and B.Eng (First Class Honors, 1993) from the Mechanical Engineering Department at the National University of Singapore. πŸ“š His solid foundation in engineering is complemented by prestigious professional qualifications, including HonFIEAust, CPEng, and FIChemE, showcasing his commitment to advancing his expertise in chemical and mechanical engineering. 🌟 His educational achievements underscore his dedication to both academic rigor and professional excellence in the field.

Professional ExperienceπŸ›οΈ

πŸ‘¨β€πŸ”¬ Professor Hui Tong Chua boasts an illustrious career in Chemical Engineering. He currently serves as the Head of the Department of Chemical Engineering at The University of Western Australia. 🌏 His extensive roles include Vice President of the Asian Pacific Confederation of Chemical Engineering, Chair of ARC CoE for Carbon Science & Innovation, and Chief Scientific Officer at Ablano. 🌟 His past positions include Deputy Head of the School of Mechanical and Chemical Engineering, Distinguished Professor at Taiyuan University of Technology, and various senior roles at the National University of Singapore and UWA. πŸ“ˆ His professional journey reflects a strong dedication to leadership, innovation, and academic excellence.

Research Interest🌐

πŸ”¬ Professor Hui Tong Chua’s research interests focus on advancing the field of Chemical Engineering, with a strong emphasis on management and leadership in engineering, geothermal energy, and chemical process optimization. 🌍 His work spans the development of sustainable technologies, including carbon science and innovation, and enhancing energy efficiency. 🌟 His research also explores cutting-edge solutions in chemical and mechanical engineering to address global challenges. 🌱 Professor Chua’s contributions are pivotal in driving forward technological advancements and fostering industry-academic partnerships for a sustainable future.

Awards and HonorsπŸ†

πŸ† Professor Hui Tong Chua has received numerous accolades for his outstanding contributions to Chemical Engineering. 🌟 He is honored with the title of HonFIEAust and FIChemE, reflecting his exceptional expertise and leadership. πŸŽ“ His achievements include serving as the Vice President of the Asian Pacific Confederation of Chemical Engineering and holding various prestigious board positions. πŸ₯‡ His work has earned him recognition from professional organizations, demonstrating his commitment to advancing engineering practice and fostering innovation. 🌍 His honors underscore his significant impact on both academic and industry fields.

AchievementsπŸ…
  • πŸ† Head of Chemical Engineering Department at The University of Western Australia since January 2018.
  • 🌟 Vice President of the Asian Pacific Confederation of Chemical Engineering from April 2024.
  • πŸ‘¨β€πŸ”¬ Chief Scientific Officer for Ablano since January 2022.
  • πŸŽ“ Distinguished Professor at Taiyuan University of Technology, China (2009–2017).
  • 🌍 Chair of Industry Engagement & Translation at ARC CoE for Carbon Science & Innovation since March 2023.
  • πŸ› οΈ Deputy Chair of Engineers Australia Chemical College Board (2024–2025).
  • πŸ… Non-Executive Director of Good Water Energy Ltd. since January 2020.
  • πŸ“š Editorial and Review Roles for IChemE Learned Society Committee and Research Working Group.
ProjectsπŸ› οΈ
  • πŸŒ‹ WA Geothermal Centre of Excellence: Led the Aboveground Engineering Programme (2008–2012).
  • πŸ”¬ ARC CoE for Carbon Science & Innovation: Chair of Industry Engagement & Translation (2023–Present).
  • πŸ’§ Good Water Energy Ltd.: Non-Executive Director focusing on sustainable water solutions (2020–Present).
  • 🌍 Chemical Engineering Programme: Chair at The University of Western Australia (2012–2017).
  • πŸ› οΈ Geothermal Engineering Projects: Contributed to advancements in geothermal energy applications.
  • πŸ—οΈ Chemical Process Optimization: Involved in various projects enhancing chemical and mechanical engineering processes..
Publications top notedπŸ“œ
  • Experimental Investigation of the Silica Gel–Water Adsorption Isotherm Characteristics
    πŸ“š KC Ng, HT Chua, CY Chung, CH Loke, T Kashiwagi, A Akisawa, BB Saha
    Applied Thermal Engineering 21 (16), 1631-1642 (2001)
    πŸ“ˆ 446 citations
  • Modeling the Performance of Two-Bed Silica Gel-Water Adsorption Chillers
    πŸ“š HT Chua, KC Ng, A Malek, T Kashiwagi, A Akisawa, BB Saha
    International Journal of Refrigeration 22 (3), 194-204 (1999)
    πŸ“ˆ 376 citations
  • Waste Heat Driven Dual-Mode, Multi-Stage, Multi-Bed Regenerative Adsorption System
    πŸ“š BB Saha, S Koyama, T Kashiwagi, A Akisawa, KC Ng, HT Chua
    International Journal of Refrigeration 26 (7), 749-757 (2003)
    πŸ“ˆ 327 citations
  • Adsorption Characteristics of Silica Gel + Water Systems
    πŸ“š HT Chua, KC Ng, A Chakraborty, NM Oo, MA Othman
    Journal of Chemical & Engineering Data 47 (5), 1177-1181 (2002)
    πŸ“ˆ 324 citations
  • Transient Modeling of a Two-Bed Silica Gel–Water Adsorption Chiller
    πŸ“š HT Chua, KC Ng, W Wang, C Yap, XL Wang
    International Journal of Heat and Mass Transfer 47 (4), 659-669 (2004)
    πŸ“ˆ 239 citations
  • Centrifugal Chillers: Thermodynamic Modelling and a Diagnostic Case Study
    πŸ“š JM Gordon, KC Ng, HT Chua
    International Journal of Refrigeration 18 (4), 253-257 (1995)
    πŸ“ˆ 209 citations
  • Improved Thermodynamic Property Fields of LiBr–H2O Solution
    πŸ“š HT Chua, HK Toh, A Malek, KC Ng, K Srinivasan
    International Journal of Refrigeration 23 (6), 412-429 (2000)
    πŸ“ˆ 199 citations
  • Multi-Bed Regenerative Adsorption Chillerβ€”Improving the Utilization of Waste Heat and Reducing the Chilled Water Outlet Temperature Fluctuation
    πŸ“š HT Chua, KC Ng, A Malek, T Kashiwagi, A Akisawa, BB Saha
    International Journal of Refrigeration 24 (2), 124-136 (2001)
    πŸ“ˆ 147 citations
  • The Maximum Temperature Difference and Polar Characteristic of Two-Stage Thermoelectric Coolers
    πŸ“š XC Xuan, KC Ng, C Yap, HT Chua
    Cryogenics 42 (5), 273-278 (2002)
    πŸ“ˆ 144 citations
  • Two Bed Silica Gel–Water Adsorption Chillers: An Effectual Lumped Parameter Model
    πŸ“š X Wang, HT Chua
    International Journal of Refrigeration 30 (8), 1417-1426 (2007)
    πŸ“ˆ 121 citations