Tomas Dlouhy | air humidification | Excellence in Innovation Award

Prof. Tomas Dlouhy | air humidification | Excellence in Innovation Award

professor at CTU Prague in  Czech Republic.

🔬 Short Biography 🌿💊📚

Prof. Tomáš Dlouhý 👨‍🏫 is a renowned Czech academic serving at the Czech Technical University in Prague 🇨🇿, Faculty of Mechanical Engineering. With a strong foundation in engineering, he earned his Dipl.Ing. in 1984 🎓 and went on to complete his Ph.D. in combustion in 1993 🔥. His international academic journey includes a postgraduate diploma from Glasgow Caledonian University in 1998 🌍. Climbing the academic ladder, he became an Associate Professor in 2005 and achieved full Professorship in 2021 🏅. Prof. Dlouhý has made significant strides in industrial combustion, biomass energy, and CCS technologies ♻️. He has led or participated in 9 major research projects, contributed to 25 Scopus-indexed publications 📚, authored books, and co-holds 3 patents 🔬. He’s collaborated with institutions like TU Stuttgart and NTU Trondheim 🤝. A visionary in sustainable energy systems, Prof. Dlouhý’s work bridges academia and industry through 36 consultancy projects 💡.

PROFILE 

GOOGLE SCHOLAR 

SCOPUS 

🔍 Summary of Suitability:

Prof. Tomáš Dlouhý exemplifies the spirit of innovation through his pioneering work in industrial fuel combustion, renewable energy integration, and carbon capture technologies. With a career spanning over four decades at the Czech Technical University in Prague, he has consistently pushed the boundaries of engineering science, developing practical solutions for cleaner and more efficient energy systems. His ability to translate academic research into industrial applications positions him as a highly deserving candidate for the Excellence in Innovation Award.

🔹 Education & Experience 

Prof. Tomáš Dlouhý’s academic career spans decades of dedicated learning and innovation 🎓. He graduated with a Dipl.Ing. degree from CTU Prague in 1984 📐, specializing in mechanical engineering. Driven by a deep interest in combustion, he earned his Ph.D. in 1993 at CTU Prague 🔥. His academic curiosity led him to the UK, where he completed a postgraduate diploma at Glasgow Caledonian University in 1998 🌍. His teaching and research career advanced steadily—he was appointed Associate Professor in 2005 and Full Professor by 2021 🏅. Over the years, he has taken on complex industrial and environmental challenges, mentoring students and contributing actively to Czech and international research scenes. With a mix of theoretical and applied expertise, Prof. Dlouhý has completed 9 research projects, 36 industry collaborations, and contributed to over two dozen high-impact journal publications 📊. His extensive knowledge and hands-on experience make him a distinguished figure in combustion engineering and energy systems ⚙️.

🔹 Professional Development 

Prof. Dlouhý’s professional journey is a testament to continual development and impactful research 🔬. Over four decades, he has transformed from a passionate student into a leading voice in industrial fuel combustion and sustainable energy solutions ♻️. His collaboration with international institutions such as TU Stuttgart 🇩🇪 and NTU Trondheim 🇳🇴 highlights his commitment to cross-border research excellence. He has authored and co-authored several peer-reviewed studies and books 📘, making his mark in the academic publishing world. With three patents under his belt and 36 consultancy projects, he has bridged the gap between academia and real-world industrial needs 🏭. Prof. Dlouhý’s work on innovative drying techniques, CCS feasibility, and boiler condensation methods is helping shape the future of energy technology ⚡. He actively engages in teaching and mentoring, nurturing the next generation of engineers and scientists 👨‍🔬. His ability to integrate theory with practice defines his professional growth and ongoing contributions 🚀.

🏅 Awards and Recognitions

  • 🏅 Full Professorship at Czech Technical University in Prague (2021)

  • 🎓 Ph.D. in Combustion from CTU Prague (1993)

  • 🌍 Postgraduate Diploma, Glasgow Caledonian University (1998)

  • 📚 Published 25+ peer-reviewed journal articles (Scopus-indexed)

  • 📕 Author of 2 books (including a chapter contribution)

  • 🧪 Holder of 3 patents related to energy and combustion

  • 🔬 Completed 9 major academic research projects

  • 🏭 Led 36 industrial consultancy and innovation projects

  • 🤝 Collaborated with international research institutions TU Stuttgart & NTU Trondheim

  • 🏆 Nominee for Best Innovation Award – International Chemical Scientist Awards

🔬 Research Focus

Prof. Tomáš Dlouhý’s research is deeply rooted in sustainable energy engineering, focusing on industrial fuel combustion 🔥, biomass utilization 🌿, and renewable energy integration ☀️. His work addresses critical global concerns such as optimizing combustion systems, improving energy efficiency, and reducing environmental impact. He specializes in advanced drying techniques for biomass fuels, condensing technologies for boilers 💧, and carbon capture and storage (CCS) for coal power plants 🌫️. With a strong emphasis on thermodynamic efficiency and cleaner energy alternatives, his contributions help reduce carbon emissions and promote renewable sources 💡. His collaborative research with European institutions aims to develop scalable, energy-efficient methodologies for future power systems 🌍. His recent publications explore biomass drying innovations and combustion air humidification effects, showcasing his focus on theoretical and practical advancements 🔬. Prof. Dlouhý’s research is crucial for transitioning toward cleaner energy technologies and optimizing industrial fuel applications across sectors ♻️.

Publications & Citations 📚

📄 “Effect of combustion air humidification on the operation of a biomass boiler – Theoretical analysis”Heliyon, 2025 | 📅 Published: 2025 | 🔁 Cited by: 0 | ✍️ Authors: Dlouhý, T.; Havlík, J.

📄 “Improving the energy effectivity of biomass drying for utilisation in energy systems by combining convective and contact drying”Drying Technology, 2024 | 📅 Published: 2024 | 🔁 Cited by: 0 | ✍️ Authors: Havlík, J.; Dlouhý, T.

🔍 Conclusion:

Prof. Dlouhý’s work is not only academically rigorous but also practically transformative. His innovations in sustainable energy engineering directly contribute to reducing carbon footprints and optimizing industrial systems globally. His passion for solving real-world energy problems through novel technologies and collaborative research makes him an ideal recipient of the Excellence in Innovation Award.

Su Jin Kim | Separation Process | Best Researcher Award

Prof. Dr. Su Jin Kim | Separation Process | Best Researcher Award

professor at Department of Chemical & Biological Engineering/Chungwoon University , South Korea.

Prof. Dr. Su Jin Kim 🇰🇷 is a distinguished chemical engineer and professor at Chungwoon University 🏫. With a Ph.D. from the Tokyo Institute of Technology 🎓, she has dedicated over two decades to advancing separation processes in chemical engineering ⚗️. Her research has led to innovative energy-saving extraction and purification methods 💡. She has completed 17 major research projects and published 35+ papers in renowned journals 📚. Prof. Kim continues to contribute to both academic and industrial progress through her cutting-edge consultancy projects and passion for chemical science innovation 🔬🌟.

PROFILE 

GOOGLE SCHOLAR 

SCOPUS 

🔍 Summary of Suitability:

Prof. Dr. Su Jin Kim exemplifies the qualities of an exceptional researcher with a career spanning over three decades in chemical engineering 🧪. She holds a Ph.D. from the prestigious Tokyo Institute of Technology 🎓 and has served as a professor at Chungwoon University since 1997. Her research portfolio boasts 35 publications in high-impact SCIE and Scopus journals 📚, 17 completed projects, and extensive contributions to both academia and industry through 12 consultancy projects 🤝. Her work has significantly advanced energy-efficient, environmentally sustainable separation and purification techniques 🌱.

Education & Experience

  • 🧪 Ph.D. in Chemical Engineering – Tokyo Institute of Technology, Japan (1992.4 – 1995.3)

  • 🔬 Researcher – Tokyo Institute of Technology, Dept. of Chemical Engineering (1988.10 – 1990.3)

  • 🧑‍🔬 Postdoctoral Researcher – Korea Research Institute of Chemical Technology (1995.4 – 1997.2)

  • 👩‍🏫 Professor – Chungwoon University, South Korea (1997.3 – Present)

Professional Development 🚀📖

Prof. Kim’s professional journey showcases remarkable dedication to both education and research development 📚💼. As a long-serving professor, she mentors students and conducts cutting-edge experiments in separation science 🔍. She’s actively engaged in both academic and industrial research, contributing to 12 industry projects and publishing extensively in SCI and Scopus-indexed journals 📄. Her collaborations span Korea and Japan, reflecting a strong international network 🌍. Her scientific output includes pioneering work in high-purity purification processes and solvent extraction technologies, ensuring continued innovation in chemical engineering 🧪🛠️.

Research Focus 🔍🤖

Prof. Kim’s research is centered on separation and purification processes 🔬—critical areas in chemical and biological engineering. She has advanced technologies for removing nitrogen compounds, recovering indole, and purifying 2,6-dimethylnaphthalene from coal tar and light cycle oil 🛢️💧. Her work enables environmentally friendly and energy-efficient alternatives to traditional distillation, helping to upgrade fuels and recycle waste plastics ♻️. With 35 journal publications and 17 completed projects, she continues pushing the boundaries of sustainable chemical processing 🧫⚗️. Her studies bridge academic insights and industrial applications, focusing on high purity and efficiency 🌱🔍.

Awards and Honors 🏆🎖️

  • 🥇 Nominated for Best Researcher Award – International Chemical Scientist Awards 2025

  • 🏆 Recognized for High-impact publications in SCI & Scopus-indexed journals (35 total)

  • 📊 Principal Investigator on 17 completed and 1 ongoing research projects

  • 🔧 Contributor to 12 industry-related projects, bridging academia and industry

  • 🎖️ Citation Index presence in SCIE and Scopus databases, confirming global recognition

Publications & Citations 📚

  • 📅 2024Study on removal of nitrogen-containing heterocyclic compounds… – SCIE, cited by SCIE/Scopus 📈

  • 📅 2024Enrichment of indole by n-hexane re-extraction… – Scopus, cited by Scopus 📊

  • 📅 2024Comparison of extraction solvents on separation performance of indole… – Scopus, cited by Scopus 🔬

  • 📅 2023Experimental study on enrichment of indole in wash oil… – SCIE, cited by SCIE 🔎

  • 📅 2023Effect of experimental factors on reduction of nitrogen compounds… – Scopus, cited by Scopus 🧪

  • 📅 2022Purification of indole in wash oil via extraction and crystallization… – SCIE, cited by SCIE 🧫

  • 📅 2022Reduction of nitrogen compounds in methylnaphthalene oil (I & II) – Scopus, cited by Scopus 📘

  • 📅 2021Upgrading of wash oil through nitrogen compound reduction – SCIE, cited by SCIE ♻️

  • 📅 2020Improvement of distillate from waste plastic pyrolysis oil… – SCIE, cited by SCIE 🌍

  • 📅 2019Purification of 2,6-DMN from light cycle oil… – SCIE, cited by SCIE 🧬

  • 📅 2019Separation of indole in coal tar model system… – SCIE, cited by SCIE ⚗️

  • 📅 2019Quality improvement of pyrolysis oil via DMF extraction – Scopus, cited by Scopus 🔄

  • 📅 2018Purification of 2,6-DMN via crystallization – Scopus, cited by Scopus ❄️

  • 📅 2018Recovery of paraffins from pyrolysis oil by 4-stage extraction – Scopus, cited by Scopus 🛢️

  • 📅 2016Separation of nitrogen compounds using methanol vs. formamide – SCIE, cited by SCIE 🔍

  • 📅 2015Methanol/formamide extraction comparison – Scopus, cited by Scopus 💧

  • 📅 2014High-purity purification of indole (coal tar) – Scopus, cited by Scopus 🧴

  • 📅 2014Methanol extraction in 9-compound system – Scopus, cited by Scopus 🧪

  • 📅 2014Crystallization of DMN isomers – Scopus, cited by Scopus 🧊

  • 📅 2012Vapor-liquid equilibria studies (various systems) – SCIE, cited by SCIE 🌡️

  • 📅 2012Vapor-liquid equilibria in glycol ether systems – SCI, cited by SCI 🌫️

  • 📅 2010Liquid membrane permeation of nitrogen compounds – SCI, cited by SCI 🧬

  • 📅 2010Indole separation via crystallization – Scopus, cited by Scopus 🧼

  • 📅 2008Purification of 2,6-DMN by crystallization – Scopus, cited by Scopus ❄️

  • 📅 2007Recovery of indole via 5-stage extraction – Scopus, cited by Scopus 🔄

  • 📅 2005Solvent extraction of nitrogen heterocyclics – SCI, cited by SCI 🔬

  • 📅 2004Bicyclic aromatic separation by liquid membrane – SCI, cited by SCI 🧫

  • 📅 2003DMN isomer recovery by distillation-extraction – SCI, cited by SCI 🧪

  • 📅 2003Recovery of bicyclic aromatics in LCO – SCI, cited by SCI 🛢️

  • 📅 2001Scale-up of stirred tank contactors for membrane permeation – SCI, cited by SCI ⚙️

  • 📅 1998Polypropylene morphology by crystallization – SCIE, cited by SCIE ❄️

  • 📅 1998Membrane vs. solvent extraction in aromatic separation – Scopus, cited by Scopus 🧃

  • 📅 1997Hydrocarbon separation by surfactant membrane – SCI, cited by SCI 💡

🔍 Conclusion:

Prof. Su Jin Kim meets and exceeds the benchmarks expected of a Best Researcher Award recipient. Her innovative, sustainable, and impactful research in chemical separation processes—combined with a strong academic publishing track record and industry relevance—make her a top candidate for the honor 🥇. Her contributions not only advance chemical engineering but also serve broader societal goals such as environmental sustainability and energy efficiency 🌍.