Xianli Xue | Production Engineering Principles | Best Academic Researcher Award

Assoc. Prof. Dr. Xianli Xue | Production Engineering Principles | Best Academic Researcher Award

Associate Professor at Tianjin University of Science and Technology | China

Assoc. Prof. Dr. Xianli Xue is an accomplished Associate Professor and Master’s Supervisor at the School of Biological Engineering, Tianjin University of Science and Technology. He also serves as a Council Member of the Organic Acids Branch, Chinese Society for Food Science and Technology. With extensive expertise in microbial genetics and bioprocess engineering, he has contributed significantly to advancing microbial expression systems and industrial biotechnology. Assoc. Prof. Dr. Xianli Xue has guided students to achieve multiple national and international awards, reflecting his commitment to education and research excellence through teaching, scientific inquiry, and impactful technological applications.

Profile

Scopus

Education

Assoc. Prof. Dr. Xianli Xue pursued his higher education with a strong focus on microbial genetics, bioengineering, and molecular biology. Through comprehensive academic training, he developed expertise in genetic engineering, microbial fermentation, and advanced metabolic regulation. His educational journey equipped him with the ability to translate fundamental research into industrial applications, specifically targeting microbial expression systems and organic acid biosynthesis. This solid academic foundation has enabled him to establish himself as a leading expert in biological engineering. His continuous pursuit of knowledge demonstrates his passion for advancing sustainable bioprocessing technologies and contributing to the future of biotechnology education.

Experience

Assoc. Prof. Dr. Xianli Xue has rich academic and research experience, serving as an Associate Professor and Master’s Supervisor in the School of Biological Engineering. He has taught courses at both undergraduate and graduate levels, including General Biology, Genetic Circuits, Microbial Genetics, and Bioprocess Engineering. His leadership extends to supervising innovative student projects, resulting in numerous provincial and national-level awards. As a principal investigator and collaborator on major research projects funded by the National Natural Science Foundation of China, he has advanced critical developments in genetic engineering, microbial fermentation, and enzyme expression systems with impactful industrial applications.

Research Interest

Assoc. Prof. Dr. Xianli Xue research interests focus on genetic engineering and microbial biotechnology, with particular emphasis on improving microbial expression systems for industrial applications. His studies investigate the development of Aspergillus niger strains for organic acid biosynthesis, including high-value compounds such as L-malic acid and succinic acid. He also explores multi-omics strategies for yield improvement in bioproducts and constructs filamentous fungal systems for functional enzyme production, including cellulase and amylase. His research bridges fundamental molecular biology with industrial biotechnology, contributing to the advancement of sustainable bio-manufacturing processes and supporting global innovation in green energy.

Awards

Assoc. Prof. Dr. Xianli Xue has received multiple recognitions for his teaching and research excellence. Notably, he earned the Tianjin Municipal Second Prize for Technological Invention for his innovative contributions to biotechnology. He has also been honored with the University Outstanding Contribution Award in Education and Teaching, reflecting his impact on academic instruction. As an advisor, his guidance enabled students to secure top awards at national competitions such as the Challenge Cup and the National Business Elite Challenge. These prestigious accolades highlight his dual strength in fostering student success and advancing cutting-edge research with both academic and industrial relevance.

Publication Top Notes

Assoc. Prof. Dr. Xianli Xue has published extensively

  1. Title: A review on microbial metabolic engineering for the improvement of itaconic acid production
    Year: 2025
  2. Title: Improving citric acid production in Aspergillus niger by overexpression of citrate synthase with strong promoter
    Year: 2025
  3. Title: Fructose metabolism in Entner-Doudoroff pathway-deficient Cupriavidus necator H16 depends on the Calvin shunt
    Year: 2025
  4. Title: Improving Organic Acid Secretion of Aspergillus niger by Overexpression C4-Dicarboxylic Acid Transporters
    Year: 2025

Conclusion

Assoc. Prof. Dr. Xianli Xue exemplifies academic and research excellence through his leadership in microbial biotechnology, dedication to education, and impactful scientific contributions. His ability to integrate teaching, innovation, and industrial application underscores his professional achievements. With a record of national recognition, prestigious awards, and high-impact publications, he has made significant contributions to both science and education. His career reflects a commitment to advancing biotechnology for sustainable development, nurturing the next generation of innovators, and fostering global collaborations. Assoc. Prof. Dr. Xianli Xue distinguished accomplishments position him as a strong candidate for international recognition.

Mehmet Cakir | Petroleum Engineering | Best Research in Petroleum Engineering Award

Assoc. Prof. Dr. Mehmet Cakir | Petroleum Engineering | Best Research in Petroleum Engineering Award

Associate Professor at Yildiz Technical University, Turkey

Assoc. Prof. Mehmet Çakır is a distinguished academic and researcher in the field of marine engineering, currently serving as an Associate Professor at Yildiz Technical University’s Department of Marine Engineering. His expertise extends to alternative fuels, combustion technologies, and optimizing engine performance for sustainability. Dr. Çakır’s extensive research in energy efficiency, alternative fuel systems, and combustion processes has earned him a reputation as a leader in the field. He was awarded a prestigious TUBITAK International Research Fellowship, which enabled him to conduct postdoctoral research at the University of Nottingham in the United Kingdom, focusing on alternative-fueled engines and combustion systems. Over the years, he has been instrumental in leading innovative projects supported by TUBITAK and the Ministry of Industry and Technology. Dr. Çakır is actively involved in mentoring future researchers and PhD candidates, offering guidance in his areas of expertise, which include combustion modes, ammonia cracking systems, and fuel efficiency in internal combustion engines (ICEs).

Profile

Orcid

Education

Dr. Çakır earned his postdoctoral qualifications at the University of Nottingham, where he worked in the Faculty of Engineering’s Department of Mechanical, Manufacturing, and Materials Engineering from 2018 to 2020. This experience allowed him to deepen his knowledge and conduct high-level research in alternative fuel technologies, combustion, and engine efficiency. His research at Nottingham was centered on developing and testing alternative fuel systems, including the performance of ammonia-based fuels in internal combustion engines. Dr. Çakır’s academic foundation also includes graduate and undergraduate studies, which laid the groundwork for his deep interest in energy systems, thermodynamics, and the challenges of improving engine performance in both environmental and technological contexts.

Experience

With over a decade of experience in the academic field, Dr. Çakır has held various positions at Yildiz Technical University, where he started as an Assistant Professor and was promoted to Associate Professor in 2020. His expertise in marine engineering and combustion research has led to numerous research projects, many of which have been funded by TUBITAK and the Ministry of Industry and Technology. These projects have focused on improving engine performance, reducing emissions, and exploring alternative fuels for internal combustion engines, specifically natural gas and ammonia. His research has not only advanced theoretical understanding but also translated into practical applications, including the development of prototypes for self-propelled machinery used in agriculture. Dr. Çakır has supervised numerous graduate and doctoral students, providing guidance on topics ranging from fuel system optimization to innovative combustion methods. His work is recognized internationally, with invitations to collaborate on various research projects and academic panels.

Research Interests

Dr. Çakır’s primary research interests lie in the areas of alternative fuels, combustion technology, and energy efficiency within internal combustion engines. His ongoing research projects explore novel combustion modes for zero-carbon fuels, such as ammonia and hydrogen, and the development of combustion chambers optimized for these fuels. Another major focus is the design and modeling of ammonia cracking systems to reduce carbon emissions in power systems. Dr. Çakır also investigates laminar flame speeds in various fuel mixtures, using advanced experimental techniques such as schlieren imaging and constant-volume combustion bomb tests to measure and analyze combustion processes. Computational fluid dynamics (CFD) modeling is another area of his research, helping to simulate combustion dynamics and improve engine performance and efficiency. Dr. Çakır is particularly interested in the intersection of combustion research and advanced energy technologies, focusing on the future of renewable fuels and their integration into internal combustion engines.

Awards

Dr. Çakır’s contributions to engineering have been recognized by several prestigious awards throughout his career. In December 2018, he received the Grow-tech Agriculture Innovation Prize at the Antalya Chamber of Commerce for his work on agricultural machinery, particularly a prototype for self-propelled pruning residue shredding machines. Additionally, he earned a Gold Medal at the 3rd Istanbul International Inventions Fair in 2018, awarded by the Turkish Patent and Trademark Office for his innovative designs in engineering and technology. These accolades reflect his commitment to applied research and the practical impact of his work, which spans both the academic and industrial sectors. Dr. Çakır’s research continues to influence developments in sustainable energy systems and alternative fuel technologies.

Publications

Cakir M., “Effect of Stratified Charge Combustion Chamber Design on Natural Gas Engine Performance,” Energies, vol. 18, no. 9, pp. 1-14, 2025 (SCI-Expanded). Cited by 15.

Cakir M., Gonca G., “Influences of a Novel Pre-chamber Design on the Performance and Emission Characteristics of a Spark Ignition Engine Fueled with Natural Gas,” International Journal of Global Warming, vol. 31, no. 1, pp. 68-81, 2023 (SCI-Expanded). Cited by 12.

Cakir M., Ünal İ., Çanakcı M., “Design and Development of the PLC Based Sensor and Instrumentation System for Self-propelled Pruning Residue Mulcher Prototype,” Computers and Electronics in Agriculture, vol. 186, 2021 (SCI-Expanded). Cited by 8.

Cakir M., “Experimental Dynamic Analysis of the Piston Assembly of a Running Single-cylinder Diesel Engine,” Journal of Marine Engineering and Technology, vol. 20, no. 4, pp. 235-242, 2021 (SCI-Expanded). Cited by 10.

Cakir M., Gonca G., Şahin B., “Performance Characteristics and Emission Formations of a Spark Ignition (SI) Engine Fueled with Different Gaseous Fuels,” Arabian Journal for Science and Engineering, vol. 43, pp. 4487-4499, 2018 (SCI-Expanded). Cited by 9.

Conclusion

Assoc. Prof. Mehmet Çakır’s academic journey reflects a steadfast dedication to advancing the understanding and practical application of sustainable energy technologies. His extensive research in combustion, engine performance optimization, and alternative fuel systems positions him as a leading figure in the field of marine and mechanical engineering. Dr. Çakır’s work continues to influence global research in energy efficiency and low-emission technologies, particularly in the development of new fuels and combustion systems that are crucial to addressing environmental challenges. Through his teaching, mentoring, and research, he has made significant contributions to the development of new technologies and solutions that promise to revolutionize internal combustion engines and other energy systems. Dr. Çakır’s innovative projects and continued dedication to research are helping shape the future of sustainable engineering practices.