María de Lourdes García-Magaña | Tech Innovations | Innovative Research Award

María de Lourdes García-Magaña | Tech Innovations | Innovative Research Award

Dr María de Lourdes García-Magaña, Tecnológico Nacional de México/Instituto Tecnológico de Tepic, Mexico

Dr. María de Lourdes García-Magaña is a distinguished biochemical engineer with a Ph.D. in Food Sciences from the Tecnológico Nacional de México. Her expertise spans bioactive peptides, enzymatic extracts, and food preservation technologies. With a career as a professor and researcher, she has published influential works, including chapters on bioactive peptides and vegetal enzymes, and numerous research articles on food innovation and biotechnology. She actively mentors graduate students and contributes to scientific advancements in food systems and sustainability. A member of CONACYT networks, she holds national distinctions like SNI Level 1 recognition. 🌱🧪📚💡

Publication Profile

Scopus

Academic Qualifications 🎓 

Dr. María de Lourdes García-Magaña 🎓🔬 holds a Doctorate in Food Science (2013), a Master’s in Biochemical Engineering (2002), and a Bachelor’s in Biochemical Engineering (1999), all from the Tecnológico Nacional de México 🇲🇽. Her academic journey reflects a steadfast dedication to biochemical and food sciences 🍎🧪, laying the groundwork for a thriving research career. With expertise spanning food science and biochemical engineering, Dr. García-Magaña contributes significantly to advancing knowledge in these fields 📘🌟, demonstrating a commitment to innovation and excellence. Her achievements highlight her role as a leader in scientific exploration and education 🌱🔍.

Mentorship and Collaboration

Dr. María de Lourdes García-Magaña is a dedicated mentor, guiding numerous students in theses on enzymatic extracts, ethylene absorbers, and bioactive encapsulations. 📚✨ Her collaborative research spans CONACYT thematic networks, fostering innovation in food science. 🌐🔬 She actively participates in projects focused on valorizing food loss and generating bioactive peptides from by-products, contributing to sustainability and health advancements. ♻️🥗 A leader in her field, Dr. García-Magaña’s work combines mentorship, collaboration, and cutting-edge research, driving impactful solutions for the future of food technology and waste management. 🌱🧪

Distinctions 🏆 

Dr. María de Lourdes García-Magaña is a distinguished researcher recognized for her academic excellence and impactful contributions. She achieved membership in Mexico’s National System of Researchers (SNI) Level 1 in 2021 and was named a CONACYT Candidate in 2017. Her dedication to advancing knowledge is evident through her active participation in funded projects and significant academic collaborations, showcasing her commitment to research and innovation. Dr. García-Magaña’s achievements highlight her influence in the academic community and her role in driving meaningful scientific advancements. 🌟📚🔬✨

Research Focus

Dr. María de Lourdes García-Magaña’s research focuses on innovative approaches in food science, particularly on processing techniques, food safety, and bioactive compounds. Her work spans developing novel methods like thermovacuum and thermosonication for bacterial inactivation, analyzing bioactive peptides from shrimp by-products, and evaluating foodborne pathogen detection using nanomaterials. She also investigates the nutritional and antioxidant profiles of tropical fruits such as mangoes, jackfruits, and Mexican endemic species like Stenocereus queretaroensis. With contributions to emerging technologies and sustainable practices, her studies enhance food quality, safety, and functionality. 🌱🍹🔬🦐🥭✨

Publication Top Notes

A novel combination of thermovacuum and thermosonication to inactivate pathogenic bacteria in an Annona muricata L. beverage

Detection of foodborne pathogens in contaminated food using nanomaterial-based electrochemical biosensors

Jackfruit Genotypes in Southern Nayarit: A Comparative Study of Morphological, Physiological, Physicochemical, Phytochemical, and Molecular Assessments

Hydrolysates of Chicken Byproducts and Their Effect on the Histological and Histopathological Analysis of Liver and Kidney in a Murine Model of Induced Metabolic Syndrome

Comparison of individual quick freezing and traditional slow freezing on physicochemical, nutritional and antioxidant changes of four mango varieties harvested in two ripening stages

Physicochemical Characterization, Bioactive Compounds, and Antioxidant Capacity from Stenocereus queretaroensis: Mexican Endemic Fruits with High Potential Functionality

Texture profile analysis of heat-processed tender jackfruit (Artocarpus heterophyllus Lam.) and its potential use as a meat analog

Kyongchul Kim | Tech Innovations | Best Researcher Award

Kyongchul Kim | Tech Innovations | Best Researcher Award

Dr Kyongchul Kim Korea, Peninsula Infrastructure Special Committee, South Korea

Based on the detailed information provided, Dr. Kyongchul Kim appears to be a strong candidate for the Best Researcher Award. His extensive academic background, combined with a significant research output and practical engineering experience, showcases his expertise and contributions to the field of Civil Engineering.

Publication profile

google scholar

Educational Background

Dr. Kim earned his Ph.D. in Civil Engineering from Kunsan National University, where his research focused on the structural behavior of steel fiber-reinforced ultra-high-performance concrete beams subjected to bending. His academic journey, starting with a Bachelor of Engineering and progressing through a Master of Science, highlights a consistent and rigorous pursuit of knowledge in Civil and Environmental Engineering.

Research Experience and Achievements

Dr. Kim has demonstrated his research prowess through various roles, including his current position as a Senior Researcher at the Korean Peninsula Infrastructure Special Committee at KICT. His work on developing modular bridge structures and validating their performance using ultra-high-performance concrete reflects his deep involvement in innovative and practical engineering solutions. His previous roles, including those at JANGMIN enc and DM ENGINEERING, further underscore his versatility and hands-on experience in the field.

Research Projects

Dr. Kim has participated in several notable research projects, such as the development of design technology in residential floating architecture and the practical use of eco-friendly green large block retaining wall systems. These projects not only demonstrate his ability to lead and collaborate on large-scale engineering challenges but also highlight his contribution to advancing sustainable construction practices.

Publications and Conference Presentations

Dr. Kim has an impressive portfolio of publications and conference presentations, with his research being widely recognized in the field. His work on the flexural behavior of ultra-high-performance concrete and hybrid steel fiber-reinforced concrete beams has been published in reputable journals and presented at key conferences, contributing valuable insights to the civil engineering community.

Conclusion

Dr. Kyongchul Kim’s academic achievements, research contributions, and practical engineering experiences make him a suitable candidate for the Best Researcher Award. His work has not only advanced the field of Civil Engineering but also demonstrated a commitment to addressing critical infrastructure challenges with innovative solutions. His leadership in research projects and active participation in knowledge dissemination through publications and presentations further solidify his credentials as a top researcher in his field.

Research focus

A Comparative Experimental Study on the Flexural Behavior of High‐Strength Fiber‐Reinforced Concrete and High‐Strength Concrete Beams

An experimental study on the ductility and flexural toughness of ultrahigh-performance concrete beams subjected to bending

Effects of Single and Hybrid Steel Fiber Lengths and Fiber Contents on the Mechanical Properties of High‐Strength Fiber‐Reinforced Concrete

Flexural strength of hybrid steel fiber-reinforced ultra-high strength concrete beams

Structural behavior of concrete beams containing recycled coarse aggregates under flexure

Mechanical properties and predictions of strength of concrete containing recycled coarse aggregates

Material properties and structural characteristics on flexure of steel fiber-reinforced ultra-high-performance concrete

Structural behavior of hybrid steel fiber-reinforced ultra high performance concrete beams subjected to bending

Electrical characteristics of ultra-high-performance concrete containing carbon-based materials

Effect of broad-spectrum biofilm inhibitor raffinose, a plant galactoside, on the inhibition of co-culture biofilm on the microfiltration membrane