Zhen Guo | Renewable Energy | Editorial Board Member

Dr. Zhen Guo | Renewable Energy | Editorial Board Member

Dr. Zhen Guo | Wuhan University of Technology | China

Dr. Zhen Guo is an emerging researcher specializing in intelligent fault diagnosis, deep learning, anomaly detection, and engineering signal processing, with emphasis on developing reliable data-driven methods for modern industrial systems. His work addresses key challenges in rotating machinery, gearboxes, propellers, and wind turbines by integrating advanced machine learning models with domain-specific signal processing techniques to enhance diagnostic accuracy under real-world constraints. Dr. Guo’s research explores multi-scale wavelet decomposition, adaptive feature fusion, and high-dimensional sampling strategies to mitigate multi-level class imbalance and improve the robustness of condition-monitoring frameworks. He has introduced innovative unsupervised anomaly detection approaches using deep convolutional support generative adversarial networks, enabling effective detection in scenarios where labeled data are insufficient or costly. His contributions also include transfer-learning architectures with channel-attention residual networks and LLM-assisted fine-tuning to achieve few-shot fault recognition in complex systems such as autonomous underwater vehicle propellers. Additionally, he has advanced wavelet-random-forest methods for modeling high-dimensional imbalance samples and proposed unified pattern-fusion strategies for mining alarm data in large-scale industrial facilities using adaptive discretization and time-clustering mechanisms. Dr. Guo’s work published in leading journals such as Mechanical Systems and Signal Processing, Scientific Reports, Ocean Engineering, Measurement, and Measurement Science and Technology demonstrates his commitment to bridging the gap between theoretical advances and practical reliability engineering. Supported by competitive research funding, he continues to design predictive frameworks that improve equipment health assessment, Remaining Useful Life estimation, and maintenance decision-making across industrial environments, contributing significantly to the advancement of intelligent diagnostic technologies.

Profile: Scopus | ORCID

Featured Publications

Guo, Z. (2025). Multi-scale wavelet decomposition and feature fusion for rotating machinery fault diagnosis under multi-level class imbalance. Mechanical Systems and Signal Processing.

Guo, Z. (2025). Unsupervised anomaly detection for gearboxes based on the deep convolutional support generative adversarial network. Scientific Reports, (Published July 1, 2025).

Guo, Z. (2025). Channel attention residual transfer learning with LLM fine-tuning for few-shot fault diagnosis in autonomous underwater vehicle propellers. Ocean Engineering.

Guo, Z. (2025). Fault diagnosis of rotating machinery with high-dimensional imbalance samples based on wavelet random forest. Measurement.

Guo, Z. (2025). Alarm data mining in complex industrial facilities using adaptive discretization based on time clustering and unified pattern fusion mining. Measurement Science and Technology, (Published January 31, 2025).

Lourdes Casas Cardoso | Green Technology | Best Researcher Award

Prof. Dr. Lourdes Casas Cardoso | Green Technology | Best Researcher Award

Professor, Universidad de Cádiz, Spain

Prof. Dr. Lourdes Casas Cardoso is a distinguished academic and researcher specializing in supercritical fluids, advanced separation processes, and supercritical impregnation, with a strong focus on sustainable applications in the agri-food and biomedical sectors. She earned her Bachelor’s Degree in Chemistry from the Marta Abreu Central University of Las Villas (UCLV), Cuba, in 1996, followed by a Master’s in Organic Chemistry with a specialization in Natural Products from the University of Havana in 2001, a Diploma in Advanced Studies from the University of Cádiz in 2004, and a PhD from the same university in 2006. She began her academic career as a professor at UCLV, Cuba, where she served for a decade, before joining the University of Cádiz, Spain, in 2007, where she advanced from researcher to full professor. Since May 2023, she has held the position of University Professor at UCA. Her research has concentrated on the reutilization of byproducts and industrial waste using innovative separation techniques, including supercritical carbon dioxide and pressurized liquids, leading to significant advancements in green technologies. She has published 80 indexed articles, six book chapters, and participated in over 80 international conferences, accumulating 1,420 citations and an h-index of 26. She has supervised four doctoral theses, directed funded research projects, coordinated multiple industry collaborations, and co-authored three patents. Additionally, she has held leadership roles such as Coordinator of the Chemical Engineering Degree at UCA and has received recognition for excellence in teaching. Her career reflects a remarkable integration of research, teaching, and innovation.

Profile:  Scopus  |  ORCID  |  Google Scholar

Featured Publications

Otero-Pareja, M. J., Casas, L., Fernández-Ponce, M. T., Mantell, C., & de la Ossa, E. M. (2015). Green extraction of antioxidants from different varieties of red grape pomace. Molecules, 20(6), 9686–9702.

Fernández-Ponce, M. T., Casas, L., Mantell, C., Rodríguez, M., & de la Ossa, E. M. (2012). Extraction of antioxidant compounds from different varieties of Mangifera indica leaves using green technologies. The Journal of Supercritical Fluids, 72, 168–175.

Fernández-Ponce, M. T., Casas, L., Mantell, C., & de la Ossa, E. M. (2015). Use of high pressure techniques to produce Mangifera indica L. leaf extracts enriched in potent antioxidant phenolic compounds. Innovative Food Science & Emerging Technologies, 29, 94–106.

Fernández-Ponce, M. T., Parjikolaei, B. R., Lari, H. N., Casas, L., Mantell, C., & de la Ossa, E. M. (2016). Pilot-plant scale extraction of phenolic compounds from mango leaves using different green techniques: Kinetic and scale up study. Chemical Engineering Journal, 299, 420–430.

El Marsni, Z., Torres, A., Varela, R. M., Molinillo, J. M. G., Casas, L., Mantell, C., & de la Ossa, E. M. (2015). Isolation of bioactive compounds from sunflower leaves (Helianthus annuus L.) extracted with supercritical carbon dioxide. Journal of Agricultural and Food Chemistry, 63(28), 6410–6421.

Monica Alvarez Manso | Energy | Best Researcher Award

Mrs. Monica Alvarez Manso | Energy | Best Researcher Award

Mrs. Monica Alvarez Manso | Universidad De Leon | Spain

Mónica Alvarez Manso is a PhD candidate at the University of León and a Technical Mining Engineer with a Master’s in Occupational Risk Prevention. She serves as Vice-Dean of the Official College of Technical Mining Engineers and Mining and Energy Graduates of Madrid and Castilla y León, where she leads initiatives in energy, mining, and advanced materials. Her expertise spans hydrogen technologies, bioenergy, renewable systems, and sustainable water resource management. With experience in large-scale international energy projects, innovative software development, and leadership roles, she combines technical excellence with a strong commitment to sustainable innovation and climate change mitigation.

Publication Profile

Google Scholar

Academic Background

Mónica Alvarez Manso is a highly accomplished professional with a strong academic and technical foundation. She is a PhD candidate at the University of León, where her research focuses on sustainable energy and resource management. She earned her degree as a Technical Mining Engineer from the School of Mining Engineering in León and later completed a Master’s in Occupational Risk Prevention at UNED. Her education has been complemented by extensive professional experience in hydrogen technologies, bioenergy, renewable systems, and sustainable water management, enabling her to integrate advanced knowledge with practical innovation in the fields of energy and sustainability.

Professional Experience

Mónica Alvarez Manso has built a distinguished career that combines technical expertise, research, and leadership in the fields of energy, mining, and sustainability. She has directed and coordinated complex projects involving hydrogen technologies, bioenergy, renewable energy integration, and sustainable water resource management. Her professional work includes the design and implementation of innovative systems for green hydrogen and biomethane production, large-scale energy infrastructure, and industrial energy efficiency. As Vice-Dean of the Official College of Technical Mining Engineers and Mining and Energy Graduates, she plays a key role in advancing innovation, professional development, and technological progress in the energy sector.

Awards and Honors

Mónica Alvarez Manso has earned recognition for her outstanding contributions to energy engineering, sustainability, and applied research. Her innovative work in hydrogen technologies, bioenergy, and renewable systems has positioned her as a respected leader in advancing clean energy solutions. She has been acknowledged for her role in developing pioneering projects that address climate change mitigation and industrial sustainability. Her leadership as Vice-Dean of the Official College of Technical Mining Engineers and Mining and Energy Graduates highlights her commitment to professional excellence. Through her academic, technical, and institutional achievements, she continues to gain distinction and honors in her field.

Research Focus

Mónica Alvarez Manso centers her research on sustainable energy systems, with particular emphasis on hydrogen technologies, bioenergy, and renewable integration. Her work explores the complete cycle of green hydrogen production, storage, and transport, as well as innovative methods for biogas upgrading and digestate valorization to support circular economy principles. She also investigates advanced energy systems, including smart grids, energy storage, and industrial efficiency. Another significant aspect of her research involves sustainable water resource management and climate change mitigation strategies, where she develops practical and innovative solutions that bridge academic research with real-world energy and environmental challenges.

Publication Top Notes

Classification Framework for Hydrological Resources for Sustainable Hydrogen Production with a Predictive Algorithm for Optimization

Year: 2025

Feasibility study of an electrical power plant combined with a thermolysis process

Year: 2002

Conclusion

Mónica Alvarez Manso is an accomplished researcher whose expertise combines technical depth with leadership in hydrogen technologies, bioenergy, renewable systems, and sustainable water management. She has contributed to international infrastructure projects and advanced research in green hydrogen and biomethane production, while also serving as Vice-Dean of the Official College of Technical Mining Engineers. Her innovations, such as HYDROGREENSIM and registered inventions, showcase creativity and impact. With stronger academic publications, her profile reflects an outstanding candidate for the Best Researcher Award.

Issa Fowai | Sustainable Development | Best Researcher Award

Mr. Issa Fowai | Sustainable Development | Best Researcher Award

Mr. Issa Fowai at University of Ottawa, Canada

Issa Fowai is a distinguished Ph.D. candidate in Civil Engineering at the University of Ottawa and an upcoming NSERC Postdoctoral Fellow at Queen’s University, Canada. A recipient of the prestigious Vanier Canada Graduate Scholarship and multiple other awards, his research focuses on FRP-concrete interface mechanics, structural health monitoring, fire resilience of ultra-high-performance concrete, and rehabilitation of aging infrastructure. With international academic training from Canada, China, and Brazil, he has published impactful work in leading journals such as the ASCE Journal of Composites for Construction and presented at top FRP conferences. He has held various teaching roles and earned several teaching excellence awards, reflecting his dedication to both research and education. Fowai also contributes actively to scholarly service as a journal reviewer and is committed to equity and inclusion in academia. His interdisciplinary and globally relevant research positions him as a rising leader in structural engineering and infrastructure resilience.

Publication Profile

Orcid

Scopus

Google Scholar

🎓Academic Background

Issa Fowai is an accomplished scholar with a strong international academic foundation in civil engineering. He earned his Bachelor’s and Master’s degrees from Harbin Engineering University in China, where he also received multiple academic honors and served as a lecturer. In 2020, he began his Ph.D. in Civil Engineering at the University of Ottawa, Canada, supported by prestigious fellowships such as the Vanier Canada Graduate Scholarship and the IBET PhD Fellowship. His doctoral research explores FRP-concrete interface bond mechanics, structural health monitoring, and the fire resilience of ultra-high-performance concrete. He has expanded his academic experience through visiting research appointments in Brazil and at Queen’s University in Canada, focusing on innovative testing methods for infrastructure rehabilitation. In Fall 2025, he is set to begin a postdoctoral fellowship at Queen’s University under the NSERC program. Fowai’s diverse educational journey reflects his dedication to advancing global knowledge in structural and materials engineering. 🌍

🏗️Professional Experience

Issa Fowai has accumulated diverse and impactful professional experience across academia, research, and engineering education. He served as a full-time lecturer at Harbin Engineering University from 2018 to 2020, teaching engineering mechanics and mentoring international students. Alongside, he worked as a part-time instructor in A-level and IGCSE mathematics, consistently achieving high student success rates. At the University of Ottawa, he has contributed significantly as a teaching assistant for both undergraduate and graduate courses, earning multiple teaching excellence awards. His research roles include graduate assistant positions and visiting research scholar appointments at Queen’s University and PUC-Rio, Brazil, where he engaged in advanced structural health monitoring and non-destructive testing. Fowai has also led initiatives as president of student organizations and actively participates in professional service, including peer-reviewing for top journals and serving on equity and inclusion committees. His practical and teaching experience underscores his commitment to advancing civil engineering education and practice.

🏅Awards and Honors

Issa Fowai has been recognized with numerous prestigious awards and honors throughout his academic and professional journey. He is a recipient of the Vanier Canada Graduate Scholarship, one of Canada’s most competitive and esteemed research awards, and the Indigenous and Black Engineering and Technology (IBET) PhD Fellowship, reflecting both academic excellence and leadership. He has also received the Ontario Graduate Scholarship and multiple institutional grants from the University of Ottawa and Queen’s University. Internationally, he was honored with the Outstanding Graduate Award and Outstanding International Student Scholarship at Harbin Engineering University. His commitment to teaching has earned him the 2025 Excellence Award for Teaching Assistants and the Faculty of Engineering Teaching Assistant Award. He also received scholarships and grants to conduct research in Brazil and Thailand and travel support from the American Concrete Institute. These accolades demonstrate his exceptional capabilities as both a researcher and educator in civil engineering.

🔬Research Focus

Issa Fowai’s research is centered on advancing the resilience, safety, and durability of civil infrastructure through innovative materials and monitoring technologies. His primary focus lies in the mechanics of externally bonded fiber-reinforced polymers (FRP) and their interaction with concrete interfaces, particularly under various loading and environmental conditions. He conducts finite element modeling to simulate interface behavior and optimize strengthening techniques. Additionally, Fowai explores smart sensing methods such as distributed fiber optic sensors and digital image correlation to monitor structural health in real time. His work also investigates the fire performance of ultra-high-performance concrete and employs non-destructive testing (NDT) to assess rehabilitated structures. Through international collaborations and hands-on laboratory research, including field assessments on historic bridges, he aims to enhance the longevity and performance of aging infrastructure. His multidisciplinary approach bridges structural engineering, material science, and data-driven diagnostics to contribute meaningfully to sustainable civil engineering practices.

📖Publication Top Notes

A glance at offshore wind turbine foundation structures
Year: 2016 | Cited by: 28 📚

Structural analysis of jacket foundations for offshore wind turbines in transitional water
Year: 2021 | Cited by: 5 📖

Evaluation of interfacial debonding of fibre-reinforced polymer using variable angle peel test
Year: 2022 | Cited by: 2 📘

Assessment of the CFRP–Concrete Interface Integrity of Original Champlain Bridge Diaphragms through Nondestructive and Semidestructive Testing
Year: 2025 | Cited by: 1 📙

Condition assessment of FRP-strengthened concrete bridge diaphragms using non-destructive testing
Year: 2023 | Cited by: 1 📗

Integrity assessment of CFRP-concrete interface on externally strengthened bridge diaphragms using direct tension pull-off test
Year: 2023  📄

Bond performance of deteriorated CFRP-concrete interface under different shear lap configurations: A Champlain Bridge case study
Year: 2024  📄

✨Conclusion

Issa Fowai is an exceptional candidate for the Best Researcher Award, particularly in Civil Engineering, Structural Health Monitoring, and Infrastructure Resilience. With a Ph.D. (expected 2025) supported by Canada’s prestigious Vanier Scholarship and a forthcoming NSERC-funded postdoctoral fellowship at Queen’s University, his academic excellence is well established. His impactful research spans critical areas such as FRP–concrete interface performance, fire-resilient UHPC, and smart sensing technologies, with collaborations across Canada, China, Brazil, and Thailand. Fowai’s scholarly contributions include first-author papers in top-tier journals and conferences, addressing pressing infrastructure challenges like the Champlain Bridge retrofit. With over a decade of award-winning teaching experience and leadership in student and equity organizations, he combines academic rigor with a strong commitment to inclusion and professional service. His involvement in peer review and industry partnerships further underscores his applied impact and global relevance. Overall, Fowai’s research excellence, leadership, and dedication make him a compelling choice for this recognition.