Florian Tieves | Production Engineering | Editorial Board Member

Dr. Florian Tieves | Production Engineering | Editorial Board Member

Senior Researcher at Institut of Biochemistry II |  HHU Düsseldorf | Germany

Dr. Florian Tieves is a distinguished biochemist recognized for his contributions at the intersection of academic research and industrial biotechnology, with a strong focus on biocatalysis, enzyme engineering, and innovative biochemical process development. His work spans the advancement of P450-catalyzed reactions, unspecific peroxygenases, and whole-cell biocatalytic systems, where he has consistently driven progress in enzymatic oxyfunctionalization and pathway optimization. Renowned for integrating scientific insight with practical application, he has played a pivotal role in pioneering fermentation strategies, refining protein and peptide production workflows, and elevating downstream processing techniques to meet complex industrial demands. Throughout his career, he has demonstrated an exceptional ability to lead multidisciplinary research initiatives, cultivate high-impact collaborations, and translate biochemical innovation into scalable, high-performance solutions. His expertise extends across analytical development, process optimization, and the engineering of robust enzymatic systems, positioning him as a catalyst for technological advancement in modern biotechnology. Dr. Tieves is widely regarded for his strategic vision, rigorous scientific approach, and commitment to advancing enzyme-driven transformations that support sustainable, efficient, and future-ready biochemical manufacturing.

Profile: Scopus

Featured Publications

Tieves, F., et al. (2025). Engineering the Tobacco Etch Virus protease toward a platform for traceless cleavage using distal site prediction and smart library design.

Tieves, F., et al. (2025). Identification of key active-site positions controlling the chemoselectivity of Aspergillus brasiliensis unspecific peroxygenase.

Tieves, F., et al. (2025). Enzymatic valorization of fatty acids in oleochemical synthesis.

Fangwen Chen | Petroleum Geology | Editorial Board Member

Assoc. Prof. Dr. Fangwen Chen | Petroleum Geology | Editorial Board Member

Associate Professor at China University of Petroleum (East China) | China

Assoc. Prof. Dr. Fangwen Chen is a distinguished scholar in Geology Resources and Geological Engineering, recognized for his influential contributions to the understanding of shale oil and shale gas systems through advanced characterization of pore structures, reservoir behavior, and storage mechanisms. His research integrates meticulous experimental analysis with innovative geological interpretation, enabling deeper insight into nanopore architectures, mineralogical influences, and adsorption phenomena that shape unconventional hydrocarbon reservoirs. He has produced a substantial body of peer-reviewed work that examines pore size distributions, reservoir connectivity, gas content characteristics, and the interplay of organic matter, minerals, and structural features across key formations such as the Wufeng, Longmaxi, and Raoyang Sag systems. Through studies published in leading journals, he has advanced methodologies for evaluating adsorbed methane, quantifying pore volumes, and classifying tight reservoir spaces, offering frameworks that enhance reservoir assessment and support the broader field of unconventional energy development. His scholarship also reflects a commitment to refining analytical techniques, including the integration of backscattered electron microscopy with complementary methods to improve microscopic pore characterization. Beyond his research contributions, he actively fosters academic growth in the discipline by sharing foundational and emerging concepts related to new energy, equipping learners with the analytical tools needed to understand evolving subsurface challenges. Supported by multiple competitive scientific grants, his work continues to shape contemporary thinking on shale reservoir evaluation, strengthening both theoretical foundations and applied strategies within the geosciences and contributing to the sustainable advancement of unconventional resource exploration.

Profiles: Scopus | ORCID

Featured Publications

Wang, J., Gao, S., Duan, X., Li, W., Chen, F., Wang, Z., Liu, L., Zhang, P., Chen, G., Zhou, N., et al. (2026). Experimental and numerical simulation of dynamic fractionation for methane carbon isotope during shale gas depletion development.

Wang, J., Chen, F.-W., Li, W.-B., Lu, S.-F., Zhao, S.-X., Liu, Y.-Y., & Wang, Z.-Y. (2025). A multi-scale and multi-mechanism coupled model for carbon isotope fractionation of methane during shale gas production.

Hu, B., Li, X., Liu, J., Cai, Z., Liu, H., Xu, Y., & Chen, F. (2025). Hydrocarbon generation characteristics and geological significance of deep organic-rich shales in the Gulong Fault Depression, Songliao Basin, Northeastern China.

Chen, F., Qin, S., Ding, X., Pang, S., Wang, M., Yang, D., & Huang, Y. (2025). Imbibition characteristics and its influencing factors of shale gas reservoirs: A case study of the Longmaxi Shale in Southeast Chongqing.

Wang, H., Qiao, L., Zhang, J., Lu, S., Chen, F., Liu, Y., & Fu, Z. (2022). An effective integration optimization algorithm for regional fracturing design and drilling placement.

Yingchao Wang | Energy and Power | Editorial Board Member

Dr. Yingchao Wang | Energy and Power | Editorial Board Member

Assistant Professor at Xinjiang Institute of Engineering | China

Dr. Yingchao Wang is an emerging scholar in the field of energy engineering, recognized for his integrative approach to advancing heat and mass transfer, renewable energy systems, and next-generation energy storage technologies. As an Assistant Professor at the College of Energy Engineering, Xinjiang University of Engineering, he has cultivated a scientific identity defined by rigorous analytical thinking, inventive methodological development, and a sustained commitment to addressing the evolving challenges of modern power systems. His research contributions span data-driven wind turbine control under stochastic conditions, hybrid energy storage integration strategies for new power system architectures, and clean energy solutions that strengthen the transition toward low-carbon futures. Through collaborative and cross-disciplinary initiatives, he has played key roles in creating intelligent control models, unified energy storage frameworks, and advanced thermal management systems that demonstrate both theoretical depth and practical relevance. His academic work includes impactful publications on pipeline insulation performance using composite phase-change materials, as well as modeling innovations that apply grey prediction techniques to support progress in renewable energy forecasting. Complementing his scholarly outputs, he has contributed to technological advancement through patents in phase-change heat pump systems and grey-prediction-based analytical methods. His research agenda further encompasses the development of energy storage systems integrated with air-source absorption heat pump technologies and the application of CO₂ capture and storage solutions within clean coal technology research. Known for fostering problem-solving abilities and research curiosity in students, he integrates modern engineering perspectives with real-world energy scenarios to build the next generation of energy innovators. With a career shaped by scientific rigor, a passion for sustainable systems, and a dedication to engineering excellence, Wang Yingchao continues to contribute meaningfully to the advancement of high-efficiency, low-emission, and intelligently optimized energy technologies.

Profile: ORCID

Featured Publications

Ran, M., Wang, Y., Qin, Q., Huang, J., & Jiang, J. (2025). An improved grey prediction model integrating periodic decomposition and aggregation for renewable energy forecasting: Case studies of solar and wind power.

Wang, Y., Jiang, J., Liu, Y., Gao, J., Mi, L., & Zhang, H. (2025). Simulation study of pipeline insulation performance based on composite-phase change materials

Wang, Y., Yang, J., Ren, C., Tang, J., & Feng, R. (2018). Study on the optimization method for radiation noise reduction of engine blocks.

Wang, Y., Liu, Y., Xing, L., Mi, L., & Li, X. (2024). Phase change heat storage heat pump heating system

José María Franco | Chemical Engineering | Best Research Article Award

Prof. José María Franco | Chemical Engineering | Best Research Article Award

Professor at Universidad de Huelva | Spain

Prof. José María Franco Gómez is a distinguished scholar and Full Professor of Chemical Engineering at the University of Huelva, Spain, widely recognized for his pioneering research in rheology, polymers, and complex fluid systems. With an extensive academic and industrial research career exceeding three decades, his scientific contributions have significantly advanced the understanding and application of non-Newtonian fluid behavior, biopolymers, lubricants, adhesives, and coatings. His innovative studies on structuring oleogels and developing eco-friendly rheological modifiers from renewable resources have positioned him at the forefront of sustainable materials engineering. Prof. Franco has authored more than 200 peer-reviewed scientific papers and several influential book chapters, and has served as co-editor of key volumes on rheology. His research excellence is reflected in a high citation index and numerous leadership roles in national and international projects. Beyond academia, he has successfully bridged the gap between science and industry, leading over 40 technology transfer projects and collaborating with global corporations such as Procter & Gamble, Fresenius Kabi, and Repsol. His work has yielded multiple patents that contribute to cleaner and more efficient industrial processes. A respected mentor, he has supervised numerous doctoral and postdoctoral researchers, fostering future leaders in chemical and materials engineering. As Director of the Pro2TecS Research Center and the “Complex Fluids Engineering” group, he continues to drive innovation in green chemistry and advanced material technologies. Prof. Franco’s enduring influence extends through his editorial roles in leading scientific journals, participation in major international conferences, and recognition by academic and governmental institutions for his outstanding scientific trajectory and contributions to sustainable industrial development.

Profiles: Scopus | ORCID

Featured Publications

Rubio-Valle, J. F., Valencia, C., Estrada-Villegas, G. M., Martín-Alfonso, J. E., & Franco, J. M. (2025). Exploration of low-sulfonate lignin electrospinning conditions for the development of new renewable lubricant formulations.

Rubio-Valle, J. F., Martínez-Guerra, E., Sánchez-Domínguez, M., Vázquez-Lepe, E., Rodríguez, C., Valencia, C., Martín-Alfonso, J. E., & Franco, J. M. (2025). Advanced multifunctional oil structurants for sustainable lubricants engineered by electrospinning lignin/cellulose acetate butyrate nanofibers and TiO₂ atomic layer deposition.

Toro-Gallego, M., Valencia, C., Sánchez, M. C., Martín-Alfonso, J. E., & Franco, J. M. (2025, February 15). Use of electrospun cellulose acetate/silica composites as multifunctional ingredients in eco-friendly semisolid lubricant formulations

Martín-Alfonso, M. A., Rubio-Valle, J. F., Valencia Barragán, C., Martín-Alfonso, J. E., & Franco, J. M. (2024). Environmentally-friendly lubricating dispersions obtained using castor oil and cellulose acetate derivatives nanostructures.

Martín-Alfonso, M. A., Rubio-Valle, J. F., Martín-Alfonso, J. E., & Franco, J. M. (2024). Rheological characterization of oleo-dispersions based on montmorillonite/cellulose acetate phthalate hybrid fibers and castor oil for lubricant purposes.

Reza Alayi | Carbon Capture Utilization and Storage | Best Academic Researcher Award

Assist. Prof. Dr. Reza Alayi | Carbon Capture Utilization and Storage | Best Academic Researcher Award

Head of the Department at Islamic Azad University | Iran

Assist. Prof. Dr. Reza Alayi is a distinguished academic and researcher recognized for his pioneering contributions to energy systems engineering, renewable energy technologies, and sustainable power generation. As an Assistant Professor and Head of the Department of Mechanics at the Islamic Azad University, Germi Branch, he has established a strong reputation in advancing hybrid renewable systems, thermodynamic optimization, and clean energy integration. His research spans a wide array of interdisciplinary domains including photovoltaic thermal systems, hydrogen production, biomass utilization, microgrids, and waste-to-energy conversion, all directed toward achieving global sustainability and low-carbon development. With a prolific publication record in high-impact international journals such as Sustainability, Clean Energy, Physics of Fluids, and International Journal of Low-Carbon Technologies, Dr. Alayi has made significant scholarly contributions that bridge theory with industrial application. Beyond authorship, he serves as a reviewer and editorial board member for numerous scientific journals, reflecting his deep engagement in the global scientific community. His analytical work on energy, exergy, and economic performance of renewable systems continues to inform innovative energy transition strategies, particularly for regions pursuing efficient and eco-friendly technologies. Known for his collaborative spirit and forward-thinking approach, Dr. Alayi has co-authored research with international experts, fostering academic networks across Asia, Europe, and the Middle East. His academic leadership, innovative vision, and commitment to advancing renewable energy research position him as an influential figure driving the evolution of sustainable mechanical and energy engineering worldwide.

Profiles: Scopus | ORCID | Google Scholar

Featured Publications

Haghmoradkhani, A., Alayi, R., & Assad, M. (2025, July 23). Thermodynamic investigation and optimization of a low-concentrating photovoltaic thermal collector.

Hadi Bonab, S., Hosseinzadeh, H., Alayi, R., Mitrovic, Z., & Hosseini, S. (2025, March 21). Geraghty-L-contraction type Darbo’s fixed point theorems with an applications.

Mohammad, S. I., Vasudevan, A., Al‐hedrewy, M., Abdullah, M., Ballal, S., Singh, A., Singh, S., Rapeti, S. R., & Alayi, R. (2025, January). Hybrid biomass and natural gas combined cycles: Performance and economic analysis.

Zhang, J., Su, Z., Meng, J., Yao, Y., & Alayi, R. (2025, January). Techno‐economic and sensitivity analysis of a hybrid concentrated photovoltaic/thermal system and an organic Rankine cycle to supply energy to sports stadiums.

Alayi, R., & Ebazadeh, Y. (2025, January 24). Modelling and control of a hybrid renewable energy based hydrogen and electricity production and storage systems.

Roberto Parra Saldivar | Circular Economy | Best Researcher Award

Prof. Roberto Parra Saldivar | Circular Economy | Best Researcher Award

Professor Chair of Sustainable Mycoremediation at Cranfield University | United Kingdom

Prof. Dr. Roberto Parra Saldívar is an eminent biotechnologist and sustainability leader whose pioneering work bridges biotechnology, environmental engineering, and sustainable manufacturing. As Professor and Chair of Sustainable Mycoremediation at Cranfield University, his research integrates advanced bioprocessing, enzyme technology, nanobiocatalysis, and circular bioeconomy principles to develop eco-efficient solutions for global challenges in water remediation, energy production, and waste valorization. With an exceptional academic output of over 320 peer-reviewed articles, 20 book chapters, 18 patents, and an H-index exceeding 65 (Scopus) and 75 (Google Scholar), his contributions have shaped modern bioengineering and environmental biotechnology. A former Chair of Bioproduction Systems at Tecnológico de Monterrey and a visiting scholar at MIT and Harvard University, he has established influential research networks across Europe, the Americas, and Asia, fostering interdisciplinary collaborations and technology transfer between academia and industry. His mentorship has guided numerous Ph.D. and postdoctoral researchers who now hold leading positions in academia and industry worldwide. Recognized among Mexico’s top researchers by CONACyT and the Mexican Academy of Sciences, his accolades include multiple teaching excellence awards and distinction as a highly cited researcher. Through visionary leadership and a commitment to sustainability, Prof. Parra Saldívar continues to advance bio-based innovations that promote environmental resilience, industrial transformation, and human well-being on a global scale.

Profiles: Scopus | ORCID | Google Scholar

Featured Publications

Cuellar‐Bermudez, S. P., Aguilar‐Hernandez, I., Cardenas‐Chavez, D. L., Ornelas‐Soto, N., Romero‐Ogawa, M. A., & Parra‐Saldívar, R. (2015). Extraction and purification of high‐value metabolites from microalgae: Essential lipids, astaxanthin and phycobiliproteins.

Arevalo-Gallegos, A., Ahmad, Z., Asgher, M., Parra-Saldívar, R., & Iqbal, H. M. N. (2017). Lignocellulose: A sustainable material to produce value-added products with a zero waste approach—A review.

Bilal, M., Asgher, M., Parra-Saldívar, R., Hu, H., Wang, W., Zhang, X., & Iqbal, H. M. N. (2017). Immobilized ligninolytic enzymes: An innovative and environmental responsive technology to tackle dye-based industrial pollutants – A review.

Bhattacharyya, S. S., Ros, G. H., Furtak, K., Iqbal, H. M. N., & Parra-Saldívar, R. (2022). Soil carbon sequestration – An interplay between soil microbial community and soil organic matter dynamics.

Alemán-Nava, G. S., Casiano-Flores, V. H., Cárdenas-Chávez, D. L., Díaz-Chavez, R., Scarlat, N., Dallemand, J. F., Ornelas-Soto, N., García-Serrano, A., & Parra-Saldívar, R. (2014). Renewable energy research progress in Mexico: A review.

Arash Ebrahimi | Inorganic Chemistry | Best Researcher Award

Dr. Arash Ebrahimi | Inorganic Chemistry | Best Researcher Award

Scientific Researcher at Comenius University Bratislava | Slovakia

Dr. Arash Ebrahimi is a distinguished inorganic chemist and materials researcher recognized for his pioneering work in the synthesis, characterization, and catalytic applications of Metal–Organic Frameworks (MOFs), Zeolitic Imidazolate Frameworks (ZIFs), and Polyoxometalate-based hybrid materials. His research bridges the disciplines of inorganic and supramolecular chemistry, focusing on renewable energy applications such as photocatalytic hydrogen evolution, water splitting, and sustainable energy storage. Through collaborative research across leading European institutions including TU Wien, HHU Düsseldorf, and the Autonomous University of Barcelona, Dr. Ebrahimi has contributed significantly to the advancement of photocatalytic and electrochemical systems. His scientific excellence is reflected in multiple high-impact publications in reputed journals such as Coordination Chemistry Reviews, ACS Omega, and Molecules, alongside invitations as a plenary speaker at major international conferences. A recipient of numerous prestigious grants including Erasmus+, DAAD, and Action Austria–Slovakia, he has demonstrated exceptional ability in cross-institutional research leadership and project innovation. Beyond his extensive publication record, he serves as a peer reviewer for several international journals and holds memberships in the Royal Society of Chemistry and the American Chemical Society. Dr. Ebrahimi’s research philosophy is deeply rooted in designing functional porous materials for environmental remediation and green energy conversion, with a special focus on hybrid catalytic systems. His commitment to scientific rigor, interdisciplinary collaboration, and sustainability positions him as a forward-thinking researcher contributing meaningfully to global advancements in material chemistry and renewable technologies.

Profiles: Scopus | ORCID | Google Scholar

Featured Publications

Ebrahimi, A., Krivosudský, L., Khodabakhshi, S., Khaleghiabbasabadi, M., Sadeghi, M., & Motola, M. (2026). Polyoxometalate-based covalent organic frameworks: The next generation of heterogeneous catalysts.

Ebrahimi, A., Krivosudský, L., Cherevan, A., & Eder, D. (2024). Polyoxometalate-based porphyrinic metal-organic frameworks as heterogeneous catalysts.

Ebrahimi, A., Somasundaram, J. D., Nandan, S. P., Cherevan, A., Eder, D., Šupolíková, M., Nováková, E., Gyepes, R., & Krivosudský, L. (2022). Functionalization of decavanadate anion by coordination to cobalt(II): Binding to proteins, cytotoxicity, and water oxidation catalysis.

Ebrahimi, A., & Krivosudský, L. (2022). Metalloporphyrin metal–organic frameworks: Eminent synthetic strategies and recent practical exploitations.

Ebrahimi, A., Krivosudský, L., & Gyepes, R. (2022). Crystal structure of bis(ammonium) bis[pentaaqua(dimethylformamide)zinc(II)] decavanadate tetrahydrate. Acta Crystallographica Section E: Crystallographic Communications.

Seyed Ghiaasiaan | Artificial Intelligence in Petroleum Engineering | Best Researcher Award

Dr. Seyed Ghiaasiaan | Artificial Intelligence in Petroleum Engineering | Best Researcher Award

Assistant Professor at University of Texas Permian Basin | United States

Dr. Seyed Reza Ghiaasiaan is an accomplished materials and mechanical engineer whose research bridges advanced manufacturing, metallurgy, and applied mechanics, contributing significantly to innovations in additive manufacturing and metal processing. As a faculty member at the University of Texas Permian Basin’s Advanced Manufacturing Center, he integrates multidisciplinary approaches to study process–structure–property–performance relationships across metallic alloys and composites, including nickel-based superalloys, titanium, stainless steel, and aluminum systems. His extensive academic and industrial experience spans roles in research, teaching, and engineering design in Canada, the United States, and internationally, fostering collaborations with major research institutions and industrial partners such as NASA and NSERC. Dr. Ghiaasiaan has authored more than forty-five peer-reviewed publications and book chapters, with his work frequently cited in the fields of solidification, fatigue, and mechanical performance of materials. His contributions to the understanding of additive manufacturing processes, microstructural evolution, and fatigue-critical applications in aerospace and energy sectors have advanced the frontier of materials engineering. He has been repeatedly recognized for research excellence, scholarly reviewing, and mentorship, earning awards from institutions and professional bodies alike. A licensed Professional Engineer and active member of multiple international societies including ASME, ASM, and TMS, Dr. Ghiaasiaan exemplifies the integration of research rigor, innovation, and professional service, shaping the next generation of engineers through his leadership in advanced materials manufacturing and sustainable engineering design.

Profile: Google Scholar

Featured Publications

Mostafaei, A., Zhao, C., He, Y., Ghiaasiaan, S. R., Shi, B., Shao, S., Shamsaei, N., et al. (2022). Defects and anomalies in powder bed fusion metal additive manufacturing.

Mostafaei, A., Ghiaasiaan, R., Ho, I. T., Strayer, S., Chang, K. C., Shamsaei, N., et al. (2023). Additive manufacturing of nickel-based superalloys: A state-of-the-art review on process-structure-defect-property relationship.

Azizi, H., Zurob, H., Bose, B., Ghiaasiaan, S. R., Wang, X., Coulson, S., Duz, V., et al. (2018). Additive manufacturing of a novel Ti-Al-V-Fe alloy using selective laser melting.

Azizi, H., Ghiaasiaan, R., Prager, R., Ghoncheh, M. H., Samk, K. A., Lausic, A., et al. (2019). Metallurgical and mechanical assessment of hybrid additively-manufactured maraging tool steels via selective laser melting.

Ghiaasiaan, R., Amirkhiz, B. S., & Shankar, S. (2017). Quantitative metallography of precipitating and secondary phases after strengthening treatment of net shaped casting of Al-Zn-Mg-Cu (7000) alloys.

Sandra Sarrazin | Petroleum Engineering | Best Researcher Award

Prof. Dr. Sandra Sarrazin | Petroleum Engineering | Best Researcher Award

Professor at Universidade Federal do Oeste do Pará | Brazil

Prof. Dr. Sandra Layse Ferreira Sarrazin is a distinguished Brazilian biologist and pharmacologist whose scientific career reflects a profound dedication to research in therapeutic innovation, natural product bioprospecting, and public health within the Amazon region. As a researcher and professor at the Federal University of Western Pará, she has led and collaborated on numerous interdisciplinary projects exploring the pharmacological potential of Amazonian biodiversity, with an emphasis on essential oils, phytopharmaceuticals, and antioxidant compounds derived from native plants. Her studies have significantly advanced understanding of toxicogenomic and antimutagenic mechanisms related to environmental exposure, particularly mercury contamination in vulnerable populations such as pregnant women and indigenous communities. Through leadership in projects like the Rede Bionorte and initiatives focused on biotechnology and environmental health, Prof. Dr. Sandra Sarrazin has contributed to integrating research, education, and extension activities that bridge traditional knowledge with modern pharmacological science. Her prolific academic output includes influential publications in internationally recognized journals such as Journal of Ethnopharmacology, Food Chemistry, and Environmental Science & Technology, with citations reflecting her impact in ethnopharmacology and environmental toxicology. Honored for her work on the antimicrobial and antioxidant properties of Amazonian plant species, she continues to mentor emerging scientists and promote sustainable development through science-based health innovations. Prof. Dr. Sandra Sarrazin career embodies a commitment to preserving Amazonian biodiversity while transforming its resources into solutions that enhance health and well-being, reinforcing her status as a leading figure in biopharmaceutical research and an advocate for integrating biotechnology into regional and global health strategies.

Profile: Scopus

Featured Publications

Massing, L. T., Mourão, R. H. V., Sarrazin, S. L. F., Suemitsu, C., Figueiredo, P. L. B., Fernandes, C. P., Maia, J., & Guilherme, S. (2025). Citral chemotype of Pectis elongata essential oil: Nanoemulsification and enhanced antimicrobial properties for food safety.

Silva, D. M. da, Silva, L. A. da, Silva, M. D. da, Pinto, M. E. de O., Lima, V. A. de, Sarrazin, S. L. F., Silva, W. T. P. da, & Oliveira, R. B. de. (2025). Efeitos da suplementação nutricional com substâncias antioxidantes em gestantes expostas ao mercúrio na Amazônia Legal.

Amorin, A. P., Sarrazin, S. L. F., da Silva, L. A., Coelho, T. N., Cunha, A. P., de Lima, V. A., da Silva, D. M., Figueiredo, P. L. B., & de Oliveira, R. B. (2025). Opioid and nitrergic pathways mediate antinociception by Kunth essential oil

Pires, P. G. da S., Sarrazin, S. L. F., Souza, D. J. dos A., Mourão, R. H. V., Massing, L. T., Nunes, H. A. S., Barroso, A. S., & de Oliveira, R. B. (2024). Antiedema and antinociceptive potential of the essential oil of Pectis elongata Kunt (Asteraceae) from the Brazilian Amazon.

Macambira, D. V. de C., Almeida Júnior, J. S. de, Silveira, C. F. de M., Sarrazin, S. L. F., Moraes, T. M. P., da Silva, B. A., Minervino, A. H. H., Moraes, W. P., & Barata, L. E. S. (2024). Antimicrobial activity on Streptococcus mutans and Enterococcus faecalis of Cyperus articulatus ethanolic extracts.

Eduardo Antonio Rossello | Geology Petrophysics | Best Research Article Award

Prof. Dr. Eduardo Antonio Rossello | Geology Petrophysics | Best Research Article Award

Principal Researcher at IGEBA-CONICET | Argentina

Prof. Dr. Eduardo Antonio Rossello is a distinguished geologist recognized internationally for his pioneering work in structural, tectosedimentary, and economic geology, with profound influence across Latin America. Educated at the University of Buenos Aires, he has devoted his career to advancing geological sciences through teaching, research, and consultancy, notably in the fields of mining, petroleum exploration, and reservoir geology. His expertise lies in the identification, characterization, and interpretation of structural deformation and its economic implications for petroleum, mineral, and hydrogeological projects. As a senior researcher at CONICET and professor of geological sciences, he has made significant academic and scientific contributions to understanding geomechanical and tectonic processes controlling natural resources. Dr. Rossello has also served as an international consultant for numerous multinational organizations, offering specialized guidance on the structural and tectosedimentary aspects of exploration and production for leading companies such as YPF, Repsol, Petrobras, Pemex, and BHP, and has played a crucial role in the Guaraní Aquifer Project supported by the OAS and the World Bank. He has published more than 140 papers and book chapters and over 300 scientific communications that have enriched global knowledge on deformation, basin evolution, and analogue modelling. A passionate educator, he has delivered more than a hundred professional courses and has supervised numerous master’s and doctoral theses, fostering the development of future geoscientists. His extensive academic and consulting experience reflects an outstanding ability to bridge theoretical geology with industrial applications, enhancing both scientific understanding and practical resource management. In recognition of his enduring contributions to geological sciences, he was honored with the prestigious Horacio J. Harrington Prize in Structural Geology by the National Academy of Exact, Physical and Natural Sciences of Argentina, marking his legacy as a leader and innovator in applied geoscience.

Profiles: Scopus | ORCID

Featured Publications

Rossello, E. A., & Mozetic, M. E. (2025, August 26). Petrophysical implications from a microtectonic evaluation of Villeta Formation cores in the Putumayo Basin (Colombia).

Mantilla, M., Salazar, C., & Rossello, E. (2024, December 19). The La Hocha High and associated oil fields (Upper Magdalena Valley, Colombia): A new 3D structural model based on subsurface data.

Rossello, E. A., López-Isaza, J. A., López Isaza, S. A., & Gutiérrez López, M. J. (2024, September 30). Modelo cinemático del control estructural 4D y metalogénesis del distrito auroargentífero Vetas-California (Santander, Colombia).

Rossello, E. A., & Arioni, L. (2024, August 15). La sismicidad en la llanura Chacopampeana y su relación con el Lineamiento Transbrasiliano: Una revisión. Acta Geológica Lilloana.

Rossello, E. A., & Veroslavsky, G. (2024, April 6). La morfología de la Bahía de Samborombón (Argentina): Su vínculo con la evolución de la Cuenca del Salado y la neotectónica de la llanura pampeana.