Vicente Pérez-García | Mechanical Engineering | Breakthrough Research Award

Breakthrough Research Award

Vicente Pérez-García
University of Guanajuato, Mexico
Vicente Pérez-García
Affiliation University of Guanajuato
Country Mexico
Scopus 56010310500
Documents 33
Citations 410
h-index 13
Subject Area Mechanical Engineering
Event Popular Engineer Awards
ORCID 0000-0002-2522-3812
Google Scholar IqBMK3UAAAAJ

Vicente Pérez-García is a researcher in Mechanical Engineering at the University of Guanajuato, Mexico. His work focuses on refrigeration systems, low-GWP refrigerants, and energy efficiency. With over 410 citations and an h-index of 13 (Scopus), he has contributed to experimental installations, heat pump instrumentation, and solar-powered refrigeration prototypes. He serves as Guest Editor for MDPI and Frontiers special issues, and collaborates internationally with Universitat Jaume I, Spain.[1]

Abstract

This article presents the research profile of Professor Vicente Pérez-García, highlighting his contributions to mechanical engineering, particularly in refrigeration and HVAC systems. His work includes experimental installations for low-GWP refrigerants, energy-saving configurations, and solar-powered mobile refrigeration. With a Scopus h-index of 13 and over 410 citations, his research has had a measurable impact. He has also contributed to doctoral training, international collaborations, and editorial roles in special issues on eco-friendly refrigeration. This profile supports his nomination for the Breakthrough Research Award at the Popular Engineer Awards.[2]

Keywords

Refrigeration · HVAC · low-GWP refrigerants · heat pumps · energy efficiency · solar cooling · experimental instrumentation · Scopus · h-index · mechanical engineering.

Introduction

The field of refrigeration and HVAC is undergoing a transformation driven by environmental regulations and energy efficiency demands. Researchers like Vicente Pérez-García are at the forefront of developing sustainable technologies and experimental methods. His work at the University of Guanajuato spans from fundamental heat transfer studies to applied projects with industry partners. This article reviews his academic and professional trajectory, research contributions, and impact, providing a comprehensive overview for the Breakthrough Research Award evaluation.[3]

Research Profile

Vicente Pérez-García holds a Doctorate in Mechanical Engineering from the University of Guanajuato, where he also obtained his Master’s and Bachelor’s degrees. He completed a research stay at Universitat Jaume I, Spain, and a professional internship at MABE Quantum in Celaya, Mexico. He is a member of the Sociedad Mexicana de Ingeniería Mecánica. His research areas include refrigeration, HVAC, and energy systems, with a focus on experimental instrumentation and sustainable technologies.[4]

Research Contributions

Pérez-García has led and contributed to multiple projects bridging academia and industry. Key contributions include:

  • Sizing and commissioning of an experimental installation for low-GWP refrigerants.
  • Implementation of an energy-saving configuration for dietetic ice pop freezing.
  • Instrumentation and commissioning of a water-source heat pump with low-GWP refrigerant.
  • Design and construction of a solar-powered mobile refrigeration prototype.
  • Obtaining the overall heat transfer coefficient in a tube-in-tube heat exchanger (also an industry consultancy project).

He has also served as guest editor for MDPI (Applied Sciences, special issue on eco-friendly refrigeration) and as guest associate editor for Frontiers (Low Global Warming Potential Refrigerants). He has supervised doctoral students and served on thesis committees at Universitat Jaume I, Instituto Tecnológico de Morelia, and Instituto Politécnico Nacional.[7][8]

Publications

Pérez-García has published 33 documents indexed in Scopus, with key contributions in thermal engineering. His 2013 paper on CO2 transcritical cycles ([3]) has received 61 citations, while his 2023 review on polystyrene pyrolysis ([4]) has garnered 55 citations. Another significant work on diffusion-absorption systems ([5]) has been cited 35 times. He also authored Memorias CiTeR 2024 (ISBN 978-607-26886-0-5). His editorial roles include guest editor for MDPI and Frontiers special issues ([7], [8]).

Selected highly cited publications are listed below. These works have contributed to the advancement of refrigeration and thermal systems.

  • Comparative study of transcritical vapor compression configurations using CO2 as refrigeration mode base on simulation
    V Pérez-García, JM Belman-Flores, J Navarro-Esbrí, C Rubio-Maya
    Applied Thermal Engineering 51 (1-2), 1038-1046 (2013).
    Citations: 61
  • A thermo-catalytic pyrolysis of polystyrene waste review: A systematic, statistical, and bibliometric approach
    AM Gonzalez-Aguilar, V Pérez-García, JM Riesco-Ávila
    Polymers 15 (6), 1582 (2023).
    Citations: 55
  • Energetic analysis of a diffusion–absorption system: a bubble pump under geometrical and operational conditions effects
    JM Belman-Flores, JL Rodríguez-Muñoz, C Rubio-Maya, V Pérez-García, et al.
    Applied Thermal Engineering 71 (1), 1-10 (2014).
    Citations: 35

Additionally, he has authored the book Memorias CiTeR 2024 (ISBN 978-607-26886-0-5).

Research Impact

Vicente Pérez-García’s research has achieved measurable impact through citations and international collaboration. Scopus data shows 410 citations and an h-index of 13 (as of 2026), while Google Scholar reports 568 citations and an h-index of 16. His work on CO2 transcritical cycles and polystyrene pyrolysis has been widely cited. He has been invited to serve on doctoral examination committees at Universitat Jaume I, Spain, reflecting his international standing. His editorial roles for MDPI and Frontiers further underscore his recognized expertise in low-GWP refrigerants and sustainable refrigeration technologies.[6]

Award Suitability

Professor Vicente Pérez-García is a strong candidate for the Breakthrough Research Award at the Popular Engineer Awards. His research portfolio demonstrates a consistent commitment to experimental innovation, sustainability, and practical applications in refrigeration and HVAC. His work bridges fundamental heat transfer analysis with industry-relevant prototype development, including solar-powered systems and energy-saving configurations. His publication record, international collaborations, and editorial contributions indicate a researcher who not only produces high-quality work but also actively shapes the research community. The award would recognize his significant contributions to mechanical engineering and his potential for future breakthroughs.[7]

Conclusion

This profile highlights the academic and research achievements of Vicente Pérez-García, a dedicated mechanical engineer whose work in refrigeration and HVAC has had a tangible impact. His experimental installations, energy-efficient designs, and solar-powered prototypes address real-world challenges. His scholarly output, including high-impact journal articles and editorial roles, positions him as a leader in his field. The Breakthrough Research Award would be a fitting recognition of his career and his ongoing contributions to sustainable engineering.[8]

External Links

References

  1. University of Guanajuato. (n.d.). Academic profile of Vicente Pérez-García. Department of Mechanical Engineering. https://www.ugto.mx/campusirapuatosalamanca/irse
  2. Elsevier. (n.d.). Scopus author details: Vicente Pérez-García, Author ID 56010310500. Scopus. https://www.scopus.com/pages/authors/56010310500
  3. Pérez-García, V., Belman-Flores, J.M., Navarro-Esbrí, J., & Rubio-Maya, C. (2013). Comparative study of transcritical vapor compression configurations using CO2 as refrigeration mode base on simulation. Applied Thermal Engineering, 51(1-2), 1038-1046. https://doi.org/10.1016/j.applthermaleng.2012.10.018
  4. Gonzalez-Aguilar, A.M., Pérez-García, V., & Riesco-Ávila, J.M. (2023). A thermo-catalytic pyrolysis of polystyrene waste review: A systematic, statistical, and bibliometric approach. Polymers, 15(6), 1582. https://doi.org/10.3390/polym15061582
  5. Belman-Flores, J.M., Rodríguez-Muñoz, J.L., Rubio-Maya, C., Pérez-García, V., et al. (2014). Energetic analysis of a diffusion–absorption system: a bubble pump under geometrical and operational conditions effects. Applied Thermal Engineering, 71(1), 1-10. https://doi.org/10.1016/j.applthermaleng.2014.06.034
  6. Pérez-García, V. (2024). Memorias CiTeR 2024 (ISBN 978-607-26886-0-5). University of Guanajuato Press.
  7. MDPI. (n.d.). Special Issue “Novel Ecofriendly Refrigeration System: Technology and Application”. Applied Sciences. https://www.mdpi.com/journal/applsci/special_issues/ABVI53W5D0
  8. Frontiers. (n.d.). Research Topic “Low Global Warming Potential Refrigerants”. Frontiers in Mechanical Engineering. https://www.frontiersin.org/research-topics/43501/low-global-warming-potentialrefrigerants

Srinivas Tadepalli | Mechanical Engineering | Best Researcher Award

Dr. Srinivas Tadepalli | Mechanical Engineering | Best Researcher Award 

ASSISTANT PROFESSOR,  Imam Mohammad Ibn Saud Islamic University (IMSIU), Saudi Arabia

Dr. Srinivas Tadepalli is an accomplished Assistant Professor of Chemical Engineering at Imam Muhammad Bin Saud Islamic University, Saudi Arabia. With over 9 years of teaching experience and a solid research foundation, he holds a Ph.D. in Chemical Engineering from UPES, Dehradun. His research specializes in environmental engineering, particularly in water pollution, bio-remediation, and low-cost adsorption techniques for heavy metal removal. Dr. Tadepalli has contributed significantly to the academic world with 30+ peer-reviewed publications, several books, and international conference presentations. His teaching portfolio spans undergraduate and postgraduate courses, along with lab development and coordination. He is widely recognized for his innovative teaching methodologies and extensive work on adsorption modeling and simulation. Dr. Tadepalli has also been actively involved in academic coordination, technical events, and quality assurance programs. Passionate about sustainability, he continues to mentor students and contribute to environmental research through interdisciplinary collaborations worldwide.

Professional Profile

🎓 Education 

Dr. Srinivas Tadepalli’s educational journey reflects a strong foundation in engineering disciplines. He earned his Ph.D. in Chemical Engineering (2011–2017) from the University of Petroleum & Energy Studies (UPES), Dehradun, with a focus on environmental pollution and heavy metal remediation using adsorbents. Prior to that, he completed his M.Tech in Gas Engineering (2008–2010) at UPES, achieving 85.4% and submitting a thesis on the design of compact heat exchangers. He holds a B.Tech in Chemical Engineering (2004–2008) from Bapatla Engineering College, affiliated with Acharya Nagarjuna University, where he conducted a project on xylene separation using distillation and extraction. Dr. Tadepalli also excelled in his early education, scoring 88.7% in Intermediate (2002–2004) and 84% in SSC (2001–2002). Throughout his academic path, he demonstrated excellence by securing top state ranks and qualifying national-level competitive exams like GATE and PGECET.

👨‍🏫 Experience 

Dr. Tadepalli has an extensive teaching and research career spanning over 15 years, including international appointments. Since December 2019, he has been serving as Assistant Professor at Imam Mohammad Ibn Saud Islamic University, Saudi Arabia. His past appointments include Assistant Professorships at Chandigarh University, Galgotias University, Bule Hora University (Ethiopia), and NIT Warangal. He began as a teaching assistant and research fellow at UPES Dehradun (2011–2015), where he completed his doctoral research. His responsibilities have included course instruction, lab development, curriculum design, project supervision, and academic coordination. He is adept in subjects such as Thermodynamics, Mass Transfer, Instrumentation, Wastewater Treatment, and Alternative Energy Technologies. Additionally, he has coordinated technical events, handled IPR and publications, and acted as a Department Research Committee (DRC) member. His international teaching exposure and consistent research productivity distinguish him as a versatile and committed academic professional.

🔬 Research Focus 

Dr. Srinivas Tadepalli’s research is deeply rooted in environmental and chemical engineering, with a strong emphasis on adsorption technologies for heavy metal remediation from industrial effluents. His doctoral work explored low-cost biosorbents in packed bed columns, integrating FTIR analysis, AAS, and isotherm-kinetic modeling. He has developed several models like Thomas, BDST, Yoon-Nelson, and Adam–Bohart for batch and continuous adsorption processes. His current interests extend to nanomaterials, biopolymers, biochar, wastewater treatment, thermodynamic modeling, sorption capacity enhancement, and green technologies. Dr. Tadepalli’s collaborative projects have included CFD simulations, composite fiber development, and bioremediation techniques using agricultural and industrial waste. His publications also focus on kinetic studies, statistical optimization, and comparative evaluations of adsorbents. With a practical approach, he links experimental data to real-world industrial solutions. Through interdisciplinary collaborations, he aims to tackle global challenges in sustainable water treatment, waste valorization, and pollution control.

📚Publications Top Notes

 Biosorption of toxic heavy metals on sawdust

Citation:
V. Mishra, S. Tadepalli. CLEAN – Soil, Air, Water, 43(3), 360–367, 2015
Cited by: 24
Summary:
This study explores the efficiency of sawdust as a low-cost biosorbent for the removal of heavy metals like lead and cadmium from contaminated water. The adsorption mechanisms, equilibrium models, and reusability aspects were evaluated to determine its suitability in industrial wastewater treatment.

Synthesis and suitability characterization of microcrystalline cellulose from Citrus x sinensis sweet orange peel fruit waste-based biomass for polymer composite applications

Citation:
M. Palaniappan, S. Palanisamy, R. Khan, N. H. Alrasheedi, S. Tadepalli, et al. Journal of Polymer Research, 31(4), 105, 2024
Cited by: 18
Summary:
This research highlights the extraction of microcrystalline cellulose (MCC) from sweet orange peel waste. The resulting MCC was characterized and tested for compatibility in polymer composite applications, offering a sustainable path for waste valorization and advanced material design.

Novel Ficus retusa L. aerial root fiber: a sustainable alternative for synthetic fibres in polymer composites reinforcement

Citation:
M. Palaniappan, S. Palanisamy, T.M. Murugesan, N.H. Alrasheedi, S. Ataya, S. Tadepalli, et al. Biomass Conversion and Biorefinery, 15(5), 7585–7601, 2025
Cited by: 16
Summary:
The study introduces aerial root fiber from Ficus retusa as a green reinforcement material in polymer composites. Mechanical, thermal, and morphological analyses confirmed its potential as an eco-friendly alternative to synthetic fibers.

 Potential for hydrothermally separated groundnut shell fibers for removal of methylene blue dye

Citation:
D. Sachdev, H. Shrivastava, S. Sharma, S. Srivastava, S. Tadepalli, et al. Materials Today: Proceedings, 48, 1559–1568, 2022
Cited by: 15
Summary:
This paper evaluates the adsorption capacity of groundnut shell fibers, treated hydrothermally, for removing methylene blue dye. It investigates isotherms and kinetics to demonstrate the fiber’s potential in textile effluent remediation.

Removal of Cu(II) and Fe(II) from industrial wastewater using orange peel as adsorbent in batch mode operation

Citation:
S. Tadepalli, K.S.R. Murthy, N.N. Rakesh. International Journal of ChemTech Research, 9(5), 290–299, 2016
Cited by: 12
Summary:
This work examines the batch adsorption of copper and iron ions from wastewater using orange peel. The findings support its cost-effectiveness, with modeling of adsorption behavior using Freundlich and Langmuir isotherms.

🏅 Conclusion

Dr. Srinivas Tadepalli’s distinguished career reflects a steadfast commitment to academic excellence, impactful research, and sustainable innovation in chemical and environmental engineering. His work on low-cost adsorption technologies, wastewater treatment, and environmental remediation has contributed significantly to solving pressing industrial challenges. With a strong foundation in teaching, mentoring, and interdisciplinary collaboration, he continues to bridge the gap between science and society. Looking ahead, Dr. Tadepalli remains devoted to advancing green technologies, guiding future engineers, and fostering global research partnerships that promote cleaner, safer, and more sustainable solutions for the world.