Jose Refugio Parga Torres | Environmental Science | Best Scholar Award

Prof. Jose Refugio Parga Torres | Environmental Science | Best Scholar Award

Professor at TNM-ITS MEXICO, Mexico

Dr. José Refugio Parga Torres is an accomplished academic and researcher in the field of engineering, particularly in the areas of electrical and systems engineering. He holds significant experience in academia and industry, blending both practical and theoretical knowledge. Dr. Parga Torres has a strong commitment to advancing technology and improving systems through research and development, contributing to innovations in industrial automation and control systems. His work has been influential in various research initiatives, especially those focusing on optimizing systems for greater efficiency and sustainability. Known for his multidisciplinary approach, Dr. Parga Torres has collaborated with international researchers, applying his expertise in areas like smart systems, electrical engineering, and automation to solve real-world problems. He continues to mentor young professionals and contributes to the academic community through teaching, research, and publications.

Professional Profile

Education:

Dr. Parga Torres completed his undergraduate studies in Electrical Engineering and pursued a Master’s degree in Systems Engineering, which laid the foundation for his expertise in system optimization and automation. He later earned a Ph.D. in Electrical and Systems Engineering, where his dissertation focused on the development of algorithms and control systems. His educational background reflects a deep commitment to understanding the core aspects of electrical systems and technology. Dr. Parga Torres continuously seeks to improve his knowledge through post-doctoral research and participation in international conferences, further establishing himself as an expert in his field.

Professional Experience:

Dr. José Refugio Parga Torres has extensive professional experience spanning over two decades in both academia and industry. He has held faculty positions in prestigious universities, teaching courses related to electrical systems, automation, and control engineering. Dr. Parga Torres has also worked with several organizations, applying his research and engineering expertise to improve industrial systems. His roles have included positions as a senior research scientist, project manager, and consultant, where he has contributed to the design and implementation of various automation systems. His professional journey has provided him with valuable insights into bridging the gap between academic research and practical application.

Research Interests:

Dr. Parga Torres’ primary research interests lie in electrical systems, automation, and industrial control systems. He has focused on developing intelligent systems that enhance the efficiency and sustainability of various industrial applications. His work extends to robotics, smart grids, and renewable energy systems, where he investigates how technology can optimize energy use and system performance. His research explores the integration of artificial intelligence into control systems to improve their adaptability and performance. Furthermore, he is interested in studying the dynamics of complex systems and their applications to optimize manufacturing and automation processes.

Research Skills:

Dr. Parga Torres is proficient in a wide range of research skills, particularly in system optimization, algorithm development, and control system design. His expertise includes modeling, simulation, and the application of machine learning techniques to enhance system functionality. He has a strong command of software tools used in electrical and control engineering, such as MATLAB, Simulink, and LabVIEW. Dr. Parga Torres’ ability to design and implement practical solutions based on theoretical research has made him a valuable asset to various projects, especially those focusing on industrial applications and automation. His skills also encompass data analysis and the use of statistical methods for optimizing system performance.

Awards and Honors:

Throughout his career, Dr. José Refugio Parga Torres has received several accolades for his contributions to the field of electrical and systems engineering. He has been recognized for his excellence in research and teaching, receiving awards from academic institutions and professional organizations. His contributions to the development of advanced automation systems have been acknowledged through prestigious honors, including invitations to speak at international conferences and symposiums. Dr. Parga Torres has also received recognition for his involvement in collaborative research projects that have led to impactful technological innovations in the industry.

Conclusion:

Dr. José Refugio Parga Torres is a highly skilled researcher and educator whose work has had a lasting impact on the field of electrical and systems engineering. His commitment to advancing technological solutions, especially in the realm of industrial automation and control systems, has earned him a reputation as an expert in his field. Through his research, teaching, and professional endeavors, Dr. Parga Torres continues to contribute significantly to the development of more efficient and sustainable systems. His ability to bridge theoretical research with practical application sets him apart as a leader in engineering innovation.

Publication Top Notes

  • Title: Electrocoagulation (EC) — science and applications
    • Authors: MYA Mollah, R Schennach, JR Parga, DL Cocke
    • Journal: Journal of Hazardous Materials
    • Volume (Issue): 84 (1), 29-41
    • Citations: 2325
    • Year: 2001
  • Title: Fundamentals, present and future perspectives of electrocoagulation
    • Authors: MYA Mollah, P Morkovsky, JAG Gomes, M Kesmez, J Parga, DL Cocke
    • Journal: Journal of Hazardous Materials
    • Volume (Issue): 114 (1-3), 199-210
    • Citations: 1876
    • Year: 2004
  • Title: Arsenic removal by electrocoagulation using combined Al–Fe electrode system and characterization of products
    • Authors: JAG Gomes, P Daida, M Kesmez, M Weir, H Moreno, JR Parga, G Irwin, …
    • Journal: Journal of Hazardous Materials
    • Volume (Issue): 139 (2), 220-231
    • Citations: 532
    • Year: 2007
  • Title: Electrocoagulation mechanism for COD removal
    • Authors: HA Moreno-Casillas, DL Cocke, JAG Gomes, P Morkovsky, JR Parga, …
    • Journal: Separation and Purification Technology
    • Volume (Issue): 56 (2), 204-211
    • Citations: 462
    • Year: 2007
  • Title: Arsenic removal via electrocoagulation from heavy metal contaminated groundwater in La Comarca Lagunera, México
    • Authors: JR Parga, DL Cocke, JL Valenzuela, JL Valenzuela, JA Gomes, …
    • Journal: Journal of Hazardous Materials
    • Volume (Issue): 124 (1-3), 247-254
    • Citations: 423
    • Year: 2005
  • Title: Electrochemical Reactions for Electrocoagulation Using Iron Electrodes
    • Authors: HA Moreno C, DL Cocke, JAG Gomes, P Morkovsky, JR Parga, …
    • Journal: Industrial Chemical Engineering Research
    • Volume (Issue): 48 (4), 2275-2282
    • Citations: 220
    • Year: 2009
  • Title: Destruction of Cyanide waste solutions using chlorine dioxide, ozone, and titania sol
    • Authors: JR Parga, SS Shukla, FR Carrillo-Pedroza
    • Journal: Waste Management
    • Volume (Issue): 23 (1), 183-191
    • Citations: 205
    • Year: 2003
  • Title: Characterization of Electrocoagulation for Removal of Chromium and Arsenic
    • Authors: JR Parga, DL Cocke, V Valverde, JAG Gomes, M Kesmez, H Moreno, …
    • Journal: Chemical Engineering Technology
    • Volume (Issue): 28 (5), 605-612
    • Citations: 163
    • Year: 2005
  • Title: An infrared spectroscopic examination of cement-based solidification/stabilization systems—Portland types V and IP with zinc
    • Authors: M Yousuf, A Mollah, JR Parga, DL Cocke
    • Journal: Journal of Environmental Science & Health Part A
    • Volume (Issue): 27 (6), 1503-1519
    • Citations: 133
    • Year: 1992
  • Title: The low-temperature thermal oxidation of copper, Cu3O2, and its influence on past and future studies
    • Authors: DL Cocke, R Schennach, MA Hossain, DE Mencer, H McWhinney, …
    • Journal: Vacuum
    • Volume (Issue): 79 (1-2), 71-83
    • Citations: 89
    • Year: 2005

 

Towhid gholizadeh baris | Environmental | Best Researcher Award

Dr. Towhid gholizadeh baris | Environmental | Best Researcher Award

Dr. Towhid gholizadeh baris, Silesian University of Technology, Poland

Dr. Towhid Gholizadeh Baris is a researcher and academic affiliated with the Silesian University of Technology in Poland. His work primarily focuses on the fields of [specify area of expertise if known, such as engineering, computer science, or a related discipline]. Dr. Baris is involved in advancing research and contributing to the academic community through his work at the university. His interests include [mention any specific research interests if known], and he has participated in various scholarly activities, including publications and conferences, furthering his contributions to both academia and industry.

Profile:

Education:

Dr. Towhid Gholizadeh Baris is a researcher at the Silesian University of Technology, Poland, with a strong background in sustainable energy systems. He holds a Master’s degree in Energy Conversion from the University of Mohaghegh Ardabili, Iran (2016-2018), where his dissertation focused on the energy, exergy, and thermoeconomic analysis of biogas-based power generation systems. He also earned a Bachelor’s degree from the same university (2010-2016), exploring the use of phase change materials (PCM) in buildings. Dr. Baris is currently engaged in advanced research on sustainable energy production and storage systems.

Field of  Interests:

Dr. Towhid Gholizadeh Baris, a researcher at the Silesian University of Technology in Poland, specializes in several key areas of sustainable energy and environmental engineering. His fields of interest include biofuel production, CO2 capture, and renewable energy technologies. He is also focused on conducting economic analyses and process simulations related to energy systems, with a strong emphasis on impact and sustainability. Dr. Baris’s work aims to advance the integration of eco-friendly energy solutions and optimize their performance in various applications.

Publication Top Notes:

Ghiasirad, H., Gholizadeh, T., Ochmann, J., Bartela, L., Skorek-Osikowska, A. (2024). Synergizing compressed air energy storage and liquefied natural gas regasification in a power-to-biofuels plant. Energy, 308, 132859.
Citations: 0

Gholizadeh, T., Ghiasirad, H., Skorek-Osikowska, A., Arabkoohsar, A. (2024). Techno-economic optimization and working fluid selection of a biogas-based dual-loop bi-evaporator ejector cooling cycle involving power-to-hydrogen and water facilities. International Journal of Hydrogen Energy, 76, pp. 247–262.
Citations: 3

Megdouli, K., Gholizadeh, T., Tashtoush, B., Cinnella, P., Skorek-Osikowska, A. (2024). Optimization of carbon dioxide ejector expansion transcritical refrigeration system with ANOVA and NSGA-II. International Journal of Refrigeration, 158, pp. 173–189.
Citations: 2

Gholizadeh, T., Ghiasirad, H., Rostami, S., Skorek-Osikowska, A. (2024). A biogas-fired cogeneration (cooling and power) system combined with biomethane facilities: 3E evaluation, sensitivity analyses and optimization. Environment, Development and Sustainability (In Press).
Citations: 0

Ghiasirad, H., Baris, T.G., Javanfam, F., Rostamzadeh Kalkhoran, H., Skorek-Osikowska, A. (2023). Indirect integration of a thermal–mechanical heat pump with a humidification-dehumidification desalination unit. Applied Thermal Engineering, 230, 120852.
Citations: 6

Jurczyk, M., Ochmann, J., Gholizadeh, T., Skorek-Osikowska, A. (2023). Concept of integrated anaerobic digestion and composting system using waste oxygen from water electrolysis process. Rynek Energii, 2023(168), pp. 59–63.
Citations: 0

Ghiasirad, H., Gholizadeh, T., Rostami, S., Skorek-Osikowska, A., Bartela, L. (2023). A triple solar desalination system integrated with a biomass-fuelled SCO2 power cycle: Thermodynamic modelling. 36th International Conference on Efficiency, Cost, Optimization, Simulation and Environmental Impact of Energy Systems (ECOS 2023), pp. 1854–1865.
Citations: 1

Tashtoush, B., Megdouli, K., Gholizadeh, T., Dekam, E. (2021). Exergoeconomic analyses of a cement plant waste heat recovery in a novel combined power and refrigeration cycle. International Journal of Design and Nature and Ecodynamics, 16(3), pp. 251–260.
Citations: 1

Rostamzadeh, H., Gholizadeh, T., Rostamzadeh, S., Vosoughi, S., Farshad, A.A. (2021). Role of ejector expander in optimal inherently safety design of cascade NH3/Propane/CO2 vapor compression refrigeration systems. Process Safety and Environmental Protection, 146, pp. 745–762.
Citations: 15

Rostamzadeh, H., Gholizadeh, T. (2020). Multi-evaporator Joule-Thomson cryogenic refrigeration cycles created by pumping and suction mechanisms. Applied Thermal Engineering, 175, 115367.
Citations: 11