Gyana Ranjan Rout | Plant Science | Best Review Paper Award

Prof. Gyana Ranjan Rout | Plant Science | Best Review Paper Award

Professor from Sikshia O Anusandhan Deemed To be University, India

Prof. Gyana Ranjan Rout is a distinguished Indian plant biotechnologist, currently serving as Professor and Head of the Department of Molecular Biology & Biotechnology, Faculty of Agriculture at S’O’A Deemed to be University, Bhubaneswar. With a strong academic foundation and over three decades of experience in the fields of plant cell culture, molecular biology, and genetic improvement, he has made significant contributions to agricultural biotechnology. A recipient of the prestigious D.Sc. degree, Prof. Rout has also pursued advanced research at internationally reputed institutions in the UK, Japan, Belgium, and Germany. His work spans various domains including conservation of biodiversity, crop improvement, and medicinal plant research. He is recognized not only for his scholarly publications, including numerous review articles, but also for his leadership in academia, policy-making committees, and national-level scientific platforms. As a resource person and keynote speaker, he has influenced the direction of biotechnology education and research across India. Prof. Rout’s involvement in various academic boards and faculty selection committees also highlights his leadership in shaping future generations of scientists. His credentials, accolades, and continued contributions mark him as one of the leading voices in plant biotechnology research in India.

Professional Profile

Education

Prof. Rout’s educational journey began in Odisha, India, where he earned his High School Certificate from the Board of Secondary Education in 1978. He then pursued a B.Sc. (Hons) in Botany from BJB College, affiliated with Utkal University, graduating in 1982. His keen interest in plant sciences led him to complete an M.Sc. in Botany with specialization in Plant Biochemistry from Ravenshaw College under Utkal University in 1984. He earned his Ph.D. in Botany in 1991 from Utkal University with a specialization in plant cell culture, a foundational area that laid the groundwork for his future research in plant biotechnology. Further establishing his academic distinction, Prof. Rout achieved a D.Sc. in Botany from the same university in 2001, with a focus on plant improvement, signifying his advanced contribution to scientific research and knowledge. His educational qualifications are complemented by prestigious postdoctoral fellowships and visiting scientist positions at globally respected institutions, including Chiba University (Japan), University of East London (UK), KU Leuven (Belgium), and Federal Research Centre for Ornamental and Plant Breeding (Germany). This international exposure enhanced his scientific perspective and positioned him as a globally-informed scholar in the field of agricultural biotechnology.

Professional Experience

Prof. Gyana Ranjan Rout’s professional trajectory reflects a blend of academic excellence and applied research leadership. He began his career as a Senior Research Fellow at the Regional Plant Resource Centre (RPRC), Bhubaneswar, from 1986 to 1991, focusing on plant biotechnology. He continued at RPRC, first as Scientist and then as Senior Scientist, until 2009. During this period, he led and contributed to numerous government-supported projects in plant conservation, genetic improvement, and biotechnology. In 2009, he transitioned to academia as Professor & Head of Agricultural Biotechnology at Odisha University of Agriculture and Technology (OUAT), Bhubaneswar, and currently holds the same position at S’O’A Deemed to be University. His career is further distinguished by international research fellowships: a BOYSCAST fellowship in Japan, British Council-funded tenure in the UK, FAO-IAEA funded visit to Belgium, and a DBT-Overseas award to Germany. He has also served as an expert on multiple selection committees, and as a member of Boards of Studies in several universities. Beyond research, he has been a lead speaker and panelist in numerous national and international conferences and workshops. His dual role as a researcher and administrator reflects his balanced contribution to both scientific advancement and academic institution-building.

Research Interest

Prof. Rout’s research interests lie primarily in plant biotechnology, with a core focus on plant cell and tissue culture, molecular biology, plant genetic improvement, and biotechnological applications for sustainable agriculture. His work encompasses in vitro propagation, somatic embryogenesis, cryopreservation, molecular marker-assisted selection, and genetic transformation of plants. He has also made significant contributions to the conservation and utilization of medicinal and aromatic plants. Prof. Rout is particularly interested in the application of biotechnological tools to address environmental challenges such as wastewater reuse in agriculture and water use efficiency in crops. His work is interdisciplinary, merging classical botany with cutting-edge molecular techniques to develop novel solutions for agricultural resilience and crop improvement. He also explores the phytochemical and pharmacological aspects of plant species, with a vision to integrate biotechnology in health and nutrition. His research has implications not just for academic development but also for practical implementation in agriculture, biodiversity conservation, and rural development. Prof. Rout’s commitment to translational research ensures that the knowledge generated in his lab reaches farmers, stakeholders, and policy frameworks. His vision is rooted in sustainable, science-based solutions to food security and ecological conservation.

Research Skills

Prof. Rout possesses an extensive repertoire of research skills spanning the molecular to organismal levels. His core strengths include plant tissue culture techniques such as micropropagation, organogenesis, and somatic embryogenesis. He is well-versed in molecular marker techniques including RAPD, ISSR, AFLP, and SSR for genetic diversity analysis and marker-assisted selection. His expertise also covers genetic transformation using Agrobacterium-mediated and biolistic methods. Prof. Rout has hands-on experience in secondary metabolite analysis using chromatographic and spectrophotometric techniques. In addition, he has implemented cryopreservation protocols for long-term conservation of germplasm. He has coordinated multidisciplinary projects that integrate molecular biology, biotechnology, and environmental management. His laboratory management skills include training of postgraduate and doctoral students, troubleshooting complex experiments, and publishing in peer-reviewed journals. He is proficient in data interpretation, scientific writing, and editing, contributing significantly as an editor and reviewer in reputed international journals. Prof. Rout also engages in collaborative research, working with institutions in India and abroad, thereby fostering cross-disciplinary and cross-cultural research exchange. His skills make him a well-rounded researcher capable of leading high-impact studies from concept to publication.

Awards and Honors

Throughout his illustrious career, Prof. Gyana Ranjan Rout has received numerous awards and honors, reflecting his substantial contributions to science, education, and public service. He holds the distinguished D.Sc. degree in Botany, a rare honor that underlines his high level of scholarly achievement. He is a Fellow of the National Academy of Sciences, India (FNASc), Fellow of the National Academy of Agricultural Sciences (FNAAS), and a Fellow of the Indian Society of Plant Genetic Resources (FISPGR), which collectively recognize his leadership in plant science research. He has been the recipient of prestigious international fellowships including the BOYSCAST Fellowship from DST, India; a British Council award for research in the UK; and FAO-IAEA sponsorship for work in Belgium. His overseas award from the Department of Biotechnology, Government of India, enabled him to conduct advanced research in Germany. Prof. Rout has been an invited speaker, chairperson, and lead expert at numerous national and international scientific events. His selection as a subject expert for faculty recruitment and academic governance across several universities further affirms his authority in the field. These recognitions underscore his influence as both a scholar and mentor in the scientific community.

Conclusion

Prof. Gyana Ranjan Rout exemplifies excellence in plant biotechnology research, education, and institutional leadership. With a career marked by international exposure, prolific scientific output, and active participation in policy and academic governance, he stands out as a pioneer in his field. His holistic approach to research—balancing theoretical knowledge with practical applications—has greatly contributed to the advancement of sustainable agriculture and biodiversity conservation in India. Prof. Rout’s ability to merge classical botanical sciences with molecular techniques has opened new pathways for crop improvement, medicinal plant research, and environmental biotechnology. He continues to serve as a mentor to the next generation of scientists, nurturing talent through teaching, supervision, and active involvement in scientific forums. His numerous awards and fellowships are testament to the global impact of his work. Looking ahead, Prof. Rout’s ongoing efforts are expected to yield innovative solutions to contemporary agricultural and environmental challenges. His legacy, built on dedication, integrity, and scientific rigor, sets a benchmark for excellence in biosciences and continues to inspire peers and students alike.

Publications Top Notes

1. Studies on Cadmium Toxicity in Plants: A Review

  • Authors: P. Das, S. Samantaray, G.R. Rout

  • Journal: Environmental Pollution, 1997

  • Citations: 1764

  • Summary: This foundational review outlines cadmium’s phytotoxic effects on plant growth, physiology, and biochemistry. It highlights mechanisms of uptake, detoxification, and tolerance, serving as a key reference in environmental and plant sciences.

2. Role of Iron in Plant Growth and Metabolism

  • Authors: G.R. Rout, S. Sahoo

  • Journal: Reviews in Agricultural Science, 2015

  • Citations: 1134

  • Summary: This comprehensive review emphasizes iron’s crucial roles in photosynthesis, respiration, and enzymatic activity in plants, discussing both deficiency and toxicity effects on agricultural productivity.

3. Effect of Metal Toxicity on Plant Growth and Metabolism: I. Zinc

  • Authors: G.R. Rout, P. Das

  • Book Chapter: Sustainable Agriculture, 2009

  • Citations: 783

  • Summary: The study investigates zinc toxicity and its biochemical and physiological disruptions in plants, particularly its role in oxidative stress and nutrient imbalances.

4. Aluminium Toxicity in Plants: A Review

  • Authors: G. Rout, S. Samantaray, P. Das

  • Journal: Agronomie, 2001

  • Citations: 680

  • Summary: The paper explores aluminium’s inhibitory effects on root growth and cellular processes, emphasizing plant adaptation mechanisms under acidic soil conditions.

5. In Vitro Manipulation and Propagation of Medicinal Plants

  • Authors: G.R. Rout, S. Samantaray, P. Das

  • Journal: Biotechnology Advances, 2000

  • Citations: 512

  • Summary: This work reviews tissue culture techniques for conservation and large-scale propagation of medicinal plants, with implications for pharmacognosy and biodiversity conservation.

6. Tissue Culture of Ornamental Pot Plant: A Critical Review

  • Authors: G.R. Rout, A. Mohapatra, S.M. Jain

  • Journal: Biotechnology Advances, 2006

  • Citations: 457

  • Summary: A detailed analysis of micropropagation techniques in ornamental horticulture, highlighting challenges and future prospects in commercial flower production.

7. Effect of Auxins on Adventitious Root Development in Camellia sinensis

  • Author: G.R. Rout

  • Journal: Plant Growth Regulation, 2006

  • Citations: 254

  • Summary: This study investigates the effect of various auxins on root formation and associated biochemical changes in tea plants, relevant to propagation strategies.

8. Effects of Chromium and Nickel on Germination and Growth

  • Authors: G.R. Rout, S. Samantaray, P. Das

  • Journal: Chemosphere, 2000

  • Citations: 192

  • Summary: Comparative analysis of metal tolerance in different Echinochloa colona populations, shedding light on phytotoxicity mechanisms.

9. Determination of Genetic Stability in Micropropagated Ginger Using RAPD

  • Authors: G.R. Rout, P. Das, S. Goel, S.N. Raina

  • Journal: Botanical Bulletin of Academia Sinica, 1998

  • Citations: 177

  • Summary: The study confirms the genetic fidelity of micropropagated ginger through RAPD analysis, validating the reliability of clonal propagation.

10. Biotechnology of the Rose: A Review of Recent Progress

  • Authors: G.R. Rout, S. Samantaray, J. Mottley, P. Das

  • Journal: Scientia Horticulturae, 1999

  • Citations: 172

  • Summary: An overview of biotechnological advances in rose improvement, including tissue culture, genetic transformation, and molecular markers.

 

 

Muhammad Tanveer | Environmental Science | Best Researcher Award

Assist. Prof. Dr. Muhammad Tanveer | Environmental Science | Best Researcher Award

Assistant Professor From Imam Mohammad Ibn Saud Islamic University, Saudi Arabia

Dr. Muhammad Tanveer Nawaz is a highly accomplished academic and researcher with an extensive background in management and business education. Holding a Ph.D. in Management from Lincoln University College in Malaysia, an MBA from Binary University, and an MA from Pakistan, Dr. Nawaz is recognized for his expertise in both teaching and research. He has held prominent positions at top universities such as Imam Mohammad Ibn Saud Islamic University (IMSIU) in Riyadh, Saudi Arabia, where he currently serves as an Associate Professor. Dr. Nawaz’s achievements are underpinned by his significant contributions to the AACSB accreditation process and his consistent success in research, which is reflected in his numerous publications in high-impact journals. He has also been honored with the Excellence in Research Award at Prince Sultan University in 2021 and 2022. Dr. Nawaz is a top-tier global researcher, ranked in the top 2% of scientists worldwide according to Stanford University. His academic profile can be found across multiple platforms, including Google Scholar, Scopus, and ResearchGate.

Professional Profile

Education

Dr. Muhammad Tanveer Nawaz’s educational background is both diverse and comprehensive. He earned a Doctor of Philosophy (Ph.D.) in Management from Lincoln University College in Malaysia. His academic journey also includes an MBA from Binary University in Malaysia, which equipped him with strong business management skills, as well as a Master’s degree in Arts (MA) from Pakistan. His specialized expertise further extends to his qualifications as an AACSB Eligibility Application Expert and a NCAAA Expert. In addition to his formal education, Dr. Nawaz is a certified Project Management Professional (PMP), holding certification ID 436902272. This diverse academic and professional training has equipped him with the theoretical and practical skills necessary for success in both academic and institutional environments. His education has enabled him to contribute significantly to academic leadership and management, particularly in the fields of business, management, and organizational behavior.

Professional Experience

Dr. Muhammad Tanveer Nawaz has a distinguished career in academia and research. He currently serves as an Associate Professor at Imam Mohammad Ibn Saud Islamic University (IMSIU), Riyadh, Saudi Arabia, where he has played a key role in the successful AACSB Accreditation Eligibility project, further emphasizing his expertise in accreditation processes. His professional experience includes teaching various undergraduate and postgraduate courses in business management, operations research, and leadership. He has mentored students, helping them achieve academic success and professional growth. His research contributions are significant, with over 50 publications in prestigious journals and international conferences. Prior to his current role, he was an Assistant Professor at Prince Sultan University (PSU), where he was recognized with Excellence in Research Awards in both 2021 and 2022. His career reflects a commitment to quality teaching, research excellence, and institutional development through accreditation.

Research Interest

Dr. Muhammad Tanveer Nawaz’s research interests span several key areas in management and business. His primary focus lies in organizational behavior, human resource management, and sustainability practices in business. He is particularly interested in how green human resources can drive environmental sustainability, a theme that is prominent in many of his publications. He also conducts research into the role of personality traits in shaping organizational culture and knowledge-sharing behaviors. Dr. Nawaz has delved into the impact of environmental sustainability on business operations, including the circular economy and waste recycling practices. His work often intersects with technology, exploring the influence of digitalization and innovation in achieving ecological sustainability. His interdisciplinary approach fosters an extensive understanding of contemporary challenges in business, contributing to the academic community through a range of international, peer-reviewed publications.

Research Skills

Dr. Muhammad Tanveer Nawaz possesses advanced research skills that enable him to conduct comprehensive and impactful studies in his field. His expertise includes qualitative and quantitative research methodologies, data analysis, and the use of advanced statistical tools. He has developed proficiency in writing research proposals, securing funding, and leading collaborative research projects, often working alongside both academic and industry professionals. His experience in publishing high-quality research in reputable journals such as Springer, Taylor & Francis, Elsevier, and Emerald demonstrates his ability to produce rigorous and valuable academic contributions. Dr. Nawaz also excels in navigating the accreditation process, ensuring compliance with international standards. His extensive experience in these areas is complemented by his active participation in national and international conferences, where he shares his insights with the global research community.

Awards and Honors

Throughout his academic career, Dr. Muhammad Tanveer Nawaz has received several prestigious awards and honors that underscore his contributions to education and research. Notably, he was honored with the Excellence in Research Award in both 2021 and 2022 at Prince Sultan University, where he received monetary rewards of 55,000 SR each year for his significant research contributions. His outstanding role in the AACSB Accreditation Eligibility process at Imam Mohammad Ibn Saud Islamic University (IMSIU) was another testament to his academic leadership. Dr. Nawaz’s global recognition as one of the top 2% of scientists in the world by the Stanford University rankings reflects his widespread impact on the academic community. He has also received various grants and awards for his research on sustainability and business management, further solidifying his standing as a thought leader in his field.

Conclusion

Dr. Muhammad Tanveer Nawaz is an exceptional academic, researcher, and educator, known for his dedication to advancing knowledge in management, business, and sustainability. With a robust academic background and a career marked by leadership in both teaching and accreditation, Dr. Nawaz has made substantial contributions to the higher education sector. His research, focused on green human resources, sustainability, and organizational behavior, has positioned him as a recognized scholar with significant global impact. His ability to secure funding, collaborate on interdisciplinary projects, and produce high-quality publications demonstrates his expertise and commitment to advancing his field. As a passionate advocate for student success and institutional development, Dr. Nawaz continues to inspire and mentor the next generation of business leaders. His ongoing work in accreditation processes and research makes him an invaluable asset to the academic community, and his dedication to excellence in education ensures his continued success and influence.

Publications Top Notes

  1. Unleashing the power of green HR: How embracing a green culture drives environmental sustainability

    • Authors: M.I. Tanveer, Muhammad Iftekhar, M.U. Din, Mohi Ud, M.F. Khan, Muhammad Faizan, H.M. Almurad, Hussein Mohamad, E.A. Hasnin, Eman Abdelhameed

    • Year: 2025

  2. Do innovation and renewable energy transition play their role in environmental sustainability in Western Europe?

    • Authors: H. Mahmood, Haider, A.U.R. Irshad, Ateeq Ur Rehman, M.I. Tanveer, Muhammad Iftekhar

    • Year: 2024

    • Citations: 16

  3. A thorough overview of the literature on waste recycling in the circular economy: current practices and future perspectives

    • Authors: M. Tabish, Muhammad, S.A.R. Khan, Syed Abdul Rehman, Y. Zhang, Yu, M.I. Tanveer, Muhammad Iftekhar

  4. Valorization of poultry slaughter wastes via extraction of three structural proteins (gelatin, collagen and keratin): A sustainable approach for circular economy

    • Authors: M. Talha, Muhammad, M.I. Tanveer, Muhammad Iftekhar, A. Abid, Aqsa, N. Tanveer, Nimra, A. Mustafa, Almas

    • Citations: 3

  5. Cracking the code: The influence of personality traits on knowledge management culture and sharing behavior

    • Authors: M.I. Tanveer, Muhammad Iftekhar

    • Year: 2024

  6. Examining the Role of Women’s Labor Participation in CO2 Emissions in Saudi Arabia

    • Authors: H. Mahmood, Haider, M.I. Tanveer, Muhammad Iftekhar

    • Year: 2024

    • Citations: 1

  7. Impact of Energy Intensity, R&D, Trade Openness, and Financial Market Development on Carbon Productivity in MENA: A Spatial Analysis

    • Authors: H. Mahmood, Haider, A.U.R. Irshad, Ateeq Ur Rehman, M.I. Tanveer, Muhammad Iftekhar

    • Year: 2024

    • Citations: 1

  8. Impact of client relationship on project delay: Moderating role of project governance

    • Authors: I. Ayaz, Iqra, M.F. Khan, Muhammad Faizan, M.I. Tanveer, Muhammad Iftekhar, M. Mrabet, Mansour, S.H.M. Gillani, Syed Hussain Mustafa

    • Year: 2024

Bangxi Zhang | Environmental Science | Best Researcher Award

Prof. Bangxi Zhang | Environmental Science | Best Researcher Award

Professor at Soil and Fertilizer Research Institute, Guizhou Academy of Agricultural Sciences, Guiyang, Guizhou, China

Prof. Zhang Bangxi, born in 1984, is a distinguished researcher specializing in agricultural resource utilization, edible and medicinal mushroom cultivation, and agricultural product safety evaluation. He serves as the Director of the Natural Resources and Ecological Management Laboratory at the Soil and Fertilizer Institute, Guizhou Academy of Agricultural Sciences, and leads multiple national research initiatives. With over 40 academic papers (30+ SCI-indexed), 10+ invention patents, and leadership in 10+ provincial/ministerial research projects, he has made significant contributions to agricultural science. He has received prestigious awards, including the Guizhou Natural Science Award (2nd Prize, 1st Rank), and serves as a reviewer for top international journals. Actively engaged in science outreach, he has trained over 1,000 farmers and played a key role in rural revitalization. Recognized as an Outstanding Young Scientific Talent, Prof. Zhang’s expertise and impact make him a leader in advancing sustainable agriculture and the edible mushroom industry.

Professional Profile

Education

Prof. Zhang Bangxi holds a Ph.D. from the College of Resources and Environmental Sciences at China Agricultural University, specializing in agricultural resource utilization and environmental sustainability. His academic journey provided a strong foundation in soil science, ecological management, and food safety, shaping his expertise in edible and medicinal mushroom cultivation. Throughout his education, he engaged in extensive research on agricultural product safety evaluation, equipping him with the knowledge to address critical challenges in sustainable farming. His doctoral studies emphasized interdisciplinary approaches, integrating resource management with agricultural innovation. This academic background has enabled him to lead high-impact research projects and contribute significantly to China’s agricultural sector. As a Master’s Supervisor, he continues to mentor young researchers, fostering advancements in agricultural sciences. Prof. Zhang’s education has been instrumental in his success as a researcher, policy advisor, and industry leader, driving innovation in ecological resource management and the edible mushroom industry.

Professional Experience

Prof. Zhang Bangxi is a renowned researcher and industry leader specializing in agricultural resource utilization, edible and medicinal mushroom cultivation, and agricultural product safety. He currently serves as the Director of the Natural Resources and Ecological Management Laboratory at the Soil and Fertilizer Institute, Guizhou Academy of Agricultural Sciences, where he leads cutting-edge research on sustainable agriculture. He is also the Director of the National Edible Fungus Germplasm Bank (Guizhou) and heads the Qiandongnan Comprehensive Experimental Station under the National Edible Mushroom Industry Technology System. Beyond academia, he plays a crucial role in rural revitalization as the leader of the Science and Technology Special Task Force for Congjiang County. Prof. Zhang holds key positions in multiple national and provincial scientific societies, including serving as Vice Chairman of the Pleurotus Industry Branch and Guizhou Edible/Medicinal Mushroom Industry Association, making significant contributions to agricultural innovation, industry development, and science outreach.

Research Interest

Prof. Zhang Bangxi’s research focuses on agricultural resource utilization, edible and medicinal mushroom cultivation, and agricultural product safety evaluation. His work aims to enhance sustainable farming practices by optimizing soil fertility, improving crop productivity, and promoting eco-friendly agricultural technologies. A key area of his research is the development and conservation of edible mushroom germplasm, where he leads efforts at the National Edible Fungus Germplasm Bank (Guizhou) to preserve genetic diversity and improve mushroom strains. He also investigates food safety and quality control in agricultural products, ensuring compliance with national and international standards. Additionally, Prof. Zhang explores integrated agricultural systems, seeking innovative methods to enhance rural livelihoods and promote environmental sustainability. His interdisciplinary approach combines traditional agricultural knowledge with modern scientific advancements, making significant contributions to China’s agricultural sector. His research supports both academic progress and practical applications, benefiting farmers, industry stakeholders, and policymakers alike.

Awards and Honors

Prof. Zhang Bangxi has received numerous prestigious awards and honors in recognition of his outstanding contributions to agricultural science and technology. He was awarded the Guizhou Natural Science Award (2nd Prize, 1st Rank) and the Guizhou Science and Technology Progress Award (3rd Prize, 4th Rank) for his groundbreaking research in edible and medicinal mushroom cultivation and agricultural resource utilization. His contributions to the industry have earned him the title of Outstanding Young Scientific Talent of Guizhou Province and Outstanding Contributor to Guizhou’s Edible Mushroom Industry. As an inaugural Youth Leader at Guizhou Academy of Agricultural Sciences, he has been instrumental in mentoring young researchers and driving innovation. His work has also gained national attention, with features in Xinhua News Agency, China Youth Daily, and Farmer’s Daily. These accolades highlight his dedication to advancing sustainable agriculture, improving rural livelihoods, and shaping the future of the edible mushroom industry.

Research Skills

Prof. Zhang Bangxi possesses exceptional research skills in agricultural resource utilization, edible and medicinal mushroom cultivation, and agricultural product safety evaluation. His expertise lies in designing and leading high-impact research projects, having successfully directed over 10 provincial and ministerial-level studies. With strong experimental design and data analysis capabilities, he has published 40+ academic papers, including 30+ SCI-indexed articles, and holds 10+ invention patents, reflecting his ability to translate research into practical innovations. His skills in germplasm conservation and biotechnology applications are evident in his leadership of the National Edible Fungus Germplasm Bank (Guizhou). Additionally, his role as a reviewer for top international journals highlights his deep analytical and critical thinking abilities. Prof. Zhang also excels in science communication and technology transfer, providing technical training to over 1,000 farmers. His research skills, combined with leadership and interdisciplinary expertise, make him a key figure in advancing sustainable agricultural practices.

Conclusion

Zhang Bangxi is highly suitable for the Best Researcher Award, given his outstanding research contributions, leadership, industry impact, and recognition in agricultural sciences. While he could further strengthen his global presence and pursue higher-level national honors, his current achievements already position him as a top contender for the award.

Publications Top Notes

  • Title: Effects of moisture and carbon/nitrogen ratio on gaseous emissions and maturity during direct composting of cornstalks used for filtration of anaerobically digested manure centrate

    • Year: 2020

    • Citation: 103

  • Title: Evaluation of humic substances during co-composting of sewage sludge and corn stalk under different aeration rates

    • Year: 2017

    • Citation: 98

  • Title: Recent progresses, challenges, and opportunities of carbon-based materials applied in heavy metal polluted soil remediation

    • Year: 2023

    • Citation: 85

  • Title: Effect of different organic fertilizers application on growth and environmental risk of nitrate under a vegetable field

    • Year: 2017

    • Citation: 83

  • Title: Resource recovery from digested manure centrate: Comparison between conventional and aquaporin thin-film composite forward osmosis membranes

    • Year: 2020

    • Citation: 57

  • Title: Osmotic membrane bioreactors for wastewater reuse: Performance comparison between cellulose triacetate and polyamide thin film composite membranes

    • Year: 2017

    • Citation: 52

  • Title: Gaseous emission and maturity in composting of livestock manure and tobacco wastes: Effects of aeration intensities and mitigation by physiochemical additives

    • Year: 2020

    • Citation: 47

  • Title: Application of magnetic composites in removal of tetracycline through adsorption and advanced oxidation processes (AOPs): a review

    • Year: 2021

    • Citation: 38

  • Title: Membrane processes for resource recovery from anaerobically digested livestock manure effluent: opportunities and challenges

    • Year: 2020

    • Citation: 36

  • Title: Osmotic membrane bioreactor and its hybrid systems for wastewater reuse and resource recovery: advances, challenges, and future directions

    • Year: 2018

    • Citation: 29

  • Title: Effects of inoculation amount and application method on the biodrying performance of municipal solid waste and the odor emissions produced

    • Year: 2019

    • Citation: 26

  • Title: Straw and straw biochar differently affect fractions of soil organic carbon and microorganisms in farmland soil under different water regimes

    • Year: 2023

    • Citation: 22

  • Title: Evaluation of maturity and odor emissions in the process of combined composting of kitchen waste and garden waste

    • Year: 2021

    • Citation: 20

  • Title: Influence of inoculants on content and quality of humus during chicken manure composting

    • Year: 2016

    • Citation: 18

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