Marcos Barrozo | Food Processing and Engineering | Research Excellence Award

Research Excellence Award

Marcos Barrozo
Affiliation Universidade Federal de Uberlândia
Country Brazil
Scopus ID 6604028880
Documents 292
Citations 7,191
h-index 51
Subject Area Food Processing and Engineering
Event International Food Scientist Awards
ORCID 0000-0002-8873-162X

Marcos Barrozo
Universidade Federal de Uberlândia, Brazil

Marcos Barrozo is a Brazilian researcher affiliated with Universidade Federal de Uberlândia whose scholarly activities have contributed to the advancement of food processing, particle technology, drying operations, bioresource engineering, and process optimization. His publication record demonstrates sustained contributions across multidisciplinary engineering and food science domains, supported by extensive citation impact and international academic recognition. According to available Scopus metrics, his research profile includes 292 indexed publications, 7,191 citations, and an h-index of 51, reflecting long-term scientific influence within chemical engineering and food processing research.[1]

Abstract

This article presents an academic overview of Marcos Barrozo, emphasizing his scientific achievements, research productivity, and scholarly influence in food engineering and process technology. His research portfolio integrates experimental investigation, computational modelling, process intensification, particle engineering, biomass conversion, and sustainable food technologies. Recent publications demonstrate continued engagement with emerging research themes including spray drying, hydrocyclone optimization, catalytic microwave pyrolysis, flotation engineering, and numerical particle simulations.[2]

Keywords

Food Processing, Chemical Engineering, Particle Technology, Spray Drying, Hydrocyclones, Biomass Conversion, Process Optimization, Computational Modeling

Introduction

Research in food processing and engineering increasingly relies upon interdisciplinary methods that integrate transport phenomena, computational simulation, process optimization, and sustainable resource utilization. Marcos Barrozo has developed a publication portfolio that addresses these scientific challenges through engineering-based solutions applicable to industrial food systems and biomass processing. His work demonstrates continued engagement with technologies intended to improve processing efficiency, product quality, and environmental sustainability.[1]

Research Profile

The research profile of Marcos Barrozo spans food engineering, chemical process engineering, particle mechanics, mineral processing, drying technology, biomass utilization, computational fluid dynamics, and process equipment design. His work combines theoretical modelling with laboratory validation and industrial relevance. The breadth of his publication record indicates extensive collaboration across engineering disciplines while maintaining a consistent emphasis on process performance and sustainable technological development.[1]

Research Contributions

  • Development of optimized hydrocyclone systems for complex suspensions.
  • Research on spray drying technologies for preservation of bioactive food ingredients.
  • Advancement of biomass conversion and catalytic microwave pyrolysis.
  • Computational modelling using discrete element methods for particle agglomeration.
  • Engineering studies on flotation systems and mineral processing efficiency.
  • Integration of numerical simulation with industrial process optimization.

Publications

  1. Spray-Dried Whole Red Pitaya (Hylocereus costaricensis): A Potential Source of Bioactive Compounds for Food Applications. Resources (2026). DOI:
    10.3390/resources15070090.
  2. Hydrocarbon-enriched bio-oil from catalytic microwave pyrolysis of macaúba epicarp. Biomass Conversion and Biorefinery (2026). DOI:
    10.1007/s13399-026-07194-8.
  3. Development of Two Geometrically Optimized Hydrocyclones to Process Viscous and Pseudoplastic Suspensions. Industrial & Engineering Chemistry Research (2026). DOI:
    10.1021/acs.iecr.5c05158.
  4. Numerical analysis of particle agglomeration in a continuous pan granulator using DEM. Particuology (2025). DOI:
    10.1016/j.partic.2025.07.022.
  5. Effect of Gas Holdup on the Performance of Column Flotation of a Low-Grade Apatite Ore. Minerals (2025). DOI:
    10.3390/min15090901.

Research Impact

Available bibliometric indicators demonstrate sustained academic influence through a large body of peer-reviewed publications and extensive citation activity. The combination of 292 indexed documents, more than seven thousand citations, and an h-index of 51 indicates continued recognition by the international scientific community. These indicators suggest meaningful contributions to engineering research, food technology, and applied process sciences while reflecting long-term research productivity and scholarly visibility.[1]

Award Suitability

Based on publicly available scholarly metrics and recent peer-reviewed publications, Marcos Barrozo demonstrates characteristics commonly associated with candidates for research excellence recognition. His sustained publication record, measurable citation impact, interdisciplinary research portfolio, and continued contributions to food processing and engineering align with the objectives of the International Food Scientist Awards, which recognize significant scientific achievements and research leadership within food science and related engineering disciplines.[1]

Conclusion

Marcos Barrozo has established a substantial academic profile through consistent contributions to food engineering, particle technology, biomass processing, and process optimization. His combination of extensive publication output, influential citation record, and continued research productivity demonstrates sustained engagement with internationally relevant scientific challenges. The available evidence supports recognition of his contributions within the broader field of food processing and engineering.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Marcos Barrozo, Author ID 6604028880. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=6604028880
  2. Barrozo, M., et al. (2026). Spray-Dried Whole Red Pitaya (Hylocereus costaricensis): A Potential Source of Bioactive Compounds for Food Applications. Resources. DOI: https://doi.org/10.3390/resources15070090
  3. Barrozo, M., et al. (2026). Hydrocarbon-enriched bio-oil from catalytic microwave pyrolysis of macaúba epicarp. Biomass Conversion and Biorefinery.
    https://doi.org/10.1007/s13399-026-07194-8
  4. Barrozo, M., et al. (2026). Development of Two Geometrically Optimized Hydrocyclones to Process Viscous and Pseudoplastic Suspensions. Industrial & Engineering Chemistry Research. https://doi.org/10.1021/acs.iecr.5c05158
  5. Barrozo, M., et al. (2025). Numerical analysis of particle agglomeration in a continuous pan granulator using DEM; and Effect of Gas Holdup on the Performance of Column Flotation of a Low-Grade Apatite Ore.
    https://doi.org/10.1016/j.partic.2025.07.022

Yifeng Zou | Food Supply | Editorial Board Member

Dr. Yifeng Zou | Food Supply | Editorial Board Member

Associate professor | Guangzhou University | China

Dr. Yifeng Zou is a leading researcher whose academic background in Food Engineering provides the foundation for his work at the cutting edge of food production and safety. His professional experience is characterized by extensive research and academic roles, where he has successfully integrated advanced engineering and computational methods into food science. Dr. Zou’s central research interests lie in developing intelligent, non-destructive monitoring systems, with a focus on Food Quality and Safety, Advanced Sensing Technologies, and the application of Artificial Intelligence (AI), particularly machine learning and deep learning, for real-time food supply chain management. His key research skills include proficiency in computer vision and hyperspectral imaging for defect detection, computational fluid dynamics (CFD) modeling for cold chain optimization, and the design and implementation of sophisticated AI models, such as Artificial Neural Networks (ANN), to enhance food safety reliability and prediction. The impact of his work is demonstrated by a robust publication record, which includes high-quality output in journals such as the Journal of Food Engineering and publications often intersecting with technology, supported by an impressive h-index of 28 and an i10-index of 55. While specific personalized awards and honors were not available in the public domain, these citation metrics and his involvement in high-level international research projects serve as a clear testament to his scientific distinction and broad recognition within the field. In conclusion, Dr. Yifeng Zou is a highly impactful engineer and scientist who is essential to bridging the gap between food science and advanced digital technologies, ensuring a safer and more efficient global food supply chain.

Profile: Scopus

Featured Publications:

Vijay Sharanagat | Food Process engineering | Best Researcher Award

Assist. Prof. Dr. Vijay Sharanagat | Food Process engineering | Best Researcher Award 

Assistant Professor at NIFTEM, India

Dr. Vijay Singh Sharanagat is an Assistant Professor at the National Institute of Food Technology Entrepreneurship and Management (NIFTEM), Kundli, Haryana, India. His academic and research focus is primarily in Food Process Engineering, with particular expertise in roasting food grains, drying seasonal fruits and vegetables, modifying starches, developing biodegradable food packaging, and studying food rheology and texture. Dr. Sharanagat is involved in both academic teaching and extensive research, with significant contributions to the food processing and packaging fields.

Publications Profile

Scopus

Orcid

Google Scholar

🎓 Education Details

  • Ph.D. (Food Process Engineering), 2022, NIFTEM, Kundli, Haryana, India
  • M.Tech (Food Process Engineering), 2012, Indian Institute of Technology (IIT) Kharagpur, West Bengal, India
  • B.Tech (Agriculture Engineering), 2010, JNKVV, Jabalpur, Madhya Pradesh, India

👩‍🔬 Professional Experience

  • Assistant Professor, NIFTEM, Kundli, Haryana, India, 2014-Present
    Dr. Sharanagat has been serving as an Assistant Professor at NIFTEM since 2014, contributing to the teaching and research efforts in the Department of Food Process Engineering.

  • Contract Teacher, College of Agricultural Engineering, JNKVV, Jabalpur, Madhya Pradesh, India, 2012-2013
    He worked as a Contract Teacher at JNKVV, engaging in agricultural engineering education.

🌱 Research Interests

Dr. Sharanagat’s research spans several crucial areas in food science and technology, including:

  1. Roasting of Food Grains: Studying the effects of roasting processes on the quality of various food grains.
  2. Drying of Seasonal Fruits and Vegetables: Exploring new methods to dry seasonal produce to enhance shelf-life and quality.
  3. Starch Modification: Investigating how different modifications can alter the properties of starches to enhance food products.
  4. Biodegradable Food Packaging: Developing sustainable and biodegradable packaging solutions using food and food waste-derived bioactive compounds.
  5. Food Rheology and Texture: Understanding the physical properties and texture of food products to improve quality and processing techniques.

🏆 Awards and Honors

While specific awards and honors are not mentioned in the provided details, Dr. Sharanagat’s numerous publications, guidance of students, and active involvement in consultancy projects reflect his strong academic standing.

🔍 Conclusion

Dr. Vijay Singh Sharanagat is a highly dedicated academic and researcher whose work has made significant contributions to the field of Food Process Engineering. His expertise in food processing, sustainable packaging, and the modification of starches positions him as a key figure in advancing food technology. With extensive teaching experience and numerous publications in reputable journals, Dr. Sharanagat continues to drive forward research and innovation in the food industry, especially in terms of sustainability and quality enhancement.

Publications 📚

  • 📄 Pickering Stabilization of Water-in-Oil-in-Water Emulsions via Modified Guinea Starch Nanoparticles: Effects on Physical, Microstructural, Rheological, and Thermal Properties

    • Authors: Y. Bist, V.S. Sharanagat, D.C. Saxena
    • Journal: Food Biophysics (2025)

  • 📄 Impact of Drying Methods and pH-Shift + US Modification of Mung Bean Protein on the Stability of Pickering Emulsion

    • Authors: S. Upadhyay, V.S. Sharanagat, G. Chakraborty, S. Desai, J. Banoth
    • Journal: Legume Science (2025)

  • 📄 Cold Plasma Induced Morphological, Structural, Powder Flow and Rheological Properties of Kodo Millet Starch

    • Authors: Y. Kumar, Y. Bist, M. Nagar, D.C. Saxena, V.S. Sharanagat
    • Journal: Innovative Food Science and Emerging Technologies (2025)

  • 📄 Effect of Ultrasonication on OSA Esterified Surface Modification of Sorghum (Sorghum bicolor (L.) Moench) Starch

    • Authors: G. Chakraborty, Y. Kumar, V.S. Sharanagat
    • Journal: International Journal of Biological Macromolecules (2025)

  • 📄 Effect of Various Novel Pre-treatments on Drying and Rehydration Behaviour of Ginger and Quality Attributes of Dried Ginger

    • Authors: S. Desai, S. Upadhyay, G. Chakraborty, V.S. Sharanagat, S. Mani
    • Journal: International Journal of Food Engineering (2025)

  • 📄 Variety-Based Physical Characterization and Pre-Gelatinization-Induced Functional-Rheological Changes in Kidney Beans

    • Authors: J. Kaur, R. Singh, R. Bansal, M. Satankar, V.S. Sharanagat
    • Journal: Food Production, Processing and Nutrition (2024)

  • 📄 Unveiling the Synergistic Effect of Octenyl Succinic Anhydride and Pulsed Electric Field on Starch Nanoparticles

    • Authors: Y. Bist, V.S. Sharanagat, D.C. Saxena
    • Journal: International Journal of Biological Macromolecules (2024)

 

 

 

 

 

Yang Liu | Food Processing and Engineering | Best Researcher Award

Assoc. Prof. Dr. Yang Liu | Food Processing and Engineering | Best Researcher Award

Dr. at Tarim University, China

Dr. Yang Liu, born in September 1990, is an Associate Professor at Tarim University in Alaer City, Xinjiang, China. He is recognized as an expert in agricultural products processing and storage, with a focus on improving the quality and efficiency of the forest and fruit industries in the Xinjiang Uygur Autonomous Region. He earned his Doctor of Engineering degree from Northeast Agricultural University. Dr. Liu is also a master supervisor and has been honored with the title of talent honorary title by Bingtuan, reflecting his influence and leadership in the field. In addition, he holds several prominent roles, including serving as a special commissioner of science and technology for Bingtuan and as a job specialist at Tarim University. His expertise is also sought after by academic journals, where he serves as an editorial board member, guest editor, and reviewer for various prominent journals.

Professional Profile

Scopus Profile

Education

Dr. Yang Liu’s educational journey culminated in a Doctor of Engineering degree from Northeast Agricultural University. Throughout his academic career, he has specialized in agricultural science, focusing on the efficient processing and storage of agricultural products. His studies in this area laid the foundation for his ongoing research in improving the quality of agricultural industries in Xinjiang. As an Associate Professor and master supervisor at Tarim University, Dr. Liu continues to contribute to the academic development of students and the field through teaching and mentorship. His extensive educational background provides him with a strong base to conduct innovative research while ensuring that his work remains grounded in scientific rigor.

Professional Experience

Dr. Liu’s professional career spans a variety of impactful roles, demonstrating his significant contributions to both academia and the scientific community. He has presided over multiple national and provincial projects, including the “Damage Mechanism and Quantitative Evaluation Method of Korla Pear under Dynamic Load” project funded by the National Natural Science Foundation of China. Additionally, he leads a special project for science popularization under the XPCC, showcasing his leadership in both applied research and public education. His position at Tarim University allows him to contribute directly to advancing research in agricultural sciences. Furthermore, as an expert on the forest and fruit industries in Xinjiang, Dr. Liu’s work addresses critical regional challenges in agricultural development.

Research Interests

Dr. Liu’s research interests focus on agricultural products processing, storage, and the improvement of forest and fruit industry efficiency, particularly in the Xinjiang Uygur Autonomous Region. His research explores innovative methods to enhance the quality and sustainability of agricultural products, addressing challenges such as dynamic load damage in fruit transportation and storage. Additionally, he is dedicated to developing new technologies for food preservation and processing, which are crucial for food security and the economic growth of the agricultural sector. His expertise in the scientific evaluation of agricultural products and his interdisciplinary approach to agricultural science make his work vital in both regional and broader agricultural contexts.

Awards and Honors

Dr. Liu has received numerous awards and honors throughout his academic career. He was bestowed the talent honorary title by Bingtuan, recognizing his outstanding contributions to agricultural science and his influence in the field. As a special commissioner of science and technology for Bingtuan, he has played a pivotal role in shaping agricultural advancements within the Xinjiang Uygur Autonomous Region. His professional achievements are further demonstrated by his leadership in several high-profile research projects, including national-level funding. Dr. Liu’s status as an editorial board member, guest editor, and reviewer for prominent scientific journals underscores his respected position in the scientific community and highlights his ongoing contributions to the academic world.

Conclusion

Dr. Yang Liu is highly deserving of the Best Researcher Award. His contributions to agricultural science, particularly in processing and storage, combined with his leadership in research projects and his tangible impact on both the academic and practical aspects of the field, make him a standout candidate. By expanding his international collaborations, his work could have an even broader and more global influence in addressing critical agricultural challenges.

Publications Top Noted

📄 Publication 1:

  • Title: Intelligent Fault Diagnosis of Inter-Turn Short Circuit Faults in PMSMs for Agricultural Machinery Based on Data Fusion and Bayesian Optimization
  • Authors: Wang, M., Lai, W., Zhang, H., Liu, Y., Song, Q.
  • Journal: Agriculture (Switzerland), 2024, 14(12), 2139
  • Citations: 0

📄 Publication 2:

  • Title: Non-destructive detection of water adulteration level in fresh milk based on combination of dielectric spectrum technology and machine learning method
  • Authors: Liang, Q., Liu, Y., Zhang, H., Xia, Y., Li, S.
  • Journal: Journal of Food Composition and Analysis, 2024, 136, 106807
  • Citations: 0

📄 Publication 3:

  • Title: The Study on Nondestructive Detection Methods for Internal Quality of Korla Fragrant Pears Based on Near-Infrared Spectroscopy and Machine Learning
  • Authors: Che, J., Liang, Q., Xia, Y., Zhang, H., Lan, H.
  • Journal: Foods, 2024, 13(21), 3522
  • Citations: 3

📄 Publication 4:

  • Title: Dielectric spectroscopy technology combined with machine learning methods for nondestructive detection of protein content in fresh milk
  • Authors: Liang, Q., Liu, Y., Zhang, H., Che, J., Guo, J.
  • Journal: Journal of Food Science, 2024, 89(11), pp. 7791–7802
  • Citations: 0

📄 Publication 5:

  • Title: Label-free electrochemical immunosensor based on an internal and external dual-signal synergistic strategy for the sensitive detection of Salmonella in food
  • Authors: Yi, Z., Zhang, Y., Guo, M., Huang, G., Zhang, J.
  • Journal: Food Bioscience, 2024, 61, 105006
  • Citations: 0

📄 Publication 6:

  • Title: An NMR immunosensor based on streptavidin-biotin signal amplification for rapid detection of Salmonella in milk
  • Authors: Guo, M., Zhang, Y., Yi, Z., Huang, G., Zhang, J.
  • Journal: Food Bioscience, 2024, 61, 104937
  • Citations: 0

📄 Publication 7:

  • Title: Design and Optimization of Key Parameters for a Machine Vision-Based Walnut Shell–Kernel Separation Device
  • Authors: Ni, P., Hu, S., Zhang, Y., Niu, H., Lan, H.
  • Journal: Agriculture (Switzerland), 2024, 14(9), 1632
  • Citations: 0

📄 Publication 8:

  • Title: NMR Immunosensor Based on a Targeted Gadolinium Nanoprobe for Detecting Salmonella in Milk
  • Authors: Guo, M., Yi, Z., Li, H., Huang, G., Zhang, J.
  • Journal: Analytical Chemistry, 2024, 96(28), pp. 11334–11342
  • Citations: 1

📄 Publication 9:

  • Title: Non-Destructive Testing of the Internal Quality of Korla Fragrant Pears Based on Dielectric Properties
  • Authors: Tang, Y., Zhang, H., Liang, Q., Che, J., Liu, Y.
  • Journal: Horticulturae, 2024, 10(6), 572
  • Citations: 1

📄 Publication 10:

  • Title: Optimization and Testing of the Technological Parameters for the Microwave Vacuum Drying of Mulberry Harvests
  • Authors: Cong, Y., Liu, Y., Tang, Y., Yang, X., Zhang, H.
  • Journal: Applied Sciences (Switzerland), 2024, 14(10), 4137
  • Citations: 1