Hooman Farzaneh | Climate Change | Global Green Scientist Award

Global Green Scientist Award

Hooman FarzanehKyushu University – Ito Campus, Japan

Hooman Farzaneh
Affiliation Kyushu University – Ito Campus
Country Japan
Scopus ID 15848542900
Documents 118
Citations 2,220
h-index 23
Subject Area Climate Change
Event World Green Energy Awards
ORCID 0000-0002-3753-5928

Hooman Farzaneh is a researcher affiliated with Kyushu University – Ito Campus in Japan whose documented scholarly profile focuses on climate change and energy-related research. His academic record includes 118 documents, 2,220 citations, and an h-index of 23, providing measurable indicators of scholarly activity and visibility.[1]

Abstract

Hooman Farzaneh is a researcher at Kyushu University whose academic work addresses climate change, energy systems, renewable energy, sustainable development, and low-emission strategies. His documented scholarly profile records 118 documents, 2,220 citations, and an h-index of 23, indicating sustained publication activity and measurable citation visibility. His research interests encompass energy-system modelling, renewable-energy integration, energy planning, and approaches supporting transitions toward lower-emission energy systems. These areas are closely connected with contemporary challenges involving decarbonization, energy efficiency, environmental sustainability, and climate mitigation. His academic contributions provide a multidisciplinary perspective linking technological assessment, quantitative modelling, and policy-oriented energy research. The profile therefore represents a relevant scholarly background for consideration within the Global Green Scientist Award and the broader World Green Energy Awards framework.[1][2]

Keywords

Hooman Farzaneh; climate change; energy systems; renewable energy; sustainable development; energy modelling; low-emission strategies; decarbonization; green energy; World Green Energy Awards.[1]

Introduction

Climate-change mitigation increasingly depends on transforming energy systems while maintaining reliability, affordability, and sustainable development objectives. Energy-system research contributes to this transition by evaluating technologies, modelling demand and supply, and examining pathways for reducing emissions across sectors and regions.[3]

Research Profile

Farzaneh’s documented research profile is associated with energy-system modelling and low-emission development. His academic activities connect quantitative assessment with renewable-energy deployment, energy planning, and environmental considerations, providing a research perspective relevant to climate-oriented energy transitions.[1]

Research Contributions

Farzaneh’s research contributes to the understanding of energy transitions through modelling, technology assessment, and analysis of low-emission pathways. These approaches can help researchers and policymakers compare alternative energy configurations and identify strategies compatible with sustainability and climate objectives.[3]

Publications

The supplied academic profile reports 118 documents associated with Hooman Farzaneh. The available information does not provide a complete verified bibliography in the supplied material; therefore, publication-level claims should be checked against the researcher’s Scopus and ORCID records before formal bibliographic use.[2]

Research Impact

The supplied Scopus profile records 2,220 citations and an h-index of 23. These bibliometric measures indicate a substantial level of scholarly visibility, although citation metrics should be interpreted alongside publication quality, research originality, authorship contribution, methodological rigor, and disciplinary context.[1]

Award Suitability

The Global Green Scientist Award is thematically consistent with Farzaneh’s documented research areas in climate change, energy systems, renewable energy, and low-emission development. His publication and citation record provides quantitative evidence of sustained scholarly activity, while final recognition should be determined through the award’s formal eligibility, nomination, and evaluation procedures.[4]

Conclusion

Hooman Farzaneh’s academic profile demonstrates sustained engagement with climate-change and energy-system research. His documented 118 publications, 2,220 citations, and h-index of 23 provide indicators of scholarly activity and visibility. His research themes are relevant to renewable energy, sustainable development, and low-emission energy transitions.[5]

References

  1. Elsevier. (n.d.). Scopus author details: Hooman Farzaneh, Author ID 15848542900. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=15848542900
  2. ORCID. (n.d.). Hooman Farzaneh — ORCID record. ORCID iD: 0000-0002-3753-5928.
    https://orcid.org/0000-0002-3753-5928
  3. World Green Energy Awards. (n.d.). World Green Energy Awards. Official award website.
    https://greenenergyaward.com/
  4. Farzaneh, H., Malehmirchegini, L., Bejan, A., Afolabi, T., Mulumba, A., & Daka, P. P. (2021). Artificial intelligence evolution in smart buildings for energy efficiency. Applied Sciences, 11(2), 763.
    https://doi.org/10.3390/app11020763

  5. Saboohi, Y., & Farzaneh, H. (2009). Model for developing an eco-driving strategy of a passenger vehicle based on the least fuel consumption. Applied Energy, 86(10), 1925–1932.
    https://doi.org/10.1016/j.apenergy.2008.12.017

Abdullateef Mustapha | Climate Change | Best Researcher Award

Dr. Abdullateef Mustapha | Climate Change | Best Researcher Award

General Manager | Ammam Rice Mill | Nigeria

Dr. AbdulAteef Mustapha is a multidisciplinary scholar in Food Science and Engineering whose work advances innovative technologies in food processing, preservation, food microbiology, lipidomics, and sustainable utilization of agri-food by-products. His research emphasizes ultrasound-assisted processing, microbial inactivation kinetics, quality enhancement, nutrient retention, and green-processing methods that support safer and more efficient food systems. With a strong record of publications in high-impact journals, his contributions span areas such as polysaccharide extraction, protein modification, kinetic modelling, intelligent processing systems, and quality-prediction frameworks. He collaborates widely with researchers across continents, integrating advanced analytical techniques, experimental design, data modelling, and processing equipment optimization to address global challenges in food safety, postharvest losses, and nutrient-dense product development. His applied research also extends to process optimization, technology translation, quality improvement, and product innovation, resulting in practical impacts on food production efficiency, safety management, and value addition. Beyond research, he contributes to community-oriented initiatives supporting food security, public awareness, and educational development. Dr. Mustapha’s academic influence and research productivity are reflected in his metrics 918 citations, 29 documents, and an h-index of 17 underscoring his growing contributions to global food science and engineering research.

Profiles: Google Scholar | Scopus | ORCID | ResearchGate | LinkedIn

Featured Publications

1. Osae, R., Zhou, C., Xu, B., Tchabo, W., Tahir, H. E., Mustapha, A. T., & Ma, H. (2019). Effects of ultrasound, osmotic dehydration, and osmosonication pretreatments on bioactive compounds, chemical characterization, enzyme inactivation, color, and antioxidant properties. Journal of Food Biochemistry, 43(5), e12832.

2. Nasiru, M. M., Frimpong, E. B., Muhammad, U., Qian, J., Mustapha, A. T., Yan, W., … & Xu, B. (2021). Dielectric barrier discharge cold atmospheric plasma: Influence of processing parameters on microbial inactivation in meat and meat products. Comprehensive Reviews in Food Science and Food Safety, 20(3), 2626–2659.

3. Ji, Q., Yu, X., Yagoub, A. E. A., Chen, L., Mustapha, A. T., & Zhou, C. (2021). Enhancement of lignin removal and enzymolysis of sugarcane bagasse by ultrasound-assisted ethanol synergized deep eutectic solvent pretreatment. Renewable Energy, 172, 304–316.

4. Ji, Q., Yu, X., Wu, P., Yagoub, A. E. A., Chen, L., Taiye, M. A., & Zhou, C. (2021). Pretreatment of sugarcane bagasse with deep eutectic solvents affects the structure and morphology of lignin. Industrial Crops and Products, 173, 114108.

5. Fakayode, O. A., Aboagarib, E. A. A., Yan, D., Li, M., Wahia, H., Mustapha, A. T., … & Ma, H. (2020). Novel two-pot ultrasonication and deep eutectic solvent pretreatment approaches for watermelon rind delignification: Parametric screening and optimization via response surface methodology. Energy, 203, 117872.