Abdul Ghani Noori | Renewable Energy | Best Researcher Award

Best Researcher Award

Abdul Ghani Noori
Affiliation Kandahar University
Country Afghanistan
Scopus ID 58103216900
Documents 5
Citations 81
h-index 2
Subject Area Renewable Energy
Event Scientific World Research Awards
ORCID 0000-0003-3927-9953

Abdul Ghani Noori — Kandahar University, Afghanistan

Abdul Ghani Noori is a researcher, whose documented work focuses on renewable-energy systems and energy-related engineering applications. His research publications  is on spanning renewable energy, photovoltaic systems, hybrid energy systems, hydrogen, and building energy performance.

Abstract

This academic recognition profile presents Abdul Ghani Noori’s documented research activities in renewable energy and related engineering fields. His recorded works include studies of biomass-based green hydrogen, building energy consumption, and diesel-solar photovoltaic hybrid systems. [1]

Keywords

Abdul Ghani Noori; Best Researcher Award; Renewable Energy; Photovoltaic Systems; Hybrid Renewable Energy; Green Hydrogen; Energy Engineering; Kandahar University; Afghanistan; Research Publications.

Introduction

Renewable-energy research addresses the development, evaluation, and integration of energy systems using sustainable resources. Noori’s documented publication record reflects this broad research context, with studies examining photovoltaic performance, hybrid renewable-energy configurations, hydrogen production, and energy consumption in buildings. [2]

Research Profile

The record associates Noori with research addressing energy challenges relevant to Afghanistan and other climatic or geographically constrained settings. A publication examines the techno-economic performance of diesel-solar PV hybrid systems for extended-hour water pumping, demonstrating the application of energy-system assessment to a regional context. [3]

Research Contributions

The documented research includes comparative photovoltaic analysis across Afghanistan’s climatic zones and investigation of hybrid renewable-energy systems designed for inaccessible areas. These studies address system optimization and reliable electricity integration, while another publication examines biomass-based green hydrogen as an energy pathway. [4]

Publications

The ORCID record lists six works, including journal articles and a conference paper. The listed publications cover 2022 through 2026 and include work published in Energy, Energy Reports, Energy Conversion and Management: X, and Materials Today Proceedings. [5]

Research Impact

The supplied profile data reports 81 citations and an h-index of 2. The publication record also demonstrates continued activity across several renewable-energy topics, including photovoltaic systems, hybrid generation, hydrogen, and energy efficiency. [1]

Award Suitability

For the Scientific World Research Awards, the profile identifies Abdul Ghani Noori under the Best Researcher Award category. The award suitability presented here is based on the supplied profile information and documented research record rather than an independent ranking of researchers.

Conclusion

Abdul Ghani Noori’s documented scholarly profile reflects research activity in renewable energy with particular attention to photovoltaic systems, hybrid renewable-energy configurations, and energy performance. His ORCID record and publications provide identifiable evidence of these research activities and establish a structured basis for academic recognition.

External Links

References

  1. Elsevier. (n.d.). Scopus author details: Abdul Ghani Noori, Author ID 58103216900. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=58103216900
  2. Noori, A. G., et al. (2026). Comparative performance of photovoltaic technologies and grid-connected system optimization across Afghanistan’s climatic zones. Energy Conversion and Management: X.
    https://doi.org/10.1016/j.ecmx.2025.101481
  3. Noori, A. G., et al. (2026). Techno-Economic Analysis and Sensitivity Assessment of Diesel-Solar PV Hybrid Systems for Extended-Hour Water Pumping in Kandahar, Afghanistan. Energy.
    https://doi.org/10.1016/j.energy.2026.142340
  4. Ahmadullah, A. B., Noori, A. G., et al. (2025). Fueling the future with biomass-based green hydrogen: A case study from Afghanistan. Energy.
    https://doi.org/10.1016/j.energy.2025.139490
  5. Irshad, A. S., Noori, A. G., et al. (2023). Resilience and reliable integration of PV-wind and hydropower based 100% hybrid renewable energy system without any energy storage system for inaccessible area electrification. Energy.
    https://doi.org/10.1016/j.energy.2023.128823

Manuel Vieira | Sustainable Development | Best Industry Collaboration Award

Best Industry Collaboration Award

Researcher Information
Affiliation Centre for Nanotechnology and Smart Materials
Country Portugal
Scopus ID 60760365900
Documents 1
Citations 1663
h-index 22
Subject Area Sustainable Development
Event Scientific World Research Awards
ORCID 0009-0009-0199-5496

Manuel Vieira
Centre for Nanotechnology and Smart Materials

The Best Industry Collaboration Award recognizes researchers who have demonstrated meaningful cooperation between academic institutions and industrial partners while advancing innovation, technology transfer, and sustainable development. Manuel Vieira’s scholarly profile reflects contributions associated with sustainable development and interdisciplinary collaboration, highlighting the importance of partnerships that bridge scientific research with practical industrial applications.[1]

Abstract

This article summarizes the academic profile of Manuel Vieira and outlines the relevance of collaborative research within sustainable development. Academic–industry partnerships facilitate knowledge exchange, accelerate innovation, and improve the practical implementation of scientific discoveries across multiple sectors.[1]

Keywords

  • Industry Collaboration
  • Sustainable Development
  • Technology Transfer
  • Innovation
  • Nanotechnology
  • Smart Materials
  • Research Partnerships

Introduction

Collaboration between academia and industry has become an essential component of modern scientific research. Such partnerships contribute to translating laboratory discoveries into practical technologies, encouraging sustainable innovation and supporting economic growth through evidence-based solutions.[2]

Research Profile

Manuel Vieira is affiliated with the Centre for Nanotechnology and Smart Materials in Portugal. According to the provided scholarly metrics, the researcher has a Scopus profile with an h-index of 22 and has accumulated significant citation impact. These indicators demonstrate scholarly visibility while reflecting influence within the broader research community.[1]

Research Contributions

  • Promotion of interdisciplinary research.
  • Support for sustainable technological innovation.
  • Encouragement of academic and industrial partnerships.
  • Contribution to knowledge exchange and research commercialization.

Publications

The available publication metrics indicate scholarly activity indexed within Scopus. Individual publications contribute to sustainable development research while supporting collaborative scientific initiatives. Citation performance suggests continued academic interest in the associated research outputs.[1]

Research Impact

Research impact extends beyond citation metrics by influencing innovation, technology adoption, industrial development, and sustainable solutions. Effective collaborations strengthen scientific capacity while improving the societal relevance of academic research through shared expertise and practical implementation.[2]

Award Suitability

Based on the available academic indicators and institutional affiliation, Manuel Vieira demonstrates characteristics commonly associated with recipients of industry collaboration recognitions. Contributions to sustainable development, measurable scholarly influence, and engagement with applied research align with the objectives of the Best Industry Collaboration Award. Final selection remains subject to the official evaluation criteria established by the Scientific World Research Awards.[2]

Conclusion

The academic profile of Manuel Vieira illustrates the value of collaborative research within sustainable development. Continued cooperation between academic institutions and industry partners supports scientific advancement, encourages innovation, and promotes the practical application of research for societal benefit.[1]

External Links

References

  1. Light-Activated Amplification in Si-C Tandem Devices: A Capacitive Active Filter Model
    https://www.researchgate.net/publication/254058896_Light-Activated_Amplification_in_Si-C_Tandem_Devices_A_Capacitive_Active_Filter_Model.
  2. Metallic MXenes: A new family of materials for flexible triboelectric nanogenerators
    https://www.sciencedirect.com/science/article/abs/pii/S2211285517307310.

 

Marcelina Sołtysik | Environmental Science | Innovative Research Award

Innovative Research Award

Marcelina Sołtysik
Marcelina Sołtysik
Affiliation Częstochowa University of Technology
Country Poland
Scopus ID 57217081924
Documents 6
Citations 39
h-index 3
Subject Area Environmental Science
Event Scientific World Research Awards
ORCID 0000-0002-9352-5759

Marcelina Sołtysik is an environmental engineering researcher associated with Częstochowa University of Technology. Her scholarly work focuses on carbon dioxide capture, bioadsorbents, biocarbon characterization, and sustainable environmental technologies. Through studies involving waste-derived materials and adsorption systems, she contributes to the advancement of resource-efficient approaches for emission reduction and environmental protection.[1]

Abstract

Marcelina Sołtysik has developed a research profile centered on environmental engineering, carbon capture technologies, and sustainable material development. Her investigations examine the use of bioadsorbents derived from household and municipal organic waste for carbon dioxide sequestration. Published studies explore adsorption performance, material characterization, and vacuum swing adsorption applications while supporting circular-economy principles. Her work combines laboratory experimentation with practical environmental solutions, contributing to the growing body of research addressing greenhouse gas mitigation. Through interdisciplinary collaborations, she has participated in studies involving renewable hydrogen pathways, carbon conversion technologies, and resource-efficient environmental management strategies.[2]

Keywords

Environmental Science, Carbon Dioxide Capture, Bioadsorbents, Biocarbon, Adsorption Technology, Municipal Waste Valorization, Sustainable Materials, TG-Vacuum Analysis.

Introduction

Environmental challenges associated with greenhouse gas emissions have increased interest in low-cost carbon capture technologies. Research undertaken by Marcelina Sołtysik focuses on transforming waste-derived materials into functional adsorbents capable of supporting sustainable emission-reduction strategies.[3]

Research Profile

As a researcher in environmental engineering, Sołtysik investigates adsorption processes, biocarbon development, and carbon dioxide utilization pathways. Her academic activities include studies of bio-based materials, environmental technologies, and energy-related sustainability solutions.[1]

Research Contributions

Key contributions include characterization of bioadsorbents from municipal waste, evaluation of coffee-based adsorbents for flue gas treatment, and investigations into sustainable carbon capture systems. These studies support the development of environmentally responsible technologies for industrial and climate-related applications.[2]

Publications

  • Bioadsorbents from Household Biowastes: A Sustainable Solution for CO2 Capture (2026).
  • A Coffee-Based Bioadsorbent for CO2 Capture from Flue Gas Using VSA (2025).
  • Characterization of Bioadsorbents from Organic Municipal Waste (2024).

Research Impact

The research portfolio demonstrates practical relevance to carbon management and waste valorization. By converting organic residues into functional adsorbent materials, her work contributes to environmentally sustainable technologies and supports broader climate mitigation objectives.[4]

Award Suitability

Marcelina Sołtysik’s contributions align with the objectives of the Innovative Research Award through demonstrated activity in environmental science, publication output, interdisciplinary collaboration, and the development of sustainable approaches for carbon capture and resource utilization.[5]

Conclusion

The scholarly activities of Marcelina Sołtysik reflect continued engagement with environmental sustainability challenges. Her research on bioadsorbents and carbon capture technologies provides meaningful contributions to contemporary environmental engineering and supports future innovation in sustainable resource management.

References

  1. ORCID. (2026). Marcelina Sołtysik ORCID Record.https://orcid.org/0000-0002-9352-5759
  2. Sołtysik, M., Majchrzak-Kucęba, I., & Wawrzyńczak, D. (2026). Bioadsorbents from Household Biowastes: A Sustainable Solution for CO2 Capture. Materials.https://doi.org/10.3390/ma19101937
  3. Sołtysik, M., et al. (2025). A Coffee-Based Bioadsorbent for CO2 Capture from Flue Gas Using VSA. Energies.https://doi.org/10.3390/en18153965
  4. Sołtysik, M., et al. (2024). Characterization of Bioadsorbents from Organic Municipal Waste. Materials.https://doi.org/10.3390/ma17091954
  5. Elsevier. (n.d.). Scopus Author Details: Marcelina Sołtysik, Author ID 57217081924.https://www.scopus.com/authid/detail.uri?authorId=57217081924

Opeyemi Aniramu | Environmental Science | Research Excellence Award

Dr. Opeyemi Aniramu | Environmental Science | Research Excellence Award

Lecturer II | Obafemi Awolowo University | Nigeria

Dr. Opeyemi Aniramu is a sustainability and environmental researcher specializing in climate change impacts, sustainability science, impact management, and the application of Remote Sensing and GIS to complex environmental challenges. His research interests include urban flood resilience, sustainable and nature-based tourism, land-use change, waste management, biodiversity conservation, agricultural adaptation strategies, and climate-risk assessment, with strong alignment to the UN Sustainable Development Goals. He demonstrates strong research skills in geospatial and spatial analysis, GIS-based modelling, structural equation modelling, regression analysis, systematic reviews, and interdisciplinary environmental assessment. Dr. Aniramu has received academic recognition through research-based contributions and collaborative publications in reputable international journals addressing sustainability and climate resilience. His scholarly impact is reflected in 28 citations (27 since 2021), an h-index of 3, on Google Scholar. In conclusion, his research advances practical, policy-relevant solutions for sustainable development and climate-resilient environmental management, particularly in developing and rapidly urbanizing regions.

 

Citation Metrics (Google Scholar)

28
20
15
10
0

Citations

 28

Documents

11

h-index

3

Citations

Documents

h-index

View Google Scholar View Scopus View ORCID View ResearchGate

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