Celestin Ngendabanga | Environmental Chemistry | Best Paper Award

 Best Paper Award

Celestin Ngendabanga, affiliated with the University of Rwanda, is recognized in this academic profile for the 2026 research article Empowering Chemistry Teachers with Improvised Materials: A Training Approach for Enhancing Students’ Outcomes, published in the Canadian Journal of Science, Mathematics and Technology Education. The study addresses chemistry teacher development, practical learning, and the use of locally available materials in resource-constrained educational settings. Available publication records identify Ngendabanga as an author of the article together with Jean Baptiste Nkurunziza and Leon Rugema Mugabo. [1]

Celestin Ngendabanga,
Affiliation University of Rwanda
Country Rwanda
Award Category Best Paper Award
Article Title Empowering Chemistry Teachers with Improvised Materials: A Training Approach for Enhancing Students’ Outcomes
Journal Canadian Journal of Science, Mathematics and Technology Education
Publication Year 2026
Scopus ID 59550134900
ORCID 0000-0002-1813-554X
Documents 3
Citations 4
h-index 2
Research Area Chemistry Education
References 34
Event International Chemical Scientist Awards
DOI 10.1007/s42330-026-00447-8

Celestin Ngendabanga is a chemistry education researcher associated with the University of
Rwanda and the African Center of Excellence for Innovative Teaching and Learning Mathematics and Science. His documented research activities include investigations of chemistry teaching practices, practical learning, improvised chemicals and materials, and teacher development in Rwandan educational contexts. His ORCID record lists the University of Rwanda among his professional and educational affiliations and records the 2026 article featured in this recognition profile. [2]

Abstract

The recognized 2026 study examines whether training chemistry teachers to use improvised materials can improve learning outcomes in lower secondary chemistry. The research responds to limited laboratory resources in Rwandan schools and considers locally accessible alternatives for practical instruction. The study adopted an action research approach involving eight chemistry teachers from eight schools. Teachers received training over five sessions conducted across consecutive weekends and subsequently implemented improvised-material activities for six months. Data were gathered through interviews, classroom observations, and document analysis. Reported outcomes included improvements in learner engagement, comprehension, motivation, and hands-on skills, alongside increased teacher confidence and creativity. [1]

Keywords

Chemistry education; improvised materials; chemistry teachers; teacher professional development; practical chemistry; science education; hands-on learning; learner outcomes; teacher training; laboratory resources; Rwanda; chemistry teaching; STEM education; educational innovation; resource-constrained schools.

Introduction

Practical activities are an important component of chemistry education because they provide opportunities for learners to connect theoretical concepts with observable phenomena and develop scientific process skills. In resource-constrained settings, however, shortages of laboratory chemicals, equipment, and other materials can restrict practical instruction. Research conducted in Rwanda has documented the use of locally available substances and improvised materials as alternatives to standard laboratory resources. Ngendabanga and colleagues have further examined teacher practices and the educational potential of improvised chemistry resources, placing teacher preparation at the center of sustainable implementation. [2]

Research Profile

Ngendabanga’s documented research profile is centered on chemistry education and science teaching in Rwanda. His work includes empirical studies of chemistry teachers, practical activities, improvised chemicals, teacher preparation, and learner engagement. A 2025 study examined teaching practices in two Rwandan districts and reported that shortages of laboratory resources contributed to reliance on theoretical instruction, while teachers sometimes used materials such as ash, lemon, and eggshells to support practical learning. His 2025 systematic review likewise examined evidence concerning improvised chemicals, motivation, performance, and practical learning. [3]

Scientific Background

Chemistry learning involves movement between macroscopic observations, submicroscopic explanations, and symbolic representations. Practical work can help learners relate these levels by providing direct experiences that can be interpreted using chemical concepts. Studies of chemistry education have also emphasized the role of practical activities in engagement and academic performance. In contexts where conventional laboratory resources are unavailable, improvised materials can provide an alternative pathway, provided that their selection, preparation, safety, and pedagogical purpose are carefully considered. The research area therefore intersects chemistry education, teacher professional development, practical science, resource accessibility, and context-responsive instructional design. [2]

Methodology

The featured study used an action research design to examine changes associated with teacher training and subsequent classroom implementation. Eight chemistry teachers from eight schools were purposefully selected for participation. The training consisted of five sessions, each lasting two days, conducted during five consecutive weekends. Following the training period, teachers implemented activities using improvised materials over six months. Researchers subsequently collected evidence through interviews, classroom observations, and document analysis. This design allowed the investigation to connect professional learning with classroom practice over an extended implementation period rather than evaluating training solely through immediate participant responses. [1]

Key Findings

The study reported that training teachers to use improvised resources was associated with improvements in several dimensions of students’ learning, including engagement, comprehension, motivation, and hands-on skills. Teachers also demonstrated increased confidence and creativity when conducting practical activities. These findings are consistent with the broader evidence synthesized by Ngendabanga, Nkurunziza, and Mugabo, which identified potential benefits of improvised chemicals for motivation, practical engagement, and academic performance. Earlier research on practical chemistry activities in Rwanda similarly reported positive relationships between hands-on activities, student engagement, experience, and academic performance. [1]

Research Contributions

The principal contribution of the study is its examination of teacher training as a mechanism for supporting the sustained classroom use of improvised chemistry materials. Rather than treating improvisation solely as a response to resource shortages, the research considers it within a professional-development framework. The work contributes empirical evidence from Rwanda concerning the relationship between teacher preparation, practical chemistry instruction, and learner outcomes. It also complements earlier research by the authors that identified resource limitations and recommended training teachers to use available materials effectively. The systematic review conducted by the same research group provides a broader evidence base for understanding the potential and limitations of improvised resources. [3]

Publications

The featured publication is:

  • Ngendabanga, C., Nkurunziza, J. B., & Mugabo, L. R. (2026). Empowering Chemistry Teachers with Improvised Materials: A Training Approach for Enhancing Students’ Outcomes. Canadian Journal of Science, Mathematics and Technology Education, 26(2).
  • Ngendabanga, C., Nkurunziza, J. B., & Mugabo, L. R. (2025). Innovative approaches in chemistry teaching: A systematic review on the use of improvised chemicals for student engagement and performance. Chemistry Education Research and Practice, 26, 566–577.
  • Ngendabanga, C., Nkurunziza, J. B., & Mugabo, L. R. (2025). The use of improvised chemicals and materials in teaching and learning chemistry in two selected districts of Rwanda. Cogent Education, 12(1).

Research Impact

The research has relevance for chemistry education in environments where conventional laboratory resources are limited. Its emphasis on teacher preparation suggests that access to locally available materials alone may not be sufficient; educators also require knowledge of how materials can be safely and pedagogically integrated into lessons. The study therefore contributes to discussions about continuous professional development, practical science teaching, and equitable access to laboratory experiences. Related publications by the research group extend this contribution through empirical investigation and systematic synthesis, while earlier work on hands-on chemistry activities provides additional evidence concerning engagement and academic performance. [2]

Award Suitability

The paper is suitable for consideration under a Best Paper Award category because it addresses a clearly defined educational challenge and evaluates a practical intervention linking teacher professional development with chemistry learning outcomes. Its methodological design incorporates training, classroom implementation, and multiple forms of qualitative evidence. The study also has a defined geographical and educational context, allowing its conclusions to be interpreted in relation to resource-constrained secondary chemistry education. Award consideration should nevertheless remain based on the complete scholarly record, including methodological rigor, originality, significance, ethical procedures, publication quality, and independent assessment of the evidence rather than bibliometric indicators alone. [1]

Conclusion

Celestin Ngendabanga’s 2026 publication examines teacher training as a pathway for strengthening the use of improvised materials in chemistry education. The reported findings connect professional development with improved learner engagement, comprehension, motivation, and practical skills, while also documenting increased teacher confidence and creativity. The work builds on a developing body of research concerning practical chemistry teaching and locally available resources in Rwanda. Its significance lies in examining how context-responsive teacher preparation can support practical science learning where conventional laboratory resources are constrained. [3]

References

  1. Ngendabanga, C., Nkurunziza, J. B., & Mugabo, L. R. (2026). Empowering Chemistry Teachers with Improvised Materials: A Training Approach for Enhancing Students’ Outcomes. Canadian Journal of Science, Mathematics and Technology Education, 26(2).https://doi.org/10.1007/s42330-026-00447-8
  2. ORCID. (2026). Ngendabanga Celestin — ORCID record. ORCID iD: 0000-0002-1813-554X.https://orcid.org/0000-0002-1813-554X
  3. Ngendabanga, C., Nkurunziza, J. B., & Mugabo, L. R. (2025). The use of improvised chemicals and materials in teaching and learning chemistry in two selected districts of Rwanda. Cogent Education, 12(1)https://doi.org/10.1080/2331186X.2025.2461138

Edris Hoseinzadeh | Environmental Chemistry | Innovative Research Award

Innovative Research Award

Edris Hoseinzadeh,
Saveh University of Medical Sciences

Edris Hoseinzadeh
Affiliation Saveh University of Medical Sciences
Country Iran
Scopus ID 54782718600
Documents 64
Citations 1,734
h-index 19
Subject Area Drinking Water
Event International Chemical Scientist Awards

Edris Hoseinzadeh is a researcher whose published work includes environmental health, water quality, water and wastewater treatment, contaminant assessment, and related environmental applications. Bibliographic records identify him with Scopus Author ID 54782718600 and document research spanning drinking-water and environmental-health topics. [1]

Abstract

Edris Hoseinzadeh’s research record encompasses environmental health, drinking-water quality, water and wastewater treatment, contaminant removal, and environmental risk assessment. His documented publications include studies addressing waterborne hazards, adsorption, electrochemical treatment, groundwater quality, and water-related public-health questions. These areas provide a scholarly basis for recognition under an innovative research category. [1]

Keywords

Drinking water; water quality; wastewater treatment; environmental health; waterborne contaminants; adsorption; electrochemical treatment; groundwater; environmental monitoring; public health.

Introduction

Water-quality research connects environmental science, chemical treatment, and public health, particularly where contaminants threaten safe water supplies. Hoseinzadeh’s published work addresses these interconnected concerns through studies of water resources, treatment processes, contaminant removal, and environmental pathways. Such work contributes evidence relevant to drinking-water management and environmental-health protection. [2]

Research Profile

Hoseinzadeh’s research profile spans environmental health engineering and water-related environmental science. Indexed records identify publications involving drinking water, wastewater, groundwater, adsorption, electrochemical processes, microbial hazards, and environmental contamination. His work therefore reflects an interdisciplinary research direction linking chemical treatment technologies with environmental monitoring and health-oriented assessment of water resources. [1]

Research Contributions

His contributions include investigation of contaminant removal using adsorption and electrochemical approaches, evaluation of groundwater and rainwater quality, and assessment of biological and chemical hazards associated with water. Studies of waterborne pathogens and treatment processes further demonstrate an applied orientation toward improving understanding of environmental risks and practical water-management challenges. [3]

Publications

Representative publications include research on acid-dye removal using potato-peel biomass, rainwater-quality evaluation, waterborne protozoan parasites, groundwater quality, electrochemical water and wastewater treatment, and environmental routes of pathogen transmission. His publication record also includes recent work addressing water recovery and treatment processes, illustrating continuity between foundational water research and newer treatment applications. [3]

Research Impact

The available bibliographic record indicates measurable scholarly visibility, with Scopus-indexed publications receiving citations across environmental and water-related research areas. His studies have addressed practical subjects such as contaminant removal, water-quality characterization, and treatment processes, allowing findings to intersect with environmental engineering, public-health research, and sustainable management of water resources. [1] [3]

Award Suitability

The documented combination of water-quality research, treatment technologies, contaminant studies, and environmental-health investigations provides a relevant scholarly foundation for consideration for an Innovative Research Award. His work demonstrates application-oriented research across interconnected environmental problems, particularly those involving drinking water, wastewater, pollutants, and public-health protection. [1]

Conclusion

Edris Hoseinzadeh’s publication record reflects sustained engagement with environmental health and water-related research. His studies address water quality, contaminant removal, treatment technologies, and environmental risks, creating an interdisciplinary profile relevant to contemporary water challenges. These documented contributions provide a reasonable scholarly basis for recognition within an innovative research context. [1] [3]

References

  1. Elsevier. (n.d.). Scopus author details: Edris Hoseinzadeh, Author ID 54782718600. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=54782718600
  2. Godini, H., Hoseinzadeh, E., & Hossini, H. (2021). Water and wastewater as potential sources of SARS-CoV-2 transmission: A systematic review. Reviews on Environmental Health, 36(3), 309–317.

    DOI: 10.1515/reveh-2020-0148.

  3. Hoseinzadeh, E., Samarghandi, M.-R., McKay, G., & Rahimi, N. (2014). Removal of acid dyes from aqueous solution using potato peel waste biomass: A kinetic and equilibrium study. Desalination and Water Treatment, 52(25–27).

    DOI: 10.1080/19443994.2013.810355.

Jung Rae | Environmental Chemistry | Innovative Research Award

Innovative Research Award

Jung Rae
Affiliation Pusan National University
Country South Korea
Google Scholar  fKpBuFYAAAAJ&hl=en
Documents 213
Citations 13,866
h-index 58
Subject Area Applied Microbiology
Event International Chemical Scientist Awards

Jung Rae is affiliated with Pusan National University and has established a distinguished research profile in Applied Microbiology through extensive scholarly publications, interdisciplinary collaborations, and sustained scientific impact. The Innovative Research Award recognizes researchers demonstrating consistent academic excellence and influential contributions to advancing chemical and biological sciences.[1]

Abstract

This article summarizes the academic profile of Jung Rae, emphasizing research productivity, publication record, citation performance, and scientific contributions in Applied Microbiology. The profile highlights achievements that align with the objectives of the Innovative Research Award and demonstrates measurable scholarly impact through internationally recognized research indicators.[1][2]

Keywords

Innovative Research Award, Jung Rae, Applied Microbiology, Pusan National University, Scientific Publications, Citation Impact, Research Excellence, Scopus, Google Scholar, International Chemical Scientist Awards.[1]

Introduction

Jung Rae has developed an internationally recognized academic career through sustained research in Applied Microbiology. His work reflects scientific innovation, interdisciplinary collaboration, and practical relevance. Consistent publication output and scholarly recognition demonstrate a strong commitment to advancing microbial science and related chemical research disciplines.[1][2]

Research Profile

Affiliated with Pusan National University, Jung Rae has authored more than two hundred scholarly publications while achieving extensive citation recognition. His research emphasizes microbial technologies, environmental applications, and biochemical processes, reflecting continuous scientific productivity and an established international academic reputation.[1][3]

Research Contributions

Research contributions include advancing microbial biotechnology, improving environmental sustainability, and supporting innovative biological processes with interdisciplinary significance. Published investigations have enhanced scientific understanding while providing valuable references for researchers, industry professionals, and future developments in microbiology and chemical sciences worldwide.[2][4]

Publications

The researcher has produced 213 indexed publications covering applied microbiology, biotechnology, environmental engineering, and related scientific fields. These publications appear in reputable peer-reviewed journals and collectively demonstrate consistent research quality, international collaboration, and long-term academic productivity across multiple research themes.[1]

Research Impact

With over 13,866 citations and an h-index of 58, Jung Rae’s research demonstrates sustained academic influence. Citation metrics indicate that his publications continue supporting scientific progress, encouraging collaboration, informing future investigations, and contributing significantly to the global advancement of applied microbiological research.[1][2]

Award Suitability

The academic achievements, publication consistency, citation performance, and recognized scientific influence align well with the objectives of the Innovative Research Award. These measurable accomplishments reflect sustained excellence, impactful scholarship, and meaningful contributions that support international scientific advancement and professional recognition.[1][2]

Conclusion

Jung Rae’s scholarly profile reflects sustained research excellence, extensive publication activity, and internationally recognized scientific impact. His contributions to Applied Microbiology continue supporting innovation, collaborative research, and knowledge advancement, making his academic accomplishments highly consistent with the principles of distinguished scientific recognition.[1]

References

  1. Google Scholar. (n.d.). Jung Rae – Citation Profile.
    https://scholar.google.com/citations?user=fKpBuFYAAAAJ&hl=en
  2. ResearchGate. (n.d.). Jung Rae Kim Research Profile.
    https://www.researchgate.net/profile/Jung-Rae-Kim
  3. Kim JR et al. Bioresource Technology. DOI:
    https://doi.org/10.1016/j.biortech.2010.11.067
  4. International Chemical Scientist Awards. (n.d.).
    https://chemicalscientists.com/

Abdelkrim Abourriche | Environmental Chemistry | Research Excellence Award

Research Excellence Award

 Abdelkrim Abourriche
National School of Applied Sciences (ENSA), Safi – Cadi Ayyad University, Morocco
 Abdelkrim Abourriche
Affiliation National School of Applied Sciences (ENSA), Safi – Cadi Ayyad University
Country Morocco
Scopus ID 57197714984
Documents 37
Citations 817
h-index 17
Subject Area Advanced materials and ceramic membranes; Waste valorization and sustainable materials; Industrial wastewater treatment
Event International Chemical Scientist Awards

Prof. Abdelkrim Abourriche is a Moroccan researcher whose scholarly work focuses on advanced materials, ceramic membrane technologies, waste valorization strategies, and industrial wastewater treatment. His academic activities contribute to sustainable engineering solutions and environmentally responsible industrial processes. Citation indicators and publication records demonstrate continued engagement in applied scientific research and interdisciplinary innovation.[1]

Abstract

This article presents an academic overview of Prof. Abdelkrim Abourriche and his contributions to sustainable materials science, ceramic membrane engineering, and wastewater treatment technologies. His publication portfolio, citation performance, and interdisciplinary research activities demonstrate continued engagement in addressing environmental challenges through scientific innovation and applied engineering methodologies.[1][2]

Keywords

Advanced Materials, Ceramic Membranes, Sustainable Engineering, Waste Valorization, Industrial Wastewater Treatment, Environmental Technology, Circular Economy, Applied Chemistry, Resource Recovery, Scientific Research Excellence.[2]

Introduction

Prof. Abdelkrim Abourriche is recognized for research activities related to advanced materials development and environmental sustainability. His work integrates scientific investigation with practical applications, particularly in membrane technologies, waste recycling, and industrial wastewater management. These research areas contribute to addressing contemporary environmental and industrial challenges through evidence-based approaches.[1][3]

Research Profile

Affiliated with the National School of Applied Sciences in Safi, Cadi Ayyad University, Prof. Abourriche maintains an active publication record indexed in international databases. His documented scholarly output, citation metrics, and h-index reflect sustained participation in materials science, environmental engineering, and applied chemical research communities.[1][4]

Research Contributions

The researcher has contributed to studies involving ceramic membrane fabrication, sustainable material utilization, industrial waste treatment, and valorization of by-products. These investigations support resource efficiency and environmental protection objectives while promoting innovative approaches for improving treatment performance and reducing ecological impacts across industrial sectors.[2][5]

Publications

Prof. Abourriche’s publication portfolio includes peer-reviewed journal articles addressing membrane science, wastewater treatment technologies, and sustainable materials. The documented body of work demonstrates a focus on practical environmental solutions and interdisciplinary research collaboration, contributing valuable findings to the broader scientific literature.[1][3]

Research Impact

Research impact is reflected through citation performance, scholarly visibility, and continued relevance within environmental and materials research domains. The citation record indicates that published findings have been referenced by other researchers, supporting knowledge dissemination and contributing to ongoing scientific discussions and technological developments.[1][4]

Award Suitability

The research profile aligns with the objectives of the International Chemical Scientist Awards through demonstrated contributions to environmental chemistry, sustainable material development, and industrial treatment technologies. Academic productivity, measurable research influence, and practical relevance collectively support consideration within scientific recognition and excellence evaluation frameworks.[1][5]

Conclusion

Prof. Abdelkrim Abourriche’s academic record illustrates sustained engagement in research areas that address environmental sustainability and industrial efficiency. Through publications, collaborative investigations, and contributions to materials science and wastewater treatment, his work represents a meaningful component of contemporary applied scientific research and innovation.[1][2]

References

  1. Elsevier. (n.d.). Scopus author details: Prof. Abdelkrim Abourriche, Author ID 57197714984. Scopus.https://www.scopus.com/authid/detail.uri?authorId=57197714984
  2. Bellaj, M., Rakcho, Y., Regti, A., Gebrati, L., Abouliatim, Y., El Haddad, M., & Abourriche, A. (2026). Methylene blue adsorption by synergistic clay-chitosan-alginate hydrogel beads: Batch and fixed-bed column studies with theoretical modeling. International Journal of Biological Macromolecules, 358, 151758.

    https://www.researchgate.net/publication/403394832

  3. El Bourachdi, S., Rakcho, Y., Ayub, A. R., El Amri, A., Moussaoui, F., Araña, J., Herrera-Melián, J. A., Abourriche, A., Hannache, H., & Lahkimi, A. (2026). Cu (II) removal from aqueous solution and real textile wastewater: Mechanistic insights, process optimization, and theoretical modeling using advanced Chitosan–EDTA beads. Environmental Science and Pollution Research, 33(13).

    https://doi.org/10.1007/s11356-026-37687-y

  4. Bellaj, M., Regti, A., El Haddad, M. E., Gebrati, L., Aziz, F., Kurniawan, T. A., & Abourriche, A. K. (2026). Clay/biopolymer composite beads for adsorptive dye removal in batch and fixed-bed systems. Materials Chemistry and Physics, 352, 131998

    https://www.sciencedirect.com/science/article/abs/pii/S025405842501644X?via%3Dihub=

  5. International Chemical Scientist Awards. Award objectives and scientific recognition framework.https://chemicalscientists.com

Mohd Ashraf Dar | Environmental Chemistry | Research Excellence Award

Dr. Mohd Ashraf Dar | Environmental Chemistry | Research Excellence Award

MSCA Postdoctoral Research Fellow | Yildiz Technical University | Turkey

Dr. Mohd Ashraf Dar is an interdisciplinary researcher specializing in environmental biotechnology, agricultural sustainability, and bioremediation. His research focuses on microbial degradation of pesticides, microplastic–plant interactions, and environmentally benign strategies for mitigating emerging contaminants. He has authored 21 peer-reviewed publications, which have received approximately 875 citations, resulting in an h-index of 12. His scholarly work appears in reputed international journals and reflects active collaboration with over 35 researchers across multidisciplinary fields. The research outcomes contribute to sustainable agriculture, soil and ecosystem health, and pollution mitigation. Through the integration of experimental design, microbial systems, and applied environmental science, his work supports global initiatives aimed at environmental protection, food security, and sustainable development.

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Motas | Environmental Chemistry | Chemical Scientist Award

Prof. Dr. Motas | Environmental Chemistry | Chemical Scientist Award

Professor | University of Murcia | Spain

Miguel Motas is a distinguished environmental chemistry researcher at the Universidad de Murcia, specializing in emerging pollutants, contaminant transformation, and ecological risk assessment. His work focuses on pharmaceuticals, pesticides, and persistent organic pollutants in aquatic, terrestrial, and polar ecosystems. Motas has authored 43 peer-reviewed publications with 1,164 citations and an h-index of 22, demonstrating strong scientific influence and sustained research productivity. His recent studies include monitoring pharmaceuticals in Iberian coastal waters, assessing pesticide residues in food matrices, and evaluating PCBs and emerging pollutants in Antarctic species such as Chinstrap penguins and krill. Collaborating with over 140 co-authors, he integrates analytical chemistry and toxicology to support evidence-based environmental policy, ecosystem protection, and sustainable pollution management.

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