Nursaya Makayeva | Chemical Engineering | Best Researcher Award

Best Researcher Award

Nursaya Makayeva
Institute of Combustion Problems, Kazakhstan

Nursaya Makayeva
Affiliation Institute of Combustion Problems
Country Kazakhstan
Scopus ID 57656735300
Documents 12
Citations 145
h-index 5
Subject Area Chemical Engineering
Event International Forensic Scientist Awards
ORCID 0000-0002-1638-7460

Nursaya Makayeva is a researcher affiliated with the Institute of Combustion Problems in Kazakhstan whose scholarly work is associated with chemical engineering, catalytic processes, methane decomposition, hydrogen production, carbon materials, and carbon dioxide conversion. Her research publications reflect continued engagement with catalytic materials and reaction systems relevant to cleaner energy technologies and resource-efficient chemical processes. Based on the reported Scopus profile indicators, her research record includes 12 indexed documents, 145 citations, and an h-index of 5. [1]

Abstract

Nursaya Makayeva’s research profile is centered on catalytic science and chemical engineering applications involving methane conversion, hydrogen generation, nanocarbon formation, catalyst modification, and carbon dioxide utilization. Her published work examines the influence of catalyst composition and structural properties on reaction performance and stability. Recent studies address Fe-Ni-Ce and Fe-Mo-Ce catalyst systems, electrochemical synthesis of iron-containing composites, and catalytic approaches to carbon dioxide conversion. [2] [3]

Keywords

Chemical engineering; methane decomposition; heterogeneous catalysis; hydrogen production; nanocarbon; carbon dioxide conversion; catalyst stability; cerium oxide.

Introduction

Research in catalytic chemical engineering plays an important role in the development of alternative energy pathways and lower-emission conversion technologies. Makayeva’s work contributes to this area through investigations of catalyst-supported methane decomposition and related material systems. The research addresses the relationship between catalyst composition, reaction activity, carbon formation, and operational stability. [4]

Research Profile

The research profile of Nursaya Makayeva demonstrates interdisciplinary engagement across catalysis, materials chemistry, energy conversion, and environmental process engineering. Her studies include transition-metal catalysts supported on oxide materials and the application of cerium-containing systems to improve catalytic performance. The scope also extends to sorption materials and naturally occurring zeolites modified with metal oxides. [5]

Research Contributions

  • Investigation of Fe-Ni-based catalysts for methane decomposition and hydrogen production.
  • Assessment of cerium oxide as a catalyst modifier influencing activity and material stability.
  • Research on electrochemical synthesis of iron-containing composites for COx-free hydrogen and nanocarbon production.
  • Contribution to research on catalytic, photocatalytic, and electrocatalytic carbon dioxide conversion technologies.

Publications

Selected publications include research in Journal of CO2 Utilization, Inorganic Chemistry Communications, Chemical Papers, and Catalysis Letters. These works document research into carbon dioxide conversion, methane decomposition, catalyst modification, and advanced carbon-containing materials. [2] [3] [4]

Research Impact

The reported citation record indicates that Makayeva’s publications have received scholarly attention within relevant scientific literature. Her research addresses internationally significant themes including clean hydrogen, methane valorization, catalyst durability, and carbon management. The combination of publication activity and citation performance provides measurable evidence of research dissemination and academic engagement. [1]

Award Suitability

Based on the documented research profile, publication record, citation indicators, and contributions to catalytic and chemical engineering research, Nursaya Makayeva demonstrates characteristics relevant to academic recognition under the Best Researcher Award category of the International Forensic Scientist Awards. The assessment is based on research productivity, scholarly visibility, technical subject relevance, and sustained contributions to scientific knowledge.

Conclusion

Nursaya Makayeva’s academic work represents a focused contribution to catalytic materials and chemical conversion technologies. Her research on methane decomposition, hydrogen production, catalyst development, carbon dioxide conversion, and sorption materials demonstrates engagement with contemporary challenges in chemical engineering. The available scholarly indicators and selected publications support recognition of her continuing research activities and scientific contributions. [1]

References

  1. Elsevier. (n.d.). Scopus author details: Nursaya Makayeva, Author ID 57656735300. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57656735300
  2. Makayeva, N. et al. (2024). Advancements in catalytic, photocatalytic, and electrocatalytic CO2 conversion processes: Current trends and future outlook. Journal of CO2 Utilization.
    https://doi.org/10.1016/j.jcou.2024.102682
  3. Makayeva, N. et al. (2024). Effects of cerium oxide on the activity of Fe-Ni/Al2O3 catalyst in the decomposition of methane. Inorganic Chemistry Communications.
    https://doi.org/10.1016/j.inoche.2024.112047
  4. Makayeva, N. et al. (2022). Electrochemical synthesis of Fe-containing composite for decomposition of methane into COx-free hydrogen and nano-carbon. Chemical Papers.
    https://doi.org/10.1007/s11696-022-02420-9
  5. Makayeva, N. et al. (2025). Шанканай табиғи цеолитінің сорбциялық қасиеттеріне натрий және магний оксидтерінің әсері. Горение и плазмохимия.
    https://doi.org/10.18321/cpc23(2)153-161
  6. Makayeva, N. et al. (2026). Methane Decomposition Over Fe–Ni–Ce and Fe–Mo–Ce/TiO₂–Al₂O₃ Catalysts: Tuning Carbon Structure and Catalyst Stability. Catalysis Letters.
    https://doi.org/10.1007/s10562-026-05508-z

Monika Sarvašová Kvietková | Engineering | Innovative Research Award

Innovative Research Award

Monika Sarvašová Kvietková
Czech University of Life Sciences Prague, Czech Republic

Monika Sarvašová Kvietková
Affiliation Czech University of Life Sciences Prague
Country Czech Republic
Scopus ID 36452950300
Documents 36
Citations 435
h-index 13
Subject Area Engineering
Event International Forensic Scientist Awards

Monika Sarvašová Kvietková is a researcher affiliated with the Czech University of Life Sciences Prague whose published work contributes to engineering and wood-material research, particularly the performance, characterization, durability, and surface treatment of timber-based materials. Her research record includes peer-reviewed studies addressing electron microscopy, coatings, weathering, thermal modification, and structural timber behavior.

Abstract

The research profile of Monika Sarvašová Kvietková reflects sustained scholarly activity in engineering-related wood science and material performance. Her publications examine methodological and practical questions involving microscopic characterization, coating systems, durability, weathering, and engineered timber. The available bibliographic record reports 36 documents, 435 citations, and an h-index of 13 in Scopus. These indicators provide a quantitative context for assessing the visibility of her published research. [1]

Keywords

Wood engineering; timber durability; electron microscopy; surface coatings; weathering; engineered wood; materials characterization; structural timber.

Introduction

Engineering research on wood materials increasingly integrates material characterization with durability assessment and performance-oriented design. Kvietková’s collaborative publications address these themes through experimental investigations of wood surfaces, coating systems, microscopic observation, and structural behavior. Such studies are relevant to improving the understanding and long-term performance of timber products in demanding environments. [2]

Research Profile

Her research profile is characterized by interdisciplinary collaboration across wood science, materials engineering, microscopy, coatings, and construction materials. A 2025 study investigated the critical voltage required for observing uncoated wood samples using electron microscopy, demonstrating attention to methodological conditions in materials characterization. [3]

Research Contributions

  • Investigation of microscopy parameters for wood-material characterization.
  • Evaluation of coating types and surface durability for thermally modified wood.
  • Study of initial wood treatment and exterior transparent coating performance.
  • Research on extractive leaching and accelerated weathering of coated timber.

Publications

Selected publications include work in Materials, Journal of Building Engineering, Polymers, Central European Forestry Journal, and Construction and Building Materials. The 2025 microscopy study is published in Materials, volume 18, article 236. [3] Related research has examined coating durability on thermally modified wood and oak wood, as well as weathering and mechanical characteristics of timber. [4] [5]

Research Impact

The reported Scopus record of 36 documents, 435 citations, and an h-index of 13 indicates an established citation footprint within the indexed research literature. [1] Her publication portfolio also demonstrates collaboration across multiple institutions and disciplines, with research directed toward practical questions of material durability, characterization, and construction performance.

Award Suitability

Based on the supplied research record, the Innovative Research Award recognizes a profile that combines peer-reviewed publication activity, interdisciplinary engineering research, and investigation of practical materials-performance challenges. The documented studies provide evidence of continued contributions to wood engineering and related materials research. Award assessment should additionally consider the complete nomination documentation and independently verified research evidence.

Conclusion

Monika Sarvašová Kvietková’s research record presents a coherent contribution to engineering research focused on wood materials, coatings, durability, microscopy, and timber performance. Her indexed publications and reported citation indicators provide a measurable scholarly foundation for consideration within an academic recognition framework. [1]

References

  1. Elsevier. (n.d.). Scopus author details: Monika Sarvašová Kvietková, Author ID 36452950300. Scopus.
    https://www.scopus.com/pages/authors/36452950300
  2. Sarvašová Kvietková, M., et al. (2024). The influence of the type of coating on thermally modified wood and the resulting durability of the surface treatment on a facade. Journal of Building Engineering, 91, 109629.
    https://doi.org/10.1016/j.jobe.2024.109629
  3. Kvietková, M.S., Dvořák, O., Kubista, K., Těhníková, K., Lin, C.-F., & Jones, D. (2025). Determination of the Critical Voltage for the Observation of Uncoated Wood Samples in Electron Microscopy. Materials, 18, 236.
    https://doi.org/10.3390/ma18020236
  4. Dvořák, O., Kvietková, M.S., Šimůnková, K., et al. (2023). The Influence of the Initial Treatment of Oak Wood on Increasing the Durability of Exterior Transparent Coating Systems. Polymers, 15(15), 3251.
    https://doi.org/10.3390/polym15153251
  5. Dvořák, O., et al. (2023). Effect of larch wood extractive leaching on accelerated weathering aging durability of oil-based coatings. Central European Forestry Journal, 69(2), 126–131.
    https://doi.org/10.2478/forj-2022-0018
  6. Kytka, T., Gašparík, M., Sahula, L., Karami, E., Teterin, D., Das, S., Novák, D., & Kvietková, M.S. (2022). Bending characteristics of glued laminated timber depending on the alternating effects of freezing and heating. Construction and Building Materials, 350, 128916.
    https://doi.org/10.1016/j.conbuildmat.2022.128916