Ainash Baidullayeva | Chemical Engineering | Best Researcher Award

Dr. Ainash Baidullayeva | Chemical Engineering | Best Researcher Award

Associate Professor, Asfendiyarov Kazakh National Medical University” Kazakhstan

Dr. Ainash Kairatovna Baidullayeva is an Assistant Professor at Asfendiyarov Kazakh National Medical University’s School of Pharmacy in Kazakhstan, where she specializes in Environmental Engineering and Green Chemistry. With over 35 publications, 3 patents, and international recognition, she focuses on sustainable solutions for environmental pollution through advanced chemical engineering approaches. Her research targets ion-exchange sorbents derived from vermiculite and glycidyl methacrylate for efficient removal of toxic metal ions from water systems. Notably, her work on phosphate- and epoxy-functionalized composites has demonstrated over 78% extraction efficiency for MoO₄²⁻ and ReO₄⁻ ions under harsh conditions. A published author in MDPI’s Processes and a recognized contributor to the UN Sustainable Development Goals, Dr. Baidullayeva’s work is both scalable and eco-friendly. She is fluent in Kazakh, Russian, and English (IELTS 5.5), and maintains a growing presence in international scholarly communities via Scopus, ORCID, and conference participation.

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Scholar

🎓 Education

Dr. Baidullayeva holds academic qualifications aligning with chemical and environmental engineering disciplines, culminating in her current role as Assistant Professor at Asfendiyarov Kazakh National Medical University. While specific degree information is not listed, her advanced expertise in sustainable chemical processes, sorbent synthesis, and wastewater treatment techniques suggests postgraduate education in chemical or environmental engineering. Her education enabled her to lead innovative research projects involving copolymers, epoxy-functionalized materials, and structural characterization methods like XRD and FTIR. Her proficiency in three languages (Kazakh, Russian, English) further underscores her academic versatility and ability to engage with global scientific communities. As an educator and researcher, she actively contributes to training pharmacy students and young scientists in environmentally responsible engineering practices, in alignment with the global agenda for sustainable development and scientific innovation. Her academic background serves as a strong foundation for her impactful contributions in green chemistry and environmental purification.

🧪 Experience

Dr. Ainash Baidullayeva currently serves as an Assistant Professor at the Department of Engineering Disciplines and Good Practices in the School of Pharmacy, Asfendiyarov Kazakh National Medical University, Kazakhstan. She brings academic and applied research experience in environmental materials, polymer chemistry, and wastewater treatment. With a robust portfolio of over 35 publications and 3 patents, her professional contributions span synthesis, evaluation, and implementation of ion-exchange materials for removing heavy metals from industrial wastewater. She teaches courses bridging engineering and pharmaceutical sciences, applying green chemistry to practical problems. Her interdisciplinary work integrates material science with sustainability, showcasing her capacity to lead in academic research and environmental innovation. Fluent in Kazakh, Russian, and English, she also actively engages in collaborative and international projects. Her ongoing work emphasizes environmentally resilient systems that meet global standards for eco-safety and chemical sustainability, thus preparing future pharmacists with a strong engineering and environmental ethic.

🏆 Awards & Honors

Dr. Ainash Kairatovna Baidullayeva was honored with the prestigious Best Researcher Award in the category of Environmental Materials & Wastewater Treatment, recognizing her contributions to sustainable chemical engineering and eco-friendly water purification solutions. This accolade reflects her innovation in developing ion-exchange sorbents using functionalized vermiculite and glycidyl methacrylate copolymers. Her sorbents, capable of extracting over 78% of MoO₄²⁻ and ReO₄⁻ ions, demonstrate robust efficiency even under harsh chemical conditions. With more than 35 publications—including 9 indexed in Scopus/Web of Science—and 3 patents for epoxy-based ionites, her work is both impactful and scalable. Her recent peer-reviewed study in Processes (MDPI) is a testament to her scientific excellence. Additionally, her active engagement with international research platforms, conference presentations, and commitment to the UN Sustainable Development Goals further validates her distinguished position in the scientific community. Her achievements highlight her as a leading voice in environmental material research in Kazakhstan and beyond.

🔬 Research Focus

Dr. Baidullayeva’s research centers on the synthesis and application of advanced ion-exchange sorbents aimed at sustainable water purification. Her primary focus is on functionalizing vermiculite minerals with glycidyl methacrylate-based copolymers to create efficient, eco-friendly materials capable of extracting toxic metal ions like MoO₄²⁻ and ReO₄⁻ from aqueous environments. Her recent work, featured in Processes (MDPI, 2025), showcases how phosphate- and epoxy-functionalized composites offer exceptional sorption performance even in chemically aggressive conditions. This innovation not only aligns with the principles of green chemistry but also supports global environmental initiatives such as the UN Sustainable Development Goals. By combining polymer science, structural material characterization (FTIR, SEM, XRD), and applied environmental engineering, her work delivers scalable, high-performance solutions to the urgent issue of industrial wastewater treatment. Her broader interests include green chemistry methodologies, chemical engineering for sustainability, and interdisciplinary approaches to eco-innovation in the pharmaceutical and environmental sectors.

📚 Publications

  1. Title: Mini review polyurethane hybrids: preparation, characterization and applications
    Year: 2025
    Authors: Negim, El-Sayed; Shalash, Marwan; Mukatayeva, Zh. S.; Baidullayeva, A. K.; Alferov, T. K.; Nurtazina, A. A.; Karabayeva, A. E.; Samy, Moshera
    Link: https://doi.org/10.31643/2025/6445.13

  2. Title: DISTRIBUTION OF SORBED SUBSTANCE IN EPOXY RESIN FILMS ON THE SURFACE OF ZEOLITE
    Year: 2024
    Authors: E.A. Kambarova; N.A. Bektenov; A.K. Baidullayeva; M.A. Gavrilenko
    Link: https://doi.org/10.32014/2024.2518-1491.224

  3. Title: Modified Adsorbents Based on Glycidyl Methacrylate Copolymers for the Removal of Copper and Lead Ions from Wastewater
    Year: 2024
    Authors: Bektenov, N.; Baidullayeva, A.; Chalov, T.; Jumadilov, T.; Kanat, S.
    Link: https://doi.org/10.30919/es1237

  4. Title: The use of elements of neuropedagogy in the creation of virtual simulators for in-depth study of chemistry in higher education
    Year: 2024
    Authors: Aiman Rakhmetova; Gulzhamila Meiirova; Didara Balpanova; Ainash Baidullayeva; Dina Nurmakhanova
    Link: https://doi.org/10.3926/JOTSE.2532

  5. Title: SYNTHESIS OF NEW ION-EXCHANGE SORBENTS ON AN ORGANOMINERAL BASIS
    Year: 2024
    Authors: K. Sadykov; N. Bektenov; T. Chalov; N. Chinibayeva; N. Zhusipbekova; et al.
    Link: https://doi.org/10.51580/2024-4.2710-1185.50

  6. Title: Study of the chemical components of CO₂ extracts from the fruits of Sorbus aucuparia L.
    Year: 2024
    Authors: Serzhan Mombekov; Ubaidilla Datkhayev; Dosmagulova Kalamkul; Assel Kozhamzharova; Ainash Baidullayeva; et al.
    Link: https://doi.org/10.15587/2519-4852.2024.303000

  7. Title: Modification of Xanthan Gum with Styrene and Investigation of its Rheological Properties
    Year: 2023
    Authors: P. Kusherova; El-Sayed Negim; S. Aidarova; Khaldun Al Azzam; Moshera Samy; Z. Mukatayeva; Baidullayeva Kairatovna
    Link: https://doi.org/10.21608/EJCHEM.2023.246109.8810

  8. Title: Evaluation of SBRP and BRP at various process conditions for the removal of pollutants from dairy effluent: optimization and kinetic studies
    Year: 2022
    Authors: Subramanian, R.; Sundararaman, S.; Baidullayeva, A.; Venkateswaran, B.; Deivasigamani, P.; Arthy, M.; Kumar, J.A.
    Link: https://doi.org/10.1007/s13399-022-03533-7

  9. Title: SORPTION OF IONS STRONTIUM WITH NEW COMPLEX – FORMING IONITES ON THE BASIS OF EPDXYACRYLATES AND COMPLEXONES
    Year: 2018
    Authors: Ergozhin, E. E.; Bektenov, N. A.; SenGupta, Arup K.; Baidullaeva, A. K.; Sadykov, K. A.; et al.

  10. Title: High potential construction materials based on petroleum wastes
    Year: 2016
    Authors: Bektenov, N.A.; Ergozhin, E.E.; Sadykov, K.A.; Baydullayeva, A.K.

Conclusion

Dr. Baidullayeva’s applied research in eco-friendly sorbents represents a meaningful contribution to sustainable wastewater treatment. Her innovation, productivity, and alignment with environmental priorities make her a strong and suitable contender for the Best Researcher Award in Environmental Materials & Wastewater Treatment. With continued development, she is well-positioned to make even greater global impact.

Dr. Asta Bronusiene | Chemical Engineering | Best Researcher Award

Dr. Asta Bronusiene | Chemical Engineering | Best Researcher Award

Dr. Asta Bronusiene, Kaunas University of Technology, Lithuania

Asta Bronusiene is a highly skilled Lithuanian chemist specializing in chalcogenides, structural material characterization, and solution synthesis methods. With a solid academic background in chemistry, she has contributed extensively to both research and industry. Currently serving as a researcher at the Kaunas University of Technology, she continues to explore innovative chemical synthesis techniques, and she is soon embarking on a postdoctoral research role at the Center for Physical Sciences and Technology, Vilnius.

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Strengths for the Best Researcher Award

Asta Bronusiene has a solid academic background, with a Bachelor’s, Master’s, and Doctoral degree in Chemistry from Kaunas University of Technology. Her specialization in chalcogenides and structural material characterization, along with her practical experience in chemical synthesis and thin film deposition methods (CBD, SILAR, spin-coating, sol-gel), are strong assets for research recognition. Her post-doctoral role at the Center for Physical Sciences and Technology further strengthens her research profile.

Areas for Improvement

While Asta has extensive experience in practical synthesis methods, her publication record is not explicitly mentioned in the CV. Enhancing visibility through high-impact publications and international collaborations could further strengthen her candidacy. Additionally, expanding language proficiency, particularly in German, may improve communication and collaboration in multinational projects.

🎓 Education

Asta Bronusiene holds a Bachelor’s degree in Chemistry (2014), a Master’s degree in Chemistry (2016), and a Doctoral degree in Chemistry (2023), all from Kaunas University of Technology. Her educational background laid a strong foundation in chalcogenides and structural material characterization, which are key areas of her current research. She developed expertise in various chemical synthesis and thin film deposition techniques during her academic journey.

💼 Experience

Asta’s work experience spans both academia and industry. She began as a production worker at UAB “Mondelez Lietuva” (2013-2014) and then gained research experience as a laboratory assistant in inorganic chemistry at Kaunas University of Technology (2014-2016, 2018-2023). Between these periods, she worked as an anodizing specialist at UAB “TRATE” (2015-2017). In 2023, Asta joined I-dental as a chemical technologist before resuming her research career at Kaunas University of Technology. She is set to begin her postdoctoral work at the Center for Physical Sciences and Technology in Vilnius in early 2024.

🔬 Research Interest

Asta’s research focuses on chalcogenides, structural material characterization, and solution synthesis methods. She is skilled in the chemical synthesis of sulfides (e.g., Mo, Cu, Sn), and has experience with various deposition techniques such as chemical bath deposition (CBD), successive ionic layer adsorption and reaction (SILAR), and spin coating. She also works with thermal evaporation and magnetron sputtering for thin film deposition, particularly with zinc and aluminum.

🏅 Awards

While specific awards are not listed, Asta’s academic and research achievements demonstrate a commitment to scientific excellence and innovation, particularly in her contributions to material science through her work in chemistry.

📚 Publication Top Notes

The Impact of Thermal Treatment on the Structural, Optical and Electrochemical Characteristics of Tin Sulfide Films

Facile Synthesis and Characterization of TiO<sub>2</sub>/SnS Nanocomposites by Eco-Friendly Methods

Green synthesis of tin sulfide films for potential applications in supercapacitors and the effect of annealing
Effect of Reducing Agent on Characteristics and Antibacterial Activity of Copper-Containing Particles in Textile Materials
Antibacterial Activity of Copper Particles Embedded in Knitted Fabrics
Effect of ascorbic acid on the properties of tin sulfide films for supercapacitor application
Deposition and properties of mixed molybdenum sulfide (MoS2) and copper sulfide (CuxS) films on glass surface using elemental sulfur as a precursor
Preparation and characterization of tin sulfide films with or without sodium chloride

Conclusion

Asta Bronusiene has the foundational skills, experience, and expertise to be a strong candidate for the Best Researcher Award. However, focusing on publication achievements and broader international involvement could elevate her profile further for this prestigious recognition.

Mr. Ndungutse Jean Maurice | Chemical Engineering | Young Scientist Award

Mr. Ndungutse Jean Maurice | Chemical Engineering | Young Scientist Award

Mr. Ndungutse Jean Maurice, Chemistry and Chemical Engineering, Shanxi University, China

NDUNGUTSE Jean Maurice is a dedicated researcher specializing in analytical chemistry, currently pursuing his MSc at Shanxi University, China. With a strong foundation in chemical engineering from Yangtze Normal University, he excels in water pollution control, waste treatment, biosensor development, and resource recovery processes. Known for his commitment to environmental sustainability, he has published several research papers in renowned journals and continues to explore innovative solutions for environmental challenges.

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Strengths for the Award

Maurice’s diverse expertise in water pollution control, wastewater treatment, biosensor technology, and resource recovery showcases his wide-ranging capabilities in environmental science. His active role in significant research publications, including peer-reviewed journals, demonstrates a strong foundation in scientific inquiry. His international academic achievements, such as being awarded “Best International Student” and receiving a first-prize scholarship, reflect his dedication and high performance. Maurice’s ability to work across disciplines, seen in his work with pyrolysis processes and sulfur quantum dots, further bolsters his candidacy.

Areas for Improvement

Maurice can enhance his language proficiency in Chinese to expand his collaboration opportunities and scientific outreach in his current academic environment. Additionally, focusing more on grant writing and project leadership in the upcoming years could further solidify his standing in the research community. Expanding his network of interdisciplinary collaborators and exploring more practical implementations of his research would also be valuable.

Education 🎓

NDUNGUTSE holds a Master of Science (MSc) in Analytical Chemistry from Shanxi University (2022-present). He earned his Bachelor of Science (BSc) in Chemical Engineering and Technology from Yangtze Normal University (2018-2022), graduating with a GPA of 3.842/4. His earlier education includes a Diploma A2 in Mathematics, Chemistry, and Biology from G.S St Jerome, Janja (2015-2017), and an Ordinary Level Certificate from Saint Charles Lwanga Runaba (2012-2014), all with distinction.

Experience 🛠️

Jean Maurice has demonstrated his expertise in water pollution control, organic waste treatment, and the pyrolysis process, contributing to significant environmental projects. His professional journey includes roles as a researcher assistant at Lab 913-YZNU, Yangtze Normal University, and extensive collaboration with international researchers. He is passionate about connecting academic research with industry for real-world environmental impact.

Research Interest 🔬

NDUNGUTSE’s research focuses on environmental sustainability, particularly in wastewater treatment, resource recovery, anaerobic digestion, and biosensor development. He explores the integration of advanced technologies such as plasma pyrolysis with anaerobic digestion, aiming to create sustainable solutions for waste management and resource optimization.

Awards 🏆

Jean Maurice has received numerous accolades, including the “Best International Student” award at Shanxi University (2022-2023). He was also recognized as a “Merit Student” at Yangtze Normal University, where he won first prize scholarships for three consecutive years, underscoring his academic excellence and dedication.

Publication Top Notes 📚

Assessment of Solid Waste Management and Decarbonization Strategies (2024), Processes, DOI:10.3390/pr12071473, cited by [related articles].

Sustainable Treatment of Spent Photovoltaic Solar Panels Using Plasma Pyrolysis Technology and Its Economic Significance (2024), Clean Technologies, cited by [related articles].

Effectiveness of Torrefaction By-Products as Additive in Vacuum Blackwater under Anaerobic Digestion (2023), Environmental Science, cited by [related articles].

Construction of a Novel Oxalic Acid Biosensor Based on Tissue Enzyme and Peroxide Mimic Enzyme (2023), cited by [related articles].

Advances in Sewage Sludge Application and Treatment: Process Integration of Plasma Pyrolysis and Anaerobic Digestion (2023), Heliyon, cited by [related articles].

Biofuel Recovery from Plantain and Banana Plant Wastes: Integration of Biochemical and Thermochemical Approach, cited by [related articles].

Modification of Biochar with Fe3O4 and Humic Acid-Salt for Removal of Mercury from Aqueous Solutions (2023), Environmental Pollution Bioavailability, cited by [related articles].

Characterization and Environmental Impacts of Kitchen Wastes from Food-Waste Disposer Devices (2023), cited by [related articles].

Approaches for Treating Domestic Wastewater with Food Waste and Resource Recovery (2023), Environmental Pollution Bioavailability, cited by [related articles].Maurice can enhance his language proficiency in Chinese to expand his collaboration opportunities and scientific outreach in his current academic environment. Additionally, focusing more on grant writing and project leadership in the upcoming years could further solidify his standing in the research community. Expanding his network of interdisciplinary collaborators and exploring more practical implementations of his research would also be valuable.

Conclusion

NDUNGUTSE Jean Maurice’s academic background, publications, and achievements make him a strong candidate for the “Young Scientist Award.” He demonstrates excellent potential for future contributions to environmental science, particularly in sustainable technologies. However, addressing areas of improvement will help elevate his global scientific impact.