Jurgita Malaiskiene | Building Materials based on waste | Best Paper Award

Dr Jurgita Malaiskiene | Building Materials based on waste | Best Paper Award

Chief researcher, Vilnius Gediminas Technical University, Lithuania

Jurgita Malaiškienė is a distinguished researcher affiliated with Vilnius Gediminas Technical University in Lithuania. With a robust academic background, she specializes in materials science, focusing on the innovative use of industrial waste in construction. Her work aims to enhance the sustainability of building materials and improve the durability of concrete. An advocate for environmental stewardship, Jurgita actively engages in projects that promote recycling and the utilization of by-products in civil engineering. Her research has garnered significant attention, leading to numerous publications and collaborations with experts in the field.

Profile

ORCID

SCOPUS

Strengths for the Award

Jurgita Malaiškienė exemplifies excellence in the field of materials science, with a strong focus on sustainability in construction. Her impressive h-index of 11 and 490 citations reflect the significant impact of her research, particularly in utilizing industrial waste to enhance concrete durability. Her recent publications, including studies on the influence of silica fly ash and electronic waste glass, demonstrate her innovative approach and commitment to addressing environmental challenges. Jurgita’s active engagement in collaborative projects further strengthens her profile, as she effectively bridges academia and industry. Additionally, her contributions to open-access research promote knowledge sharing and accessibility in the scientific community.

Areas for Improvement

While Jurgita has a solid foundation in publication and citation metrics, expanding her presence in international conferences and workshops could enhance her visibility and influence. Increasing the diversity of her research topics, such as exploring new materials or technologies, could also broaden her impact. Additionally, establishing mentorship programs for emerging researchers would enrich her contributions to the academic community and foster the next generation of scientists.

Education

Jurgita Malaiškienė earned her Master’s degree in Civil Engineering from Vilnius Gediminas Technical University, where she developed a keen interest in material properties and sustainable construction practices. She subsequently pursued a Ph.D. in Construction Materials, focusing on the durability and performance of concrete incorporating industrial by-products. Her education emphasized both theoretical and practical aspects of civil engineering, equipping her with the knowledge to address contemporary challenges in the field. Through her academic journey, she has gained a comprehensive understanding of material science and engineering principles, which she applies in her research to innovate and improve construction methodologies.

Experience

Jurgita Malaiškienė has extensive experience in both academic and research settings. Currently, she is a researcher and lecturer at Vilnius Gediminas Technical University, where she teaches courses on construction materials and sustainability. Over the years, she has participated in various national and international research projects aimed at developing eco-friendly construction solutions. Her role often involves collaboration with industry stakeholders, contributing to applied research that bridges the gap between academia and practice. Jurgita has also served on several committees focused on advancing civil engineering education and research in Lithuania. Her dedication to mentorship and guidance has helped shape the next generation of engineers.

Awards and Honors 

Jurgita Malaiškienė’s contributions to the field of civil engineering have been recognized through various awards and honors. She received the Young Researcher Award from the Lithuanian Academy of Sciences for her innovative work on sustainable materials. Additionally, her research projects have been funded by national grants aimed at promoting environmental sustainability in construction. Jurgita has been invited to present her findings at numerous international conferences, where she has received accolades for her insightful contributions to discussions on recycling and waste management in civil engineering. Her commitment to excellence in research and education continues to inspire her peers and students alike.

Research Focus

Jurgita Malaiškienė’s research primarily focuses on the utilization of industrial waste materials in construction, particularly in the context of concrete durability and sustainability. She explores the effects of various by-products, such as fly ash, slag, and recycled glass, on the mechanical properties and longevity of cementitious materials. Her work aims to innovate recycling methods that enhance the performance of construction materials while minimizing environmental impact. Jurgita also investigates the microstructural changes that occur when integrating waste materials into concrete mixtures, aiming to develop more resilient and eco-friendly building solutions. Through her research, she contributes significantly to advancing sustainable practices within the civil engineering sector.

Publication Top Notes

  • The Influence of Silica Fly Ash and Wood Bottom Ash on Cement Hydration and Durability of Concrete 🌿
  • Possibilities to Recycle Thermal Power Plant By-Products in Refractory Castables ♻️
  • Impact of Electronic Waste Glass on the Properties of Cementitious Materials 💻
  • Lightweight composite materials made of paper sludge and corn starch 📄
  • A Study on the Microstructure and Mechanical Properties of Portland Cement Incorporating Aluminosilicate Waste 🔍
  • Influence of Industrial Waste Pozzolanic Additives on the Structure and Properties of Expanded Glass Granules Cement-Based Composite 🏗️
  • The Metakaolin Waste Effect on the Physical and Mechanical Properties of High-Performance Concrete ⚙️
  • Effect of Low Oxidation Graphene Oxide on Physical and Mechanical Properties of MCC Type Refractory Castable 🧪
  • Analysis of the Structure and Durability of Refractory Castables Impregnated with Sodium Silicate Glass 🧱
  • Bio-colonization layered concrete panel for greening vertical surfaces: A field study 🌱

Conclusion

Jurgita Malaiškienė is a deserving candidate for the Best Researcher Award. Her pioneering work in sustainable construction materials, coupled with her robust publication record and collaborative spirit, positions her as a leader in her field. By addressing areas for improvement, such as enhancing her international presence and mentoring, she can continue to advance her research and contribute significantly to the global scientific community. Recognizing her achievements through this award would not only honor her contributions but also inspire others in the field.

Abdulaziz A. Kurdi – sustainable construction materials – Outstanding Scientist Award

Abdulaziz A. Kurdi - sustainable construction materials - Outstanding Scientist Award

King Abdulaziz City for Science and Technology - Saudi Arabia

AUTHOR PROFILE

SCOPUS

RESEARCH & INNOVATION 🔬

Abdulaziz A. Kurdi is a pioneering researcher focused on advanced materials and manufacturing, currently leading the Center of Excellence for Advanced Materials & Manufacturing at the University of Cambridge. His work includes developing novel graphene-based electrodes for solar energy applications and advancing 3D printing of composite materials for aerospace. His research contributions aim to support Saudi Arabia’s long-term strategic ambitions in sustainable and innovative technologies.

SMART CONSTRUCTION SOLUTIONS 🧱

As the principal investigator for the Al Diriyah project, Abdulaziz led the design and development of a fully automated production line for Adobe bricks, significantly increasing their capacity and quality. His efforts in preserving archaeological sites through innovative coating materials have helped protect valuable heritage sites from environmental damage, showcasing his commitment to merging technology with cultural preservation.

SUSTAINABILITY & ENERGY EFFICIENCY 🌍

In the Smart Walls project, Abdulaziz focused on integrating Phase Change Materials (PCMs) into building walls to enhance energy efficiency. His research is aimed at reducing energy consumption in buildings by incorporating sustainable materials. This project has gained attention from major industry players, including Saudi Aramco, and presents promising opportunities for future implementation in construction.

INNOVATIVE MATERIALS DEVELOPMENT 🏗️

A key part of his research is the development of Artificial Palm Wood (APW), a novel product created from agricultural and plastic waste. This eco-friendly substitute for traditional wood has the potential to revolutionize building materials, especially in regions where natural resources are scarce. Abdulaziz has applied for a patent on this invention, reinforcing his position as a leader in sustainable innovation.

LEADERSHIP IN RESEARCH 🏆

With extensive experience in project management and team leadership, Abdulaziz has been instrumental in overseeing technical teams for various initiatives. His roles range from managing production lines to leading scientific equipment design projects. His strong leadership ensures that projects are executed efficiently, while also fostering innovation and teamwork.

COMMITTEE ENGAGEMENT 📋

Abdulaziz is an active committee member in several key national and international initiatives, including KACST’s Strategic Innovation Program and the Saudi Green Strategy. His contributions to advanced manufacturing techniques, energy efficiency, and industry regulations make him a valuable advisor in shaping the future of Saudi Arabia’s industrial landscape.

EDUCATION & MENTORSHIP 🎓

In addition to his research, Abdulaziz is dedicated to teaching and mentoring the next generation of scientists and engineers. He continuously develops innovative instructional methods and guides students through complex research projects. His role as an educator ensures the transfer of knowledge and fosters the development of future industry leaders.

NOTABLE PUBLICATION

Micro-Scale Deformation Aspects of Additively Fabricated Stainless Steel 316L under Compression
Authors: A. Kurdi, A. Degnah, T. Tabbakh, H. Alnaser, A.K. Basak
Year: 2024
Journal: Materials, 17(2), 439

Role of Precipitation and Solute Segregation on Micro-Scale Deformation of Additively Manufactured Inconel 718
Authors: A. Degnah, T. Tabbakh, A. Kurdi, A.K. Basak
Year: 2023
Journal: Materials Science and Engineering: A, 887, 145762

Microstructural and Nanoindentation Investigation on the Laser Powder Bed Fusion Stainless Steel 316L
Authors: A. Kurdi, T. Tabbakh, A.K. Basak
Year: 2023
Journal: Materials, 16(17), 5933

Coronary Stent Fracture and Application of Interactive Design: A Narrative Review
Authors: A. Kurdi, A.M. Alotaibi, T. Tabbakh, B. Alkahlan
Year: 2023
Journal: International Journal on Interactive Design and Manufacturing, 17(4), pp. 1459–1473

Investigation into the Microstructure and Hardness of Additively Manufactured (3D-Printed) Inconel 718 Alloy
Authors: A. Kurdi, A. Aldoshan, F. Alshabouna, T. Tabbakh, A.K. Basak
Year: 2023
Journal: Materials, 16(6), 2383

Abishek Rauniyar – Sustainable building development – Best Researcher Award

Abishek Rauniyar - Sustainable building development - Best Researcher Award

SRM university science and technology - India

AUTHOR PROFILE

Scopus

EARLY ACADEMIC PURSUITS

Abishek Rauniyar began his academic journey by pursuing a Bachelor of Technology in Civil Engineering from Uttarakhand Technical University (Quantum School of Technical), Roorkee, India, graduating with an impressive 81.82% in August 2019. Building upon this foundation, he pursued a Master of Technology in Construction Engineering & Management at SRM Institute of Science and Technology, Chennai, India, where he achieved an outstanding GPA of 9.82/10, graduating in May 2023. His academic pursuits laid the groundwork for his future endeavors in sustainable building development.

PROFESSIONAL ENDEAVORS

Abishek Rauniyar has amassed a wealth of professional experience in various roles, including as a Site Supervisor Engineer at Hulas Steel Industries Private Limited, where he contributed to foundation work and conducted quality inspections. He also served as an Operations Manager at Just Abroad EdTech Private Limited, where he developed operational strategies and ensured quality control. His diverse professional background equipped him with invaluable skills for his contributions to sustainable building development.

CONTRIBUTIONS AND RESEARCH FOCUS

Abishek Rauniyar's research focus spans several areas crucial to sustainable building development. As a P.G. Research Scholar at SRM Institute of Science and Technology, he investigated topics such as ESG analysis, metaverse technology in the construction industry, smart cities policy, and net-zero carbon buildings. His research contributions include exploring the utilization of agricultural waste for biomass bricks production and developing strategic roadmaps for sustainable construction practices. His work underscores his commitment to advancing sustainability in the built environment.

IMPACT AND INFLUENCE

Abishek Rauniyar's research and professional endeavors have the potential to make a significant impact on sustainable building development. His publications in reputable journals and presentations at national and international conferences serve as platforms for disseminating knowledge and fostering innovation in the field. By addressing critical issues such as waste management, life cycle assessment, and circular economy principles, he contributes to shaping a more sustainable future for the construction industry.

ACADEMIC CITES

Abishek Rauniyar's research findings have been published in prestigious journals and conference proceedings, reflecting the relevance and significance of his work in the academic community. His research articles and conference presentations serve as valuable resources for scholars and practitioners interested in sustainable building development, garnering citations and contributing to the advancement of knowledge in the field.

LEGACY AND FUTURE CONTRIBUTIONS

Abishek Rauniyar's dedication to sustainable building development positions him as a leader in the field. His ongoing research, publication endeavors, and professional contributions are poised to leave a lasting legacy of impactful advancements in sustainable construction practices. Through his continued efforts, he aims to drive positive change in the built environment, advocating for environmentally conscious approaches and innovative solutions to address pressing challenges.

NOTABLE PUBLICATION

An environmental sustainability roadmap for partially substituting agricultural waste for sand in cement blocks 2023 (3)

Enhancement of Concrete Strength of Using PPF and Analysis by ANSYS for Strength Comparison 2024

Udoye Nduka Ekene -Reinforcement – Best Researcher Award

Dr. Udoye Nduka Ekene -Reinforcement - Best Researcher Award

Covenant University Ota - Nigeria

AUTHOR PROFILE

Scopus

EARLY ACADEMIC PURSUITS:

Dr. Udoye Nduka Ekene commenced his academic journey at Covenant University, Ota, Nigeria, where he currently serves as a Lecturer I in the Mechanical Engineering Department. His residential address is situated at No 4 Ola Avenue off Ige Daramola street, Iyana Iyesi Ota Ogun state.

PROFESSIONAL ENDEAVORS:

Dr. Ekene's professional journey includes notable positions such as Maintenance Engineer at FAB-T Electromechanical Engineering Services and Project Manager at NAUPAN Engineering Company Nig. Ltd. His academic career at Covenant University started as a Lecturer II in 2017, and he has progressed to the position of Lecturer I.

CONTRIBUTIONS AND RESEARCH FOCUS:

Dr. Ekene's research interests lie in the realm of Mechanical Engineering, specifically focusing on the reinforcement of aluminum alloys biomaterials, Mechanical Behavior of Materials, Mechanical Properties, Microstructure, Material Characterization, and Machine design.

IMPACT AND INFLUENCE:

As a lecturer at Covenant University, Dr. Ekene actively contributes to teaching, research, and administrative responsibilities. His specialization and research focus demonstrate a commitment to advancing knowledge in Mechanical Engineering.

ACADEMIC CITES:

Dr. Ekene has made significant contributions to academic literature with publications in international journals, addressing topics such as the performance of cooling tower fan blades, wear resistance of aluminum alloy, and the evaluation of shrinking direction using Monte Carlo simulation.

LEGACY AND FUTURE CONTRIBUTIONS:

Dr. Ekene's recent recognition with the Academic Excellence Award and Best Student Award highlights his outstanding contributions to the academic community. His role as Chair of the Publicity Committee for the International Conference on Engineering for a Sustainable World reflects his commitment to promoting academic discourse.

ADMINISTRATIVE/COMMITTEE MEMBERSHIP:

Dr. Ekene actively participates in administrative roles, including serving as the Chair of the Publicity Committee for the International Conference on Engineering for a Sustainable World and holding positions such as Co-Publicity Secretary and Rapporteur Secretary for previous conferences.

HONORS AND AWARDS:

His academic excellence has been acknowledged with awards such as the Academic Excellence Award from the School of Postgraduate Studies and the Best Student Award for being the best Ph.D student in Mechanical Engineering.

RECENT PROFESSIONAL DEVELOPMENT ACTIVITIES:

Dr. Ekene has engaged in professional development activities, including a workshop on "Towards Excellence in Engineering Training and Professional Practice in Sub-Saharan Africa" and active participation in the Covenant University – OCIIP Nigeria Expo 2020 Webinar.

NOTABLE PUBLICATION