Luciana Rocha Santos | Environmental Engineering | Best Researcher Award

Mrs. Luciana Rocha Santos | Environmental Engineering | Best Researcher Award

PhD Candidate at FEEVALE University , Brazil.

🔬 Short Biography 🌿💊📚

Luciana R. Santos is a passionate and driven Ph.D. candidate in Environmental Quality 🌱, committed to advancing sustainable technologies. With a strong academic foundation in Chemical Engineering ⚗️ and a Master’s degree in Materials Technology 🧪, she has developed expertise in innovative solutions for environmental challenges. Her research delves into developing advanced coatings, functional biomaterials, and exploring pyrolysis processes for converting industrial waste into bio-oil ♻️. Luciana plays a vital role in R&D projects that intersect material science and green technology 🌍. She is known for her methodical approach, scientific curiosity, and commitment to reducing industrial environmental impacts through innovative material applications. Her academic journey and hands-on research experience position her as a rising expert in sustainable engineering and environmental science 🚀.

PROFILE 

ORCID 

🔍 Summary of Suitability:

Luciana R. Santos exemplifies the qualities of a top-tier researcher, making her an excellent nominee for the Best Researcher Award. With a robust academic foundation—B.Sc. in Chemical Engineering, M.Sc. in Materials Technology, and current Ph.D. work in Environmental Quality—she has demonstrated academic excellence and a deep commitment to sustainable science. 🌱📚 Her research spans coatings, biomaterials, and waste-to-energy technologies, areas that have significant societal and environmental impact.

Luciana actively contributes to high-impact R&D projects and recently co-authored a peer-reviewed journal article titled “Strategic Techniques for Upgrading Bio‐Oil from Fast Pyrolysis: A Critical Review” in a reputable journal, showing her engagement with cutting-edge scientific advancements. 📘 Her interdisciplinary approach, combining engineering, environmental science, and materials technology, speaks to her versatility and innovation. She works with industrial waste pyrolysis to produce bio-oil, addressing global challenges like waste management and clean energy. ⚡♻️

📘 Education

Luciana R. Santos began her academic journey with a degree in Chemical Engineering ⚙️, laying the foundation for her expertise in industrial and environmental processes. Building on this, she earned a Master’s in Materials Technology 🧫, where she explored the development and application of advanced materials. Currently, she is pursuing her Ph.D. in Environmental Quality 🌿, focusing on sustainable innovations and eco-friendly solutions to modern challenges. Throughout her career, Luciana has been actively involved in R&D projects that integrate material science, sustainability, and engineering. Her practical experience includes working on cutting-edge technologies such as biomaterial development, high-performance coatings, and pyrolysis of industrial waste for bio-oil production 🔥. Her academic background and research experience make her a valuable contributor to multidisciplinary environmental initiatives 🧠.

Professional Experience

Luciana R. Santos has continually advanced her professional development through dedicated academic pursuits and impactful research involvement 🎓. Her transition from Chemical Engineering to Materials Technology and finally to Environmental Quality reflects her evolving focus toward sustainable development 🌍. By participating in interdisciplinary R&D projects, she has cultivated a deep understanding of material-environment interactions and their potential in circular economy models 🔄. Luciana has gained significant expertise in handling real-world challenges by developing biomaterials, protective coatings, and alternative energy solutions such as bio-oil from waste via pyrolysis 🔬. She frequently engages in academic conferences, workshops, and collaborative initiatives that foster innovation and scientific networking 🤝. Her professional path demonstrates a commitment to continual learning, applied research, and leadership in sustainability-focused material engineering 💡.

Research Focus 🔍🤖

Luciana R. Santos focuses her research on the intersection of materials science and environmental engineering 🌿. Her core areas include developing sustainable coatings, biomaterials for medical and environmental applications, and advanced waste-to-energy technologies 🔁. A significant portion of her work centers around the pyrolysis of industrial waste to produce bio-oil, contributing to renewable energy and waste valorization efforts ⚡. She explores how modified materials can improve environmental quality and extend the life of infrastructure through protective solutions 🛡️. Her multidisciplinary approach brings together chemistry, engineering, and environmental science to create practical innovations that reduce ecological footprints 🌱. Luciana’s work is aligned with the principles of green chemistry and the circular economy, targeting eco-efficient industrial practices. Her research contributes significantly to the sustainable development goals (SDGs), particularly those related to clean energy, responsible consumption, and climate action 🌎.

Awards and Honors 🏆🎖️

  • 🏆 Ph.D. Scholarship in Environmental Quality

  • 🥇 Master’s Research Fellowship in Materials Technology

  • 🎖️ Recognition for Excellence in Chemical Engineering Studies

  • 📜 Participation in National R&D Collaborative Projects

  • 🧪 Honored for Innovation in Pyrolysis and Bio-oil Production Research

Publications & Citations 📚

📘 Strategic Techniques for Upgrading Bio‐Oil from Fast Pyrolysis: A Critical ReviewBiofuels, Bioproducts and Biorefining 🛢️📄 | 🗓️ Published: 2025-05-08 | ✍️ Authors: Luciana R. Santos, Daniela R. Araujo, Marco A.S. Rodrigues | 🔗 DOI: 10.1002/bbb.2789 | 📊

🔍 Conclusion:

Luciana R. Santos is a highly deserving candidate for the Best Researcher Award. Her scientific rigor, impactful research, and commitment to sustainability position her as a forward-thinking leader in environmental and materials science. 🌍💡 Her contributions not only advance academic knowledge but also offer practical solutions to real-world environmental challenges. Awarding her would be a recognition of both her achievements and her potential to lead future innovations in sustainable technologies. 🚀👏

Prof. Zhiwu Liang | CO₂ capture | Best Researcher Award

Prof. Zhiwu Liang | CO₂ capture | Best Researcher Award

Prof. Zhiwu Liang, Zhiwu Liang, Professor, Hunan University, China

🌍 Prof. Zhiwu Liang is a distinguished professor at Hunan University, specializing in CO₂ capture and conversion. He has over 30 years of academic and industrial experience, contributing to over 50 research projects, 326 journal publications, 54 patents, and 3 books. Prof. Liang’s research focuses on developing efficient chemical solvents and looping strategies to minimize CO₂ emissions in heavy industries. He has held key academic positions at Hunan University and the University of Regina, and his innovations have significantly advanced green and low-carbon systems. His work combines fundamental research with industrial applications, positioning him as a leader in sustainable energy solutions. 🌿🔬

Professional Profile:

Scopus

Suitability for Best Researcher Award

Prof. Zhiwu Liang is an outstanding candidate for the Best Researcher Award due to his remarkable contributions to CO₂ capture and conversion over a career spanning more than 30 years. His research has significantly advanced both the theoretical and applied aspects of sustainable energy solutions, particularly in reducing carbon emissions from heavy industries. His extensive publication record, patents, and leadership in international collaborations reflect his profound impact on the field of environmental and chemical engineering.

🎓 Education and Experience

  • 👨‍🎓 Engineering – Sixth Institute of China National Nuclear Corporation (1985–1994)
  • 👨‍🏫 Associate Professor – Hunan University (1994–2003)
  • 🌍 Associate Professor – University of Regina (2003–2020)
  • 👨‍🔬 Professor – Hunan University (2011–Present)

🚀 Professional Development

Prof. Liang’s expertise in CO₂ capture and conversion spans over three decades. His research focuses on developing efficient, low-cost solvents and sorbents, enhancing industrial CO₂ capture systems, and establishing pilot plants for large-scale applications. He has led over 50 research projects, published 326 papers in leading journals, and holds 54 patents. His innovative strategies have contributed to the development of low-carbon industrial processes, reducing environmental impact and improving sustainability. Prof. Liang also serves on the editorial boards of five journals and collaborates with over ten international institutions to drive advancements in carbon capture technologies. 🌍💡

🔬 Research Focus

Prof. Liang’s research focuses on CO₂ capture and conversion using chemical solvents and chemical looping strategies. His work includes developing efficient, low-cost, and stable solvents and sorbents, identifying reaction mechanisms, and designing effective devices for large-scale CO₂ capture. He aims to establish green, low-carbon systems with minimal exergy and cost penalties, advancing CO₂ capture technology for industrial applications. His research has led to the development of pilot plants for real-world CO₂ capture, providing sustainable solutions for heavy-emission industries and contributing to the global effort to combat climate change. 🌿⚗️🔬

🏆 Awards and Honors

  • 🏅 Best Researcher Award – Nominee
  • 🏅 Over 326 Publications in SCI and Scopus-indexed journals
  • 📚 Authored 3 Books with ISBN numbers
  • 🌍 54 Patents – Published and under process
  • 🏆 Consulted for 10+ industry projects
  • 🌍 5 Editorial Appointments in reputed journals
  • 🤝 10+ International Collaborations

Publication Top Notes:

  • Study on artificial neural networks and structure–activity relationship for constructing viscosity correlations of amine aqueous solutions based on chemical structure information  🤖🧪💧
  • Low concentration Ni doping to intensify redox kinetics of iron-based oxygen carriers for efficient chemical looping reverse water gas shift🔋🌡️🧪
  • Enhancing CO2 capture performance by changing membrane fiber arrangement in multi-fiber membrane contactors  🌍🧪💨
  • Steel slag derived oxygen carriers and solid sorbents for chemical looping CO2 capture: A mini review  🏭🧪💨
  • Energy efficient ternary 2-amino-2-methyl-1-propanol, piperazine, and triethanolamine blend for post-combustion carbon capture 🌍🧪🫧