lourdes Soriano | Sostenibilidad en Materiales de Construcción | Women Researcher Award

Women Researcher Award

Lourdes Soriano
Universitat Politècnica de València, Spain
Lourdes Soriano
Affiliation Universitat Politècnica de València
Country Spain
Scopus ID 35280717300
Documents 130
Citations 3772
h-index 35
Subject Area Sostenibilidad en Materiales de Construcción
Event Research Awards and Recognitions
ORCID 0000-0002-5749-4609

Lourdes Soriano is a researcher affiliated with Universitat Politècnica de València whose scholarly work focuses on sustainable construction materials, circular economy strategies, supplementary cementitious materials, and environmentally responsible engineering solutions. Her academic contributions have advanced understanding of waste valorization, low-carbon binders, and innovative approaches to reducing the environmental footprint of construction systems. The scope and continuity of her research activity, reflected through a substantial publication record and citation impact, position her as a noteworthy candidate within the framework of the Research Awards and Recognitions program.[1]

Abstract

This article summarizes the academic profile and research achievements of Lourdes Soriano. Her work emphasizes sustainable material development, industrial by-product reuse, alkali-activated systems, and environmentally conscious construction technologies. Through interdisciplinary investigations, she has contributed to the advancement of low-emission construction practices while promoting resource efficiency and circular economy principles. Her publication record demonstrates consistent engagement with topics of global relevance within materials science and civil engineering.[2]

Keywords

Sustainable Construction Materials, Circular Economy, Cementitious Systems, Waste Valorization, Alkali-Activated Materials, Environmental Engineering, Pozzolanic Materials, Green Construction.

Introduction

The construction sector faces increasing pressure to reduce greenhouse gas emissions and improve resource utilization. Researchers such as Lourdes Soriano have explored alternative materials and innovative technologies capable of supporting sustainable development objectives. Her studies address industrial waste recycling, material performance optimization, and the integration of secondary resources into construction applications.[3]

Research Profile

According to available scholarly indicators, Soriano has authored 130 indexed publications, accumulated 3,772 citations, and achieved an h-index of 35. These metrics indicate sustained research productivity and influence within sustainable construction materials research. Her work frequently examines supplementary cementitious materials, biomass ash valorization, glass waste recycling, and innovative binder systems.[1]

Research Contributions

  • Development of sustainable cement and lime-based systems.
  • Investigation of industrial and agricultural waste as construction resources.
  • Advancement of alkali-activated materials and alternative binders.
  • Research supporting circular economy implementation in construction.

Publications

  • Volcanic Ash from Tajogaite Volcano (La Palma Island, Spain) as Pozzolanic Material in Lime and Cement Blends (2026).
  • Spent Fluid Catalytic Cracking Catalyst as a Viable Substitute for Enhancing Low-Grade Kaolinite Clays in LC3 Systems (2026).
  • Impact of Low CO2 Footprint Treatment of Biomass Ashes on Alkali-Activated Mortars (2025).
  • Valorization of Glass Fiber Waste as a Precursor in Alkali-Activated Systems (2025).

Research Impact

The research impact of Lourdes Soriano extends across materials science, environmental sustainability, and construction engineering. Her studies contribute practical knowledge for reducing waste disposal, lowering carbon emissions, and increasing the utilization of secondary resources. The citation performance associated with her publications indicates significant scholarly engagement and recognition within the international research community.[4]

Award Suitability

The Women Researcher Award recognizes individuals who have demonstrated excellence through impactful scholarship, innovation, and professional contribution. Based on publication productivity, citation influence, leadership in sustainable materials research, and commitment to environmentally responsible engineering solutions, Lourdes Soriano exhibits characteristics aligned with the objectives of this recognition program.[5]

Conclusion

Lourdes Soriano has established a substantial academic record in sustainable construction materials and circular economy research. Her contributions support the advancement of environmentally conscious engineering practices and provide valuable scientific insights for future development in sustainable infrastructure and resource-efficient construction technologies.[6]

References

  1. Elsevier. (n.d.). Scopus author details: Lourdes Soriano, Author ID 35280717300. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=35280717300
  2. Buildings. (2026). Volcanic Ash from Tajogaite Volcano as Pozzolanic Material in Lime and Cement Blends.
    https://doi.org/10.3390/buildings16122413
  3. Materials and Structures. (2026). Spent Fluid Catalytic Cracking Catalyst in LC3 Systems.
    https://doi.org/10.1617/s11527-026-03081-w
  4. Sustainability. (2025). Biomass Ashes and Alkali-Activated Mortars.
    https://doi.org/10.3390/su172210359
  5. Materials. (2025). Valorization of Glass Fiber Waste in Alkali-Activated Systems.
    https://doi.org/10.3390/ma18184260
  6. Research Awards and Recognitions. (n.d.). Award Program Information.
    awardsandrecognitions.com

Dr. GUOCHANG LI | Electrochemistry | Best Researcher Award

Dr. GUOCHANG LI | Electrochemistry | Best Researcher Award

Dr. GUOCHANG LI | Electrochemistry – Professor at NINGBO UNIVERSITY, China

Dr. Guochang Li is a rising scholar in the field of materials science, currently holding the position of Distinguished Associate Professor at the School of Materials Science and Chemical Engineering, Ningbo University. His research career is marked by innovation in the development of functional materials for clean energy applications. With a solid academic foundation and a growing international presence, Dr. Li is recognized for his deep expertise in energy storage technologies, particularly involving nanostructured carbon materials and metal-organic frameworks (MOFs). His passion for research is matched by a rigorous work ethic and a commitment to advancing sustainable energy solutions.

Profile:

Orcid | Scopus

Education:

Dr. Li obtained his Ph.D. in Chemistry from Nanjing University, one of China’s most prestigious institutions in scientific research and education. During his doctoral training, he conducted in-depth studies on hierarchical nanostructures and carbon-based materials for energy applications, developing expertise in synthesis techniques, electrochemical testing, and structural characterization. His academic formation under the supervision of a leading Cheung Kong Scholar provided him with strong methodological skills, exposure to interdisciplinary research, and a foundation for scientific independence.

Experience:

Following his doctoral studies, Dr. Li joined Ningbo University as a faculty member and quickly advanced to the role of Distinguished Associate Professor. In this capacity, he leads research projects funded by national foundations, supervises graduate students, and manages a laboratory dedicated to the synthesis and characterization of energy materials. He has participated in key national research programs focusing on lithium-sulfur batteries, sodium-ion technologies, and electrocatalytic water splitting. Additionally, he is highly skilled in the operation and maintenance of advanced instruments such as SEM, HRTEM, XRD, and electrochemical analyzers, and actively contributes to building research infrastructure.

Research Interest:

Dr. Li’s research interests are focused on the controllable synthesis and practical application of carbon-based and MOF-derived nanomaterials for electrochemical energy storage and conversion. He is particularly invested in exploring single-atom and double-atom catalytic sites and their roles in interfacial chemistry, with applications in sodium-ion batteries, Zn-I2 batteries, and supercapacitors. His future work aims to decode the mechanisms of solid–electrolyte interface formation and ion transport regulation, thereby contributing to the development of next-generation, high-efficiency energy storage devices.

Awards:

While still in the early stages of his academic career, Dr. Li has already earned distinctions such as leadership of a National Natural Science Foundation project and multiple invention patents. His rapid progression to a distinguished faculty position and his strong presence in high-impact journals demonstrate his scientific excellence and peer recognition. These accolades are a testament to his capabilities, originality, and potential as a future leader in materials science.

Publications:

📘 Angew. Chem. Int. Ed., 2024 – “Single atomic Cu–C3 sites catalyzed interfacial chemistry in Bi@C” — Highly cited for its innovative approach to sodium-ion batteries.

⚡ Adv. Funct. Mater., 2024 – “Synergistic engineering of NiSe2/Co3Se4 quantum dots threaded by CNTs” — Widely referenced in battery research.

🔬 Adv. Funct. Mater., 2024 – “Fe2Mo3O8@C@MoS2 structures for sodium storage” — Recognized for contributions to ion diffusion studies.

⚙️ Small, 2022 – “Hierarchical carbon nanocages for supercapacitors” — Cited for high energy and power density performance.

💎 Adv. Mater., 2020 – “Compressed N,S co-doped nanocages via capillarity” — One of the most cited works in volumetric energy storage.

🌊 Appl. Surf. Sci., 2025 – “Fluorine-doped carbon dots on Fe-Co selenide nanosheets for seawater electrolysis” — Gaining attention for OER catalysis.

🌿 Dalton Trans., 2023 – “Regulation of Fe–N–C single-atom catalyst by S-doping” — Referenced in CO₂ electroreduction studies.

Conclusion:

Dr. Guochang Li has demonstrated an outstanding trajectory in the field of materials science, combining scientific rigor with originality and innovation. His publication record, technical expertise, and successful leadership of research projects reflect both productivity and potential. His research not only addresses critical challenges in sustainable energy technologies but also lays a strong foundation for impactful future discoveries. With his forward-thinking vision and dedication, Dr. Li is an excellent candidate for the Best Researcher Award, and his continued contributions are expected to have a lasting influence on the global scientific community.