Asem Abdulqawi Alsofiany | Chemical Engineering | Innovative Research Award

Innovative Research Award

Asem Abdulqawi Alsofiany
Xiamen University, China
Asem Abdulqawi Alsofiany
Affiliation Xiamen University
Country China
Scopus ID 57226700337
Documents 2
Citations 11
h-index 2
Subject Area Chemical Engineering
Event International Academic Achievements & Awards
ORCID 0009-0007-0063-7721

Asem Abdulqawi Alsofiany is a researcher affiliated with Xiamen University whose scholarly work is associated with chemical engineering, catalytic reaction systems, wastewater treatment, and sustainable chemical processes. The research record includes studies concerning propylene epoxidation, the removal of iron ions from wastewater, and the epoxidation of renewable oil-based feedstocks. These topics connect catalyst development with environmental engineering and industrial process optimisation. The available Scopus profile reports two indexed documents, eleven citations, and an h-index of two.[1]

Abstract

This article summarises the academic profile and research contributions of Asem Abdulqawi Alsofiany in chemical engineering. The identified publications address catalytic epoxidation, molecular-oxygen-based oxidation, wastewater remediation, and the conversion of waste-derived oils into higher-value chemical products. The research demonstrates an interdisciplinary approach linking reaction engineering, catalyst assessment, environmental treatment, and sustainable resource utilisation.[2]

Keywords

Chemical engineering; heterogeneous catalysis; propylene oxide; epoxidation; wastewater treatment; iron removal; clay-alginate composites; sustainable chemistry.

Introduction

Chemical engineering research increasingly integrates efficient reaction pathways with environmental performance and resource conservation. The publications associated with Alsofiany examine both catalytic production routes and treatment technologies. Such work is relevant to the development of cleaner industrial processes and improved methods for managing wastewater and renewable feedstocks.[3]

Research Profile

The research profile is centred on chemical reaction systems and environmentally relevant process applications. Areas represented in the publication record include copper-based catalytic systems for propylene epoxidation, adsorption-based removal of dissolved iron, and acid-catalysed epoxidation of waste cooking palm oil. Together, these studies reflect interest in both fundamental reaction behaviour and practical process optimisation.

Research Contributions

  • Systematic evaluation of copper-based catalysts for the direct epoxidation of propylene using molecular oxygen.[2]
  • Investigation of clay-alginate composite beads for optimisation of Fe(II) removal from wastewater.[3]
  • Study of peracetic-acid epoxidation of waste cooking palm oil using sulfuric-acid catalysis.[4]

Publications

  1. Direct epoxidation of propylene with molecular oxygen to propylene oxide: A systematic literature review of copper-based catalysts. Coordination Chemistry Reviews, 2026.[2]
  2. Optimisation the Removal of Fe (II) Ions from Wastewater using Clay-Alginate Composite Beads. Journal of Applied Science and Engineering, 2023.[3]
  3. Epoxidation of Waste Cooking Palm Oil with Peracetic Acid Catalyzed by Sulfuric Acid. ICOTEN, 2021.[4]

Research Impact

The reported citation record indicates scholarly visibility within the relevant research areas. The work contributes to discussions concerning selective oxidation, catalyst selection, wastewater purification, and the use of waste-derived resources in chemical production. Its value lies in connecting laboratory-scale investigation with broader objectives related to process efficiency and environmental sustainability.[1]

Award Suitability

The Innovative Research Award recognises research profiles demonstrating originality, scientific relevance, and potential interdisciplinary value. Alsofiany’s work is suitable for consideration because it combines catalytic innovation with environmental applications and sustainable feedstock utilisation. The assessment is based on the documented publication record, research scope, and measurable scholarly indicators rather than on claims of exceptional performance.

Conclusion

Asem Abdulqawi Alsofiany’s academic contributions represent a focused chemical engineering profile spanning catalysis, wastewater treatment, and sustainable chemical conversion. The available publications demonstrate continuing engagement with technically relevant challenges and provide an appropriate basis for academic recognition under the Innovative Research Award.

References

  1. Elsevier. (n.d.). Scopus author details: Asem Abdulqawi Alsofiany, Author ID 57226700337. Scopus. https://www.scopus.com/pages/authors/57226700337
  2. Alsofiany, A. A. (2026). Direct epoxidation of propylene with molecular oxygen to propylene oxide: A systematic literature review of copper-based catalysts. Coordination Chemistry Reviews. https://doi.org/10.1016/j.ccr.2026.218345
  3. Alsofiany, A. A. (2023). Optimisation the Removal of Fe (II) Ions from Wastewater using Clay-Alginate Composite Beads. Journal of Applied Science and Engineering.
    https://doi.org/10.6180/jase.202304_26(4).0003
  4. Alsofiany, A. A. (2021). Epoxidation of Waste Cooking Palm Oil with Peracetic Acid Catalyzed by Sulfuric Acid. International Congress of Advanced Technology and Engineering.
    https://doi.org/10.1109/ICOTEN52080.2021.9493511

Kowsar Bagherzadeh | Chemistry | Best Researcher Award

Dr. Kowsar Bagherzadeh | Chemistry | Best Researcher Award

Assistant Professor | Iran University of Medical Sciences | Iran

A highly skilled Computational Chemist with over 15 years of experience, the individual specializes in molecular modeling and simulations. With expertise in advanced techniques such as Molecular Dynamics Simulations, Umbrella Sampling, and QM/MM Metadynamics, their work investigates complex chemical and biochemical systems. The focus is on molecular screening, design, and development, aiming to contribute to advancements in diagnostics, therapeutics, and detection technologies.

Profile

Scholar

Education: This professional holds a PhD in Analytical Chemistry from the University of Tehran (2009-2014) and an MS in Analytical Chemistry from the same institution (2006-2008). Additionally, they earned a Health MBA from Sharif University of Technology (2019-2020). Their foundational education includes a BS in Applied Chemistry from the Islamic Azad University of Tehran (2001-2005), as well as a BA in English Literature from the University of Tehran (2001-2005), demonstrating a diverse academic background.

Experience: With a well-established career, they currently serve as a Full-Time Research Assistant Professor and Executive Director at the Eye Research Center, Five Senses Institute, Iran University of Medical Sciences (IUMS), since 2020. In the same year, they became a Part-Time Assistant Professor at the Stem Cell & Regenerative Medicine Research Center, IUMS. Previously, they held leadership roles, including Editor-in-Chief of the Iranian Journal of Pharmacology and Therapeutics (2017-2020), and served in various administrative positions, such as in the Chancellery of International Affairs and Research and Technology at IUMS.

Research Interest: The individual’s research interests focus on computational techniques, including Molecular Dynamics Simulations and Metadynamics, to explore molecular interactions. They specialize in in silico design of biotherapeutics and structural bioinformatics, using advanced modeling to engineer molecules for therapeutics, diagnostics, and detection technologies. This research is vital for the development of novel drug designs, diagnostics, and sensor technologies, particularly in oncology, immunotherapy, and environmental monitoring.

Award: The professional’s accomplishments have been recognized by numerous awards, including being named a “Chosen Young Scientist” by Rassoul-e-Akram Hospital, IUMS (2020). They received the Best Topic Award at the National Students Congress on Pharmaceutical Sciences (2014) and a Best Poster Award at the Discovery Chemistry International Congress in Barcelona (2014). Their recognition also extends to being honored as a Gifted Student at the University of Tehran (2008).

Publication: They have authored several significant publications. Key works include “Computational Engineering of Protein L to Achieve an Optimal Affinity Chromatography Resin for Purification of Antibody Fragments” (Analytical Chemistry, 2021), “Human IL-2Rɑ Subunit Binding Modulation of IL-2 Through a Decline in Electrostatic Interactions” (PloS One, 2022), and “Key Criteria for Engineering Mycotoxin Binding Aptamers via Computational Simulations” (Biotechnology Journal, 2022). Other notable papers include research on electrochemical sensors for tetracycline detection (Food Chemistry, 2023), and the destruction mechanisms of ozone over SARS-CoV-2 (Scientific Reports, 2021). These publications highlight their proficiency in computational chemistry and molecular simulations.

Conclusion: A proven leader in computational chemistry, this individual blends extensive research experience with academic teaching and project management. With advanced skills in molecular simulations and bioinformatics, they play a pivotal role in advancing research in diagnostics, therapeutics, and environmental science. Their work stands out for its depth, particularly in computational modeling and simulations applied to biotherapeutics. By continuing to expand their research and collaborations, they are poised to make significant contributions to future innovations in molecular science and technology.