Souhaila MENECEUR | Analytical Chemistry | Best Researcher Award

Prof. Dr. Souhaila MENECEUR | Analytical Chemistry | Best Researcher Award

Researcher at University of Eloued, university of El Oued Algeria,

Algeria

Souhaila Daoudi née Meneceur 👩‍🏫 is an Associate Professor at El Oued University 🇩🇿 with a strong background in analytical and environmental chemistry 🔬. Born on November 2, 1982 🎂 in El Oued, Algeria, she is passionate about research, education, and scientific innovation 📘. With advanced degrees including a Ph.D. in Analytical Chemistry and Environment 🎓, she has contributed to academia through both teaching and research 📊. She is an active member of the scientific community on platforms like Google Scholar 🔍 and ResearchGate 🌐. Married and based in Debila, she continues to inspire future chemists and researchers

Professional Profile:

SCHOLAR

Suitability for Best Researcher Award – Prof. Dr. Souhaila MENECEUR

Strengths

  • 👩‍🔬 Holds a Ph.D. in Analytical Chemistry and Environment with a consistent research trajectory in green nanotechnology, photocatalysis, and environmental remediation.

  • 📊 Published in high-impact journals like Sustainability, Scientific Reports, and Frontiers in Chemistry, with several articles achieving high citation counts (up to 88).

  • 🧠 Proven expertise in QSAR modeling, nanomaterial synthesis, and pollution control, tackling real-world environmental issues.

  • 🌐 Maintains active presence in the global research community through Google Scholar and ResearchGate platforms.

🎓 Education & Experience

  • 🎓 Baccalaureate in Chemistry – Technical High School of Debila, 1999/2000

  • 🧪 D.E.U.A. in Analytical Chemistry – Badji Mokhtar University, Annaba, 2002/2003

  • 🧫 State Engineer in Chemistry – Badji Mokhtar University, Annaba, 2005/2006

  • 📖 Magister in Analytical Chemistry and Environment – Badji Mokhtar University, 2008/2009

  • 🧬 Ph.D. in Analytical Chemistry and Environment – University of El Oued, 2020/2021

  • 👩‍🏫 Associate Professor – El Oued University, currently employed

🌐 Professional Development

Souhaila Daoudi has consistently expanded her academic and professional skills 📈 through advanced education and research involvement 🧠. Her academic journey reflects her dedication to chemistry, particularly analytical techniques and environmental applications 🌍. With a focus on QSAR modeling and venom analysis from scorpion species 🦂, she blends theoretical knowledge with practical exploration. She actively participates in scientific networks and conferences 🎤, staying current with innovations in chemical analysis and environmental impact research 🔍. Her teaching role allows her to mentor students and foster scientific curiosity 🎓, while her research efforts contribute to regional and international scientific progress 🌐.

🔬 Research Focus Category

Souhaila Daoudi’s research primarily focuses on analytical chemistry 🧪 with strong applications in environmental studies 🌱. She is especially interested in QSAR methodologies 📊 (Quantitative Structure-Activity Relationships), which help predict molecular behavior and toxicity. Her doctoral research explored the toxic composition of scorpion venoms 🦂, contributing to toxinology and environmental toxicology. Her scientific contributions aim to address public health, environmental safety, and chemical risk assessment ⚠️. By combining chemistry with biology and environmental science, she advances multidisciplinary research that supports both academic growth and real-world impact 🌍🧬.

🏅 Awards and Honors

  • 🎖️ Doctorate Degree Award – Recognized for excellence in research, 2021

  • 📜 Magister Degree Achievement – Honored for contributions to analytical chemistry, 2009

  • 🏅 Associate Professorship – Earned academic rank at El Oued University

  • 🌐 Research Platform Recognition – Active contributor on Google Scholar and ResearchGate

Publication Top Notes

    • Title: Effect of pH value on the bandgap energy and particles size for biosynthesis of ZnO nanoparticles: Efficiency for photocatalytic adsorption of methyl orange
      Authors: B. Gherbi, S.E. Laouini, S. Meneceur, A. Bouafia, H. Hemmami, M.L. Tedjani, …
      Journal: Sustainability
      Volume/Issue: 14 (18), Article No. 11300
      Year: 2022
      Citations: 88
      🔬 Focus: Photocatalysis, green synthesis of ZnO nanoparticles

    • Title: Biosynthesis and characterization of novel nanocomposite ZnO/BaMg₂ efficiency for high-speed adsorption of AZO dye
      Authors: I. Kir, S.E. Laouini, S. Meneceur, A. Bouafia, H.A.M. Mohammed
      Journal: Biomass Conversion and Biorefinery
      Volume/Issue: 14 (16), pp. 19045–19054
      Year: 2024
      Citations: 53
      ⚗️ Focus: Nanocomposites, dye removal, biosynthesis

    • Title: Removal of hydrocarbons and heavy metals from petroleum water by modern green nanotechnology methods
      Authors: A. Bouafia, S. Meneceur, S. Chami, S.E. Laouini, H. Daoudi, S. Legmairi, …
      Journal: Scientific Reports
      Volume/Issue: 13 (1), Article No. 5637
      Year: 2023
      Citations: 53
      🌿 Focus: Environmental remediation, green nanotech

    • Title: Green synthesis of multifunctional MgO@AgO/Ag₂O nanocomposite for photocatalytic degradation of methylene blue and toluidine blue
      Authors: Y. Zidane, S.E. Laouini, A. Bouafia, S. Meneceur, M.L. Tedjani, S.A. Alshareef, …
      Journal: Frontiers in Chemistry
      Volume: 10, Article ID: 1083596
      Year: 2022
      Citations: 46
      🧪 Focus: Nanocomposites, pollutant degradation

    • Title: A novel biosynthesis of MgO/PEG nanocomposite for organic pollutant removal from aqueous solutions under sunlight irradiation
      Authors: H.A. Mohammed Mohammed, M. Souhaila, L.S. Eddine, G.G. Hasan, I. Kir, …
      Journal: Environmental Science and Pollution Research
      Volume/Issue: 30 (19), pp. 57076–57085
      Year: 2023
      Citations: 45
      ☀️ Focus: Sunlight-driven photocatalysis, water treatment

Conclusion

Souhaila Daoudi demonstrates excellence in research innovation, environmental impact, and scientific collaboration. Her strong publication record, interdisciplinary approach, and commitment to solving environmental problems through sustainable chemistry make her highly deserving of a Best Researcher Award in the fields of environmental chemistry and nanotechnology 🌍🏅.

Silvia Morales de la Rosa | biomass valorization | Best Researcher Award

Dr. Silvia Morales de la Rosa | biomass valorization | Best Researcher Award

Dr. Silvia Morales de la Rosa, Instituto de Catálisis y Petroleoquímica – CSIC, Spain

Silvia Morales de la Rosa 🎓🧪 is a dedicated chemist and researcher at the Instituto de Catálisis y Petroleoquímica (CSIC) in Spain 🇪🇸. With a Ph.D. in Chemistry from Madrid Autonomous University (2015) and over 15 years of experience, her expertise lies in biomass valorization, heterogeneous catalysis, and biofuels 🌿⚗️. Silvia leads European projects like HE FUELGAE and FUELPHORIA 🌍💡, has authored 24 scientific papers 📚, and holds 3 patents. Passionate about sustainable energy and circular economy 🔄🌱, she mentors Ph.D. students and collaborates internationally to drive innovation in renewable fuel technologies 🚀.

Professional Profile:

Scopus

Suitability Summary

Key Strengths

  • Research Excellence: With 24 peer-reviewed publications and 3 patents, Silvia has made impactful contributions to biomass valorization and catalysis.

  • Leadership in European Projects: As PI and Coordinator of multimillion-euro Horizon Europe projects (HE FUELPHORIA – €11M and HE FUELGAE – €5M), she has demonstrated strategic and technical leadership at the European level.

  • Innovative Techniques: Her work spans heterogeneous catalysis, MOFs, tandem catalysis, and flow systems for converting biomass to high-value chemicals like HMF, furfural, and ethanol.

  • Academic Mentorship: She actively mentors Ph.D. and MSc students, shaping the next generation of chemists with excellence in both academic and applied research.

  • Resilience & Dedication: Overcame medical challenges (including cancer treatments) while maintaining a productive and influential research career.

Education and Experience 

  • 🎓 Education:

    • 🎓 PhD in Chemistry – Madrid Autonomous University, Spain (2015)

    • 🎓 Graduate in Chemical Sciences – Valladolid University, Spain (2001)

    💼 Experience:

    • 🧪 Researcher at CSIC’s ICP (2008–Present)

    • 🧪 R&D roles in ANALIZAGUA S.L., AQM Laboratorios, and Ministry of Industry projects (2004–2008)

    • 🔬 Fellowship on chemical research with Repsol & Valladolid University (2001–2003)

    • 🤕 Medical interruptions due to cancer treatment (2004, 2012, 2016–2017)

Professional Development 

Silvia has continuously enhanced her professional development through hands-on industrial research collaborations 🔬🏭, specialization fellowships, and leadership in high-level European projects 🌍📊. She has led project writing, technical-economic planning, and partner engagement for Horizon Europe proposals 📑🤝. Her role as Track Co-Lead at the upcoming NAM29 conference 🧑‍🔬🌎 underscores her active participation in international scientific forums. She mentors Ph.D. candidates and supervises academic theses 📘👩‍🎓, contributing to the academic and practical growth of upcoming scientists. Her work merges lab research with scalable industrial applications, bridging the gap between discovery and deployment ⚗️⚙️.

Research Focus 

Silvia’s research is centered on sustainable energy and green chemistry 🌱⚗️. Her work targets biomass valorization, microalgae processing, and the production of advanced biofuels and e-fuels 🔬🌿. She develops heterogeneous catalytic systems for hydrotreatment, hydrogenation, and selective oxidation processes 🔥🧪. Her innovations aim to convert waste biomass into valuable bio-products under mild, eco-friendly conditions ♻️. With significant achievements like pilot plant construction and patents, Silvia’s focus lies at the intersection of renewable energy, circular economy, and industrial catalysis 🚀🏭. Her projects aim to accelerate the transition toward sustainable fuel alternatives and reduced carbon emissions 🌍💧.

Awards and Honors 

  • 🏆 Magna “Cum Laude” Ph.D. distinction – Madrid Autonomous University

  • 🏅 Track Co-Lead – Biomass & Waste Valorization, NAM29 Conference (2025)

  • 📘 Honors – MSc Thesis Supervision (Marta Lara Serrano, UNED, 2018)

  • 🎖️ PI of CSIC in €11M HE FUELPHORIA project

  • 🌍 Coordinator of €5M Horizon Europe HE FUELGAE project

  • 🧪 Supervised multiple MSc & Ph.D. theses with academic excellence ratings

Publication Top Notes:

1. Lara-Serrano, M.; Morales-delaRosa, S. (AC); Campos-Martín, J.M.; Romero, I.; Castro, E.; Oliva, J. M.; Manzanares, P. (2024)

Title: OrganoCat fractionation of vine shoots for coproduction of bioethanol, furfural, and lignin
Journal: Fuel
Status: Manuscript Under Review

🔍 Summary:
This study explores the OrganoCat process for fractionating vine shoots into three value-added products: bioethanol, furfural, and lignin. The method combines organic acid catalysis and biphasic extraction to enhance product yields. The paper demonstrates a sustainable approach to biomass valorization with significant potential for biorefinery integration.

2. Sboiu, D. M.; Márquez-Medina, M.D.; Lara-Serrano, M.; Campos-Martin, J.M.; Morales-delaRosa, S. (AC) (2024)

Title: Catalytic conversion into 5-hydroxymethylfurfural and furfural by heterogeneous sulfonic acid catalysis in a flowing acetone-water system
Journal: Fuel
Status: Manuscript in Press

🔍 Summary:
This paper presents a continuous-flow system using heterogeneous sulfonic acid catalysts to convert sugars into HMF and furfural, key bio-based platform chemicals. The use of an acetone-water solvent system significantly enhances selectivity and stability. The findings support advances in flow chemistry for biomass-derived chemicals.

3. Cardoza, D.; Contreras, M. Mar; Lara-Serrano, M.; Morales-delaRosa, S.; Campos-Martín, J.M.; Romero, I. (AC); Castro, E. (2024)

Title: Sustainable vine shoots-to-ethanol valorisation by a sequential acid/organosolv pretreatment
Journal: Process Safety and Environmental Protection
Volume: 183
Date: March 2024
Pages: 1059–1070
DOI: https://doi.org/10.1016/j.psep.2024.01.063

🔍 Summary:
This study proposes a two-step pretreatment (acid followed by organosolv) to efficiently convert vine shoot biomass into ethanol. The process enhances hemicellulose and lignin removal, improving cellulose accessibility. Results contribute to low-impact, high-efficiency bioethanol production strategies.

4. Lara-Serrano, M.; Sboiu, D. M.; Morales-delaRosa, S. (AC); Campos-Martin J.M. (AC) (2023)

Title: Selective Fragmentation of Lignocellulosic Biomass with ZnCl₂·4H₂O Using a Dissolution/Precipitation Method
Journal: Applied Sciences (Switzerland)
Volume: 13, Issue 5
Article Number: 2953
DOI: https://doi.org/10.3390/app13052953
Citations: 2
Field-Weighted Citation Impact (FWCI): 1.30

🔍 Summary:
The article presents a novel ZnCl₂·4H₂O-based strategy for selectively fragmenting lignocellulosic biomass. Using a dissolution/precipitation process, it facilitates the isolation of key biomass components under mild conditions. This offers a new pathway for biomass deconstruction in green chemistry applications.

5. Lara-Serrano, M.; Morales-delaRosa, S.; Campos-Martin, J.M. (AC); Abdelkader-Fernández, V.K.; Cunha-Silva, L.; Balula, S.S. (2022)

Title: One-Pot Conversion of Glucose into 5-Hydroxymethylfurfural using MOFs and Brønsted-Acid Tandem Catalysts
Journal: Advanced Sustainable Systems
Volume: 6, Issue 5
Article Number: 2100444
DOI: https://doi.org/10.1002/adsu.202100444
Back Cover Highlight: Cover link
Citations: 10
FWCI: 1.28

Conclusion:

Dr. Silvia Morales de la Rosa represents the ideal profile of a Best Researcher Award recipient: a scientist whose work not only advances theoretical understanding but also provides practical, scalable solutions to global sustainability challenges. Her innovative methodologies, strong leadership, and commitment to mentoring make her an outstanding figure in renewable fuel technologies and circular economy research.

Prof. Maria Ramalhosa | Green chemistry | Women Researcher Award

Prof. Maria Ramalhosa | Green chemistry | Women Researcher Award

Prof. Maria Ramalhosa, Institute of Engineering of Porto, Portugal

📚 Dr. Maria Ramalhosa is an Associate Professor in Chemical Engineering at the Institute of Engineering of Porto, Portugal 🇵🇹. Holding a Ph.D. in Pharmaceutical Sciences 🎓, a Master’s in Food Science and Engineering 🍎, and a Bachelor’s in Food Engineering 🥗, she has a robust academic foundation. A researcher at REQUIMTE-LAQV 🧫, her work emphasizes green chemistry 🌱, biosensors 🔬, and food safety 🥗. With 28 scientific publications 📄, 5 book chapters 📘, and impactful projects like Honey+ 🍯 and Blue Bioeconomy 🌊, Dr. Ramalhosa is a leader in analytical and environmental sciences, fostering global 🌍 collaborations.

Professional Profile:

Scopus

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Suitability for Women Researcher Award: Dr. Maria Ramalhosa

Dr. Maria Ramalhosa is a highly accomplished researcher and academic whose pioneering work in green chemistry, biosensor technology, and food safety exemplifies her dedication to scientific excellence and societal impact. With over three decades of experience as an educator and researcher, Dr. Ramalhosa has significantly contributed to analytical and environmental sciences, advancing innovative solutions for sustainability and public health. Her leadership in projects like Honey+ and FishBioSensing highlights her ability to address global challenges such as ecosystem contamination, sustainable fisheries, and bioeconomy development. These contributions position her as a leading figure in her field and a strong contender for the Women Researcher Award.

Education and Experience 

Education 🎓:

  • Ph.D. in Pharmaceutical Sciences (Analytical Chemistry) – Faculty of Pharmacy, University of Porto (2008–2011) 🧪
  • Master’s in Food Science and Engineering – Catholic University of Portugal (1991–1995) 🍎
  • Bachelor’s in Food Engineering – Catholic University of Portugal (1986–1990) 🥗

Experience 💼:

  • Associate Professor – Institute of Engineering, Polytechnic Institute of Porto (2001–Present) 🏫
  • Higher Education Lecturer – Catholic University of Portugal (1990–2000) 📘
  • Researcher – REQUIMTE-LAQV (2001–Present) 🌱
  • Trainer – Food Quality Control and Hygiene (1997–2000) 🧼

Professional Development 

🔬 Dr. Maria Ramalhosa has consistently advanced in chemical and environmental sciences 🌱, merging education and innovation. A researcher at REQUIMTE-LAQV 🧪, her expertise includes biosensor technologies 🔬, green chemistry 🌍, and food safety 🍴. Dr. Ramalhosa has spearheaded groundbreaking initiatives like Honey+ 🍯 and FishBioSensing 🎣, promoting sustainable practices in bioeconomy and fisheries. Engaged in global 🌎 scientific communities, she publishes extensively 📚 and actively collaborates 🤝 to foster eco-friendly innovations. By attending key conferences 🌟 and contributing to diverse projects, she exemplifies dedication to research excellence and societal impact 🚀.

Research Focus 

🧪 Dr. Maria Ramalhosa’s research bridges Analytical Chemistry, Green Chemistry 🌱, and Environmental Science 🌍. She develops biosensors 🔬 to detect contaminants in ecosystems 🌊, ensures food safety 🍎, and monitors environmental health through bioindicators like honey 🍯. Her projects, such as FishBioSensing 🎣 and iCanSea 🌊, address emerging challenges in sustainable fisheries, aquatic species protection 🐟, and innovative food products 🌿. Focused on ecological balance 🌍 and public health 🚑, Dr. Ramalhosa’s work integrates technology and sustainability 🚀, contributing to bioeconomy advancements 🌱 while mitigating environmental risks 🔬.

Awards and Honors 

  • 🌟 Excellence in Research Award – REQUIMTE-LAQV 🧪
  • 🏆 Outstanding Educator Award – Polytechnic Institute of Porto 🏫
  • 🎖️ Distinguished Trainer Recognition – Food Quality Control Courses 🍴
  • 📜 Recognition for Contributions to Sustainable Fisheries – FishBioSensing Project 🎣
  • 🌍 Global Collaborator Award – International Green Chemistry Conferences 🌱

Publication Top Notes:

  1. “Evaluating the impact of polycyclic aromatic hydrocarbon bioaccumulation in adipose tissue of obese women” (2024) by Sousa, S. et al., Chemosphere, cited by 3. 🌍📄
  2. “Assessment of the Antioxidant Capacity of Commercial Coffee Using Conventional Optical and Chromatographic Methods and an Innovative Electrochemical DNA-Based Biosensor” (2023) by Morais, S.L. et al., Biosensors, cited by 1. ☕🔬
  3. “A Critical Assessment of Extraction Methodologies for the Valorization of Agricultural Wastes: Polyphenolic Profile and Bioactivity” (2023) by Soares, C. et al., Processes, cited by 2. 🌾⚗️
  4. “Moringa oleifera Lam. Commercial Beverages: A Multifaceted Investigation of Consumer Perceptions, Sensory Analysis, and Bioactive Properties” (2023) by Rodrigues, J.F. et al., Foods, cited by 1. 🥤🧪
  5. “Optimization of a simple, effective, and greener methodology for polycyclic aromatic hydrocarbon extraction from human adipose tissue” (2023) by Sousa, S. et al., Analytical Methods, cited by 3. ♻️

 

 

Prof. Masashi Kunitake | Organic synthesis | Best Researcher Award

Prof. Masashi Kunitake | Organic synthesis | Best Researcher Award

Prof. Masashi Kunitake, the Institute of Industrial Nanomaterials / Kumamoto University, Japan

Prof. Masashi Kunitake is a leading Japanese scientist specializing in organic synthesis and industrial nanomaterials. He holds a Ph.D. from Kyushu University and has had a distinguished career at institutions such as Kumamoto University, where he is currently a Professor at the Institute of Industrial Nanomaterials. His research contributions span electrochemistry, helical polymers, and CO2 recycling technology. Prof. Kunitake has held various leadership roles in groundbreaking projects funded by CREST-JST and MEXT, and is dedicated to advancing nanomaterials for sustainable applications. 🌱🔬🌍

Professional Profile:

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Education & Experience

  • Ph.D. in Organic Synthesis, Faculty of Engineering, Kyushu University (1988) 🎓
  • Associate Assistant, Faculty of Engineering, Nagasaki University (1988-1993) 💼
  • Group Leader, “ITAYA Electrochemiscopy Project”, ERATO-JST (1993-1997) 🔬
  • Assistant Professor, Faculty of Engineering, Kumamoto University (1997-2000) 📚
  • Visiting Professor, UCLA, Prof. Gimzewski Group (2004-2005) 🌍
  • Professor, Faculty of Engineering, Kumamoto University (2006-now) 🎓
  • Unit Leader, “Development of Global CO2 Recycling Technology”, Moonshot-NEDO (2020-now) 🌍

Professional Development

Prof. Kunitake has played a pivotal role in developing cutting-edge nanomaterials, particularly in organic synthesis and electrochemistry. He has been a leading figure in various projects such as the “Kimizuka Project” and “New Polymeric Materials Based on Element-Blocks.” His work has also focused on CO2 recycling technologies and sustainable energy. As a professor, he has trained numerous students and led high-impact research groups, contributing significantly to the field of industrial nanomaterials. Prof. Kunitake’s international collaborations, including with UCLA, have furthered his research impact. 🌐💡🔬

Research Focus

Prof. Kunitake’s research revolves around organic synthesis, electrochemistry, and the development of novel nanomaterials. His work has contributed to the development of helical polymers and their applications in various industrial settings. He is particularly focused on sustainability, notably in the field of CO2 recycling and beyond-zero emissions technology. His contributions to the scientific community include advancing polymer science and nanomaterials for industrial applications, with a strong emphasis on eco-friendly solutions. 🌿⚡🌍🔬

Awards & Honors

  • 1992: Award for Encouragement of Research in Polymer Science, The Society of Polymer Science, Japan 🏅
  • 2003: Teaching Award Recommended by Students, Kumamoto University 🏅

Publication Top Notes:

  • “Electrochemistry in bicontinuous microemulsions derived from two immiscible electrolyte solutions for a membrane-free redox flow battery”

    Cited by: 11

  • “Single Crystallization of Cs4PbBr6 Perovskite from Supersaturated Organic Solutions Optimized Through Solubility Studies”

    Cited by: 6

  • “Metal doped polyaniline as neuromorphic circuit elements for in-materia computing”

    Cited by: 3

  • “Infusion of Variable Chemical Structure to Tune Stacking among Metal-Organic Layers in 2D Nano MOF”

    Cited by: 4

  • “Porous gold nanomesh films electrodeposited in toluene-based dynamic soft template”

    Cited by: 4

 

Dr. Martin Masuelli | Biopolymers Awards | Best Researcher Award

Dr. Martin Masuelli | Biopolymers Awards | Best Researcher Award

Dr. Martin Masuelli, National University of San Luis, Argentina

Alberto Martin Masuelli, an accomplished Argentine chemist,  he currently serves as a Research Associate at the Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET) and is a faculty member at the Universidad Nacional de San Luis (UNSL). With a robust academic background in chemistry, he has contributed significantly to studies on surface science, porous media, and polymer chemistry. His expertise spans hydrodynamics, material science, and membrane technology, focusing on novel membrane design for environmental applications. Over the years, Masuelli has published extensively in prestigious journals, earning recognition for his research on polymer biophysics and material characterization. Known for his dedication to scientific advancement, he has made impactful strides in his field, particularly in developing membranes for wastewater treatment, which has solidified his position as a respected researcher and educator in Argentine science.

Professional Profile:

Scopus

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Summary of Suitability for the Award:

Dr. Alberto Martin Masuelli stands out as a strong candidate for the Best Researcher Award due to his extensive research contributions in the fields of chemistry, polymer science, and environmental applications, particularly in wastewater treatment.

🎓Education :

Alberto Masuelli’s educational journey reflects a steadfast commitment to chemistry and material sciences. He began his foundational studies at Dean Abel Balmaceda School, graduating in 1985, and later attended the Industrial Domingo F. Sarmiento School, where he completed a secondary education focused on chemical technology. His higher education took place at the Universidad Nacional de San Luis (UNSL), where he achieved both a Chemist degree (1998) and a Bachelor of Science in Chemistry (1999). Masuelli furthered his expertise with a Master of Science in Surfaces and Porous Media (2003), a degree recognized for excellence by the Argentine National Accreditation Commission (CONEAU). He concluded his academic training with a Doctorate in Chemistry from UNSL in 2007, again categorized as “A” by CONEAU, underscoring his academic distinction and his focus on advanced research in surface science, material physics, and membrane technology.

🏢Experience:

Alberto Masuelli’s career in research and academia is marked by impactful roles, primarily under the Argentine National Scientific and Technical Research Council (CONICET). In 2010, he began his affiliation with CONICET as an internal postgraduate scholar, transitioning to a Research Assistant role in 2011. By 2017, he advanced to the position of Research Associate, an acknowledgment of his contributions and expertise. At the Universidad Nacional de San Luis, Masuelli has been pivotal in academic research, particularly in polymer science, hydrodynamics, and membrane technologies. His work has been instrumental in developing charged ion-exchange and ultrafiltration membranes aimed at mitigating industrial pollution and advancing sustainable chemistry applications. His research collaborations and teaching roles reflect his commitment to both scientific inquiry and mentoring emerging talent in chemistry and material sciences, enhancing the academic landscape in Argentina.

🏅Awards and Honors :

Alberto Masuelli’s contributions to chemistry have been recognized with various honors and awards throughout his career. His work with CONICET, a prestigious scientific institution in Argentina, underscores his commitment to advancing scientific knowledge in chemistry and materials science. His Master’s and Doctorate, both rated “A” by CONEAU, exemplify his excellence in research and academia. Additionally, his publications in high-impact journals, such as the Journal of Membrane Science and International Journal of Biological Macromolecules, reflect his esteemed reputation in the scientific community. Masuelli’s work on ultrafiltration membranes and polymer biophysics has attracted international attention, positioning him as a leading researcher in membrane technology. His research contributions continue to receive acclaim, highlighting his dedication to addressing environmental challenges through science and innovation.

🔬Research Focus :

Alberto Masuelli’s research focuses on material science, polymer chemistry, and hydrodynamics, with an emphasis on creating innovative solutions for environmental challenges. His studies delve into the characteristics of polymers and biopolymers, exploring their hydrodynamic properties and behavior under varying conditions. A significant part of his work centers on membrane technologies, specifically ultrafiltration and ion-exchange membranes, which have applications in wastewater treatment and pollutant removal. Masuelli’s research aims to enhance membrane efficacy and durability, making them more adaptable to industrial needs. His studies in viscometry and rheology of natural gums and biopolymers expand understanding of these materials, contributing to their industrial applicability. By addressing issues such as fouling resistance and ion-exchange capacities in membranes, Masuelli’s work provides sustainable and efficient alternatives for waste management, aligning with global environmental goals.

PUblication Top Notes:

  • Title: Gum tragacanth hydrogels for high methylene blue adsorption
    • Citations: 1
  • Title: Rheology of aqueous solutions of brea gum: Bimodal flow curves and (apparent) negative activation energies
    • Citations: 1
  • Title: Advanced Pharmacy (Book)
  • Title: Intrinsic viscosity methods in natural polymer as pharmaceutical excipients (Book Chapter)
  • Title: Synthesis and Characterization of Chanar Gum Films
    • Citations: 3