Rama Talat Rashad | Environmental | Best Researcher Award

Prof. Rama Talat Rashad | Environmental | Best Researcher Award

Head Researcher at Soils, Water and Environment Research Institute, Agricultural Research Center,Giza, Egypt.

Dr. Rama Talat Rashad 🌾 is a prominent researcher at the Soil, Water and Environmental Research Institute, Agricultural Research Center, Egypt 🇪🇬. With over 21 publications 📚 and 172 citations 📊, her work significantly advances sustainable agriculture 🌱, environmental remediation 🌍, and soil management. She holds a Web of Science ResearcherID: O-4633-2018 and ORCID: 0000-0002-5977-2465. Her research includes magnetic seed/water treatment, salinity control, and eco-friendly soil amendments. As an active reviewer 🧐 for top journals like Scientific Reports and Geoderma, she has completed 32 manuscript reviews, reinforcing her role as a respected voice in the global soil science community. 🌐

Professional Profile:

ORCID

Suitability for Best Researcher Award – Dr. Rama Talat Rashad

Dr. Rama Talat Rashad is a highly suitable candidate for the Best Researcher Award, based on her impactful research in soil science, environmental sustainability, and agricultural innovation. Her strong publication record, interdisciplinary focus, and dedication to applied research make her a valuable contributor to global efforts in sustainable agriculture and soil health. With over a decade of research experience, 21 published articles (15 in WoS-indexed journals), and an H-index of 6, Dr. Rashad’s scholarly work reflects both quality and relevance.

🎓 Education & Experience

  • 🎓 Ph.D. in Soil Science, Egypt 🇪🇬 (Institution details not provided)

  • 🎓 M.Sc. in Soil and Environmental Sciences

  • 📍 Senior Researcher, Soil, Water and Environmental Research Institute, ARC, Egypt

  • 🧪 10+ years of experience in soil remediation, salinity management, and sustainable agriculture

  • 📝 Published 21 research articles, including 15 indexed in Web of Science

🌐 Professional Development

Dr. Rashad actively engages in continuous professional development through collaborations, peer reviews, and advanced research projects 🔬. She has contributed 32 peer reviews 🧾 for renowned journals such as Scientific Reports, Archives of Agronomy and Soil Science, and Geoderma, highlighting her scholarly engagement. Her participation in national and international research collaborations 🤝, workshops, and interdisciplinary initiatives promotes innovation in soil sustainability 🌍. Through her applied studies on magnetic treatments and eco-friendly amendments, she bridges scientific research with practical agricultural applications 🌱. Dr. Rashad’s dedication to research quality and integrity is evident in both her authorship and reviewing roles 📖.

🔬 Research Focus Category

Dr. Rashad’s research lies at the intersection of soil science, environmental sustainability, and agricultural innovation 🌿. Her work targets critical issues such as salinity management, pesticide remediation, and soil fertility enhancement using novel techniques like magnetically treated water and seeds 💧🧲. She also investigates the role of silicon fertilizers and mesoporous materials in improving plant resilience in sandy soils. With a strong emphasis on eco-friendly and sustainable agriculture 🌍, her studies provide practical solutions for improving crop productivity and soil health under harsh environmental conditions. Her interdisciplinary approach integrates chemistry, environmental science, and agronomy 🌾.

🏅 Awards and Honors

  • 🏆 Recognized reviewer for top journals like Scientific Reports, Geoderma, and Archives of Agronomy and Soil Science

  • 📊 Achieved an H-index of 6 with 172 total citations

  • 📚 Authored 21 research publications, including 15 in WoS Core Collection

  • 🥇 Invited to review 31+ manuscripts across multiple international platforms

  • 🌟 Acknowledged contributor in environmental remediation and soil sustainability research

Publication Top Notes

  • 🧪 “Effect of Crop Rotations and Continuous Fertilization on the Status of Silicon (Si) Available in Soil in a 97-Year Permanent Experiment”

    • Authors: Rama T. Rashad, Mohamed R. El-Zanaty, Rania A. El-Bialy

    • Year: 2020

    • Summary: This study examines the long-term effects of crop rotations and continuous fertilization on the availability of silicon in soil, highlighting the importance of sustainable agricultural practices in maintaining soil health.

  • 🌾 “Agronomic Efficiency of Feldspar, Quartz Silica, and Zeolite as Silicon (Si) Fertilizers in Sandy Soil”

    • Authors: Rama T. Rashad, Rashad A. Hussien

    • Year: 2020

    • Summary: The research assesses the effectiveness of natural silicon-rich minerals—feldspar, quartz silica, and zeolite—as fertilizers in sandy soils, demonstrating their potential to enhance soybean yield and nutrient uptake.

  • 💧 “Silicon (Si) Use Efficiency in Sandy Soil Amended by Si-Loaded Hydrogel”

    • Author: Rama T. Rashad

    • Year: 2020

    • Summary: This paper explores the use of silicon-loaded hydrogels to improve silicon availability in sandy soils, offering insights into innovative soil amendment strategies for better crop performance.

  • 🧴 “Synthesis of Mesoporous Silica-Polymer Composite for the Chloridazon Pesticide Removal from Aqueous Media”

    • Authors: El-Said W.A., El-Khouly M.E., Ali M.H., Rashad R.T., Elshehy E.A., Al-Bogami A.S.

    • Year: 2018

    • Summary: The study presents the development of a mesoporous silica-polymer composite material designed to effectively remove chloridazon pesticide from water, contributing to environmental remediation efforts.

  • 🌱 “Relationship Between the Absorption Behavior of Iron and Silicon by Plant and the Macronutrients Affected by Some Sandy Soil Additives”

    • Author: Rama T. Rashad

    • Year: 2017

    • Summary: This research investigates how certain soil additives influence the absorption of iron and silicon by plants, as well as their interaction with macronutrients, providing guidance for soil fertility management.

  • 🌿 “Effect of Magnetic Iron Oxide Combined with Some Additives on the Yield of Groundnut, Wheat and Nutrient Availability in Sandy Soil”

    • Author: Rama T. Rashad

    • Year: 2015

    • Summary: The paper examines the impact of applying magnetic iron oxide along with other additives on the yield of groundnut and wheat crops, as well as on nutrient availability in sandy soils.

  • 🌾 “Partial Replacement of the Mineral Nitrogen Fertilizers by Organic Alternatives in Sandy Soils”

    • Author: Rama T. Rashad

    • Year: 2015

    • Summary: This study explores the feasibility of substituting mineral nitrogen fertilizers with organic alternatives in sandy soils, aiming to promote sustainable agriculture and reduce chemical inputs.

  • 🌽 “A Comparison Study on the Effect of Some Growth Regulators on the Nutrients Content of Maize Plant Under Salinity Conditions”

    • Authors: Rama T. Rashad, Rashad A. Hussien

    • Year: 2014

    • Summary: The research compares the effects of various growth regulators on the nutrient content of maize plants grown under saline conditions, offering strategies to mitigate salinity stress in crops.

Conclusion

Dr. Rama Talat Rashad stands out as a dedicated, innovative, and productive researcher whose contributions to soil science and sustainable agriculture have both academic and practical value. Her consistent publication record, recognized peer-review service, and commitment to solving real-world environmental challenges make her an excellent choice for the Best Researcher Award.

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.

Dr. Manuela Mauro | Biodiversity | Best Researcher Award

Dr. Manuela Mauro | Biodiversity | Best Researcher Award

Dr. Manuela Mauro, University of Palermo, Italy

Dr. Manuela Mauro (b. May 19, 1990) is a researcher (RTT, BIO/05) at the University of Palermo, specializing in zoology and biodiversity conservation. With a Ph.D. in Mediterranean Biodiversity from the University of Palermo and the Polytechnic University of Valencia, she focuses on biodiversity monitoring, environmental DNA analysis, and aquatic ecosystem health. She has published 45 scientific papers, accumulating 515 citations with an h-index of 15. Dr. Mauro is an expert in marine invertebrates, bioactive molecules, and environmental stress responses, contributing to teaching, research, and conservation initiatives across academia and applied sciences. 🌊🔬📚

Professional Profile:

Scopus

Orcid

Suitability for Best Researcher Award 🏆🔬

Dr. Manuela Mauro is a highly suitable candidate for a Best Researcher Award due to her exceptional contributions to zoology, biodiversity conservation, and environmental monitoring. Her extensive research portfolio, academic excellence, and impact on marine conservation science make her a strong contender for this recognition.

Education & Experience 🎓👩‍🔬

  • Ph.D. in Mediterranean Biodiversity (Doctor Europaeus, Cum Laude) – Univ. of Palermo & Polytechnic Univ. of Valencia (2020) 🎓🔬
  • Researcher (RTT, BIO/05) – University of Palermo (2024–Present) 🏛️🔬
  • Researcher (RTDA, PON-GREEN) – Univ. of Palermo (2021–2024) 🌿🌊
  • National Scientific Qualification for Associate Professor (Zoology & Anthropology, 2023) 🏅📖
  • Master’s in Environmental Sciences – Univ. of Palermo (2014, 110/110 cum laude) 🌍🧪
  • Bachelor’s in Natural Sciences – Univ. of Palermo (2012, 110/110 cum laude) 🦋📘
  • Scientific High School Diploma (2008, Grade 100) 🏫📜

Professional Development 📚💡

Dr. Mauro has undergone extensive professional training, enhancing her expertise in environmental sciences, biodiversity, and zoology. She has completed courses in university teaching methodologies, statistics, and foreign languages (Spanish & English). Her international training includes advanced courses in marine ecosystem monitoring, underwater acoustics, and animal health in aquaculture at institutions such as the Polytechnic University of Valencia, University of Murcia, and University of Padua. She has also participated in summer schools and specialized workshops on marine biodiversity, environmental conservation, and laboratory safety. Her diverse training has strengthened her ability to address critical ecological challenges. 🌊📊🦠

Research Focus 🔬🌿

Dr. Mauro’s research is centered on marine biodiversity, conservation biology, and environmental monitoring. Her work focuses on evaluating the impact of human activities, including mining extraction in ocean depths, pollution, and habitat degradation, on aquatic ecosystems. She specializes in environmental DNA (eDNA) analysis, marine invertebrate biology, and bioactive molecules. Her research contributes to biodiversity restoration efforts, including the reintroduction of native aquatic species. Additionally, she investigates the immune responses of aquatic organisms to environmental stressors, advancing knowledge in ecological resilience, conservation strategies, and sustainable aquaculture practices. 🌊🦑🧬

Awards & Honors 🏆🎖️

  • National Scientific Qualification for Associate Professor (Zoology & Anthropology, 2023) 🎓🏅
  • Doctor Europaeus Title for Ph.D. in Mediterranean Biodiversity (2020) 🌍📖
  • Ph.D. Cum Laude – University of Palermo & Polytechnic University of Valencia (2020) 🎖️🔬
  • Master’s Degree with 110/110 Cum Laude – University of Palermo (2014) 🏆🎓
  • Bachelor’s Degree with 110/110 Cum Laude – University of Palermo (2012) 📜🥇
  • Scientific High School Diploma with Grade 100 (2008) 🏫🌟

Publication Top Notes:

  • “Bioactive Molecules from the Invasive Blue Crab Callinectes sapidus Exoskeleton: Evaluation of Reducing, Radical Scavenging, and Antitumor Activities” (2025) . 🦀🧪
  • “Bioactive Molecules from the Exoskeleton of Procambarus clarkii: Reducing Capacity, Radical Scavenger, and Antitumor and Anti-Inflammatory Activities” (2024) – 1 citation. 🦞🧫
  • “Effects of seismic water guns on the peristomial membrane of sea urchins (Arbacia lixula, Linnaeus 1758)” (2024) . 🌊🦔
  • “Physiological responses of Holothuria grisea during a wound healing event: An integrated approach combining tissue, cellular and humoral evidence” (2024) 🧬🐚
  • “Contamination Profiles of Selected Pollutants in Procambarus clarkii Non-Edible Portions Highlight Their Potential Exploitation Applications” (2024) – 3 citations. 🦐⚗️

 

 

Dr. Franklin Lozano | decolorization | Best Researcher Award

Dr. Franklin Lozano | decolorization | Best Researcher Award

Dr. Franklin Lozano, Universidad Nacional Micaela Bastidas de Apurimac, Peru

Franklin Lozano Cusi 🇵🇪, born on January 4, 1992, is an Associate Professor and Researcher at the Universidad Nacional Micaela Bastidas de Apurímac (UNAMBA). With a Master’s in Investment Projects 🎓 and a Bachelor’s in Agroindustrial Engineering 🌾, he specializes in sustainable innovations in natural fibers and native crops. His research spans the decolorization of alpaca fibers 🦙, the properties of native potatoes 🥔, and eco-friendly dyeing techniques 🌱. Fluent in Quechua, Spanish, and English 🌍, Franklin is an advocate for indigenous heritage and scientific advancement. He actively contributes to patent management and scientific research at UNAMBA. 📚✨

Professional Profile:

Orcid

Scopus

Suitability for Best Researcher Award

Franklin Lozano Cusi is a remarkable candidate for the Best Researcher Award due to his groundbreaking contributions to sustainable agroindustrial practices and innovative use of Andean natural resources. His research focuses on eco-friendly processes, biodiversity preservation, and the integration of indigenous heritage into modern science, aligning perfectly with global sustainability goals.

Education and Experience 

🎓 Education:

  • Master’s Degree in Projects of Investment, Universidad Tecnológica de los Andes (2022–2023)
  • Bachelor’s Degree in Agroindustrial Engineering, Universidad Nacional Micaela Bastidas de Apurímac

💼 Professional Experience:

  • Patent and Intellectual Property Manager (2023–Present): UNAMBA
  • Scientific Research Manager (2023): UNAMBA
  • Auxiliary Technical Staff (2017–2018): Promofarma S.A. 🧪
  • Assistant (2016): Agroindustria Bella Abanquina S.A.C. 🌽

Professional Development 

Franklin Lozano Cusi actively promotes scientific innovation and sustainability at UNAMBA 🌿. As a Patent and Intellectual Property Manager, he advises on protecting creative works and fostering research 📜. His role as a Scientific Research Manager emphasizes guiding projects that explore native resources and eco-friendly practices 🌾. He excels in promoting the value of Andean biodiversity, such as alpaca fibers 🦙 and native potatoes 🥔. Franklin also bridges cultural and scientific perspectives by leveraging his multilingual proficiency 🌎. His commitment to knowledge dissemination and applied research ensures impactful contributions to agroindustrial and environmental advancements 🌟.

Research Focus 

Franklin Lozano Cusi focuses on sustainable development and agroindustrial innovation 🌾. His research explores the eco-friendly decolorization of alpaca fibers 🦙 using hydrogen peroxide, emphasizing their enhanced quality for global markets. He evaluates the morphological, nutritional, and antioxidant properties of native potato varieties 🥔, championing their value for local and international cuisine. Franklin’s work on natural dyeing techniques 🌱, employing sustainable mordants like alum and lemon salt, contributes to reducing the environmental impact of traditional textile processes. His dedication bridges Andean heritage with modern technology, creating sustainable solutions for rural communities and industries alike ✨.

Awards and Honors 

  • 🏆 Recognized for outstanding contributions to sustainable alpaca fiber research.
  • 🎖 Honored for promoting the value of native potato varieties in agroindustrial applications.
  • 🌟 Commended for advancing eco-friendly textile dyeing techniques.
  • 📜 Recognized for excellence in patent and intellectual property management.

Publication Top Notes:

  • 🥔 Morphological, Nutritional Characteristics, and Antioxidant Compounds of Ten Native Potato Varieties from Apurímac – Cited by: 1
  • 🍄 Pre-treatments and Drying Methods on the Physicochemical and Sensory Characteristics of Wild Mushrooms (Suillus luteus) from ApurímacCited by: 1
  • 🌈 Comparisons of the Fourier Transform Infrared Spectroscopy (FTIR), Colorimetric Parameters, and Percentage of Medullation in Vicuña FibreCited by: 2
  • 🧴 Fibre Bleaching with Hydrogen Peroxide and Percentage of Medullation in Black and Brown Huacaya AlpacaCited by: 2
  • 🦙 Comparing Fiber Quality Characteristics and Staple Length in Suri and Huacaya AlpacasCited by: 4

 

 

Dr. Anjana P Anantharaman | Oxide Fuel Cell | Best Researcher Award

Dr. Anjana P Anantharaman | Oxide Fuel Cell | Best Researcher Award

Dr. Anjana P Anantharaman, National Institute of Technology Warangal, India

Dr. Anjana P. Anantharaman is an Assistant Professor in the Department of Chemical Engineering at the National Institute of Technology, Warangal, India. Her research focuses on novel materials for clean energy, specifically Solid Oxide Fuel Cells (SOFC) and high-temperature oxidation reactions. Dr. Anantharaman earned her Ph.D. in Chemical Engineering from the National Institute of Technology Karnataka, Surathkal, where her research centered on catalysis and nanomaterials. She has led several significant projects, including the development of pyrochlore nanomaterials and catalysts for various energy applications, and holds a patent for a novel solid oxide fuel cell anode material. With 24 publications in esteemed journals and contributions to several book chapters, she is a recognized figure in the fields of heterogeneous catalysis and sustainable energy solutions.

Professional Profile:

Google Scholar

Summary of Suitability for the Best Researcher Award

Dr. Anjana P. Anantharaman is highly deserving of the Best Researcher Award due to her outstanding contributions to chemical engineering, particularly in the fields of clean energy and environmental sustainability. Her innovative research projects, substantial publication record, and patent filing illustrate her commitment to advancing science and technology for a sustainable future. Recognizing her achievements through this award will not only honor her individual accomplishments but also inspire future researchers in the field

🎓Education:

Dr. Anjana P. Anantharaman holds a Ph.D. in Chemical Engineering from the National Institute of Technology Karnataka, Surathkal, which she completed between December 2015 and January 2019, focusing her research on catalysis, nanomaterials, energy, and environmental applications. Prior to her Ph.D., she earned her M.Tech in Energy Engineering from the National Institute of Technology Trichy from 2013 to 2015, where her research centered on catalysis and biodiesel. Dr. Anantharaman completed her B.Tech in Chemical Engineering at the Government Engineering College, Kozhikode, from 2009 to 2013, during which she undertook a project on the design of a heat exchanger for a dye plant at BASF in Mangalore.

🏢Work Experience:

Dr. Anjana P. Anantharaman is currently an Assistant Professor in the Department of Chemical Engineering at the National Institute of Technology, Warangal, India, a position she has held since November 2019. Her research centers on novel materials for clean energy, specifically Solid Oxide Fuel Cells (SOFC) and high-temperature oxidation reactions. Prior to this, she served as an Assistant Professor at the SRM Institute of Science and Technology in Chennai, India, from July 2018 to November 2019, where she focused on catalyst activity and waste-to-energy conversion. Additionally, Dr. Anantharaman briefly worked as an Assistant Professor in the Department of Petroleum Engineering at the Global Institute of Technology in Vellore, Tamil Nadu, India, in August 2015, concentrating on chemical process calculations.

🏅Awards:

Dr. Anjana P. Anantharaman has secured several prestigious grants for her research initiatives. She is the Principal Investigator for a SERB grant focused on the development of single-crystal pyrochlore nanomaterial for intermediate temperature Solid Oxide Fuel Cells (SOFC), amounting to ₹24,64,000. Additionally, she received an ISRO grant for catalyst development aimed at hydrogen peroxide dissociation for monopropellant thrusters, totaling ₹24,97,130. Furthermore, she leads a project funded by NITW to develop a nano-structured catalyst for carbon monoxide oxidation, with a budget of ₹5,00,000.

Publication Top Notes:

  • Potential of pyrochlore structure materials in solid oxide fuel cell applications
    • Cited by: 99
  • Studies on biodiesel production from Pongamia oil using heterogeneous catalyst and its effect on diesel engine performance and emission characteristics
    • Cited by: 39
  • Soot oxidation activity of redox and non-redox metal oxides synthesised by EDTA–citrate method
    • Cited by: 26
  • Utilization of limestone derived calcium oxide for biodiesel production from non‐edible pongamia oil
    • Cited by: 19
  • Surface morphology and phase stability effect of Ceria-Hafnia (CHx) binary metal oxides on soot oxidation activity
    • Cited by: 15

 

 

Mr.Mohamed El Ouardi | Remediation technology Awards | Best Researcher Award

Mr.Mohamed El Ouardi | Remediation technology Awards | Best Researcher Award

Mr.Mohamed El Ouardi  , University of Toulon , France

Dr. Mohamed El Ouardi is a PhD student at Mohammed V University, Rabat, Morocco, and Toulon University, France, specializing in materials chemistry with a focus on nanomaterials for environmental applications. His doctoral research, titled “Role of nanostructuring/hierarchisation of catalytic oxides: application to the conversion and recovery of pollutants by electro-photocatalytic processes,” explores innovative approaches to pollutant conversion and recovery. Dr. El Ouardi holds a Master’s degree in Physical Chemistry and Materials Analysis from Hassan II University and a Bachelor’s degree in Chemistry of Materials Sciences from the University of Ibn Zohr. His professional experience includes teaching roles at Toulon University and significant contributions to research publications on photocatalysis and nanomaterials. His skills encompass electrochemical measurements, heterogeneous catalysis, and advanced spectroscopy techniques.

Professional Profile:

Scopus

Orcid

Suitability Summary for Research for Best Researcher Award: Mohamed El Ouardi

Research Background and Expertise: Mohamed El Ouardi is a PhD student specializing in applied materials chemistry with a focus on environmental applications. His research primarily revolves around the synthesis of materials and nanomaterials for catalytic processes aimed at pollutant conversion and recovery. His thesis, conducted under a cotutelle agreement between Mohammed V University and Toulon University, investigates the role of nanostructuring in catalytic oxides for electro-photocatalytic processes.

🎓Education:

Dr. Mohamed El Ouardi is currently pursuing a Ph.D. in Materials Chemistry through a cotutelle program at Mohammed V University, Rabat, Morocco, and Toulon University, France. His research focuses on the “Role of Nanostructuring/Hierarchisation of Catalytic Oxides: Application to the Conversion and Recovery of Pollutants by Electro-Photocatalytic Processes.” He holds a Master of Science in Physical Chemistry and Materials Analysis from the Faculty of Science and Technology at Hassan II University, Casablanca, Morocco (2019), and a Bachelor of Science in Chemistry of Materials Sciences from the University of Ibn Zohr, Faculty of Science, Agadir, Morocco (2017). Dr. El Ouardi completed his High School Diploma in Physical Sciences at Ibn Batouta High School, Tan-Tan, Morocco, in 2014.

🏢Work Experience:

Dr. Mohamed El Ouardi is a Ph.D. student at Toulon University, France, where he also holds a part-time teaching position. Since 2023, he has been responsible for teaching practical work in Chemistry of Liquid Compartments. In 2022, he conducted tutorials and practical work in the same field. Additionally, he participated in supervising end-of-studies master’s projects at Toulon University during that year.

🏆Awards and Recognitions:

Dr. Mohamed El Ouardi has authored several notable research papers published in leading journals. His contributions include the article “MXenes as Electrocatalysts for Energy Conversion Applications: Advances and Prospects” in Advanced Energy and Sustainability Research. He has also co-authored “Current Advances on Nanostructured Oxide Photoelectrocatalysts for Water Splitting: A Comprehensive Review” in Surfaces and Interfaces, and “Review of Photoelectrochemical Water Splitting: From Quantitative Approaches to Effects of Sacrificial Agents” in the International Journal of Hydrogen Energy. Additionally, his work on “Synthesis of ZnV2O6 Nanosheet Photocatalysts for Efficient Photodegradation of Rhodamine B” was featured in the Journal of Environmental Chemical Engineering.

Publication Top Notes:

  • “Synthesis of ZnV2O6 Nanosheet Photocatalysts for Efficient Photodegradation of Rhodamine B: Experimental and RSM Modeling”
  • “Polyester Fabric Supported Graphene Oxide/Cu-Ag Bimetallic Nanoparticles as a ‘Dip Catalyst’ for the Reduction of p-Nitrophenol and Organic Dyes”
  • “An Innovative Diatomite-Polypyrrole Composite for Highly Efficient Cr (VI) Removal Through Optimized Adsorption via Surface Response Methodology”
  • “Design of Bismuth Tungstate Bi2WO6 Photocatalyst for Enhanced and Environmentally Friendly Organic Pollutant Degradation”
  • “Current Advances on Nanostructured Oxide Photoelectrocatalysts for Water Splitting: A Comprehensive Review”

 

 

 

Dr.Giuseppe Bagnato | Carbon-free Awards | Best Researcher Award

Dr.Giuseppe Bagnato | Carbon-free Awards | Best Researcher Award

Dr.Giuseppe Bagnato , Lancaster University , United Kingdom

Dr. Giuseppe Bagnato is a highly accomplished chemical engineer specializing in catalytic processes and sustainable technologies, particularly in the context of net-zero carbon initiatives. With a solid background in both academia and research, Dr. Bagnato has made significant contributions to the fields of chemical recycling, hydrogen storage, and biomass conversion. He currently holds a position as a Lecturer in Chemical Engineering at Lancaster University, where he combines teaching, research, and industry engagement.

Professional Profile:

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Giuseppe Bagnato, Ph.D. – Suitability for Best Researcher Award

Summary:

Dr. Giuseppe Bagnato is an exemplary candidate for the Best Researcher Award due to his significant contributions and achievements in the field of Chemical Engineering. His current role as a Lecturer at Lancaster University demonstrates his commitment to advancing net-zero carbon themes and his involvement in both teaching and cutting-edge research.

🎓Education:

In 2022, an individual pursued a Postgraduate Certificate (PgCert) in Learning and Teaching in Higher Education at Teesside University in the UK, achieving an EQF Level 7 qualification. Prior to this, they completed a Ph.D. in Chemical Engineering at Heriot-Watt University in the UK, between June 2016 and April 2020. Their doctoral research focused on the catalytic conversion of biomass into fuels and commodity chemicals, culminating in an EQF Level 8 qualification.

🔬Research Experience:

Between April and July 2023, an individual served as a Visiting Scholar at Ca’ Foscari Venice University, where their research centered on the hydrodeoxygenation reaction of bio-oil using mono- and bi-metallic catalysts. Prior to this, they were a Visiting Scholar at Heriot-Watt University from July to September 2022, focusing on novel materials for CO2 utilization. From August 2020 to October 2021, they worked as a Research Fellow at Queen’s University Belfast, where their research covered areas such as reactive extractions, gas/liquid separations, and ionic liquids. Additionally, they held the position of Research Associate at Heriot-Watt University from February to July 2020, working on a project that involved the technical and economic assessment of biorefineries.

🏢Teaching Experience:

Since September 2022, this individual has been serving as a Lecturer in Chemical Engineering at Lancaster University, where they teach modules on Hydrogen and Fuel Cell Technologies, as well as the Chemical Process Design Project. Before this, from October 2021 to September 2022, they were a Lecturer in Engineering at Teesside University, where they instructed students on Sustainability in Chemical Engineering and Environmental and Sustainable Processing. Prior to that, from September 2020 to October 2021, they were a Teaching Fellow at Queen’s University Belfast, teaching modules on Chemical Plant Design and Heat and Mass Transfer.

Publication Top Notes:

  • “Stabilization of the Aqueous Phase Fraction of Pine Wood Bio-Oil Using Zirconia-Supported Fe/Cu/Pd Nano-Catalysts Under Mild Conditions”
  • “Chemical Recycling of Polyethylene Terephthalate, an Industrial and Sustainable Opportunity for Northwest of England”
  • “Conceptual Evaluation of an Integrated CCU Technology Based on Na-Salts pH Swing Mineral Carbonation”
  • “Highly Selective Hydropyrolysis of Lignin Waste to Benzene, Toluene and Xylene in Presence of Zirconia Supported Iron Catalyst”
  • “Development of Ru-PEEK-WC Catalytic Membrane Using a More Sustainable Solvent for Stable Hydrogenation Reactions”

 

 

 

Assist. Prof. Dr. Alex Joseph | Electrosynthesis Awards | Best Faculty Award

Assist. Prof. Dr. Alex Joseph | Electrosynthesis Awards | Best Faculty Award

Assist. Prof. Dr. Alex Joseph , Newman College Thodupuzha , India

Dr. Alex Joseph, born on May 25, 1982, is an accomplished chemist with extensive experience in teaching and research. He completed his Ph.D. in Material Engineering at the Indian Institute of Science, Bangalore, where he specialized in the synthesis and characterization of functionalized electroactive polymers for metal ion sensing. Dr. Joseph has held several academic and administrative roles, including Assistant Professor of Chemistry at Newman College Thodupuzha, and Coordinator for Indira Gandhi National Open University at the same institution. His postdoctoral research at The City College of New York focused on bimetallic transition hierarchical structures for green hydrogen synthesis. Dr. Joseph has been awarded several fellowships and awards, including the Chief Minister’s Nava-Kerala Post-Doctoral Fellowship and a research experience fellowship from the Science and Engineering Research Board, Government of India. His work has significantly contributed to the fields of organic synthesis, nanostructures, polymer synthesis, and electrochemistry.

Professional Profile:

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🎓 Education:

Alex Joseph completed his Post-Doctoral research at The City College of New York, USA, from August 2022 to February 2023, where he focused on the development of bimetallic transition hierarchical structures for green hydrogen synthesis under the guidance of Prof. George John. He earned his Ph.D. in Material Engineering from the Indian Institute of Science, Bangalore, India, between August 2007 and December 2014. His doctoral thesis was centered on the synthesis and characterization of functionalized electroactive polymers for metal ion sensing. Prior to his doctoral studies, Alex received his Master of Science degree in Chemistry from Newman College, Thodupuzha, affiliated with Mahatma Gandhi University, Kottayam, Kerala, from 2002 to 2004. His dissertation explored the mechanical properties of banana fiber reinforced polystyrene composites. Additionally, he holds a Bachelor of Science degree in Chemistry, Physics, Mathematics, and Environmental Chemistry from Newman College, Thodupuzha (1999-2002), and a Bachelor of Education in Physical Science from Mahatma Gandhi University Centre for Teacher Education, Thodupuzha (2005-2006).

🔬 Research and Projects:

Alex Joseph led a project titled “Selective Augmentation of Research and Development (SARD)” which was funded by the Kerala State Council for Science, Technology, and Environment with a budget of ₹32,00,000 from October 2016 to September 2019. Additionally, he worked on a significant project focused on the development of chemically modified electroactive polymers and nanoparticles for the electrochemical detection of heavy metal ions. This research, funded by the Department of Science and Technology (DST), received financial support amounting to ₹27,04,880 and was conducted from October 2017 to September 2020.

🏅 Fellowships and Awards:

Alex Joseph has been awarded several prestigious fellowships and recognitions throughout his academic career. In 2022, he received the Chief Ministers Nava-Kerala Post-Doctoral Fellowship and the Science International Research Experience fellowship sponsored by the Science and Engineering Research Board (SERB-SIRE). He was awarded the Junior Research Fellowship by the Council for Scientific and Industrial Research (CSIR-JRF) in December 2007. Additionally, Alex has demonstrated academic excellence by qualifying in major competitive examinations, scoring 85.5% in the Graduate Aptitude Test in Engineering (GATE) in February 2007, and successfully passing the National Eligibility Test (NET) in June 2007 and the State Eligibility Test (SET) in August 2007.

Publication Top Notes:

  1. “Microwave assisted green synthesis of silver nanoparticles for optical, catalytic, biological and electrochemical applications”
    • Journal: Artificial cells, nanomedicine, and biotechnology, 49(1), 438-449 (2021)
    • Cited by: 33
  2. “Synthesis and characterization of high molecular weight polyaniline for organic electronic applications”
    • Journal: Polymer Engineering & Science, 52(8), 1821-1830 (2012)
    • Cited by: 33
  3. “Lead ion sensor with electrodes modified by imidazole-functionalized polyaniline”
    • Journal: Microchimica Acta, 177, 317-323 (2012)
    • Cited by: 27
  4. “Imidazole functionalized polyaniline: synthesis, characterization, and Cu (II) coordination studies”
    • Journal: Journal of Applied Polymer Science, 123(1), 526-534 (2012)
    • Cited by: 26
  5. “Iminodiacetic acid functionalized polypyrrole modified electrode as Pb (II) sensor: synthesis and DPASV studies”
    • Journal: Electrochimica Acta, 137, 557-563 (2014)
    • Cited by: 22