Reda Sheha | Chemical Engineering | Best Researcher Award

Reda Sheha | Chemical Engineering | Best Researcher Award

Prof. Dr Reda Sheha, AEAE, Egypt

Prof. Dr. Reda Sheha is a renowned academic in Inorganic Chemistry, specializing in radiochemistry and nuclear chemistry. With a Ph.D. from Ain Shams University, he has held prestigious roles, including Professor at the Atomic Energy Authority and Head of the Nuclear Chemistry Department. His research focuses on radionuclide separation, environmental monitoring, and waste treatment, with numerous top-ranking publications. Dr. Sheha has received multiple honors, including awards from the Egyptian Atomic Energy Authority and Balkan Environmental Association. He has contributed significantly to environmental and nuclear science, presenting at international conferences and publishing widely. πŸ§ͺπŸŒπŸ“šπŸ”¬

Publication Profile

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Academic Qualifications

Prof. Dr. Reda Sheha is a distinguished academic in inorganic chemistry, currently serving as a professor at the Atomic Energy Authority since May 22, 2013. He previously held the position of Associate Professor in Radiochemistry at the same institution from June 27, 2007. He earned his Ph.D. in Chemistry from Ain Shams University on February 17, 2002, following a Master’s in Chemistry from Zagazig University (May 31, 1998). He completed his Bachelor’s in Chemistry with honors from Banha University on July 30, 1991. Prof. Sheha’s career reflects a strong commitment to advancing chemical research and education. πŸ§ͺπŸ“šπŸ”¬

Employment History

Prof. Dr. Reda Sheha is a distinguished academic with a long-standing career in nuclear chemistry. He began as a Scholarship Member at the Academy of Scientific Research and Technology from 1994 to 1996. He then served as a Demonstrator (1996-1998), Assistant Lecturer (1998-2002), and Lecturer (2002-2007) in the Nuclear Chemistry Department at AEA. Prof. Sheha advanced to Associate Professor (2007-2009), Acting Head (2009-2013), and Head of the Department (2013-2020). Since October 2020, he has been the Vice-Dean of the Division of Radioisotope Production for Technological Affairs. πŸ§‘β€πŸ”¬βš›οΈπŸ“š

Scientific Achievements

Prof. Dr. Reda Sheha has made significant contributions to various fields of science, particularly in material synthesis and environmental applications. His top-ranked papers include studies on zinc ion sorption in hydroxyapatites and cesium adsorption on magnetic materials. His work also includes the synthesis of ferromagnetic composite resins for metal removal from aqueous solutions. Notably, his research group developed anion exchange resins for separating 99Mo and 131I from uranium targets, and created a novel hydroxyapatite nanoparticle for dental applications. Additionally, Prof. Sheha developed superparamagnetic composites for phosphoric acid purification. His work has had widespread recognition, including inclusion in prestigious databases. πŸ“šπŸ”¬πŸ§ͺ

Professional Experience

Prof. Dr. Reda Sheha specializes in environmental analysis, focusing on the sampling and preservation of environmental, wastewater, and soil samples πŸŒπŸ’§. He conducts physico-chemical and mineralogical characterizations of soil and performs quantitative analysis of cations and anions in environmental samples πŸ”¬. Dr. Sheha is skilled in preparing radionuclides using neutron-irradiation techniques βš›οΈ and modeling pollutant migration in water sources πŸ’¦. He develops novel adsorbents for radionuclide separation and hazardous waste treatment ♻️. Additionally, he collaborates on scientific research, manages research programs, and operates advanced laboratory instruments like SEM, Ξ³-counters, and spectrophotometers for precise analyses πŸ”§πŸ”.

Honors and Awards

Prof. Dr. Reda Sheha has received numerous prestigious awards and recognition throughout his career. These include the Egyptian Syndicate of Scientific Profession Award, the Balkan Environmental Association Award, the Egyptian Atomic Energy Authority Award, and the Water Research Journal’s Valued Reviewer Award. In addition, he has been honored with multiple appreciation awards for his exemplary reviewing work from journals such as Applied Clay Science, Colloids and Surfaces A: Physicochemical and Engineering Aspects, Journal of Colloid and Interface Science, Journal of Environmental Chemical Engineering, and Journal of Hazardous Materials πŸŒŸπŸ…πŸ“š.

Research Focus

Prof. Dr. Reda Sheha’s research focuses on the development and application of advanced materials for environmental remediation, particularly in removing metal ions and radioactive contaminants from aqueous solutions. His work involves the synthesis and characterization of various composite resins, magnetic materials, and nanocomposites to enhance the adsorption and removal of hazardous metals like zinc (Zn II), cesium (Cs), and selenium (Se IV). Prof. Sheha’s studies also emphasize equilibrium modeling, kinetic analysis, and the extraction of toxic compounds using innovative methods. His contributions aim to improve environmental protection and waste management technologies. πŸŒπŸ”¬βš—οΈπŸ§ͺ

Publication Top Notes

Sorption behavior of Zn (II) ions on synthesized hydroxyapatites

Equilibrium isotherm modeling of cesium adsorption onto magnetic materials

Synthesis of some ferromagnetic composite resins and their metal removal characteristics in aqueous solutions

Synthesis and characterization of magnetic hexacyanoferrate (II) polymeric nanocomposite for separation of cesium from radioactive waste solutions

Kinetics and equilibrium modeling of Se (IV) removal from aqueous solutions using metal oxides

The role of some compounds on extraction of chromium (VI) by amine extractants

Adsorption and diffusion of cesium ions in zirconium (IV) iodomolybdate exchanger

Solid phase extractive preconcentration of some actinide elements using impregnated carbon

Somayeh Sohrabi | Chemical Engineering | Best Researcher Award

Somayeh Sohrabi | Chemical Engineering | Best Researcher Award

Dr Somayeh Sohrabi, Sharif University of Technology, Iran

Dr. Somayeh Sohrabi is an accomplished researcher in chemical engineering and nanotechnology πŸŽ“. Currently a postdoctoral fellow at Sharif University of Technology, she focuses on microfluidic systems for pharmaceutical applications. She earned her Ph.D. from Amirkabir University, where she specialized in nanostructured photocatalysts. With numerous publications and involvement in high-impact projects on water disinfection and catalyst resilience, Dr. Sohrabi has pioneered innovations in drug delivery systems 🌍. Recognized as one of Iran’s top 30 scientific women, she actively teaches and mentors future engineers, showcasing her commitment to education and knowledge dissemination πŸ“šβœ¨.

Publication Profile

Google Scholar

Education

Dr. Somayeh Sohrabi is a postdoctoral researcher in Mechanical Engineering at Sharif University of Technology, focusing on designing microfluidic systems for pharmaceutical nano-carriers (2023-2024) under Dr. Mojtaba Taghipoor. She earned her Ph.D. in Chemical Engineering from Amirkabir University of Technology, achieving a remarkable average of 17.50/20, with her thesis on synthesizing Ti/TiO2/ZnO/GOx nanostructured photocatalysts (2016-2022). Dr. Sohrabi holds an M.Sc. in Chemical Engineering from the University of Kurdistan, where she focused on nanostructured catalysts for photodegradation. Her academic journey began with a B.Sc. from Razi University, highlighting her dedication to advancing chemical engineering. πŸŽ“πŸ”¬πŸŒ

Honors, Awards and Membership

Dr. Somayeh Sohrabi has received numerous accolades for her outstanding contributions to science and engineering. In 2023, she was awarded the Martyr Doctor Chamran Award for her postdoctoral project and recognized as one of the Top 30 Scientific Women in Iran. She is a distinguished researcher at Amirkabir University and has received the Martyr Mustafa Mousavi Award for her work on human capital in executive bodies. Dr. Sohrabi has also been actively involved in various committees, including the Water and Energy Headquarters, and has received grants from the Iran National Science Foundation. Her achievements reflect her dedication to advancing science and technology. πŸ†πŸ”¬πŸŒŸ

Teaching Experiences

Dr. Somayeh Sohrabi has demonstrated her commitment to education through extensive teaching experience in various engineering disciplines. From September 2022 to September 2023, she taught Thermodynamics to undergraduate students in both the Biomedical and Petroleum Engineering departments at Amirkabir University of Technology in Tehran. Prior to that, she served as a teaching assistant for Fluid Mechanics I in the Petroleum Engineering and Polymer Engineering departments from February to July 2022 and September 2021 to January 2022, respectively. Additionally, she taught Thermodynamics and Fluid Mechanics at Payame Noor University, Kermanshah Branch, from September 2015 to September 2016, showcasing her dedication to fostering the next generation of engineers. πŸ“šπŸ‘©β€πŸ«πŸ”§

Research Focus

Dr. Somayeh Sohrabi’s research focuses on microfluidics, photocatalysis, and nanomaterials, particularly in applications related to environmental remediation and biomedical engineering. Her work includes the synthesis and characterization of advanced materials, such as TiO2 and nanowires, and their application in the degradation of pollutants like amoxicillin. She explores innovative techniques for improving photocatalytic efficiency and environmental sustainability, as well as the use of machine learning for optimizing material properties. Her contributions to the field span several publications that address critical challenges in wastewater treatment and energy-efficient processes, highlighting her commitment to advancing green technology. πŸ”¬πŸŒπŸ“Š

Publication Top Notes

Modeling and optimization of phenol degradation over copper-doped titanium dioxide photocatalyst using response surface methodology

A review on the design and development of photocatalyst synthesis and application in microfluidic reactors: Challenges and opportunities

Advances in technical assessment of spiral inertial microfluidic devices toward bioparticle separation and profiling: A critical review

Surface investigation and catalytic activity of iron-modified TiO2

Metal–organic gels and their derived materials for electrochemical applications

The effect of Fe-loading and calcination temperature on the activity of Fe/TiO2 in phenol degradation

Fe/TiO2 catalyst for photodegradation of phenol in water

Light expanded clay aggregate (LECA) as a support for TiO2, Fe/TiO2, and Cu/TiO2Β nanocrystalline photocatalysts: a comparative study on the structure …

Conclusion

Dr. Sohrabi’s unique combination of academic excellence, innovative research, and active contributions to the engineering community makes her an exceptional candidate for the Best Researcher Award.

Dr. Li Hao | Chemical Engineering | Best Researcher Award

Dr. Li Hao | Chemical Engineering | Best Researcher Award

Dr.Li Hao, Associate Professor, Zhongkai University of Agriculture and Engineering, China.

Li Hao, PhD, is an accomplished Associate Professor and Master’s Supervisor at Zhongkai University of Agriculture and Engineering. Her research focuses on developing innovative agricultural nanomaterials aimed at reducing pesticide and fertilizer usage while enhancing their effectiveness. She has made significant contributions to the field through her work on stimuli-responsive functionalized nanocarriers and the interaction between nanomaterials and plants.

Profile

google scholar

Strengths for the Award

  1. Innovative Research: Li Hao’s focus on developing agricultural nanomaterials to enhance pesticide efficiency while reducing environmental impact demonstrates strong innovation. Her work on stimuli-responsive nanocarriers and the interaction between nanomaterials and plants is cutting-edge, contributing to sustainable agricultural practices.
  2. Research Leadership and Impact: Leading six national and provincial research projects, along with over 50 SCI-indexed publications in reputable journals, shows Li Hao’s significant influence in her field. With numerous first-author publications and a strong patent portfolio (5 granted), her contributions are widely recognized.
  3. Diverse Accomplishments: Besides her research, Li Hao has contributed to teaching and mentoring. She has led university-level projects and guided students to achieve national recognition in competitions, further showcasing her leadership and dedication to fostering future talent.
  4. Awards and Recognition: Li Hao has received numerous honors, including teaching awards and the Zhongkai May Fourth Youth Medal, highlighting her excellence not only in research but also in teaching and community engagement.

Areas for Improvement

  1. Broader Collaboration: While Li Hao has contributed significantly to national projects, expanding her international collaborations beyond her joint PhD experience might enhance the global recognition of her work. Strengthening ties with global agricultural and environmental bodies could bring her research to a wider audience.
  2. Interdisciplinary Expansion: Given the global shift toward interdisciplinary approaches, incorporating more diverse fields such as data science or environmental policy could broaden the applicability of her research, especially in tackling large-scale environmental challenges in agriculture.

πŸŽ“ Education

Dr. Li earned her PhD in Chemical Engineering from Tianjin University (2018), having pursued a joint PhD program at Texas A&M University. She holds a Master’s degree in Chemical Engineering from Tianjin University (2013) and a Bachelor’s degree in Chemical Engineering and Technology from Central South University (2010).

πŸ’Ό Experience

Li Hao has an extensive background in academia and industry. Currently serving as an Associate Professor at Zhongkai University since 2022, she previously held the same position from 2018 to 2022. Before her academic career, she worked as an engineer at Beiyang National Distillation Technology Engineering Development Co., Ltd. from 2013 to 2014.

πŸ”¬ Research Interests

Her research interests include:

  1. Preparation and performance study of stimulus-responsive functionalized nanocarriers
  2. Formulation design and efficient utilization of nano-pesticides and antibacterial agents
  3. Interaction between nanomaterials and plants

πŸ† Awards

Dr. Li has been recognized with numerous awards, including the Zhongkai May Fourth Youth Medal, the Third Prize in the Guangdong Provincial College Youth Teacher Teaching Competition, and the Outstanding Class Teacher Award. She has also guided students to achieve national accolades in chemical design competitions.

πŸ“š Publications

Dr. Li has published over 50 SCI papers in prestigious journals. Some notable publications include:

  1. Composite pesticide nanocarriers involving functionalized boron nitride nanoplatelets for pH-responsive release and enhanced UV stability, Chemical Engineering Journal, 2020.
  2. Carboxymethyl cellulose capsulated zein as pesticide nano-delivery system for improving adhesion and anti-UV properties, Carbohydrate Polymers, 2020.
  3. Antibacterial microfibrillated cellulose as stimuli-responsive carriers with enhanced UV stability for sustained release of essential oils and pesticides, ACS Sustainable Chemistry & Engineering, 2024.
  4. Preparation and characterization of zein-based nanoparticles via ring-opening reaction and self-assembly as aqueous nano-carriers for pesticides, Journal of Agricultural and Food Chemistry, 2020.
  5. Phosphorylated zein as biodegradable and aqueous nanocarriers for pesticides with sustained-release and anti-UV properties, Journal of Agricultural and Food Chemistry, 2019.
  6. Functionalized boron nitride nanosheets conjugated with plant micronutrients as seed dressing agents towards control of bacterial wilt disease, Environmental Science: Nano, 2023.
  7. Large ultrathin polyoxomolybdate-decorated boron nitride nanosheets with enhanced antibacterial activity for infection control, ACS Applied Nano Materials, 2023.

Conclusion

Li Hao’s exceptional track record in innovative agricultural nanotechnology research, her leadership in major projects, and her commitment to teaching and mentoring make her a strong contender for the β€œBest Researcher Award.” While there is room for broader international collaboration and interdisciplinary work, her current achievements position her as a leading researcher in her field, with substantial contributions to both scientific knowledge and practical applications in sustainable agriculture.

 

Tayebe Bagheri Lotfabad | Chemical Engineering | Best Researcher Award

Dr. Tayebe Bagheri Lotfabad | Chemical Engineering | Best Researcher Award

Dr. Tayebe Bagheri Lotfabad, National Institute for Genetic Engineering and Biotechnology, Iran

Dr. Tayebe Bagheri Lotfabad is a distinguished academic in Chemical Engineering and Biotechnology. She earned her Ph.D. from Sharif University of Technology in 2009, following her M.Sc. in the same field in 2001. Her B.Sc. in Chemical Engineering-Petroleum Refining was completed at Tehran University in 1996. As a passionate researcher and educator, Dr. Lotfabad leads innovative projects focusing on environmental biotechnology and the removal of pollutants. She also teaches various graduate and undergraduate courses, inspiring future engineers. Her commitment to science and education continues to make a significant impact in her field. πŸŒ±πŸ”¬πŸ“š

 

Publication profile

Scopus

Academic Qualifications

Dr. Tayebe Bagheri Lotfabad is an accomplished academic in the field of Chemical Engineering and Biotechnology. She obtained her Ph.D. from Sharif University of Technology in 2009, following her M.Sc. in Chemical Engineering-Biotechnology from the same institution in 2001. Earlier, she completed her B.Sc. in Chemical Engineering-Petroleum Refining at Tehran University in 1996. With a strong focus on environmental biotechnology, Dr. Lotfabad is actively involved in innovative research projects aimed at addressing pressing environmental issues. Her dedication to teaching and research continues to inspire students and contribute to advancements in her field. πŸŒ±πŸ”¬πŸ“š

 

Research Activities

Dr. Tayebe Bagheri Lotfabad has led numerous impactful research projects in environmental biotechnology. Currently, she is the Principal Investigator (PI) for projects investigating vinasse color reduction through microbial methods and heavy metal threats in water sources. Her previous work includes studies on the effects of activated carbon on azo dye removal, enzymatic production of peptone, and the cytotoxic effects of microbial rhamnolipids on breast cancer cells. Additionally, she has contributed to soil biotabilization and the biodecolorization of synthetic dyes, showcasing her commitment to addressing environmental challenges. πŸŒπŸ”¬βœ¨

 

Publication Top Notes Β 

  • Biodecolourization of Azo Dye under Extreme Environmental Conditions via Klebsiella quasipneumoniae GT7: Mechanism and Efficiency – Karimzadeh, M., Lotfabad, T.B., Heydarinasab, A., Yaghmaei, S. (2022) πŸ“š
  • Biological activated carbon process for biotransformation of azo dye Carmoisine by Klebsiella spp. – Poorasadollah, D., Bagheri Lotfabad, T., Heydarinasab, A., Yaghmaei, S., Mohseni, F.A. (2022) – 4 citations 🌱
  • Azo dye removal via surfactant-assisted polyvinylidene fluoride membrane – Darbandi, F., Mousavi, A., Lotfabad, T.B., Heydarinasab, A., Yaghmaei, S. (2021) – 2 citations πŸ’§
  • Effects of cream containing rhamnolipid microbial surfactants from Pseudomonas aeruginosa MR01 on growth inhibition of Staphylococcus aureus – Bagheri, T., Rahimi, K., Lotfabad, T.B. (2020) 🦠
  • Cytotoxic effects of mono- and di-rhamnolipids from Pseudomonas aeruginosa MR01 on MCF-7 human breast cancer cells – Rahimi, K., Lotfabad, T.B., Jabeen, F., Mohammad Ganji, S. (2019) – 46 citations βš—οΈ
  • Microbial degradation of azo dye carmoisine in aqueous medium using Saccharomyces cerevisiae ATCC 9763 – Kiayi, Z., Lotfabad, T.B., Heidarinasab, A., Shahcheraghi, F. (2019) – 66 citations πŸ§ͺ
  • Correction to: Mitigation of the liquefaction potential of soil by Ca-carbonate precipitation induced by indigenous urease-producing Staphylococcus sp. IR-103 – Moosazadeh, R., Tabandeh, F., Kalantary, F., … Bagheri Lotfabad, T., Yazdian, F. (2019) – 1 citation πŸ“
  • Mitigation of the liquefaction potential of soil by Ca-carbonate precipitation induced by indigenous urease-producing Staphylococcus sp. IR-103 – Moosazadeh, R., Tabandeh, F., Kalantary, F., … Bagheri Lotfabad, T., Yazdian, F. (2019) – 10 citations πŸ—οΈ
  • Assessment of aqueous extract of Gypsophila aretioides for inhibitory effects on calcium carbonate formation – Hajizadeh, A., Lotfabad, T.B., Bahmaei, M. (2019) – 10 citations 🌿
  • Integrated system of multiple batches to evaluate the continuous performance of microbial cells in decolourization processes – Vatandoostarani, S., Lotfabad, T.B., Heidarinasab, A., Ebadipour, N., Yaghmaei, S. (2018) – 5 citations πŸ”„

Mr. Marcos Morais | Chemical Engineering | Best Researcher Award

Mr. Marcos Morais | Chemical Engineering | Best Researcher Award

Β Mr. Marcos Morais, The University of Queensland, Australia

Mr. Marcos Morais is a dedicated researcher and academic affiliated with The University of Queensland, Australia. With a strong background in [specific field or department], Mr. Morais has contributed significantly to [specific research area or project]. His work is recognized for its impact and innovation, reflecting a deep commitment to advancing knowledge and addressing contemporary challenges in his field.

Publication profile
Educational Background

Mr. Marcos Morais completed his academic journey with a diverse and international perspective in chemical engineering. He earned his Bachelor of Science in Chemical Engineering from the Federal University of ParaΓ­ba (UFPB) in JoΓ£o Pessoa, Brazil, in June 2017. Following this, he pursued a Master of Science in Chemical Engineering at the Federal University of Pernambuco (UFPE) in Recife, Brazil, from January 2015 to January 2016. His academic pursuits included enriching exchange studies at prestigious institutions: the University of Toronto (UofT) in Canada from March 2018 to July 2020, and the Budapest University of Technology and Economics (BME) in Hungary from September 2019 to June 2020. These experiences have provided him with a global outlook and a comprehensive understanding of the field.

WORK EXPERIENCE

Mr. Marcos Morais has garnered valuable teaching and practical experience in his field. From July 2023 to January 2024, he served as a Lecturer at the Federal University of Cariri in CearΓ‘, Brazil, where he delivered theoretical and practical instruction in Chemistry 101 for civil and material engineering students. His earlier teaching experience includes a Teaching Internship at the Laboratory of Industrial Microbiology, Federal University of Pernambuco, from May 2015 to August 2015, where he supported the development of the Industrial Microbiology course. Additionally, he completed an internship as a Chemical Analyst at Smart Adaptive Polymers (SAPL) in Toronto from June 2019 to August 2019, where he designed polymeric porous structures for high-impact energy applications in automotive, aerospace, and military sectors. These roles have equipped him with a robust blend of teaching and hands-on expertise in chemical engineering and material science.

 

Scientific Publications

  • M. A. P. Morais, M. Silva, M. Barros, P. Halley, Y. Almeida,G. Vinhas, J. Appl. Polym. Sci. 2024, Impact of citric acid on guar
    gum carboxymethyl cellulose crosslinked blend films, https://doi.org/10.1002/app.56162
    SILVA, Q. A. ; NΓ“BREGA, M. M. G. ; MORAIS, M. A. P. ; OLIVEIRA, B. F. ; LOPES, J. D.; SILVA, Y. T. F. ; CAVALCANTE, J. A.
    CinΓ©tica de secagem, propriedades fΓ­sico-quΓ­micas e compostos bioativos da couve folha (Brassica oleracea L.) seca em
    camada de espuma. OBSERVATORIO DE LA ECONOMÍA LATINOAMERICANA, v. 21, p. 11222-11247, 2023.
    DE BARROS, M. K.S. ; MORAIS, M. A. P. ; DA SILVA M.F. ; DE ALMEIDA, Y. M. B. . Evaluation of physicochemical properties
    of cross-linked guar gum films with different concentrations of citric acid. IV Conapesc, 2019, Campina Grande
    DA SILVA M.F.; MORAIS, M. A. P. ; DE BARROS, M. K.S. ; Vinhas, G. M. Study of the physicochemical properties of the
    cross-linked carboxymethylcellulose films using different concentrations of citric-acid, IV Conapesc, 2019, Campina Grande
    MORAIS, M. A. P. ; MONTEIRO, T. M. ; ANDRADE NETO, G. A. ; CAVALCANTE, J. A. ; CRISTIANO, C. M. Z. Thermal stability
    and chemical properties study of natural and cross-linked guar gum/ carboxymethylcellulose films. In: Brazilian Material
    Research Society (B-MRS), 2018, Natal – BR.
    DA SILVA, I. D. V., MORAIS, M. A. P. ; CRISTIANO, C. M. Z. Study of the blend composed by guar gum/poly(vinyl alcohol)
    and guar gum/carboxymethyl cellulose In 13th Brazilian Polymer Conference, 2015, Natal – BR.
    MORAIS, M. A. P. ; DA SILVA, I. D. V.,; CRISTIANO, C. M. Z. . Thermogravimetric analysis of the polymeric blend composed
    by guar gum and carboxymethylcellulose, Brazilian Chemical Society, 2014, Natal – BR
    DA SILVA, I. D. V.; MORAIS, M. A. P.; CRISTIANO, C. M. Z. Characterization and study of blends composed by guar gum and
    poly (vinyl alcohol) plasticized with sorbitol In: 37th Annual Meeting of Brazilian Society, 2014, Natal – BR

Romuald Teguia Doumbi | Chemical Engineering | Best Paper Award

Dr. Romuald Teguia Doumbi | Chemical Engineering | Best Paper Award

Dr. Romuald Teguia Doumbi, University of Ngaoundere, Cameroon

Based on the provided curriculum vitae of Dr. Romuald Teguia Doumbi, he appears to be a suitable candidate for a “Research for Best Paper Award.” Here are some key points that support this assessment:

Publication profile

Education

Dr. Doumbi holds a Ph.D. in Inorganic Chemistry, specializing in developing electrode materials for environmental applications. He is currently pursuing further studies in Material Science and Engineering, which indicates ongoing academic growth.

Professional Experience

His experience spans roles as a part-time instructor at the University of Ngaoundere and as an advisor for multiple Master’s theses, showcasing his leadership in academia and mentorship. His involvement with several editorial boards further highlights his active participation in the scientific community.

Technical Expertise

Dr. Doumbi’s technical skills in electrochemical processes, photocatalysis, and industrial chemistry underline his proficiency in both fundamental and applied research. His work on wastewater treatment and advanced oxidation processes aligns with pressing environmental issues.

Publications and Presentations

His extensive list of publications in reputable journals and conference presentations illustrates his active research output and the impact of his work. Noteworthy publications include studies on electrode materials for pollutant degradation and innovative approaches to wastewater treatment.

  • Synthesis of Ti/SnO2-Sb electrode modified by nitrogen and sulfur co-doped graphene for optimization the electrooxidation of neutral red and methyl orange dyes
  • Electrochemical production of sulfate radicals for degradation of Tenofovir in aqueous solution
  • Dip coating deposition of manganese oxide nanoparticles on graphite by sol gel technique for the indirect electrochemical oxidation of methyl orange dye: Parameter’s optimization using box-behnken design

Invited Lectures

Dr. Doumbi has been invited to speak at several international conferences, reflecting his recognition as an expert in his field. His lectures on analytical chemistry and environmental protection demonstrate his role in advancing scientific knowledge and practice.

Manuscripts in Preparation

His ongoing research includes studies on nitrogen pollutant removal and wastewater treatment optimization, indicating a continuous effort to address critical environmental issues through innovative solutions.

Conclusion

Given his significant contributions to research, ongoing academic pursuits, and strong publication record, Dr. Romuald Teguia Doumbi’s profile aligns well with the criteria typically considered for a “Research for Best Paper Award.”

 

 

Muhammad Irfan | Chemical Engineering Award | Best Researcher Award

Assist Prof Dr. Muhammad Irfan| Chemical Engineering Award | Best Researcher Award

Assist Prof Dr. Muhammad Irfan, Department of Chemical and Energy Engineering, Pak-Austria Fachhochschule Institute of Applied Sciences and Technology, Haripur, Pakistan

Assist Prof Dr. Muhammad Irfan: A Suitable Candidate for the Research for Best Researcher Award

Publication profile

Google Scholar

Education and Academic Background

Assist Prof Dr. Muhammad Irfan has a solid academic foundation with degrees in relevant fields. His educational qualifications reflect a deep understanding of his area of expertise, which is essential for advancing research and contributing valuable insights to his field.

Research Contributions

Dr. Irfan has made significant contributions to his field through numerous high-impact publications. His research work addresses critical issues and provides innovative solutions, demonstrating his ability to conduct research that is both relevant and transformative.

Professional Experience and Expertise

With years of experience as an Assistant Professor, Dr. Irfan has developed a strong expertise in his domain. His professional journey reflects a consistent commitment to research and academia, with a focus on mentoring and guiding future researchers.

Recognition and Awards

Dr. Irfan’s work has been recognized with various awards and honors, which underscore his contributions to the research community. These accolades are a testament to his dedication and the quality of his research output.

Publications Top Notes

  • Factors influencing individuals’ intention to adopt mobile banking in China and Pakistan: The moderating role of cultural values 🏦 – Cited by: 83Year: 2019
  • Electro-nanofiltration membranes with positively charged polyamide layer for cations separation πŸ”‹ – Cited by: 72Year: 2020
  • Hydrophobic side chains impart anion exchange membranes with high monovalent–divalent anion selectivity in electrodialysis βš—οΈ – Cited by: 71Year: 2019
  • Cation exchange membrane integrated with cationic and anionic layers for selective ion separation via electrodialysis πŸ’§ – Cited by: 68Year: 2019
  • High performance anion exchange membrane with proton transport pathways for diffusion dialysis 🚰 – Cited by: 62Year: 2018
  • Stimulating student’s pro-environmental behavior in higher education institutions: An ability–motivation–opportunity perspective 🌱 – Cited by: 61Year: 2022
  • Novel electrodialysis membranes with hydrophobic alkyl spacers and zwitterion structure enable high monovalent/divalent cation selectivity πŸ§ͺ – Cited by: 60Year: 2020
  • Self-organized nanostructured anion exchange membranes for acid recovery 🧫 – Cited by: 58Year: 2020
  • Preparation and performance evaluation of novel alkaline stable anion exchange membranes βš›οΈ – Cited by: 57Year: 2017
  • Development of novel PVA-QUDAP based anion exchange membranes for diffusion dialysis and theoretical analysis therein 🧬 – Cited by: 57Year: 2017
  • Zwitterion structure membrane provides high monovalent/divalent cation electrodialysis selectivity: Investigating the effect of functional groups and operating parameters πŸ” – Cited by: 54Year: 2019
  • Recent advances in high performance conducting solid polymer electrolytes for lithium-ion batteries πŸ”‹ – Cited by: 52Year: 2021
  • Antecedents of task performance: An examination of transformation leadership, team communication, team creativity, and team trust πŸ‘₯ – Cited by: 46Year: 2019
  • Augmenting acid recovery from different systems by novel Q-DAN anion exchange membranes via diffusion dialysis 🧫 – Cited by: 45Year: 2018
  • Ammonia capture from wastewater with a high ammonia nitrogen concentration by water splitting and hollow fiber extraction 🌊 – Cited by: 42Year: 2020

Conclusion

Based on his education, research contributions, professional experience, and the recognition he has received, Assist Prof Dr. Muhammad Irfan is a suitable candidate for the Research for Best Researcher Award. His work exemplifies the qualities that this award seeks to honor, making him a deserving nominee.