Neda Kaydi | Environmental Science | Women Researcher Award

Dr. Neda Kaydi | Environmental Science | Women Researcher Award

Ahvaz Jundishapur University of Medicine Sciences, Ahvaz, Iran

Dr. Neda Kaydi is an accomplished environmental health researcher with a PhD in Environmental Health Engineering. Her career is marked by a deep commitment to solving environmental challenges that directly affect human health, particularly in urban and industrial areas like Ahvaz, Iran. Over the years, she has developed a robust research portfolio encompassing wastewater treatment, biological sludge reduction, air pollution monitoring, and exposure risk assessments. Her academic rigor is matched by her practical contributions to society through various local environmental health projects. She is especially focused on community-centric research, investigating public health concerns associated with industrial pollutants, airborne toxins, and the COVID-19 pandemic. Her published works reflect both technical depth and interdisciplinary scope, with numerous peer-reviewed articles exploring topics ranging from electrocoagulation processes to bioaerosol distribution in landfill areas. Dr. Kaydi’s practical and academic experiences together position her as a leader in the environmental health domain, making her an excellent candidate for awards recognizing excellence in scientific research. With her growing record of scholarly and applied achievements, Dr. Kaydi exemplifies how targeted scientific inquiry can drive meaningful improvements in public health and environmental sustainability.

Professional Profile

Education

Dr. Neda Kaydi has built a strong academic foundation in Environmental Health Engineering through a series of progressive academic qualifications. She began her education with an Associate Degree in Environmental Health Engineering from Ahwaz Jundishapur University of Medical Sciences, achieving a GPA of 16. She then pursued her undergraduate degree in the same field and institution, graduating with an improved GPA of 17, reflecting her growing academic maturity. Following her undergraduate studies, she enrolled in a Master’s program in Environmental Engineering (Water and Wastewater) at the Islamic Azad University, Science and Research Branch in Khuzestan Province, where she excelled with a GPA of 19.36. Her Master’s thesis, which explored heat-alkaline treatment of biomass for sludge reduction in activated sludge systems, received a near-perfect score of 19.80. Currently, she is a PhD student in Environmental Health Engineering at Ahwaz Jundishapur University of Medical Sciences, having commenced her doctoral research in 2021. Her academic trajectory showcases her consistent dedication to environmental sciences and engineering, particularly in practical applications related to wastewater treatment and environmental pollution control. Each stage of her education has added valuable technical and research competencies to her profile.

Professional Experience

Dr. Kaydi’s professional experience is closely aligned with her academic background and research interests. Since June 2010, she has served as a Master of Environmental Health Engineering at Ahwaz Jundishapur University of Medical Sciences. This long-term position has enabled her to actively engage in academic instruction, applied research, and environmental monitoring initiatives. Through this role, she has contributed to several high-impact public health and environmental projects that target critical local issues, including air pollution, waste segregation behavior, and COVID-19-related environmental assessments. Her university affiliation has also given her access to collaborative research opportunities, laboratory work, and community-based interventions. In addition to academic responsibilities, Dr. Kaydi has led and contributed to field-based investigations, pilot-scale experiments in wastewater treatment, and risk assessments related to industrial pollution. Her experience bridges theoretical research and practical problem-solving, particularly within urban and semi-industrial communities in Iran. Her work environment has allowed her to mentor students, coordinate projects with municipal stakeholders, and implement scientific methodologies to address real-world environmental challenges. Collectively, these professional experiences reflect her active role in shaping a healthier environment through science-based solutions and community engagement.

Research Interest

Dr. Neda Kaydi’s research interests lie at the intersection of environmental health engineering and public health protection. Her core focus areas include advanced wastewater treatment technologies, biological sludge minimization, air quality monitoring, and human exposure assessment to toxic pollutants such as BTEX and PAHs. She is particularly passionate about applying engineering solutions to mitigate the environmental risks associated with urbanization and industrial growth. A major strand of her work involves investigating the effectiveness of heat-alkaline and thermal-chemical treatments in minimizing sludge production, which aligns with global efforts to make wastewater treatment more sustainable. Additionally, she has shown keen interest in biomonitoring and environmental toxicology, conducting research that evaluates health risks linked to ambient air pollution in vulnerable populations, including children and frontline workers. Her multidisciplinary approach enables her to explore the chemical, microbiological, and epidemiological aspects of environmental hazards. She is also interested in exploring emerging pollutants, bioaerosol dynamics, and the use of GIS-based zoning in pollution mapping. Dr. Kaydi’s research consistently bridges the gap between scientific discovery and societal relevance, with a strong emphasis on evidence-based interventions and policy implications aimed at enhancing environmental health outcomes.

Research Skills

Dr. Kaydi possesses a wide array of research skills that reinforce her capabilities as a leading environmental health scholar. She is proficient in experimental design and implementation, especially within the scope of wastewater treatment technologies. Her technical competencies include pilot-scale system setup, biological sludge monitoring, and the application of heat-alkaline treatments. She is also skilled in the use of various laboratory techniques for chemical and microbiological analysis. Additionally, she demonstrates strong data collection and statistical analysis capabilities, often employing these in epidemiological studies and environmental risk assessments. She is experienced in using Geographic Information Systems (GIS) for spatial pollution analysis and has contributed to multiple air quality monitoring projects using advanced sensor-based systems. Furthermore, Dr. Kaydi is adept at biomarker analysis for exposure studies and has employed biomarkers such as trans-myconic acid and 1-hydroxypyrene in her work on BTEX and PAH exposure. Her academic writing and publication skills are evident from her contributions to international journals. Collectively, her research skills enable her to work across diverse environmental health domains, from laboratory research to field assessments, community surveys, and advanced data interpretation.

Awards and Honors

While specific awards and honors have not been explicitly mentioned in the provided details, Dr. Neda Kaydi’s academic and research trajectory clearly reflects the caliber of a deserving researcher who is highly eligible for recognition through scientific awards. Her Master’s thesis earned a near-perfect score of 19.80, indicating exceptional scholarly merit. Her selection and retention as a long-term environmental health engineering faculty member at Ahwaz Jundishapur University also reflect institutional recognition of her expertise and dedication. The inclusion of her work in multiple respected environmental science journals, including the Asian Journal of Chemistry, Archives of Hygiene Sciences, and Journal of Environmental Health Science and Engineering, serves as a testament to her academic recognition and peer-reviewed excellence. Her contribution to more than a dozen impactful environmental health projects, many addressing urgent public health challenges in industrial regions, further showcases the societal impact of her work. As such, her research outputs, academic contributions, and community-centered environmental studies collectively position her as a strong candidate for research-based honors and awards at national and international levels.

Conclusion

In conclusion, Dr. Neda Kaydi stands out as a dedicated, skilled, and impactful researcher in the field of Environmental Health Engineering. Her academic background is solid, with progressive degrees and outstanding performance at each stage. She complements her educational achievements with more than a decade of practical and academic experience, contributing meaningfully to environmental health through research, project execution, and publication. Her work addresses both global environmental issues and local public health concerns, making her research socially relevant and scientifically rigorous. From studying sludge reduction in wastewater treatment to monitoring air quality and exposure risks in industrial zones, Dr. Kaydi’s contributions are multifaceted and innovative. Her skills in experimental design, data analysis, biomonitoring, and GIS mapping equip her to tackle complex environmental problems with a holistic approach. Though formal awards may not yet have been cataloged, her scholarly contributions, community impact, and institutional leadership merit high recognition. She exemplifies the role of a modern environmental health scientist—one who is both a researcher and a changemaker. Therefore, she is a fitting nominee for the Best Researcher Award, given her credentials, experience, and dedication to improving environmental health outcomes through scientific excellence.

Publications Top Notes

  1. The burden of metabolic risk factors in North Africa and the Middle East, 1990–2019: findings from the Global Burden of Disease Study
    Journal: EClinicalMedicine, 2023
    Authors: Malekpour MR, Abbasi-Kangevari M, Ghamari SH, Khanali J, Heidari-Foroozan M, Moghaddam SS, Azangou-Khyavy M, Rezazadeh-Khadem S, Rezaei N, Shobeiri P, et al.

  2. Metabolic risk factors attributed burden in Iran at national and subnational levels, 1990 to 2019
    Journal: Frontiers in Public Health, 2023
    Authors: Moradi S, Parsaei A, Saeedi Moghaddam S, Aryannejad A, Azadnajafabad S, Rezaei N, Mashinchi B, Esfahani Z, Shobeiri P, et al.

  3. Effect of air pollution on disease burden, mortality, and life expectancy in North Africa and the Middle East: a systematic analysis for the Global Burden of Disease Study 2019
    Journal: The Lancet Planetary Health, 2023
    Authors: Abbasi-Kangevari M, Malekpour MR, Masinaei M, Moghaddam SS, Ghamari SH, Abbasi-Kangevari Z, Rezaei N, Mokdad AH, Naghavi M, et al.

  4. Distribution trend of BTEX compounds in ambient air of urban solid waste landfill sites and surrounded environment: A case study on Ahvaz, Southwest of Iran
    Journal: Eurasian Chemical Communications, 2022
    Authors: Kaydi N, Mahmoudi P, Jaafarzadeh N, Mirzaee SA, Samaei MR, Hardani M

  5. Air Pollution History and Projection in the Most Polluted City in the World
    Preprint: 2022
    Authors: Kaydi N, Maraghi E, Shenavar B, Bahrami Z, Azarian A, Rostami S, Ashrafi MJ, Karimi S, Jaafarzadeh Haghighifard N, Khafaie MA

  6. Estimates, trends, and drivers of the global burden of type 2 diabetes attributable to PM₂.₅ air pollution, 1990–2019: an analysis of data from the Global Burden of Disease Study 2019
    Journal: The Lancet Planetary Health, 2022
    Authors: GBD 2019 Diabetes and Air Pollution Collaborators

  7. Assessment of incremental lifetime cancer risks of ambient air PM₁₀-bound PAHs in oil-rich cities of Iran
    Journal: Journal of Environmental Health Science and Engineering, 2021
    Authors: Goudarzi G, Baboli Z, Moslemnia M, Tobekhak M, Birgani YT, Neisi A, Ghanemi K, Babaei AA, Hashemzadeh B, Angali KA, et al.

  8. Identification of Filamentous Microorganisms Causing Filamentous Bulking and Factors Affecting Their Growth in a Petrochemical Wastewater Treatment Plant
    Journal: Chemical Methodologies, 2020
    Authors: Neisi A, Kayedi N, Mahmoudi P

  9. Effect of Thermal-Alkaline Treatment in Minimization of Excess Biological Sludge Production in the Wastewater Treatment
    Journal: Fresenius Environmental Bulletin, 2017
    Authors: Takdastan A, Mohammadi MJ, Kayedi N, Mahmoudi P, Hassani AH, Sekhavtjv MS

  10. Study of Excess Sludge Reduction in Conventional Activated Sludge Process by Heating Returned Sludge
    Journal: Asian Journal of Chemistry, 2013
    Authors: Mahmoudi P, Takdastan A, Alavi N, Mosavi AAJ, Kaydi N

 

 

Yadenis Ortega Díaz | Environmental Science | Best Researcher Award

Prof. Yadenis Ortega Díaz | Environmental Science | Best Researcher Award

Investigador, Centro Nacional de Electromagnétismo Aplicado,  Cuba

Yadenis Ortega Díaz is an outstanding candidate for the Best Researcher Award, with over ten years of experience in environmental sciences and biotechnology. Currently pursuing a PhD at Hasselt University, her research focuses on nitrofixing cyanobacteria and their agricultural applications. Yadenis has held significant roles, including a PhD researcher at Hasselt and an R&D researcher at the Centro Nacional de Electromagnetismo Aplicado in Cuba. She is also a dedicated lecturer, engaging students through innovative teaching methods. Her impressive publication record, with articles in leading journals like Agronomy and Algal Research, highlights her contributions to sustainable agricultural practices. Yadenis’s work addresses critical environmental challenges, making her a deserving recipient of the Best Researcher Award.

Profile:

Education

Yadenis Ortega Díaz is currently a PhD student at Hasselt University in Belgium, focusing on the biodiversity and applications of nitrofixing cyanobacteria in agriculture. Her academic journey began with a Bachelor’s degree in Pharmaceutical Sciences from Universidad de Oriente, Cuba, where she conducted a significant study on prescribing practices in a hospital setting. She furthered her education by earning a Master’s degree in Environmental Biotechnology, also from Universidad de Oriente, where her thesis explored the biostimulant potential of nitrofixing cyanobacteria in the rhizosphere of fruit crops. Under the mentorship of renowned professors, Yadenis has developed a solid foundation in environmental sciences, equipping her with the knowledge and skills necessary for her research endeavors. This rigorous academic background has prepared her to address complex environmental challenges through innovative scientific approaches.

Professional Experiences

Yadenis Ortega Díaz brings over ten years of professional experience in environmental sciences and biotechnology. Currently, she serves as a PhD researcher at Hasselt University in Belgium, focusing on the development and evaluation of magnetic technologies for cultivating microalgae and cyanobacteria for agricultural applications. In addition to her research role, she has been an R&D researcher at the Centro Nacional de Electromagnetismo Aplicado in Cuba since 2010, where she specializes in techniques for isolating and cultivating microorganisms. Her experience also includes conducting physico-chemical analyses of water and soil, alongside phytoplankton characterization. As a lecturer, Yadenis has inspired numerous undergraduate students through engaging seminars and hands-on laboratory sessions, enhancing their understanding of chemistry and biotechnology. Her multifaceted career reflects her commitment to advancing research and education in her field.

 

Research skills

Yadenis Ortega Díaz possesses a robust set of research skills that make her a valuable asset in the field of environmental sciences and biotechnology. With over a decade of experience, she has developed expertise in microalgae biotechnology, specifically in the application of static magnetic fields to enhance cyanobacterial cultures. Her analytical skills are evident in her ability to conduct comprehensive physico-chemical analyses and characterize various microorganisms. Yadenis excels in experimental design, employing innovative techniques for the isolation and cultivation of microorganisms, which are crucial for her research on biostimulants in agriculture. Additionally, her proficiency in scientific writing is reflected in her numerous publications in reputable journals. Yadenis is also skilled in presenting complex research findings at international conferences, demonstrating her capability to communicate effectively with diverse audiences. Overall, her well-rounded research skills contribute significantly to advancing knowledge in her field.

 

Awards And Recoginition

Yadenis Ortega Díaz has received multiple awards and accolades throughout her academic and professional journey, reflecting her dedication and impact in the fields of environmental sciences and biotechnology. Notably, she was honored with the Best Paper Award at the 2nd Ibero-American Congress on Magnetobiology for her research on cyanobacterial consortia. Additionally, her presentations at international conferences, including the 13th IWA Specialist Conference on Wastewater Ponds and Algal Technologies, have garnered recognition for their innovative approaches to wastewater treatment. Yadenis’s commitment to excellence is further evidenced by her contributions to high-impact journals, where her publications have been cited widely, affirming her role as a thought leader. As a proactive educator, she has also received commendations for her exceptional teaching methods and student mentorship, demonstrating her influence not only in research but also in shaping the next generation of scientists. These achievements collectively underscore her significant contributions to the scientific community.

 

Conclusion

Yadenis Ortega Díaz is an exemplary candidate for the Best Researcher Award, distinguished by her extensive experience and significant contributions to environmental sciences and biotechnology. With over a decade of research focused on microalgae and cyanobacteria, she has developed innovative methodologies that address critical agricultural challenges. Her current PhD research at Hasselt University and her impactful publications reflect her commitment to advancing sustainable practices in agriculture. Additionally, her dedication as a lecturer showcases her passion for educating future scientists, inspiring students to engage deeply with complex subjects. Yadenis’s work not only contributes to scientific knowledge but also promotes environmental sustainability and food security. Her ability to bridge research and teaching demonstrates her holistic approach to science, making her a deserving candidate for this prestigious award.

 

Publication Top Notes

  • Bioelectrical parameters in vitro and in vivo estimated with analyzers Bodystat® 1500-MDD and BioScan® 98
    • Authors: A. Lara Lafargue, L.E. Bergues Cabrales, M. Verdecia Jarque, Y.L. Martínez, Y.O. Díaz
    • Year: 2013
    • Citations: 18
  • Variación de la composición de pigmentos de Chlorella vulgaris Beijerinck, con la aplicación del campo magnético estático
    • Authors: Y. Silveira-Font, L. Gómez-Luna, M.D. Kufundala-Wemba, …
    • Year: 2018
    • Citations: 17
  • Cultivo y aplicaciones de Chlorella vulgaris: principales tendencias y potencialidades en la agricultura
    • Authors: L. Gómez-Luna, L. Tormos-Cedeño, Y. Ortega-Díaz
    • Year: 2022
    • Citations: 9
  • The effect of magnetic field treatment on the cultivation of microalgae: An overview of involved mechanisms
    • Authors: Y.S. Font, Y.O. Díaz, A. Cuypers, E.I. Alemán, D. Vandamme
    • Year: 2023
    • Citations: 8
  • Efecto del pH sobre el crecimiento y viabilidad celular de una cepa local de Chlorella vulgaris Beijerinck
    • Authors: L. Gómez-Luna, Y. Ortega-Díaz, L. Tormos-Cedeño
    • Year: 2021
    • Citations: 4
  • Reformulación de la solución de hipoclorito de sodio al 1% para su producción en tiempos de contingencia
    • Authors: I. Licea-Jimenez, A. González-Marañón, R. Sam-Pérez, L. Gómez-Luna, …
    • Year: 2018
    • Citations: 3
  • Piggery wastewater treatment with a Chlorella microalgae-bacteria consortium and static magnetic field
    • Authors: Y.S. Font, Y.O. Díaz, M. Pappa, E. Thijssen, A. Cuypers, E.I. Alemán, …
    • Year: 2024
    • Citations: 1
  • Characterization of Nitrogen-Fixing Cyanobacterial Consortia Isolated from the Rhizosphere of Carica papaya
    • Authors: Y.O. Díaz, L.G. Luna, Y.F. Boix, Y.S. Font, J.G. Aguilera, O. Marín-Sánchez, …
    • Year: 2024
    • Citations: 0 (recent publication)
  • Influence of a static magnetic field on the photosynthetic apparatus, cell division, and biomass composition of a Chlorella microalgae-bacteria consortium
    • Authors: Y. Silveira Font, Y. Ortega Díaz, A. Cuypers, E.I. Alemán, D. Vandamme
    • Year: 2024
    • Citations: 0 (recent publication)
  • Efecto del campo magnético sobre el potencial bioenergético de Chlorella vulgaris y Dunaliella viridis
    • Authors: L. Gómez-Luna, R. Arias-Gilart, Y. Ortega-Díaz
    • Year: 2023
    • Citations: 0 (recent publication)
  • Desarrollo y caracterización de un consorcio de cianobacterias aislado de suelo rizosférico de Carica papaya
    • Authors: Y. Ortega-Díaz, L. Gómez-Luna, Y. Silveira-Font
    • Year: 2023
    • Citations: 0 (recent publication)
  • Influencia de un campo electromagnético de baja frecuencia en la flora microbiana de un néctar de mango. Parte II
    • Authors: Y. Torres-Ferrer, M. Rivera-Soto, Y. Ortega-Díaz, A.I. Cardona-Parlade
    • Year: 2018
    • Citations: 0 (recent publication)

 

 

 

Naveen Kumar Reddy Bogireddy | Environmental Remediation | Sustainable Engineering Leadership Award

Dr. Naveen Kumar Reddy Bogireddy | Environmental Remediation | Sustainable Engineering Leadership Award

Associate Investigator at Physical Science Institute (ICF), National Autonomous University of Mexico (UNAM), Mexico.

Dr. Naveen Kumar Reddy Bogireddy is an Associate Researcher at the Institute of Physical Sciences, National Autonomous University of Mexico (ICF-UNAM). His research focuses on advanced nanomaterials for environmental applications, particularly in the green synthesis of metallic nanoparticles and quantum dots to detect and eliminate toxic contaminants. With over eight years of experience, Dr. Bogireddy has published over 30 high-impact articles in renowned journals and has presented his work at numerous international conferences. He has received a Ph.D. in Engineering and Applied Sciences with honors from CIICAp-UAEM and ICF-UNAM. His notable projects include catalytic removal of organic contaminants using sustainable nanoparticles. Dr. Bogireddy’s contributions extend to collaborative efforts with institutions like Penn State University and the Mexican Institute of Water Technology. His work has earned him recognition in environmental health and vector control, underscoring his commitment to sustainable engineering.

Profile

Education

Dr. Naveen Kumar Reddy Bogireddy is a distinguished researcher in the field of advanced nanomaterials, specializing in their environmental applications. With over eight years of experience, he has focused on green synthesis techniques to detect and eliminate toxic contaminants from the environment. His impressive portfolio includes over 30 scientific publications in high-impact journals such as Nature Partner Journal, Cell Press, and ACS. Dr. Bogireddy’s work has garnered more than 76 citations, reflecting his significant contributions to the field. He has received accolades such as an Honorary Mention for his doctoral work and is a member of the SNI (National Research System) Level 1 until December 2025. Currently, he serves as an Associate Researcher at ICF-UNAM, where he leads innovative projects on catalytic removal of contaminants and the development of nanosensors. His dedication to research, combined with his extensive publication record, underscores his impact in environmental nanotechnology.

Research Contributions

Dr. Naveen Kumar Reddy Bogireddy has made significant contributions to the field of advanced nanomaterials, focusing on green synthesis methods to address environmental pollution. His research primarily involves the development of metallic nanoparticles and quantum dots for detecting and removing toxic contaminants. His work is well-documented through more than 30 high-impact publications in renowned journals, including Nature Partner Journal, Cell Press, and ACS. His contributions are exemplified by his research on catalytic reduction of pollutants, which has earned him over 76 citations and an h-index of 15.

Geographic Impact

Dr. Bogireddy’s research has had a broad geographic impact, spanning multiple countries and institutions. His collaborations include positions and projects at esteemed institutions such as Pennsylvania State University, Universidad Autónoma de San Luis Potosí, and Instituto de Física at UNAM. His work contributes to global efforts in addressing environmental contamination and has implications for sustainable engineering practices across diverse regions.

Collaborative Efforts

Dr. Bogireddy has demonstrated strong collaborative skills through his work with various research groups and institutions. His postdoctoral research at UNAM involved developing bimetallic plasmonic nanoparticles in collaboration with Dr. Raúl Herrera Becerra and other researchers. Additionally, his role in coordinating with institutions such as QIT (India) and IMTA showcases his commitment to fostering international research partnerships and knowledge exchange.

Applied Research

His applied research focuses on practical solutions for environmental problems, particularly in the area of waste water treatment and contaminant detection. Projects like the development of nanosensors for toxic pollutant detection and the catalytic removal of organic pollutants from water demonstrate the practical impact of his research. His work not only advances scientific knowledge but also provides actionable solutions for environmental challenges.

Specific Projects and Publications

Dr. Bogireddy has led and participated in numerous research projects with notable outcomes. His project on “Catalytic Elimination of Organic Contaminants in Real Waters Using Sustainable Metallic Nanoparticles” has received funding under the 2024 Call for Support for Research and Technological Innovation Projects. His publications, including studies on carbon dots and nanoparticle synthesis, highlight his expertise in creating innovative materials for environmental applications.

Environmental Health

Dr. Bogireddy’s research has significant implications for environmental health by addressing pollution through advanced materials. His work on the removal of contaminants like 4-nitrophenol and organic dyes directly contributes to improving water quality and reducing environmental hazards. This focus on pollution mitigation aligns with global efforts to protect environmental and public health.

Vector Control

Although Dr. Bogireddy’s primary research does not directly address vector control, his expertise in nanomaterials could potentially be applied to this field. Advanced materials and sensors developed through his research might be adapted for monitoring and controlling vectors in environmental settings.

Parasitology and Infectious Diseases

Dr. Bogireddy’s research does not directly involve parasitology or infectious diseases. However, the principles of nanomaterial synthesis and application could have indirect benefits in these fields, particularly in developing diagnostic tools or treatments through advanced materials.

Awards and Recognition

Dr. Bogireddy’s achievements have been recognized with several awards and honors, including the Mención Honorífica for his doctoral work and an impressive citation index reflecting his influence in the field. His extensive publication record and contributions to international conferences further highlight his recognition in the scientific community.

Conclusion

Dr. Naveen Kumar Reddy Bogireddy is a highly qualified candidate for the Research for Sustainable Engineering Leadership Award. His innovative research on nanomaterials, strong collaborative efforts, and significant contributions to addressing environmental pollution underscore his leadership in sustainable engineering. His work not only advances scientific knowledge but also provides practical solutions for global environmental challenges.

Publications Top Notes

  1. Exfoliated MXene-AuNPs hybrid in sensing and multiple catalytic hydrogenation reactions
    • Authors: Kumar, Y., Thomas, T., Pérez-Tijerina, E., Bogireddy, N.K.R., Agarwal, V.
    • Journal: Nanotechnology
    • Year: 2024
    • Volume: 35(20)
    • Pages: 205703
    • Citations: 1
  2. Chemical- and green-precursor-derived carbon dots for photocatalytic degradation of dyes
    • Authors: Kaur, I., Batra, V., Bogireddy, N.K.R., Kumar, Y., Agarwal, V.
    • Journal: iScience
    • Year: 2024
    • Volume: 27(2)
    • Pages: 108920
    • Citations: 2
  3. Advances in 4-Nitrophenol Detection and Reduction Methods and Mechanisms: An Updated Review
    • Authors: Cardoso Juarez, A.O., Ivan Ocampo Lopez, E., Kesarla, M.K., Bogireddy, N.K.R.
    • Journal: ACS Omega
    • Year: 2024
    • Volume: N/A
  4. Porous silicon structures passivated with 10-undecenoic acid for possible ethanol sensing
    • Authors: Ospina-Delacruz, C.A., Castillo-Gallardo, V., Ariza-Flores, D., Bogireddy, N.K.R., Agarwal, V.
    • Journal: Materials Letters
    • Year: 2023
    • Volume: 352
    • Pages: 135117
    • Citations: 1
  5. Carbon Dots as a Novel Detection Material for Food Additives and Pesticides: A Mini Review
    • Authors: Kaur, I., Batra, V., Bogireddy, N.K.R., Kumar, Y., Agarwal, V.
    • Journal: Microscopy and Microanalysis
    • Year: 2023
    • Volume: 29(1)
    • Pages: 4–8
    • Citations: 2
  6. PDDA induced step-pyramidal growth of nickel-platinum (Ni-Pt) nanoparticles for enhanced 4-nitrophenol reduction
    • Authors: Bazán-Díaz, L., Pérez, A., Bogireddy, N.K.R., Herrera-Becerra, R., Mendoza-Cruz, R.
    • Journal: Chemical Communications
    • Year: 2023
    • Volume: 59(45)
    • Pages: 6845–6848
    • Citations: 3
  7. Pyridinic N anchored Ag and Au hybrids for detoxification of organic pollutants
    • Authors: Bogireddy, N.K.R., El Hachimi, A.G., Mejia, Y.R., Becerra, R.H., Agarwal, V.
    • Journal: npj Clean Water
    • Year: 2022
    • Volume: 5(1)
    • Pages: 40
    • Citations: 13
  8. The identification of byproducts from the catalytic reduction reaction of 4-nitrophenol to 4-aminophenol: A systematic spectroscopic study
    • Authors: Reddy Bogireddy, N.K., Mejia, Y.R., Aminabhavi, T.M., Ariza Flores, A.D., Agarwal, V.
    • Journal: Journal of Environmental Management
    • Year: 2022
    • Volume: 316
    • Pages: 115292
    • Citations: 28
  9. Reduction of 4-nitrophenol using green-fabricated metal nanoparticles
    • Authors: Mejía, Y.R., Reddy Bogireddy, N.K.
    • Journal: RSC Advances
    • Year: 2022
    • Volume: 12(29)
    • Pages: 18661–18675
    • Citations: 76
  10. Synthesis of α and γ phase of aluminium oxide nanoparticles for the photocatalytic degradation of methylene blue under sunlight: A comparative study
    • Authors: Kumar Anna, K., Kumar Reddy Bogireddy, N., Agarwal, V., Ramírez Bon, R.
    • Journal: Materials Letters
    • Year: 2022
    • Volume: 317
    • Pages: 132085
    • Citations: 11

 

Moltot Getahun Gebre | Environmental Engineering | Best Researcher Award

Mr. Moltot Getahun Gebre | Environmental Engineering | Ethiopia

Lecturer and Researcher at Werabe University, Ethiopia.

Moltot Getahun Gebre is an accomplished Environmental Engineer with extensive experience and expertise in water supply and environmental engineering. Holding an MSc in Environmental Engineering and a BSc in Hydraulic and Water Resource Engineering from Jimma University, Ethiopia, Moltot has demonstrated academic excellence throughout his education. He has undertaken various training programs, acquiring skills in sustainable sanitation systems, machine learning, project management, and more. Moltot’s professional journey includes roles as a Lecturer and Researcher at Werabe University and internships in environmental engineering projects. He has contributed to numerous publications and research activities, focusing on wastewater treatment optimization and urban water supply sustainability. With a diverse skill set encompassing software proficiency, laboratory techniques, and research methodologies, Moltot is well-equipped to tackle complex environmental challenges. His commitment to community engagement and leadership roles underscores his dedication to making a positive impact in his field.

Professional Profiles:

🏫 Experience:

Since 2022, Moltot Getahun Gebre has been serving as a Lecturer and Researcher in Water Supply & Environmental Engineering at Werabe University, Ethiopia. Previously, from 2019 to 2020, he provided free services in the Environmental Engineering Technical Lab and tutored freshman students at Jimma University. He also undertook an internship as a Site Supervisor at the Oromia small-scale irrigation project from February to June 2018, where he supervised site coordination and quality control.

📚 Education:

Moltot holds an MSc in Environmental Engineering (2019-2021) and a BSc in Hydraulic and Water Resource Engineering (2014-2019) from Jimma University, Ethiopia. He achieved a CGPA of 3.95/4.00 in his master’s, ranking as the top scorer, and a CGPA of 3.43/4.00 in his bachelor’s, among the top five scorers.

🎓 Training:

He has undergone various training programs and certifications, including courses in sustainable sanitation systems, machine learning, project management, artificial intelligence, and team building. Moltot has also completed online courses in Python programming, water, sanitation, and hygiene (WASH), and received a certificate for participating in a webinar on peer review reporting.

🏆 Awards and Honors:

Moltot has received multiple awards and certificates, including a Certificate of Competence as a consultant in environmental and social impact assessment studies. He has also been recognized for his contributions to projects and student unions, including being acknowledged as the project team leader and receiving certificates of appreciation for his involvement.

📝 Publications and Research Activity:

Moltot has published several research papers, including studies on environmental engineering topics like the optimization of indigenous natural coagulants process for wastewater treatment and investigating the sustainability of urban water supply systems.

🛠️ Skills:

His skills encompass various areas of water supply & environmental engineering, including proficiency in software like WaterGEMS, AutoCAD, GIS, and programming languages such as C++ and Python. He also possesses laboratory and research skills in water treatment, wastewater treatment, and environmental analysis.

Publications:

  1. Optimization of indigenous natural coagulants process for nitrate and phosphate removal from wet coffee processing wastewater using response surface methodology: In the case of …
    • Authors: M Getahun, P Asaithambi, A Befekadu, E Alemayehu
    • Journal: Case Studies in Chemical and Environmental Engineering
    • Volume: 8
    • Page: 100370
    • Year: 2023
  2. Chemical oxygen demand removal from wet coffee processing wastewater using indigenous natural coagulants: optimization through response surface methodology
    • Authors: M Getahun, P Asaithambi, A Befekadu, E Alemayehu
    • Journal: Desalination and Water Treatment
    • Page: 100217
    • Year: 2024
  3. Coagulation process for the removal of color and turbidity from wet coffee processing industry wastewater using bio-coagulant: Optimization through central composite design
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    • Journal: Heliyon
    • Year: 2024
  4. Case Studies in Chemical and Environmental Engineering
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