Simeon Tchakonte | Environmental Science | Best Researcher Award

Simeon Tchakonte | Environmental Science | Best Researcher Award

Dr Simeon Tchakonte , University of Buea, Cameroon

Dr. Simeon Tchakonte’s extensive educational background, qualifications, and contributions to the field of Hydrobiology and Environmental Health, he appears to be a highly suitable candidate for the Best Researcher Award. Hereā€™s a formatted summary highlighting his qualifications and research achievements:

Publication Profile

Scopus

Education and Training

Dr. Simeon Tchakonte holds a PhD in Animal Biology (2016) from the University of YaoundƩ I, specializing in Hydrobiology and Environment. He also obtained his MSc (2010) and BSc (2008) in the same field from the same institution. His academic journey began with a BaccalaurƩat D in 2005.

Qualifications and Research Focus

As an expert in Hydrobiology and Environmental Health, Dr. Tchakonte’s research primarily addresses water pollution, Water Sanitation and Hygiene (WASH), and the epidemiology of waterborne diseases. His work emphasizes water quality assessment using biological indicators, biodiversity conservation, and water treatment. His skills in biostatistics and modeling enhance his ability to analyze aquatic organisms’ responses to environmental changes.

Professional Experience

Dr. Tchakonte currently serves as a Medical Research Assistant at Plenitude Clinic, and as a Lecturer and Researcher at the University of Buea, where he teaches courses on data analysis and aquatic ecosystem conservation. He also has part-time positions at the University of Douala and the Institute of Fisheries and Aquatic Sciences.

Research Experience and Funding

He has significant research experience, having received funding for projects such as the ASPIRE Research Grant for studying freshwater crustaceans in the Dja Rainforest. He also secured laboratory equipment through the IDEA WILD Grant Programme for his research on bioindicators of land-use pressure.

International Engagement

Dr. Tchakonte actively participates in international workshops and conferences. His recent work includes contributions to the FISH4ACP initiative and presentations at conferences discussing the application of artificial intelligence in biomonitoring.

Selected Publications

  1. Influence of Tides on Health Risks: Explores the dissemination of intestinal helminths along Kribi beaches, highlighting public health concerns.
  2. Machine Learning in Freshwater Studies: Utilizes AI models to assess the population dynamics of the invasive snail Physa acuta in polluted urban streams.
  3. Water Quality and Plankton Communities: Analyzes the impact of the Memve’ele hydroelectric dam on the River Ntem’s ecosystem.
  4. New Protozoan Species: Describes four new species of Hysterocinetida from earthworms in the lower Nyong estuary.

Publication Top Notes

Influence of tides on the dissemination and related health risks of intestinal helminths along the Kribi beaches (Atlantic Coast, Southern Cameroon)

Using machine learning models to assess the population dynamic of the freshwater invasive snail Physa acuta Draparnaud, 1805 (Gastropoda: Physidae) in a tropical urban polluted streams-system

Four new species of Hysterocinetida (Protozoa: Ciliophora) from the digestive tract of earthworms collected to the lower Nyong estuary (South Coast, Cameroon)

Evaluation of the health risks linked to two swimming pools regularly frequented from the city of Yaounde in Cameroon (Central Africa)

Diversity, dynamic and ecology of freshwater snails related to environmental factors in urban and suburban streams in Doualaā€“Cameroon (Central Africa)

Conclusion

Dr. Tchakonte’s comprehensive qualifications, innovative research contributions, and commitment to environmental sustainability position him as a strong candidate for the Best Researcher Award.

Xiaoying Li | Environmental Science | Best Researcher Award

Xiaoying Li | Environmental Science | Best Researcher Award

Dr Xiaoying Li, Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, China

Based on Dr. Xiaoying Li’s extensive qualifications and achievements, she appears to be a highly suitable candidate for the Best Researcher Award. Here’s a structured evaluation of her profile:

Publication profile

Scopus

Work Experience

Dr. Xiaoying Li currently holds the position of Associate Professor at the Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences. She has previously served as an Associate Professor at Northeast Forestry University. Her roles at prestigious institutions underscore her leadership and expertise in her field.

Education

Dr. Li completed her Ph.D. in Physical Geography at the Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, where she was mentored by Prof. Huijun Jin. Her academic journey includes a masterā€™s degree from the Cold and Arid Regions Environmental and Engineering Research Institute and a bachelorā€™s degree from Inner Mongolia Normal University. Her solid educational background highlights her deep knowledge in geography and environmental science.

Publications

Dr. Li has authored numerous high-impact publications on permafrost and environmental changes. Her research covers topics such as the effects of wildfires on soil organic carbon and permafrost, with notable publications in journals like Permafrost and Periglacial Processes and Forests. Her extensive list of publications reflects her significant contributions to the field and her role as a leading researcher.

Research Projects

Dr. Li leads several funded research projects, including those from the National Natural Science Foundation of China and the Heilongjiang Excellent Youth Fund. Her projects focus on the spatio-temporal patterns of permafrost and the impact of forest fires on permafrost and soil carbon. Her role as a project leader on these significant studies demonstrates her ability to drive impactful research.

Conferences and Presentations

Dr. Li has presented her research at numerous international conferences, including the International Workshop on Arctic Cryospheric Changes and Sustainable Development and the AGU Fall Conference. Her presentations highlight her active engagement in the scientific community and her contribution to advancing knowledge in her field.

Membership in Professional Associations

Dr. Li is a committee member of several professional associations, including the Chinese Society of Cryosphere Science and the Chinese Society of Geomechanics and Geotechnical Engineering. She also serves on the advisory panels of Frontiers in Earth Science and Environmental Research Letters. Her involvement in these organizations underscores her influence and leadership in her field.

Conclusion

Dr. Xiaoying Liā€™s extensive experience, significant publications, leadership in research projects, active participation in conferences, and involvement in professional associations make her an exemplary candidate for the Best Researcher Award. Her contributions to understanding the impacts of environmental changes on permafrost and soil organic carbon are both pioneering and influential.

Publication top notes

Quantifying the influencing factors of the thermal state of permafrost in Northeast China

Permafrost thermal dynamics at a local scale in northern Da Xingā€™anling Mountains

Influences of Snow Cover on the Thermal Regimes of Xing’an Permafrost in Northeast China in 1960sā€“2010s

Carbon-cycling microorganisms in permafrost and their responses to a warming climate: A review

Effects of Forest Fires on Boreal Permafrost and Soil Microorganisms: A Review

 

YOGENDRA KUMARGAUTAM | Environmental Science | Best Researcher Award

Dr. YOGENDRA KUMARGAUTAM | Environmental Science | Best Researcher Award

Dr. YOGENDRA KUMARGAUTAM, Chaudhary Charan Singh University Meerut, India

Based on Dr. Yogendra Kumar Gautam’s profile, he appears to be a strong candidate for the Research for Best Researcher Award. Hereā€™s a detailed assessment formatted in paragraphs

Publication profile

Educational Background

Dr. Yogendra Kumar Gautam has a robust educational foundation in materials science and physics. He earned his Ph.D. from the Indian Institute of Technology (IIT) Roorkee in 2013 with a thesis on “Experimental Investigation of Hydrogen Effect on Selected Nanostructured Coatings.” His M.Tech. in Solid State Materials from IIT Delhi (2007) and M.Sc. in Physics (Electronics) from Chaudhary Charan Singh University (2004) further underline his expertise in experimental physics and material science.

Academic and Professional Experience

With over 11 years of experience, Dr. Gautam has served as an Assistant Professor at Chaudhary Charan Singh University (CCSU) since 2015, currently holding a Senior Scale position. His earlier roles include Assistant Professor at Jaypee University of Engineering & Technology and Research Associate at IIT Roorkee. His research focuses on energy and environmental remediation, including nanostructured materials for hydrogen storage and sensors, which aligns well with cutting-edge research in energy technologies.

Research and Technical Skills

Dr. Gautamā€™s research spans several high-impact areas, including hydrogen and toxic gas sensors, supercapacitors, and solar cells. His expertise in experimental techniques such as DC/RF magnetron sputtering, pulse laser deposition, and various microscopy methods highlights his capability to advance material science. He has handled significant research projects funded by esteemed agencies like the Council of Higher Education, Government of UP, and UGC, demonstrating his leadership in securing and managing research funding.

Teaching and Supervision

Dr. Gautam has a comprehensive teaching portfolio covering renewable energy, material science, and advanced physics topics. He has supervised numerous Ph.D., M.Phil., and M.Sc. students, guiding research in areas such as nanostructured coatings and gas sensors. His involvement in research supervision underscores his commitment to mentoring the next generation of researchers.

Research Projects

He has successfully managed several research projects, including the development of metal hydride thin films and chemiresistive gas sensors, with substantial funding from various research grants. These projects not only contribute to fundamental scientific knowledge but also have practical applications in energy storage and environmental monitoring.

Publication Top Notes

  • Facile green synthesis and applications of silver nanoparticles: a state-of-the-art reviewRSC Advances 9, 34926-48 (269 citations, 2019) šŸŒæšŸ”¬
  • Structural, optical and thermoelectric properties of Al-doped ZnO thin films prepared by spray pyrolysisSurfaces and Interfaces 19, 100504 (84 citations, 2020) šŸ§ŖāœØ
  • Nanostructured metal oxide semiconductor-based sensors for greenhouse gas detection: Progress and challengesRoyal Society Open Science 8 (3), 201324 (78 citations, 2021) šŸŒšŸ“‰
  • Fast and reversible hydrogen sensing properties of Pd/Mg thin film modified by hydrophobic porous silicon substrateSensors and Actuators B: Chemical 213, 252-260 (54 citations, 2015) šŸš€šŸ”¬
  • A study on structural, optical and hydrophobic properties of oblique angle sputter deposited HfO2 filmsApplied Surface Science 283, 332-338 (54 citations, 2013) šŸ§ŖšŸ“Š
  • Effect of Co and Mn doping on the morphological, optical and magnetic properties of CuO nanostructuresSolid State Sciences 106, 106296 (53 citations, 2020) šŸ§²šŸ”
  • Experimental investigation of Co and Fe-Doped CuO nanostructured electrode material for remarkable electrochemical performanceCeramics International 47 (2), 2094-2106 (45 citations, 2021) āš›ļøšŸ”‹
  • A room temperature hydrogen sensor based on Pdā€“Mg alloy and multilayers prepared by magnetron sputteringInternational Journal of Hydrogen Energy 40 (45), 15549-15555 (44 citations, 2015) šŸ”¬šŸ§Ŗ
  • Metal oxide nanomaterial-based sensors for monitoring environmental NO2 and its impact on the plant ecosystem: A reviewSensors & Diagnostics 1 (1), 106-129 (41 citations, 2022) šŸŒæšŸ”
  • Hydrogen absorption and optical properties of Pd/Mg thin films prepared by DC magnetron sputteringInternational Journal of Hydrogen Energy 37 (4), 3772-3778 (34 citations, 2012) šŸ§ŖšŸ’”
  • Enhancement in the sensitivity and selectivity of Cu functionalized MoS2 nanoworm thin films for nitrogen dioxide gas sensorMaterials Research Bulletin 150, 111784 (30 citations, 2022) šŸ“ˆšŸ”¬
  • Sputter deposited crystalline V2O5, WO3 and WO3/V2O5 multi-layers for optical and electrochemical applicationsApplied Surface Science 536, 147804 (28 citations, 2021) šŸ§ŖšŸ”¬
  • Studies on hydrogen sensing properties of nanostructured Pd and Pd/Mg thin films prepared by pulsed laser depositionSensors and Actuators B: Chemical 176, 453-459 (27 citations, 2013) šŸš€šŸ”¬
  • Hydrogenation of Pd-capped Mg thin films prepared by DC magnetron sputteringApplied Surface Science 257 (14), 6291-6295 (27 citations, 2011) šŸ”¬šŸ§Ŗ
  • Sputter-Grown Pd-Capped CuO Thin Films for a Highly Sensitive and Selective Hydrogen Gas SensorJournal of Electronic Materials 50, 192-200 (21 citations, 2021) šŸŒŸšŸ”‹
  • Hydrogen absorption and desorption properties of Pd/Mg/Pd tri-layers prepared by magnetron sputteringSurface and Coatings Technology 237, 450-455 (16 citations, 2013) šŸ§ŖšŸ”¬
  • Structural, optical and antimicrobial properties of pure and Ag-doped ZnO nanostructuresJournal of Semiconductors 43 (3), 032802 (15 citations, 2022) šŸŒŸšŸ”¬
  • Surface functionalized silver-doped ZnO nanocatalyst: a sustainable cooperative catalytic, photocatalytic and antibacterial platform for waste treatmentNanoscale Advances 5 (3), 805-819 (14 citations, 2023) šŸŒæā™»ļø
  • Room temperature photoluminescence and spectroscopic ellipsometry of reactive co-sputtered Cu-doped ZnO thin filmsOptik 257, 168860 (11 citations, 2022) šŸ’”šŸ”¬
  • Applications of green nanomaterials in coatingsGreen Nanomaterials for Industrial Applications, 107-152 (11 citations, 2022) šŸŒ±šŸ”¬


Conclusion

Dr. Yogendra Kumar Gautamā€™s extensive research experience, significant contributions to material science, and effective supervision of emerging researchers make him a highly suitable candidate for the Research for Best Researcher Award.

 

 

Sly Wongchuig | Environmental Science | Best Researcher Award

Dr. Sly Wongchuig | Environmental Science | Best Researcher Award

Postdoctoral Researcher, CNES (Centre National d’Ɖtudes Spatiales) and LEGOS (Laboratoire d’Ć©tudes en gĆ©ophysique et ocĆ©anographie spatiales), France

šŸŒ Dr. Sly Wongchuig Correa is an accomplished Agricultural Engineer and Water Resources expert hailing from Peru. With a rich academic background and extensive experience across multiple countries, his work focuses on hydrological-hydrodynamic modeling, climate change, and environmental sanitation. Currently, Dr. Wongchuig serves as a Postdoctoral Researcher at the UniversitĆ© Toulouse III-Paul Sabatier, where he continues to make significant contributions to the understanding of global water resources.

Publication Profile

Strengths for the Award:

  1. Diverse Expertise and International Experience: Sly Wongchuig Correa has a robust academic background with degrees in Agricultural Engineering, Water Resources, and Environmental Sanitation. His experience spans multiple countries, including Peru, Brazil, and France, showcasing his global perspective on water resource management and environmental science.
  2. Innovative Research Contributions: His work on large-scale hydrological-hydrodynamic modeling, particularly in developing methodologies for better estimation of spatio-temporal hydrologic variables, is groundbreaking. His research has practical implications for climate change assessment and the understanding of extreme events, which are critical areas in environmental science.
  3. Postdoctoral Achievements: He has completed significant postdoctoral research in high-profile projects like AMANECER and TOSCA-DYBANGO, funded by renowned institutions such as the French government and CNES. His current research on the hydroclimatology of the world’s largest tropical watersheds underscores his continued contribution to high-impact research.
  4. Publications: Sly has an impressive list of publications in prestigious journals, demonstrating his ability to produce high-quality research. His work on hydrological modeling, remote sensing, and climate change impacts is well-cited and respected in the scientific community.
  5. Teaching and Mentorship: His teaching experience across different countries and institutions highlights his commitment to knowledge dissemination and capacity building. This adds another dimension to his profile, making him not only a researcher but also an educator.

Areas for Improvement:

  1. Broadening Research Scope: While his focus on hydrology and environmental science is strong, expanding his research to incorporate interdisciplinary approaches or collaborate with other fields (such as socio-economic impacts of environmental change) could enhance his research impact.
  2. Grant Leadership: Although he has been involved in several prestigious projects, leading his own large-scale research grant could further establish his reputation as a leading researcher in his field.
  3. Public Engagement and Communication: Enhancing his visibility in the broader public sphere through outreach, popular science publications, or media engagements could further amplify the societal impact of his research.

 

Education

šŸŽ“ Dr. Wongchuig Correa holds a PhD in Water Resources and Environmental Sanitation from the Federal University of Rio Grande do Sul (UFRGS), Brazil (2015-2019). He also earned his MSc in Water Resources in Agricultural Systems from the Federal University of Lavras (UFLA), Brazil (2013-2015), and a Bachelor’s degree in Agricultural Engineering from the National Agrarian University (UNALM), Peru (2005-2009). Additionally, he completed an internship in Data Assimilation and SWOT simulation at the UniversitĆ© Toulouse III-Paul Sabatier (UPS) in France (2017).

Experience

šŸ’¼ Dr. Wongchuig Correa’s professional journey spans various prestigious institutions and research projects. Since October 2023, he has been a Postdoctoral Researcher at the LEGOS laboratory at UniversitĆ© Toulouse III-Paul Sabatier in France, funded by CNES. Previously, he worked as a Research Engineer at the same laboratory (2022-2023) and as a Postdoctoral Researcher at the Institut des GĆ©osciences de l’Environnement (IGE) at the University of Grenoble Alpes (2019-2022). His experience also includes engineering consulting roles in both Brazil and Peru.

Research Focus

šŸ”¬ Dr. Wongchuig Correa’s research focuses on improving the estimation of spatio-temporal hydrologic variables through large-scale hydrological-hydrodynamic modeling and data assimilation. His work is particularly relevant in the context of climate change, as he has contributed to the understanding of hydrological processes in regions like the Amazon Basin and the Peruvian Andes. His research efforts are aimed at better predicting and managing water resources under changing environmental conditions.

Awards and Honors

šŸ† Dr. Wongchuig Correa’s work has been recognized and funded by several esteemed organizations, including the Centre National d’Ɖtudes Spatiales (CNES), the Centre National de la Recherche Scientifique (CNRS), and the Institut de Recherche pour le DĆ©veloppement (IRD). His contributions to hydrology and environmental science are widely acknowledged within the scientific community.

Publication Top Notes

šŸ“š Dr. Wongchuig Correa has an impressive portfolio of publications. Some of his most notable works include:

  1. Multiā€Satellite Data Assimilation for Largeā€Scale Hydrologicalā€Hydrodynamic Prediction: Proof of Concept in the Amazon Basin (2024) – Water Resources Research. Cited by 0 articles. DOI:10.1029/2024WR037155
  2. The Andesā€“Amazonā€“Atlantic pathway: A foundational hydroclimate system for socialā€“ecological system sustainability (2024) – Proc. Natl. Acad. Sci. U.S.A. Cited by 0 articles. DOI:10.1073/pnas.2306229121
  3. Improved modeling of Congoā€™s hydrology for floods and droughts analysis and ENSO teleconnections (2023) – Journal of Hydrology: Regional Studies. Cited by 0 articles. DOI:10.1016/j.ejrh.2023.101563
  4. Changes in the surface and atmospheric water budget due to projected Amazon deforestation: Lessons from a fully coupled model simulation (2023) – Journal of Hydrology. Cited by 0 articles. DOI:10.1016/j.jhydrol.2023.130082
  5. Increased floodplain inundation in the Amazon since 1980 (2023) – Environmental Research Letters. Cited by 0 articles. DOI:10.1088/1748-9326/acb9a7

Conclusion:

Sly Wongchuig Correa is a strong candidate for the Best Researcher Award, given his significant contributions to hydrology, climate change research, and environmental science. His international experience, innovative research, and commitment to teaching make him a well-rounded and deserving nominee. Addressing the areas for improvement, particularly in public engagement and interdisciplinary collaboration, could further solidify his standing as a leading researcher in his field.

 

Hamid Reza Mobasser | Environmental Quality | Best Researcher Award

Assist Prof Dr. Hamid Reza Mobasser | Environmental Quality | Best Researcher Award

Assist Prof Dr. Hamid Reza Mobasser, Islamic Azad university, Iran

Dr. Hamid Reza Mobasser is a dedicated faculty member at Islamic Azad University with a PhD in Agricultural Engineering-Agronomy. He heads the Agronomy and Plant Breeding Department at Qaemshahr University and the Agriculture and Environmental Sciences Department in Mazandaran Province. Dr. Mobasser has over 140 national and international publications, focusing on rice, legumes, and nano fertilizers. His notable projects include optimizing plant density for rice cultivation and studying the effects of nanoparticles on crop traits. He actively contributes to academia by supervising numerous master’s and doctoral theses. šŸ“ššŸŒ±

Publication Profile

Google Scholar

Academic and Professional Background

Hamid Reza Mobasser holds a PhD, Masterā€™s, and Bachelorā€™s in Agricultural Engineering-Agronomy. He is the Head of Agronomy and Plant Breeding at Qaemshahr University and the Agriculture and Environmental Sciences Department at Mazandaran Province. He has organized and spoken at various workshops and conferences, including the ā€œWays to Improve Rice Yieldā€ workshop in 2024.

Research Focus

Dr. HR Mobasser’s research primarily focuses on agronomy, specifically the optimization of rice cultivation practices. His work explores various factors affecting rice yield and yield components, such as seedling age, planting density, nitrogen fertilization, and the application of nanoparticles. Additionally, Dr. Mobasser has contributed to studies on other crops, including canola and barley, examining the effects of different agronomic practices on their growth and yield. His research often involves evaluating the impacts of innovative agricultural techniques and inputs to enhance crop productivity and sustainability in Iran. šŸŒ¾šŸŒ±šŸ’§

Publication Top Notes

  • Effect of seedling age and planting space on yield and yield components of rice (Neda variety) šŸŒ¾šŸ“…
    • Asian Journal of Plant Sciences 6 (2), 438-440
    • Cited by: 82
    • Year: 2007
  • Effects of silicon and zinc nanoparticles on growth, yield, and biochemical characteristics of rice šŸŒ¾šŸ”¬
    • Agronomy Journal 111 (6), 3084-3090
    • Cited by: 57
    • Year: 2019
  • Effect of planting density on agronomical characteristics of rice (Oryza sativa L.) varieties in north of Iran šŸŒ¾šŸŒ±
    • Pakistan Journal of Biological Sciences: PJBS 10 (18), 3205-3209
    • Cited by: 57
    • Year: 2007
  • The effect of planting date and seedling age on yield and yield components of rice (Oryza sativa L.) varieties in North of Iran šŸŒ¾šŸ“…
    • African Journal of Agricultural Research 6 (11), 2571-2575
    • Cited by: 55
    • Year: 2011
  • Effect of cutting time and cutting height on yield and yield components of ratoon rice (Tarom langrodi variety) šŸŒ¾āœ‚ļø
    • Cited by: 48
    • Year: 2009
  • Effect of density on morphological characteristics related-lodging on yield and yield components in varieties rice (Oryza sativa L.) in Iran šŸŒ¾šŸ 
    • Am. Eurasian J. Agric. Environ. Sci 5, 745-754
    • Cited by: 46
    • Year: 2009
  • Effect of foliar application of zinc nano oxide on agronomic traits of two varieties of rice (Oryza sativa L.) šŸŒ¾šŸ”¬
    • Crop Research 52 (6), 195-201
    • Cited by: 37
    • Year: 2017
  • Effects of nitrogen fertilization and rice harvest height on agronomic yield indices of ratoon rice-berseem clover intercropping system šŸŒ¾šŸŒ±
    • Australian Journal of Crop Science 5 (5), 566-574
    • Cited by: 35
    • Year: 2011
  • Two Iranian rice cultivarsā€™ response to nitrogen and nano-fertilizer šŸŒ¾šŸ§Ŗ
    • Open Journal of Ecology 7 (10), 591-603
    • Cited by: 33
    • Year: 2017
  • Effect of seedling age and potassium rates on morphological traits related-lodging, yield and yield components of rice (Oryza sativa L.) in Iran šŸŒ¾šŸ“…
    • American-Eurasian Journal of Agricultural & Environmental Sciences 11, 261-268
    • Cited by: 31
    • Year: 2011

Peng Cui | Environmental Science | Best Researcher Award

Peng Cui | Environmental Science | Best Researcher Award

Assoc Prof Dr Peng Cui, Northeast Forestry University, China

Prof. Dr. Peng Cui šŸ›ļø is a distinguished academic with a PhD in Architecture from Harbin Institute of Technology and National University of Singapore. Currently a Professor and PhD Supervisor in Urban and Rural Planning at the College of Landscape Architecture, Northeast Forestry University, he focuses on low-carbon sustainable urban development, green urban design, and building energy simulation & control. Dr. Cui has authored 3 textbooks and 2 monographs, led 7 National Natural Science Foundation projects in China, and secured ongoing research funding of USD 200,000. He has published 23 SCI-indexed papers, with notable contributions to sustainable cities and environmental design. šŸŒæšŸ“š

Publication profile

Orcid

šŸŽ“ Education and Academic Roles

Professor Peng Cui holds a PhD in Architecture from Harbin Institute of Technology and National University of Singapore. He is a Postdoctoral Researcher in Landscape Architecture and a Professor in Urban and Rural Planning at the College of Landscape Architecture, Northeast Forestry University.

šŸ“š Publications and Achievements

Prof. Cui has authored 3 textbooks and 2 monographs. He has published 23 SCI-indexed papers, including in top-tier journals like Sustainable Cities and Society and Building and Environment.

Research focus

Peng Cui’s research primarily focuses on urban climate and environmental design, particularly in cold regions like Northeast China. His studies explore the impacts of urban green spaces, street design, and building morphology on local climate variables such as land surface temperature (LST), urban heat islands (UHI), and air quality. His work often employs advanced methods like gradient boosted regression trees and optimization algorithms to assess and improve urban microclimates. Key areas of interest include sustainable urban design, energy consumption, and environmental comfort in extreme climates. šŸŒ³šŸ™ļøšŸŒ”ļø

Publication top notes

Assessing the effects of urban green spaces metrics and spatial structure on LST and carbon sinks in Harbin, a cold region city in China

Effect of street design on UHI and energy consumption based on vegetation and street aspect ratio: Taking Harbin as an example

Assessing the Effects of Urban Morphology Parameters on PM2.5 Distribution in Northeast China Based on Gradient Boosted Regression Trees Method

[Retracted] A Study on Nonvisual Effects of Natural Light Environment in a Maternity Ward of a Hospital in Cold Area

Research on Acoustic Environment in the Building of Nursing Homes Based on Sound Preference of the Elderly People: A Case Study in Harbin, China

A Sustainable Design Strategy Based on Building Morphology to Improve the Microclimate of University Campuses in Cold Regions of China Using an Optimization Algorithm

Study on the Effect of Streetsā€™ Space Forms on Campus Microclimate in the Severe Cold Region of Chinaā€”Case Study of a University Campus in Daqing City

Impact of urban morphology on outdoor air temperature and microclimate optimization strategy base on Pareto optimality in Northeast China

Study of the Cooling Effects of Urban Green Space in Harbin in Terms of Reducing the Heat Island Effect

Assessing the Effects of Urban Morphology Parameters on Microclimate in Singapore to Control the Urban Heat Island Effect

Maryam Ghaemi | Environmental Science | Best Researcher Award

Maryam Ghaemi | Environmental Science | Best Researcher Award

Assist Prof Dr Maryam Ghaemi, Iranian National Institute for Oceanography and Atmospheric Science, Iran

Dr. Maryam Ghaemi is an esteemed Assistant Professor in Analytical Chemistry at the Iranian National Institute for Oceanography and Atmospheric Science (INIOAS) and the Head of the Bushehr Oceanography Center since 2017. She holds a Ph.D. and M.Sc. in Analytical Chemistry from Shiraz University and a B.Sc. in Pure Chemistry from Persian Gulf University. Dr. Ghaemi is a SCOR Visiting Scholar and the Vice-Chair of IOCINDIO. Her research interests include marine chemical ecology, chemical oceanography, and ocean acidification, with numerous publications in high-impact journals. Dr. Ghaemi actively participates in various scientific committees and working groups. šŸŒŠšŸ”¬šŸ“š

Publication profile

google scholar

Academic Background

Dr. Maryam Ghaemi earned a Ph.D. in Analytical Chemistry from Shiraz University, Shiraz, Iran (2007-2012) šŸŽ“. Prior to that, they completed an M.Sc. in Analytical Chemistry at Shiraz University (2003-2006) šŸ“˜. Their academic journey began with a B.Sc. in Pure Chemistry from Persian Gulf University, Bushehr, Iran (1999-2003) šŸ§Ŗ. Dr. [Name]’s extensive education in chemistry laid a strong foundation for their expertise and contributions to the field. šŸŒŸ

Experience

šŸŒŠ Assistant Professor in Analytical Chemistry at the Iranian National Institute for Oceanography and Atmospheric Science (INIOAS) since 2013, currently serving as Vice-Chair of IOC Sub-Commission for the Central Indian Ocean (IOCINDIO) and Head of the Bushehr Oceanography Center. šŸ§Ŗ Active Member of the ocean science decade working group, Iran Ocean Acidification Observing Network, and Blue Economy Working Group. šŸ“š Contributions include leading the “Nutrient and Chlorophyll a project” and co-authoring the oceanographic atlas of the Persian Gulf and Gulf of Oman. šŸŽ“ Recognition as a SCOR Visiting Scholar in China and a reviewer for ISI Journals.

Research focus

Dr. M. Ghaemi is a distinguished researcher whose work spans various fields of chemistry and environmental science. Their research primarily focuses on nanoparticle synthesis and adsorption studies, particularly involving Fe3O4 magnetic nanoparticles and their modifications for environmental applications, such as removing contaminants from water. Additionally, Dr. Ghaemi has contributed to understanding hypoxia and nutrient distribution in marine environments, synthesis of silver nanoparticles using algae, and the effects of secondhand and thirdhand smoke. Their expertise includes environmental chemistry, nanotechnology, and marine pollution. šŸŒŠšŸ”¬šŸ§Ŗ

Publication top notes

Study on the adsorption of DNA on Fe3O4Ā nanoparticles and on ionic liquid-modified Fe3O4Ā nanoparticles

Adsorption characteristics of Titan yellow and Congo red on CoFe2O4Ā magnetic nanoparticle

Fast removal and determination of doxycycline in water samples and honey by Fe3O4Ā magnetic nanoparticles

Hypoxia in the Persian Gulf and the Strait of Hormuz

Spatial distribution of nutrients and chlorophyll a across the Persian Gulf and the Gulf of Oman

Controllable synthesis and characterization of silver nanoparticles using Sargassum angostifolium

Secondhand and thirdhand smoke: a review on chemical contents, exposure routes, and protective strategies

Removal of alizarin red and purpurin from aqueous solutions using Fe3O4 magnetic nanoparticles

Transcriptional responses following seed priming with cold plasma and electromagnetic field inĀ Salvia nemorosaĀ L.

Experimental study on the thermal conductivity of silver nanoparticles synthesized using Sargassum angostifolium