M. Khalid Ijaz | Environmental Science | Visionary Research Award

M. Khalid Ijaz | Environmental Science | Visionary Research Award

Dr M. Khalid Ijaz, Reckitt, United States

Dr. M. Khalid Ijaz is a distinguished virologist and immunologist specializing in aerovirology, infectious diseases, and microbiology. With decades of expertise, he has made groundbreaking contributions to understanding airborne viral transmission, bioaerosols, and antimicrobial technologies. He has held leadership roles in renowned organizations like Reckitt Benckiser and Clorox, pioneering research in air decontamination and respiratory virus survival. His extensive publication record, including studies on coronavirus, rhinoviruses, and biofilms, highlights his impactful scientific contributions. Honored with prestigious awards like the 2024 R&D 100 Award, his innovative research continues to shape global public health policies.

Publication Profile

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Education

Dr. M. Khalid IjazΒ is a distinguished microbiologist and immunologist with a strong academic foundation in veterinary and medical sciences. He earned his Doctor of Veterinary Medicine (DVM) in 1976 and an MSc (Honors) in Microbiology in 1979 from the University of Agriculture, Pakistan. He became a Registered Microbiologist (RM) in Microbiology, Virology, and Immunology from the Canadian College of Microbiologists in 1984. He obtained his PhD in Microbiology & Immunology (Virology) from the University of Ottawa, School of Medicine, in 1985. He further honed his expertise with a Post-Doctorate Fellowship in Immunobiology/Vaccinology at the University of Saskatchewan, VIDO, in 1987. πŸŽ“πŸ§ͺπŸ…

Experience

With a distinguished career in scientific research and product development, he has been serving as the Director of Scientific Affairs at Reckitt Benckiser since 2020 🌍. Prior to this role, he was a Senior Research Fellow (2018-2020) πŸ”¬ and a Research Fellow (2007-2018) at the same company, contributing to groundbreaking innovations. His expertise extends to his tenure as Research Manager at Clorox Services Company (2005-2007) 🧴, where he played a key role in product safety and efficacy. Earlier, he held leadership positions at Microbiotest, Inc., serving as Vice President and Director (1998-2005), driving advancements in microbiological testing 🏭.

Awards and Honors

Renowned for groundbreaking contributions, this distinguished researcher earned the prestigious 2024 R&D 100 Award πŸ…, often called the “Oscars of Innovation.” Their journey of excellence began with the Medical Research Council Fellowship Award πŸŽ–οΈ in 1987, recognizing outstanding scientific achievements. In 1982, they received the WHO Research Trainee Award 🌍, highlighting their impact on global health research. That same year, their academic promise was acknowledged with the Graduate Student Entrance Scholarship πŸ›οΈ. Their early dedication to excellence was evident in 1976 when they received a Certificate of Merit πŸŽ–οΈ, marking the start of an illustrious career in research and innovation.

Presentation

Dr. M. Khalid Ijaz actively contributed to the 18th ISAIQ INDOOR AIR 2024 in Honolulu, Hawaii 🌴, exploring virus aerosolization and resuspension πŸ¦ πŸ’¨. As a co-chair, he led discussions on airborne virus dynamics. His research covered toilet flushing and cleaning effects on viral contamination πŸš½πŸ”¬, the efficacy of air sanitizers in reducing airborne pathogens πŸŒ¬οΈπŸ›‘οΈ, and virus dispersal from floor surfaces during indoor activities 🏠🦠. Collaborating with renowned scientists, Dr. Ijaz’s work enhances understanding of airborne disease transmission and effective mitigation strategies, crucial for public health and indoor air quality 🌎πŸ₯.

Research Focus

Aerovirology explores the airborne transmission of viruses, focusing on aerosolization and resuspension. πŸ’¨πŸ¦  This field examines how viruses travel through the air, their stability, and potential risks to public health. Infectious diseases research delves into microbiology, virology, and immunology, uncovering mechanisms of disease spread and immune responses. πŸ₯🧬 Understanding pathogens at a microscopic level aids in developing treatments and preventive strategies. Microbiology further extends to antimicrobial technologies, biofilms, and microbiological techniques, enhancing infection control and medical advancements. πŸ§«πŸ”¬ These interconnected fields contribute to safeguarding public health by improving detection, prevention, and management of infectious agents.

Publication Top Notes

  1. “Survival characteristics of airborne human coronavirus 229E” 🦠 (1985)
  2. “The global war against intestinal parasitesβ€”should we use a holistic approach?” 🀒 (2010)
  3. “An outbreak of Crimean-Congo hemorrhagic fever in the United Arab Emirates, 1994-1995” 🌎 (1997)
  4. “Assessment of a respiratory face mask for capturing air pollutants and pathogens including human influenza and rhinoviruses” 🎭 (2018)
  5. “Spread of viral infections by aerosols” πŸ’¨ (1987)
  6. “Generic aspects of the airborne spread of human pathogens indoors and emerging air decontamination technologies” πŸŒ† (2016)
  7. “Effect of relative humidity on the airborne survival of rhinovirus-14” πŸ’§ (1985)

 

Zeyang Wei | Environmental Science | Best Researcher Award

Zeyang Wei | Environmental Science | Best Researcher Award

Dr Zeyang Wei, Tsinghua University, China

Dr. Zeyang Wei πŸŽ“πŸŒ± is a Ph.D. candidate at Tsinghua University’s School of Environment (2020-2025), specializing in environmental impact assessment, agent-based modeling, and environmental zoning management. He holds a Bachelor’s degree from Renmin University of China in Agricultural Economics & Rural Development πŸŒπŸ“Š. His research explores industrial restructuring, pollution reduction, and carbon mitigation, with publications in top journals. He has presented at international conferences 🌏🎀 and serves as a teaching assistant. Recognized with the Tsinghua University Comprehensive Scholarship πŸ†, he contributes significantly to environmental science through modeling and policy analysis. πŸ“‘πŸ”¬

Publication Profile

Scopus

Education

Dr. Zeyang Wei πŸŽ“ is a Ph.D. candidate at Tsinghua University, Beijing (2020-2025), specializing in environmental impact assessment, agent-based modeling for industries, and environmental zoning management πŸŒπŸ“Š. Under the guidance of Prof. Yi Liu, he explores sustainable industrial strategies. He earned his bachelor’s degree from Renmin University of China (2016-2020) in Agricultural Economics & Rural Development πŸŒΎπŸ“ˆ. His undergraduate thesis focused on the environmental and economic assessment of industrial investment transfer from Beijing to the BTH region. Passionate about sustainable development, Dr. Wei integrates economic and environmental perspectives to drive impactful research for a greener future 🌱🏭.

Experience

Dr. Zeyang Wei has led multiple research projects focusing on environmental noise, computing, and pollution control πŸŒ±πŸ“Š. From October 2020 to June 2021, he analyzed community responses to environmental noise, applying statistical analysis πŸ“‰. In mid-2021, he explored environmental computing, summarizing its development and applications πŸ–₯οΈπŸ“„. Between December 2021 and June 2023, he researched pollution reduction and carbon mitigation strategies across industries 🌍⚑. His Ph.D. thesis (2021–present) involves developing an agent-based model to assess industrial firms’ environmental impacts under integrated zoning policies πŸ­πŸ”¬. His expertise spans industry analysis, research methodology, and academic writing βœοΈπŸ“š.

Research Focus

Z. Wei’s research focuses on environmental regulation πŸŒπŸ“œ, industrial restructuring πŸ­πŸ”„, and computational environmental science πŸ’»πŸŒ±. Their work explores the effectiveness of China’s integrated environmental zoning in reshaping industries, agent-based modeling for environmental studies, and the evolution of environmental computing. They also examine how emission permit regulations impact local industries and how social noise perception influences mitigation behavior. By integrating policy analysis, computational modeling, and environmental impact assessment, Wei contributes to sustainable development and environmental management. Their interdisciplinary approach bridges environmental science, industrial policy, and digital innovation for greener and more efficient industries. πŸ”¬πŸ“ŠπŸŒ

Presentation

Dr. Zeyang Wei’s research focuses on environmental economics πŸŒπŸ“Š, particularly the impact of discharge permits on the economic and emission performance of industrial firms πŸ­πŸ’°. Using an agent-based modeling approach πŸ€–πŸ“ˆ, his work explores how regulatory policies influence pollution control and sustainable industrial development. By integrating economic analysis with environmental assessment, he aims to optimize strategies for balancing economic growth and environmental responsibility βš–οΈπŸŒ±. His findings provide insights for policy-makers and industry leaders to enhance eco-friendly practices while maintaining profitability. His expertise lies at the intersection of industrial sustainability, environmental policy, and economic modeling πŸ”¬πŸ“‰.

Achievements & Academic Service

Dr. Zeyang Wei is affiliated with the Faculty of Resources and Environmental Science at Hubei University in Wuhan, China. His research focuses on remote sensing and image analysis, particularly in areas such as attribute profiles, convolutional neural networks (CNNs), and crop classification. His work aims to enhance the accuracy of image classification and improve the understanding of crop characteristics through advanced image processing techniques.

Publication Top Notes

Does the China’s integrated environmental zoning regulation serve an effective approach for industrial restructuring?

Conclusion

Dr. Zeyang Wei is a distinguished researcher known for his excellence in academia, pioneering innovative modeling techniques, and making significant contributions to his field πŸ†πŸ“Š. His groundbreaking research has advanced knowledge and inspired new methodologies in scientific studies πŸ”¬πŸ“–. With a strong commitment to innovation and academic excellence, Dr. Wei has consistently demonstrated a remarkable ability to solve complex problems and push the boundaries of research πŸš€πŸ’‘. His dedication and outstanding achievements make him an ideal candidate for the Best Researcher Award πŸ…πŸ‘. His work continues to influence and shape the future of research and development. πŸŒπŸ”

 

Minseok Ryu | Energy and Sustainability | Best Researcher Award

Minseok Ryu | Energy and Sustainability | Best Researcher Award

Assist Prof Dr Minseok Ryu, Arizona State University, United States

Dr. Minseok Ryu is an Assistant Professor at Arizona State University’s School of Computing and Augmented Intelligence since August 2023 πŸ‘¨β€πŸ«. He earned his Ph.D. in Industrial and Operations Engineering from the University of Michigan in 2020 πŸŽ“. His research focuses on optimization and machine learning applications in power systems and privacy-preserving federated learning πŸ”βš‘. Dr. Ryu has held positions at Argonne National Laboratory and Los Alamos National Laboratory 🏒. He has received numerous awards, including the 2024 Alliance Fellowship at Mayo Clinic and ASU and multiple research highlights from the DOE-ASCR 🌟.

Publication profile

google scholar

Education

Minseok Ryu holds a Ph.D. in Industrial and Operations Engineering from the University of Michigan, Ann Arbor, which he completed in May 2020 πŸŽ“. Before that, he earned an M.S. in Aerospace Engineering from KAIST, Daejeon, Korea, in February 2014 πŸš€. His academic journey began with a B.S. in Aerospace Engineering from KAIST, which he obtained in February 2012 ✈️.

Employment

Minseok Ryu is currently an Assistant Professor at the School of Computing and Augmented Intelligence at Arizona State University in Tempe, AZ (Aug 2023–present) πŸ“š. Previously, he was a Postdoctoral Appointee at the Mathematics and Computer Science Division, Argonne National Laboratory, Lemont, IL (Aug 2020–Jul 2023) πŸ”¬. He also worked as a Research Assistant with the Applied Mathematics and Plasma Physics Group, Los Alamos National Laboratory, Los Alamos, NM (May 2019–Aug 2019) πŸ§ͺ. Additionally, he served as a Post Baccalaureate Research Fellow at the Kellogg School of Management, Northwestern University, Evanston, IL (Nov 2014–Apr 2015) πŸŽ“.

Honors & Awards

Minseok Ryu has achieved numerous accolades throughout his career. In 2024, he was honored as an Alliance Fellow by the Mayo Clinic and ASU Alliance for Health Care and participated in the Faculty Summer Residency program. His research was highlighted by the Department of Energy’s Advanced Scientific Computing Research (DOE-ASCR) in both 2023 and 2022. Ryu received the Rackham Graduate Student Research Grant in 2016 and multiple fellowships from the University of Michigan in 2015. Additionally, he earned the National Science Foundation Student Award from INFORMS Computing Society. Earlier, he received the National Scholarship from the Korean government (2010-2013) and accolades from KAIST, including the Department Honor and Best Technical Poster Award in 2010. πŸŽ“πŸ”¬πŸ“Š

Presentations

Minseok Ryu has made significant contributions to various fields, presenting his research at numerous esteemed conferences. His work includes heuristic algorithms for geomagnetically induced current blocking devices (Paris, June 2024) 🌍⚑, generating columns (Phoenix, Oct 2023) πŸ“, and differentially private algorithms for constrained federated learning (Seattle and Amsterdam, 2023) πŸ”’πŸ€–. He has also focused on privacy-preserving federated learning frameworks (Arlington, Aug 2022; Virtual, June 2022) πŸ›‘οΈπŸ“‘. Additionally, he has explored optimal power flow control, transmission expansion planning, and robust optimization in healthcare staffing across various platforms including INFORMS, SIAM, and international symposiums πŸŒπŸ§‘β€βš•οΈ

Research focus

Minseok Ryu’s research primarily focuses on data-driven optimization and privacy-preserving techniques, particularly in federated learning and power systems. His work spans several areas, including robust optimization under uncertainty, privacy-preserving distributed control, and federated learning frameworks. Key applications include improving nurse staffing models, optimizing electric grids against geomagnetic disturbances, and developing secure frameworks for federated learning in biomedical research. Ryu’s contributions are significant in ensuring privacy and robustness in distributed systems and optimization problems. πŸ§ πŸ”’πŸ’‘πŸ”‹πŸ‘©β€βš•οΈ

Publication top notes

Data-Driven Distributionally Robust Appointment Scheduling over Wasserstein Balls

APPFL: Open-Source Software Framework for Privacy-Preserving Federated Learning

A Privacy-Preserving Distributed Control of Optimal Power Flow

An extended formulation of the convex recoloring problem on a tree

Nurse Staffing under Absenteeism: A Distributionally Robust Optimization Approach

Differentially private federated learning via inexact ADMM with multiple local updates

Mitigating the Impacts of Uncertain Geomagnetic Disturbances on Electric Grids: A Distributionally Robust Optimization Approach

Algorithms for Mitigating the Effect of Uncertain Geomagnetic Disturbances in Electric Grids

Development of an Engineering Education Framework for Aerodynamic Shape Optimization

Enabling End-to-End Secure Federated Learning in Biomedical Research on Heterogeneous Computing Environments with APPFLx

Atena Mirbolook | Environmental Science | Best Researcher Award

Atena Mirbolook | Environmental Science | Best Researcher Award

Dr Atena Mirbolook, Urmia University, Iran

Dr. Atena Mirbolook is a distinguished soil scientist with a Ph.D. in Soil Chemistry and Fertility from Urmia University (2014-2020) 🌱. She also holds an M.S. and B.S. in Agriculture Engineering – Soil Science from Ferdowsi University of Mashhad 🌾. As a lecturer at Payame Noor University and an educational expert at Ferdowsi University, she has made significant contributions to soil science research. Her work focuses on innovative fertilizers to enhance nutrient uptake and crop yields. Dr. Mirbolook has published extensively, with notable research on slow-release fertilizers and nutrient efficiency πŸ“š. She is an active member of the Iranian Soil Science Association 🌐.

Publication profile

google scholar

Education

I hold a Ph.D. in Soil Chemistry and Fertility from Urmia University, where I was the top graduate in 2020 πŸ†. Prior to this, I earned my M.S. in Agricultural Engineering with a focus on Soil Science from Ferdowsi University in Mashhad, graduating as the second top student in 2006 πŸ₯ˆ. My academic journey began with a B.S. in Agricultural Engineering, also from Ferdowsi University, where I graduated as the second top student in 2003 🌱. My educational background has provided me with a strong foundation in soil science and agricultural engineering.

Experience

As a lecturer at Payame Noor University in Mashhad, Iran, I bring a wealth of expertise in educational practices, supported by my role as an educational expert at Ferdowsi University. My involvement with the Iranian Soil Science Association underscores my dedication to advancing environmental knowledge. Additionally, as a research and development expert at Song of Soil & Sun Fajr Parsian Company, I actively contribute to innovative initiatives in agriculture and environmental sustainability. 🌱 My career path reflects a commitment to education, research, and practical application, aimed at fostering a deeper understanding of soil science and its implications for our environment.

Research focus

Dr. A. Mirbolook’s research primarily focuses on enhancing nutrient uptake efficiency in plants through innovative fertilization strategies. 🌱 His work spans the synthesis and application of chelates such as Zn-amino acid and -chitosan complexes to improve zinc uptake in beans and wheat. Additionally, he explores the fortification of bread wheat with micronutrients like zinc and iron through organic complexes, highlighting their efficacy compared to traditional forms like ZnSO4. 🍞 His studies contribute significantly to agricultural sustainability by investigating novel slow-release fertilizers and their impact on crop growth, nutrient concentrations, and yield, addressing critical issues in modern farming practices.

Publication top notes

Synthesized Zn(II)-Amino Acid and -Chitosan Chelates to Increase Zn Uptake by Bean (Phaseolus vulgaris) Plants

Fortification of Bread Wheat Using Synthesized Zn-Glycine and Zn-Alanine Chelates in Comparison with ZnSO4Β in a Calcareous Soil

Effects of chromium on enzymatic/nonenzymatic antioxidants and oxidant levels of Portulaca oleracea L.

Phytoremediation of Cr+ 6 in contaminated soil using Portulaca oleracea

Effect of a new slow-release zinc fertilizer based on carbon dots on the zinc concentration, growth indices, and yield in wheat (Triticum aestivum)

Fortification of bread wheat with iron through soil and foliar application of iron-organic-complexes

Comparison of chemical, physical characteristics and maturity of produced vermicompost from cow manure treated with sugar beet molasses, aeration and soil

The effect of different concentrations of nano-molybdenum and calcium fertilizers on growth parameters and nodulation of Chickpea (Cicer arietinum L.)

Synthesis and characterization of the Schiff base Fe (II) complex as a new iron source in nutrient solution

New Slow-Release Urea Fertilizer Fortified with Zinc for Improving Zinc Availability and Nitrogen Use Efficiency in Maize

Effect of Iron Chelates and their Application Methods on Iron Nutrition Status of Bean Plant (Phaseolus vulgaris) in a Calcareous Soil