Mekonnen Daba | Climate Change | Most Cited Article Award

Most Cited Article Award

Mekonnen Daba
Oromia Agricultural Research I, Ethiopia
Mekonnen Daba
Affiliation Oromia Agricultural Research I
Country Ethiopia
Scopus ID 57221302817
Documents 4
Citations 259
h-index 4
Subject Area Climate Change
Event International Research Excellence And Citation Awards
ORCID 0000-0003-4649-5144

Mekonnen Daba, affiliated with Oromia Agricultural Research I in Ethiopia, has established a research profile focused on climate change and related agricultural challenges. Citation-based indicators suggest that his scholarly contributions have achieved meaningful visibility within the scientific community, supporting recognition through the International Research Excellence And Citation Awards.[1]

Abstract

This article documents the scholarly profile and citation-based achievements of Mekonnen Daba. The assessment focuses on bibliometric indicators, research relevance, publication visibility, and the influence of research outputs within the field of climate change. Citation metrics indicate that the author’s publications have received substantial academic attention relative to the documented publication portfolio, supporting consideration for recognition through citation-focused academic awards.[1][2]

Keywords

Climate Change; Agricultural Research; Citation Analysis; Research Impact; Scientific Publications; Sustainable Development; Environmental Studies; Scholarly Recognition; Research Excellence; Bibliometrics.

Introduction

Academic citation metrics are widely employed to evaluate the visibility, influence, and dissemination of scientific knowledge. Citation-based recognition programs acknowledge researchers whose publications have generated measurable impact within scholarly literature. Mekonnen Daba’s publication record demonstrates engagement with topics related to climate change and agricultural sustainability, areas that remain highly significant for environmental management and food security research.[1][3]

Research Profile

Mekonnen Daba is affiliated with Oromia Agricultural Research I in Ethiopia and has contributed to scientific literature addressing climate-related challenges and agricultural development. Bibliometric records indicate a documented publication portfolio comprising four indexed documents, accumulating 259 citations and an h-index of 4. These indicators suggest consistent engagement with research topics that have attracted scholarly attention and subsequent referencing by other researchers.[1]

Research Contributions

The research contributions associated with Mekonnen Daba primarily address issues connected with climate variability, environmental sustainability, and agricultural adaptation. Such topics contribute to broader scientific understanding of how environmental changes affect agricultural productivity and resource management. Publications in these areas often provide evidence-based insights that support policy development, sustainable land-use planning, and resilience-building strategies.[2][3]

Publications

Indexed publications associated with the researcher contribute to the scientific discourse on climate change and agricultural systems. The citation performance of these works indicates their relevance within ongoing academic discussions and demonstrates measurable dissemination throughout the scholarly community.[1]

Research Impact

Research impact may be assessed through citation frequency, scholarly visibility, and evidence of knowledge transfer across disciplines. With 259 citations from four indexed documents, the available metrics indicate that the published work has attracted substantial academic engagement. Citation performance serves as one indicator of how research findings are incorporated into subsequent investigations and broader scientific discourse.[1]

  • 259 documented citations.
  • h-index of 4.

Award Suitability

The Most Cited Article Award emphasizes measurable scholarly influence derived from citation performance and research dissemination. Based on available bibliometric indicators, Mekonnen Daba demonstrates characteristics commonly associated with citation-based academic recognition, including publication visibility, citation accumulation, and sustained engagement within a relevant scientific field. These factors support suitability for consideration within the International Research Excellence And Citation Awards program.[1][4]

Conclusion

Mekonnen Daba’s scholarly profile reflects research engagement in climate change and agricultural sustainability, supported by documented citation metrics and publication visibility. The available evidence indicates that the research outputs have achieved measurable academic impact through citation activity. These achievements align with the objectives of citation-focused recognition programs and demonstrate the value of research contributions addressing environmental and agricultural challenges.[1][4]

References

  1. Elsevier. (n.d.). Scopus author details: Mekonnen Daba, Author ID 57221302817. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57221302817
  2. ORCID. (n.d.). Mekonnen Daba Research Profile.
    https://orcid.org/0000-0003-4649-5144
  3. IPCC. (2021). Climate Change 2021: The Physical Science Basis.
    https://doi.org/10.1017/9781009157896
  4. International Research Excellence And Citation Awards. (n.d.). Award Recognition Program.
    https://citationawards.com/

Md Arfan Ali | Climate Change | Best Researcher Award

Dr. Md Arfan Ali | Climate Change | Best Researcher Award

Air Pollution and Climate Change Expert at Regional Center for Climate Change, NCM, Jeddah, KSA, Saudi Arabia

Dr. Md Arfan Ali’s research interests span a wide range of topics within the field of atmospheric sciences. He is particularly focused on aerosol remote sensing, which involves the detection and measurement of aerosol properties from a distance, typically using satellite or ground-based instruments. His work in climate change examines the broad impacts of changing atmospheric conditions on global and regional climates. Dr. Ali also investigates aerosol pollution, including the study of aerosol optical depth (AOD) and particulate matter such as PM1, PM2.5, and PM10. His research extends to gaseous pollutants, where he examines the levels and effects of pollutants like ozone (O3), nitrogen dioxide (NO2), sulfur dioxide (SO2), carbon monoxide (CO), and carbon dioxide (CO2).

Professional Profiles:

📚 Education:

Dr. Md Arfan Ali has pursued an extensive and diverse academic journey across multiple prestigious institutions. In 2010, he completed his Bachelor of Science degree in Applied Physics and Electronic Engineering from the University of Rajshahi, Bangladesh. Building on this foundation, he earned a Master of Science degree in the same field from the same university in 2012. In 2016, Dr. Ali broadened his academic expertise by obtaining a second Master of Science degree in Meteorology from King Abdulaziz University. His academic pursuit continued to expand internationally when he completed his PhD in Marine Sciences from Nanjing University of Information Science and Technology in 2022. Currently, Dr. Ali is engaged in postdoctoral research at the School of Atmospheric Science, Lanzhou University, a position he commenced in 2023. His diverse educational background underscores his multidisciplinary expertise and dedication to advancing knowledge in his field.

Professional Experience:

Dr. Md Arfan Ali has held notable positions throughout his career, reflecting his expertise and commitment to his field. From September 2, 2017, to 2021, he served as the Assistant Managing Editor for the Journal of Earth Systems and Environment, hosted by King Abdulaziz University. In this role, he contributed significantly to the editorial processes and the dissemination of important research in Earth systems and environmental studies. Following this, Dr. Ali took on the role of Guest Editor for the MDPI journal Atmosphere. Starting on December 26, 2022, and continuing through June, he managed the Special Issue titled “Aerosols and Trace Gas Emissions: Methods and Applications,” overseeing the curation and review of cutting-edge research articles in this critical area of atmospheric science.

Awards:

Dr. Md Arfan Ali has been the recipient of several prestigious fellowships and awards throughout his academic career. In 2013, he was awarded the King Abdulaziz University International Postgraduate Research Scholarship, which supported his advanced studies and research initiatives. In 2019, Dr. Ali was granted the Chinese Government Scholarship Ph.D. Scheme by the China Scholarship Council (CSC), enabling him to pursue his doctoral studies with significant financial support and recognition. Further highlighting his excellence, in 2020, he received the Chinese Government Excellent International Student Scholarship, awarded by the Chinese Ministry of Education, acknowledging his outstanding academic performance and contributions as an international student.

Research Interest:

Dr. Md Arfan Ali’s research interests span a wide range of topics within the field of atmospheric sciences. He is particularly focused on aerosol remote sensing, which involves the detection and measurement of aerosol properties from a distance, typically using satellite or ground-based instruments. His work in climate change examines the broad impacts of changing atmospheric conditions on global and regional climates. Dr. Ali also investigates aerosol pollution, including the study of aerosol optical depth (AOD) and particulate matter such as PM1, PM2.5, and PM10. His research extends to gaseous pollutants, where he examines the levels and effects of pollutants like ozone (O3), nitrogen dioxide (NO2), sulfur dioxide (SO2), carbon monoxide (CO), and carbon dioxide (CO2). Air quality modeling is another key area of his expertise, involving the use of computational models to predict and analyze air quality and pollution dispersion. Additionally, Dr. Ali explores the effects of air pollution on human health, assessing how exposure to various pollutants can impact public health outcomes. His research further delves into aerosol-cloud interactions, studying how aerosols influence cloud formation and properties, as well as aerosol radiative forcing, which investigates the impact of aerosols on the Earth’s radiation balance and climate system.

📚Publications :

Assessment of CMIP6 performance and projected temperature and precipitation changes over South America

Authors: M. Almazroui, M. Ashfaq, M. N. Islam, I. U. Rashid, S. Kamil, M. A. Abid, E. O’Brien, M. A. Ali

Citations: 149

Year: 2021

Air pollution scenario over Pakistan: Characterization and ranking of extremely polluted cities using long-term concentrations of aerosols and trace gases

Authors: S. K. M. Bilal, A. Mhawish, J. E. Nichol, Z. Qiu, M. Nazeer, M. A. Ali, G. de Leeuw, R. C

Citations: 95

Year: 2021

Air Pollution Scenario over China during COVID-19

Authors: J. E. Nichol, M. Bilal, M. A. Ali, Q. Z.

Citations: 91

Year: 2020

Classification of aerosols over Saudi Arabia from 2004–2016

Authors: M. A. Ali, J. E. Nichol, M. Bilal, Z. Qiu, U. Mazhar, M. Wahiduzzaman

Citations: 56

Year: 2020

Assessment of AOD variability over Saudi Arabia using MODIS Deep Blue products

Authors: M. J. Butt, M. E. Assiri, M. A. Ali

Citations: 53

Year: 2017

Analysis of AOD from MODIS-Merged DT–DB Products Over the Arabian Peninsula

Authors: M. A. Ali, M. Assiri

Citations: 45

Year: 2019

Spatiotemporal Investigations of Multi-Sensor Air Pollution Data over Bangladesh during COVID-19 Lockdown

Authors: Z. Qiu, M. A. Ali, J. E. Nichol, M. Bilal, P. Tiwari, B. A. Habtemicheal, M. Almazroui

Citations: 42

Year: 2021

Seasonal Aerosol Optical Depth (AOD) Variability Using Satellite Data and its Comparison over Saudi Arabia for the Period 2002–2013

Authors: M. A. Ali, M. Assiri, R. Dambul

Citations: 41

Year: 2017

Investigations of MODIS AOD and cloud properties with CERES sensor based net cloud radiative effect and a NOAA HYSPLIT Model over Bangladesh for the period 2001–2016

Authors: M. A. Ali, M. M. Islam, M. N. Islam, M. Almazroui

Citations: 38

Year: 2018

Evaluation and comparison of CMIP6 models and MERRA-2 reanalysis AOD against Satellite observations from 2000 to 2014 over China

Authors: M. N. I. Ali, M. Bilal, Y. Wang, Z. Qiu, J. E. Nichol, G. de Leeuw, S. Ke, A. Rashid

Citations: 34

Year: 2021