Randall Hanson | Hydrology | Best Researcher Award

Best Researcher Award

Randall Hanson
The University of Arizona

Randall Hanson is a researcher affiliated with The University of Arizona, United States, whose scholarly profile is associated with the field of Hydrology. The available bibliometric record reports 36 documents, 989 citations, and an h-index of 15, providing a measurable overview of his indexed research activity. [1]

Randall Hanson
Affiliation The University of Arizona
Country United States
Scopus ID 7401745740
Documents 36
Citations 989
h-index 15
Subject Area Hydrology
Event International Environmental Scientists Award

Contents

Abstract

Randall Hanson’s available scholarly profile identifies a hydrology-focused researcher at The University of Arizona. The reported record of 36 documents, 989 citations, and an h-index of 15 indicates an established body of indexed academic work and measurable citation activity. [1]

Keywords

Randall Hanson; Hydrology; water resources; environmental science; University of Arizona; scholarly research; citation impact; academic recognition.

Introduction

Hydrology examines the occurrence, movement, distribution, and management of water within environmental systems. Research in this discipline supports understanding of water resources, watershed processes, environmental change, and sustainable resource management. [2]

Research Profile

Hanson’s supplied academic record places his principal subject area within Hydrology and identifies The University of Arizona as his institutional affiliation. His Scopus Author ID is 7401745740, allowing his indexed scholarly record to be distinguished within the Scopus database. [1]

Research Contributions

The reported publication portfolio comprises 36 documents, reflecting continuing scholarly activity in the broader engineering and environmental research landscape. Assessment of individual contributions should consider methodological quality, originality, scientific relevance, collaboration, and application alongside bibliometric indicators.

Publications

The available record indicates 36 indexed documents. Since individual titles, journals, publication years, and verified DOI identifiers were not supplied, this profile does not attribute specific publication details or unverified DOI records to the researcher.

Research Impact

The reported 989 citations and h-index of 15 provide quantitative indicators of scholarly visibility within the indexed record. Citation measures are best interpreted in relation to disciplinary norms, publication age, research collaboration, and the substantive influence of individual studies. [1]

Award Suitability

The documented research activity, hydrology specialization, and citation profile provide relevant evidence for consideration under a researcher recognition category. Final suitability for the International Environmental Scientists Award should be determined through review of verified publications, originality, environmental relevance, and demonstrated research contributions.

Conclusion

Randall Hanson’s available profile represents an established hydrology research record associated with The University of Arizona. With 36 documents, 989 citations, and an h-index of 15, the supplied indicators provide a substantive basis for academic recognition while detailed publication-level assessment remains important.

References

  1. Elsevier. (n.d.). Scopus author details: Randall Hanson, Author ID 7401745740. Scopus.
    https://www.scopus.com/pages/authors/7401745740
  2. U.S. Geological Survey. (n.d.). Water Science School: Hydrology and the water cycle.
  3. The University of Arizona. (n.d.). University of Arizona institutional resources.
  4. Crossref. (n.d.). Digital Object Identifier infrastructure and scholarly metadata.
  5. ORCID. (n.d.). ORCID: Persistent identifiers for researchers.
  6. International Environmental Scientists Award. (n.d.). Official award website.
    https://environmentalscientists.org/

Jingjing Jiang | Wastewater | Best Researcher Award

Dr. Jingjing Jiang | Wastewater | Best Researcher Award

professor | Jilin University | China 

Dr. Jingjing Jiang of Jilin University is a distinguished environmental scientist whose research advances the understanding and application of transmembrane ion transport for wastewater treatment. With over 49 publications in SCI and Scopus-indexed journals, her work contributes significantly to sustainable environmental engineering and innovative water purification technologies. She has completed more than 15 research projects and participated in national collaborations supported by the National Natural Science Foundation of China, leading impactful research outcomes recognized through prestigious honors such as the Jilin Provincial Natural Science Award and the Ogano Award. Dr. Jingjing Jiang commitment to scientific innovation is reflected in her portfolio of 9 patents, 2 consultancy projects, and 1 published book, demonstrating both academic depth and industrial relevance. Her research impact is evidenced by 2,220 citations from 1,977 documents, 43 publications, and an h-index of 26, highlighting her strong international influence in the field. As a Young Editorial Board Member for several high-impact journals, including Nano-Micro Letters, Research, and Water Purification Technology, she actively shapes scholarly communication in environmental science. A recognized Tang Aoqing Young Scholar and Young Growth Science and Technology Talent of Jilin Province, Dr. Jingjing Jiang continues to mentor future scientists and foster cross-disciplinary collaboration. Her leadership, innovation, and academic excellence exemplify her as an emerging global authority in environmental engineering and a deserving candidate for the Best Researcher Award.

Profiles: Scopus | Researchgate

Featured Publications

Jiang, J., Zhang, Y., Liu, Y., & Dong, S. (2025, March). Selective activation of peroxymonosulfate through gating heteronuclear diatomic distance for flexible generation of high-valent cobalt-oxo species or sulfate radicals.

Sun, T., Liu, Y., Li, J., & Dong, S. (2025, March). Radical and nonradical cocatalysis induced by asymmetric medium-spin cobalt single atom for water decontamination.

Jiang, J., Liu, S., Zhao, B., & Dong, S. (2025, February). Angstrom confinement-triggered adaptive spin state transition of CoMn dual single atoms for efficient singlet oxygen generation.

Zhao, Z., Jiang, J., Zhou, D., & Dong, S. (2025, January). Microalgal-based urea wastewater treatment with p-hydroxybenzoic acid enhances resource recovery and mitigates biological risks from bisphenol A.

Liu, Y., Jiang, J., Li, T., & Dong, S. (2024, December). Tuning charge distribution for synergistic enhancement of internal electric field in BiOCl via phosphorus–vanadium dual-doping.