Harunur Rashid
Earth and Planetary Sciences · The Ohio State University
Publications
102
Citations
1,406
Est. group size
—
Recurring co-author estimate
Active years
29
Publishing since 1997
Harunur Rashid studies past climate and ocean changes by examining deep-sea sediment cores, focusing on the North Atlantic, Indian Ocean, and South China Sea over the last several hundred thousand years. His work combines fossil analysis (micropaleontology), chemical tracers (isotopes, biomarkers, trace metals), and sediment records to reconstruct ancient ocean currents, ice sheet behavior, and water temperature changes. This research helps scientists understand how ocean circulation and climate have shifted during past glacial and interglacial periods, providing context for present-day climate change.
Publication output has fluctuated over the last decade with a peak in 2018, a dip around 2022, and a moderate, fairly steady pace of roughly 4-6 papers per year in recent years.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Millennial-scale surface water mass changes between the North Atlantic subpolar and subtropical gyre since the last glacial-interglacial cycle
Global and Planetary Change · 2025
- Last 145 kyr Sea-surface Evolution in the Newfoundland Basin of the Northwest Atlantic: Insights from Sedimentology and Micropaleontology
2025
- The first application of RI-OH lipid biomarkers to reconstruct the upper water column thermal structure. An example from the tropical Indian Ocean (Bay of Bengal) during the past 24 kyr
Quaternary Science Reviews · 2025
- Advances in TiO2 Nanoparticles for Rhodamine B Degradation
2025
- Effects of climate change and methane-rich fluid activity on sedimentary sulfur geochemical records in the northern South China Sea since mid-Pleistocene
Global and Planetary Change · 2024
- The Quaternary sedimentary history and dynamics of the deep-water margin off the Hudson Strait ice stream
Quaternary Science Reviews · 2024
- Impact of the Laurentide Ice Sheet instabilities on the mid-latitude North Atlantic and subtropical gyre during the last five glacial cycles
2024
- Millennial-Scale Surface Water Mass Changes between the North Atlantic Subpolar and Subtropical Gyre Since the Last Glacial Cycle
SSRN Electronic Journal · 2024
- Diverse glacial ventilation in deep Pacific: An integrated record from Mariana Trench and Magellan Seamounts over the last 1.2 Myr [Global and Planetary Change, volume 230, November 2023, 104279]: Comment
Global and Planetary Change · 2024
- Impacts of Climate Change-Induced Salinity Intrusion on Physiological Parameters of Aquatic Hydrophytes from Coastal Rivers of Bangladesh
arXiv (Cornell University) · 2024
- Impact of Medieval Climate Anomaly and Little Ice Age on the Labrador Current flow speed and the AMOC reconstructed by the sediment dynamics and biomarker proxies
Palaeogeography Palaeoclimatology Palaeoecology · 2023
- Micropaleontological and Isotopic Perspective of Surface Water Mass Variability in the NE Atlantic from MIS 6 to 5e (188 to 115 ka)
Geosciences · 2023
- Dynamics of the subpolar gyre and transition zone of the North Atlantic during the last glacial cycle
Quaternary Science Reviews · 2023
- Assessing changes in the upper water thermal structure variability in the northern Indian Ocean during the past 24 ka
2023
- Contrasting Along-Slope vs. Downslope Sedimentation Style on the High-Latitude Eastern Canadian Continental Margin During the Last 40 ka
Frontiers in Earth Science · 2022
- Quaternary Science Reviews×4
- Figshare×4
- Global and Planetary Change×3
- AGU Fall Meeting Abstracts×3
- Journal of Geophysical Research Biogeosciences×2
- Peter E. Sauer
Earth and Planetary Sciences · Indiana University
- Lingwei Li
Earth and Planetary Sciences · The Ohio State University
- Saburo Sakai
Earth and Planetary Sciences · Purdue University West Lafayette
- Thomas E. Woodruff
Earth and Planetary Sciences · Purdue University West Lafayette
- Lawrence A. Krissek
Earth and Planetary Sciences · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
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