-
Study
-
Quick Links
- Open Days & Events
- Fixed Block Degrees
- Real-World Learning
- Unlock Your Potential
- Tuition Fees, Funding & Scholarships
- Still Time to Apply
-
Undergraduate
- Application Guides
- UCAS Exhibitions
- Extended Degrees
- School & College Outreach
- Parents & Guardians
-
Postgraduate
- Application Guide
- Postgraduate Research Degrees
- Flexible Learning
- Change Direction
- Register your Interest
-
Student Life
- Students' Union
- The Hub - Student Blog
- Accommodation
- Northumbria Sport
- Support for Students
-
Learning Experience
- Real-World Learning
- Research-enriched learning
- Graduate Futures
- The Business Clinic
- Study Abroad
-
-
International
International
Ideally situated in the 5th best student city in the UK (QS Best Student Cities 2026), Northumbria University is a UK Top 40 University (Complete University Guide 2026) with a diverse community of 34,500 students from over 140 countries.
Discover more-
International Students
- Information for International Students
- Northumbria and your Country
- International Student Events
- International Application Guide
- Entry Requirements and Education Country Agents
- Global Offices and Regional Teams
- English Requirements
- English Language Centre
- International student support
- Cost of Living
-
International Fees and Funding
- International Undergraduate Fees
- International Undergraduate Funding
- International Masters Fees
- International Masters Funding
- International Postgraduate Research Fees
- International Postgraduate Research Funding
- Useful Financial Information
-
International Partners
- Agent and Representatives Network
- Global Partnerships
- Global Community
-
International Mobility
- Study Abroad
- Information for Incoming Exchange Students
-
-
Business
Business
Northumbria University is proud to offer a range of Professional, Statutory and Regulatory Body (PSRB) approved & accredited courses and programmes. Explore our list of courses and programmes under our Education and Training page.
Discover more-
Business Quick Links
- Contact Us
- Business Events
- Research and Consultancy
- Education and Training
- Workforce Development Courses
- Join our mailing list
-
-
Research
Research
Northumbria is a research-rich, business-focused, professional university with a global reputation for academic quality. We conduct ground-breaking research that is responsive to the science & technology, health & well being, economic and social and arts & cultural needs for the communities
Discover more-
Quick Links
- Research Peaks of Excellence
- Academic Departments
- Research Staff
- Postgraduate Research Studentships
- Research Events
-
Research at Northumbria
- Interdisciplinary Research Themes
- Research Impact
- REF
- Partners and Collaborators
-
Support for Researchers
- Research and Innovation Services Staff
- Researcher Development and Training
- Ethics, Integrity, and Trusted Research
- University Library
- Vice Chancellors Fellows
-
Research Degrees
- Postgraduate Research Overview
- Doctoral Training Partnerships and Centres
- Academic Departments
-
Research Culture
- Research Culture
- Research Culture Action Plan
- Concordats and Commitments
-
-
About Us
-
About Northumbria
- Our Strategy
- Our Staff
- Our Schools
- Place and Partnerships
- Leadership & Governance
- University Services
- Northumbria History
- Contact us
- Online Shop
-
-
Alumni
Alumni
Northumbria University is renowned for the calibre of its business-ready graduates. Our alumni network has over 253,000 graduates based in 178 countries worldwide in a range of sectors, our alumni are making a real impact on the world.
Discover more - Work For Us
Antarctic mountains could boost ocean carbon absorption as ice sheets thin
Research led by polar scientists from Northumbria University has revealed new hope in natural environmental systems found in East Antarctica which could help mitigate the overall rise of carbon dioxide in the atmosphere over long timescales.
As Antarctica's ice sheets thin due to climate change, newly exposed mountain peaks could significantly increase the supply of vital nutrients to the Southern Ocean which surrounds the continent, potentially enhancing its ability to absorb atmospheric carbon dioxide, according to the research published in Nature Communications.
A team of scientists with expertise in oceanography, ice sheet modelling and geochemistry contributed to the study which looked at analysis of sediment samples from East Antarctica's Sør Rondane Mountains. They discovered that weathered rocks exposed above the ice surface contain iron concentrations up to ten times higher than previously reported from the Antarctic continent. This bioavailable iron is transported to the ocean by glaciers and icebergs, where it fuels the growth of phytoplankton – microscopic marine organisms that absorb CO₂ through photosynthesis.
The study found that sediments from mountain peaks protruding through the ice – known as nunataks – had over three times more extractable iron compared to sediments already being transported by glaciers. Some visibly rust-stained rock samples showed particularly elevated iron levels, suggesting that weathering processes on exposed surfaces create especially nutrient-rich material.
![]()
"Our results show that exposed bedrock in Antarctica acts like an iron factory," explained Dr Kate Winter, Associate Professor in the School of Geography and Natural Sciences at Northumbria University and lead author of the research paper. "Even though air temperatures rarely rise above freezing, sunlight can heat dark rock surfaces above 20°C in summer, creating the conditions needed for weathering and the formation of bioavailable iron compounds."
Dr Winter has travelled to Antarctica on fieldwork several times in recent years and has been supported by a Baillet Latour Antarctica Fellowship – a joint initiative of the Baillet Latour Fund and the International Polar Foundation (IPF). It provides scientists with the opportunity to conduct original research in East Antarctica’s cutting-edge Princess Elisabeth Antarctica research station.
Satellite observations confirm that coastal waters near to glacier outlets in the study region experience recurring phytoplankton blooms, demonstrating the biological importance of this natural iron delivery system. The blooms contribute to the Southern Ocean's role as a major carbon sink, absorbing atmospheric CO₂.
Dr Winter added: “The exciting thing is that we can take some hope from these findings because we know that carbon dioxide is a really important factor in climate change. From our research we now know that sediments from the Antarctic continent could help to draw down atmospheric carbon dioxide into the ocean. Whilst our study area is limited to one glacier system, what we need to understand is the potential impact of these many small amounts being drawn down together across the whole of Antarctica. Piecing together information to gather an accurate picture of how much these natural systems are working to reduce the amount of carbon in the atmosphere is crucial.”
However the research team, which includes scientists from the universities of Newcastle, Swansea, Plymouth, Edinburgh and Leeds, caution that there is a significant time lag in this process. Using ice flow models, they calculated that it takes between 10,000 and 100,000 years for iron-rich sediments collected in the mountains to reach the coast via glacial transport.
![]()
Dr Sian Henley, a marine scientist from the School of GeoSciences at the University of Edinburgh explained: “While the sediments we examine in the mountains today will take a long time to reach the ocean, we know from seafloor surveys that iron-rich sediments have been delivered to the coast for millennia, so the processes we record today give us a glimpse into changes we might expect to see in the future, as glaciers thin and more mountain surfaces are exposed in Antarctica.”
The study suggests that as temperatures continue to rise, several factors will increase iron delivery to the Southern Ocean:
- More mountain peaks will emerge as ice sheets thin
- Increased rock slope failures will deliver more sediment to glaciers
- Enhanced weathering will produce more bioavailable iron compounds
- Icebergs carrying this iron-rich sediment will distribute nutrients across vast ocean areas
![]()
The research provides important insights into how Antarctica's extreme environment connects with ocean ecosystems and the global carbon cycle. It also offers a glimpse into how this system may evolve as climate change continues to reshape the continent.
Discover more about research at Northumbria University which examines the future of ice on Earth.
FURTHER INFORMATION:
Visit the Northumbria University Research Portal to find out more about Dr Kate Winter’s work.
Thinning Antarctic glaciers expose high-altitude nunataks delivering more bioavailable iron to the Southern Ocean was published in Nature Communications.
DOI: 10.1038/s41467-025-65714-y
Banner image credit: Dr Kate Winter, drone footage
This is the place to find all the latest news releases, feature articles, expert comment, and video and audio clips from Northumbria University
Northumbria's academics are studying the future of ice sheets and glaciers worldwide in a warming world. This involves understanding the causes of ongoing changes in Antarctica, Greenland and alpine areas, as well as assessing future changes and resulting impacts on human environments globally.
VC Fellow in the Department of Geography and Environmental Sciences.
Latest News and Features
Northumbria University awarded £1.3 million to improve diabetes care for young adults
Researchers at Northumbria University will lead a major study aimed at helping GP practices…
NESCA backs women-led projects in historic week for space exploration
The North East Space Communications Accelerator (NESCA) has announced its second round of innovation…
MBE for founder of Northumbria University's pioneering Business Clinic
A Northumbria University academic who founded a pioneering Business Clinic that has connected…
Long-serving law professor recognised with two honours at Northern Law Awards
A law professor who has spent more than four decades shaping legal education and research in…
Northumbria University helps launch £22.5m fund to turn research into new businesses
Northumbria University is one of five North East universities backing a new £22.5m fund designed…
Sculpture to make public debut at Woodhorn's Miners' Picnic
A landmark sculpture honouring the North East's mining heritage will be unveiled to the public…
National Lottery funding will increase educational opportunities for Gypsy, Roma and Traveller families
Northumbria University has been awarded £245,061 by The National Lottery Community Fund to…
AI research to keep satellites safe from collisions
From GPS and weather forecasting to the financial networks underpinning the global economy,…
Upcoming events
REVEAL Architecture
Architecture Studios
REVEAL 3D Design: Furniture and Product
City Campus East 2
REVEAL Design for Industry
City Campus East 2
REVEAL Interior Design
City Campus East 2
