Completed Food & Agriculture Plants, Animals & Ecology

GCRF South Asian Nitrogen Hub

In plain English

AI plain-English summary

Nitrogen pollution in South Asia is poisoning the air people breathe, contaminating their water, and worsening coral bleaching—yet most people have never heard of it. This research hub brings together 32 organisations across eight countries to tackle a problem that, unlike climate change, has been largely ignored because scientists and policymakers have worked in silos, each focused on only one piece of the puzzle. The hub aims to create a coherent picture of the entire nitrogen cycle in South Asia, from agricultural fertiliser use to factory emissions to groundwater contamination. It will identify what prevents better management—whether cultural, economic, or environmental—and test solutions such as capturing nitrogen oxide from factories to convert into fertiliser, or improving manure and natural nitrogen fixation in farming. If successful, the research could help South Asian governments save money—India alone spends roughly £6 billion per year subsidising fertiliser—while reducing air and water pollution that damages health and ecosystems. It also provides a diplomatic model for regional cooperation on a shared environmental threat, shifting focus toward a healthier planet rather than past disagreements.

View original technical description
Humans have massively altered flows of nitrogen on our planet, leading to both benefits for food production and multiple threats to the environment. There are few places on Earth more affected than South Asia, with levels of nitrogen pollution rapidly increasing. The result is a web of interlinked problems, as nitrogen losses from agriculture and from fossil fuel combustion cause air and water pollution. This damages human health, threatens biodiversity of forests and rivers, and leads to coastal and marine pollution that exacerbates the effects of climate change, such as by predisposing reefs to coral bleaching. Altogether, it is clear that nitrogen pollution is something we should be taking very seriously. The amazing thing is that so few people have heard of the problem. Everyone knows about climate change and carbon footprints, but how many people are aware that nitrogen pollution is just as significant? One reason for this is that scientists and policy makers have traditionally specialised. Different experts have focused on different parts of the nitrogen story, and few have the expertise to see how all the issues fit together. This challenge is taken up by a major new research hub established under the UK Global Challenge Research Fund. The "GCRF South Asian Nitrogen Hub" is a partnership that brings together 32 leading research organisations with project engagement partners from the UK and South Asia. All eight countries of the South Asia Co-operative Environment Programme (SACEP) are included. The hub includes research on how to improve nitrogen management in agriculture, saving money on fertilizers and making better use of manure, urine and natural nitrogen fixation processes. It highlights options for more profitable and cleaner farming for India, Pakistan, Bangladesh, Nepal, Afghanistan, Sri Lanka, Bhutan and the Maldives. At the same time, the hub considers how nitrogen pollution could be turned back to fertilizer, for example by capturing nitrogen oxide gas from factories and converting it into nitrate. The fact that all the SACEP countries are included is really important. It means that lessons can be shared on good experiences as well as on whether there are cultural, economic and environmental differences that prevent better management practices from being adopted. It is also important from the perspective of international diplomacy, and provides an example to demonstrate how working together on a common problem is in everyone's interest. It puts the focus on future cooperation for a healthier planet, rather than on the past. The South Asian case provides for some exciting scientific, social, cultural and economic research challenges. The first is simply to get all the researchers talking together and understanding each other. There are dozens of languages in South Asia, matching the challenge met when different research disciplines come together. This is where developing a shared language around nitrogen can really help. There are lots of nitrogen forms ranging from unreactive atmospheric nitrogen (N2), to the air pollutants ammonia (NH3) and nitrogen dioxide (NO2), to nitrate (NO3-) which contaminates watercourses, and nitrous oxide (N2O) which is a greenhouse gas. The impacts of each of these are being studied to provide a better understanding of how they all fit together. The result is an approach that aims to give a much more coherent picture of the nitrogen cycle in South Asia: What is stopping us from taking action, and what can be done about it. One of the big expectations is that the economic value of nitrogen will help. India alone spends around £6 billion per year subsidising fertilizer supply. It means that South Asian governments are strongly motivated to use nitrogen better. At which point research from the South Asian hub can provide guidance on where they might start.

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Researchers

ALTAF AHMAD (Co-Investigator)Abdul Wakeel (Co-Investigator)Abdulla Naseer (Co-Investigator)Adam Price (Co-Investigator)Alan Dangour (Co-Investigator)Alexander Tudhope (Co-Investigator)Alfred Gathorne-Hardy (Co-Investigator)Aminath Shazly (Co-Investigator)Anita Ganesan (Co-Investigator)Arti Bhatia (Co-Investigator)Asif Reza Anik (Co-Investigator)Bob Rees (Co-Investigator)Christopher Ellis (Co-Investigator)Clare Barnes (Co-Investigator)Clare Howard (Co-Investigator)Damodar Jena (Co-Investigator)David Reay (Co-Investigator)David Stevenson (Co-Investigator)Dendup Tshering (Co-Investigator)Desiraju Subrahmanyam (Co-Investigator)Eiko Nemitz (Co-Investigator)Gufran Beig (Co-Investigator)HIMANSHU PATHAK (Co-Investigator)Icarus Allen (Co-Investigator)J.U. Smith (Co-Investigator)Jason Holt (Co-Investigator)Jonathan Hillier (Co-Investigator)Julia Drewer (Co-Investigator)Khem Raj Dahal (Co-Investigator)Laura Cardenas (Co-Investigator)Liz Grant (Co-Investigator)MJ Bowes (Co-Investigator)Mallika Pinnawala (Co-Investigator)Mark Sutton (Principal Investigator)Massimo Vieno (Co-Investigator)Md. Mizanur Rahman (Co-Investigator)Mrutyunjay Suar (Co-Investigator)Nancy Dise (Co-Investigator)Niveta Jain (Co-Investigator)Peter Shewry (Co-Investigator)Peter Smith (Co-Investigator)Philip Skuce (Co-Investigator)Purvaja Ramachandran (Co-Investigator)RABI SUBUDHI (Co-Investigator)RAMESH RAMACHANDRAN (Co-Investigator)Raghuram Nandula (Co-Investigator)Renu Singh (Co-Investigator)Roger Jeffery (Co-Investigator)SUDIPTA CHATTERJEE (Co-Investigator)Sanjoy Bandyopadhyay (Co-Investigator)Sarath Nissanka (Co-Investigator)Shazla Mohamed (Co-Investigator)Stefan Reis (Co-Investigator)Stefano Brandani (Co-Investigator)Stuart Painter (Co-Investigator)Subodh Sharma (Co-Investigator)Suraj Kumar Tripathy (Co-Investigator)Tapan Adhya (Co-Investigator)Tariq Aziz (Co-Investigator)Till Pellny (Co-Investigator)Tom Misselbrook (Co-Investigator)Toufiq Iqbal (Co-Investigator)Ulrike Dragosits (Co-Investigator)Umme Aminun Naher (Co-Investigator)Ute Skiba (Co-Investigator)Vera Eory (Co-Investigator)Victoria Bell (Co-Investigator)Zikrullah Safi (Co-Investigator)

Related Research

Grants with similar aims, by meaning.

Integrated Nitrogen Management System (Pump priming)
Linking ecology, enzymes and ecosystems in the global nitrogen cycle
Global Nitrogen Innovation Center for Clean Energy and the Environment (NICCEE)
UK - China Virtual Joint Centre for Improved Nitrogen Agronomy (CINAG)
N-CIRCLE: Virtual Joint Centre for Closed-Loop Cycling of Nitrogen in Chinese Agriculture

Original classification

Research Grant

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