NITRO-Met: Reactive Nitrogen Supply Driven by Orogenic Metamorphism

NERC · United Kingdom government procurement

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June 29, 2029
Response Due
Active
Status

Opportunity Overview

Nitrogen is one of six elements that form the building blocks of all life on Earth. The nitrogen cycle includes species that act as greenhouse gases, while its role as an essential nutrient for plants during photosynthesis on land and in the ocean means it has both direct and indirect effects on climate change. Biogeochemical and geological processes act together to distribute nitrogen amongst the Earth’s atmosphere, oceans, and biosphere, although the vast majority at the surface (N2 gas) is unavailable for life. While nitrogen-fixing organisms can produce reactive nitrogen as a major pathway into ecosystems, metamorphic reactions and mountain building also liberate reactive nitrogen from rocks and supply it to the surface over geological timescales. Hints from modern ecosystems and assessments of global rock weathering suggest that metamorphic rocks can be a an important reactive nitrogen source, with a flux of 20-30 TgN/yr, which is double pre-industrial rates of reactive nitrogen atmospheric deposition. Indeed, while a growing number of studies recognise the importance of mountain belts in the geological carbon cycle, the role of metamorphism and weathering on nitrogen redistribution remains poorly constrained. To move forward, NITRO-MET will assess how the continents spatially and temporally control reactive nitrogen supply to the biosphere over timescales relevant to the evolution of marine and terrestrial life. To deliver this outcome, the team will quantify the rates and magnitudes of reactive nitrogen production during mountain building, its storage in metamorphic minerals, and the release of nitrogen species from the continental crust during erosion and weathering. By doing so we will be able to make the first assessment of this poorly studied reactive nitrogen flux at Earth’s surface and its long-term impacts on atmospheric and oceanic chemistry, climate, and biological productivity.
Our central hypothesis is that tectonic processes associated with...

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Solicitation Details

Issuing agencyNERC
CountryUnited Kingdom
CategoryResearch Development
PublishedJune 29, 2026
Procurement stageActive solicitation
Response dueJune 29, 2029
StatusOpen — accepting responses
Official sourceView original notice
Last verifiedAugust 12, 2026

Source: UK Research and Innovation (UKRI) — Open Government Licence v3.0.

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