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Updated: Sep 10, 2025

Calibrated Passive Sampling - Multi-plot Field Measurements of NH3 Emissions with a Combination of Dynamic Tube Method and Passive Samplers
Published on: March 21, 2016
Ammonia emissions from agricultural products at high resolution across Europe
Xinpeng Jin1, Paul Behrens2,3, Jan Willem Erisman4
1Institute of Environmental Sciences (CML), Faculty of Science, Leiden University, Leiden, the Netherlands. x.jin@cml.leidenuniv.nl.
Abstract:
Ammonia (NH3) has significant adverse effects on biodiversity, human and ecosystem health. More than 90% of European NH3 emissions originate from manure and synthetic fertilizer. Understanding emissions from agricultural products at a high-resolution is essential for environmental policy making. Here, we present an Agricultural, Product-specific, AMMOnia emission dataset (AP-AMMO) for 17 crop groups, 2 grass types, and 6 livestock types across Europe at 5-arc minute resolution. We show that European agriculture emitted 3.5Tg NH3-N in 2017, with major livestock products (dairy cattle, other cattle, and swine) and major crop and grassland products (wheat, barley, maize, rapeseed, and permanent grass) contributing 66% and 14%, respectively. When aggregated to national and regional scales, AP-AMMO emissions fall within the range of previous estimates of commonly used (yet more aggregated) models (e.g. EDGAR, GAINS, CLRTAP, IMAGE-GNM, MASAGE). Discrepancies occur due to different excretion and emission factors and the spatial distributions of the production and management of agricultural products. This high-resolution database provides a basis for assessing food system transition impacts on the European nitrogen cycle.
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