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Environmental impacts of alternative agricultural uses of poorly drained farm land in Ireland. | LitMetric

Environmental impacts of alternative agricultural uses of poorly drained farm land in Ireland.

Sci Total Environ

UCD School of Biosystems and Food Engineering, University College Dublin, Belfield, Dublin 4, Ireland.

Published: October 2018

AI Article Synopsis

  • The abolition of the milk quota in the EU has led to increased dairy production in Ireland, particularly from poorly drained lands, prompting an evaluation of the environmental impacts of alternative agricultural uses through life cycle assessment (LCA).
  • The assessment focused on climate change, eutrophication, and acidification impacts per hectare for different farming practices, concluding that a pasture-based dairy or sheep system offers the greatest global net impact reduction, while suckler beef could be more beneficial for climate change specifically.
  • The choice of what agricultural product displaces another in market contexts greatly affects environmental impact results, highlighting the need for detailed consumption modeling to improve understanding of these substitutions.

Article Abstract

Abolition of the milk quota in the European Union and favourable market conditions have stimulated the expansion of the dairy sector in Ireland, causing more milk to be produced from poorly drained land. This work evaluated the environmental impacts of alternative agricultural uses for poorly drained farm land in Ireland using life cycle assessment (LCA). The avoided burden of the displaced product was used to calculate the net environmental consequences in the context of regional or global markets. The impact categories evaluated were climate change, eutrophication and acidification, all expressed per hectare of land for the alternative land uses, which were pasture-based milk, suckler beef and lowland sheep production and coniferous forestry. Beef had the lowest net climate change impact with global marginal and average product substitution while sheep had the lowest net climate change impact with European displaced product. For net eutrophication and acidification, dairy had the lowest impacts with European and global average displaced product. With global marginal displaced product, forestry had the lowest net eutrophication impact and sheep had the lowest net acidification impact. From an Irish perspective, forestry would generate the lowest environmental impacts and would also increase soil carbon stock, but this was not the best land use option from global perspective. Overall it can be concluded that a pasture based dairy or sheep system would have the greatest net global impact reduction (i.e. greatest global benefit) as land use options for farms with poorly drained soils. Prioritizing climate change, suckler beef system would perhaps be more favourable. It is clear that the choice of the displaced regional or global co-product from the market has a great influence on the results and there is a need to consider more detailed consumption modelling to better understand the substitution process.

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Source
http://dx.doi.org/10.1016/j.scitotenv.2018.04.315DOI Listing

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