Author:
Evers Andrew K.,Bambrick Amanda,Lacombe Simon,Dougherty Michael C.,Peichl Matthias,Gordon Andrew M.,Thevathasan Naresh V.,Whalen Joann,Bradley Robert L.
Abstract
Increasing awareness of global climate change has pressured agricultural producers to reduce greenhouse gas
(GHG) emissions while at the same time encouraging them to maintain food production needed for an increasing population.
Tree-based intercropping (TBI) systems are believed to be useful in climate change mitigation, especially in temperate
regions, due to their potential to reduce GHG emissions from agricultural practices. The purpose of this paper is therefore
to review some of the research conducted on GHG mitigation in TBI in southern Ontario and Quebec, Canada. Research
conducted at the University of Guelph Agroforestry Research Station (GARS) indicated that TBI systems had the
potential to lower N2O emissions by 1.2 kg ha-1 y-1 compared to a conventional agricultural field cropping system. Trees
can assimilate residual nitrate (NO3-) left from nitrogen (N) fertilizer applications, thereby leaving less NO3- available for
denitrification and subsequently reducing N2O losses. Carbon sequestration is also enhanced in TBI systems as carbon (C)
is stored in both above and below ground tree components. Soil Organic Carbon (SOC) is higher in systems incorporating
trees because tree litter decomposes slowly, therefore reducing CO2 loss to the atmosphere. The C sequestration potential
of TBI systems and the possibility to include fast-growing tree species for bioenergy production in TBI systems make it a
valid solution to mitigate climate change in temperate regions. The opportunity of C trading credits to offset the costs of
implementing a TBI system and provide additional income to farmers could facilitate the adoption of TBI amidst agricultural
producers in temperate regions.
Publisher
Bentham Science Publishers Ltd.
Subject
Soil Science,Agronomy and Crop Science,Animal Science and Zoology
Cited by
31 articles.
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