Climate-Smart Livestock Systems: An Assessment of Carbon Stocks and GHG Emissions in Nicaragua

2016 | journal article. A publication with affiliation to the University of Göttingen.

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​Climate-Smart Livestock Systems: An Assessment of Carbon Stocks and GHG Emissions in Nicaragua​
Galtan, L.; Laderach, P.; Graefe, S.; Rao, I. & van der Hoek, R.​ (2016) 
PLoS ONE11(12) art. e0167949​.​ DOI: https://doi.org/10.1371/journal.pone.0167949 

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Authors
Galtan, Lucia; Laderach, Peter; Graefe, Sophie; Rao, Idupulapati; van der Hoek, Rein
Abstract
Livestock systems in the tropics can contribute to mitigate climate change by reducing greenhouse gas (GHG) emissions and increasing carbon accumulation. We quantified C stocks and GHG emissions of 30 dual-purpose cattle farms in Nicaragua using farm inventories and lifecycle analysis. Trees in silvo-pastoral systems were the main C stock above-ground (16-24 Mg ha(-1)), compared with adjacent secondary forests (43 Mg C ha(-1)). We estimated that methane from enteric fermentation contributed 1.6 kg CO2-eq., and nitrous oxide from excreta 0.4 kg CO2-eq. per kg of milk produced. Seven farms that we classified as climate-smart agriculture (CSA) out of 16 farms had highest milk yields (6.2 kg cow(-1) day(-1)) and lowest emissions (1.7 kg CO2-eq. per kg milk produced). Livestock on these farms had higher-quality diets, especially during the dry season, and manure was managed better. Increasing the numbers of CSA farms and improving CSA technology will require better enabling policy and incentives such as payments for ecosystem services.
Issue Date
2016
Journal
PLoS ONE 
Organization
Fakultät für Forstwissenschaften und Waldökologie ; Burckhardt-Institut ; Abteilung Waldbau und Waldökologie der Tropen 
ISSN
1932-6203

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