Effect of incorporating greenhouse gas emission costs into economic values of traits for intensive and extensive beef cattle breeds

Author:

Åby B.A.,Aass L.,Sehested E.,Vangen O.

Funder

Research Council of Norway, Geno Breeding and AI Association

The Norwegian Beefbreeders Association

Animalia Meat and Poultry Research Centre, Nortura SA

Norwegian Insitute of Food, Fisheries and Aquaculture Research

Publisher

Elsevier BV

Subject

General Veterinary,Animal Science and Zoology

Reference31 articles.

1. The impact of breeding to reduce residual feed intake on enteric methane emissions from the Australian beef industry;Alford;Australian Journal of Experimental Agriculture,2006

2. Aune, R., Bye, T., Hansen, M.I. & Johnsen, T.A., 1998. Gas price and shadow price for CO2-emission in Norway until 2027. (In Norwegian) Available at: 〈http://www.ssb.no/histstat/not/not_9854.pdf〉.

3. Nutritional management for enteric methane abatement: a review;Beauchemin;Australian Journal of Experimental Agriculture,2008

4. Life cycle assessment of greenhouse gas emissions from beef production in western Canada: A case study;Beauchemin;Agricultural Systems,2010

5. Mitigation of greenhouse gas emission from beef production in western Canada – evaluation using farm-based life cycle assessment;Beauchemin;Animal Feed Science and Technology,2011

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