Register      Login
Animal Production Science Animal Production Science Society
Food, fibre and pharmaceuticals from animals

Articles citing this paper

Experimental validation of the Intergovernmental Panel on Climate Change default values for ruminant-derived methane and its carbon-isotope signature

F. Klevenhusen A , S. M. Bernasconi B , M. Kreuzer A and C. R. Soliva A C
+ Author Affiliations
- Author Affiliations

A ETH Zurich, Institute of Plant, Animal and Agroecosystem Sciences, Universitaetstrasse 2, 8092 Zurich, Switzerland.

B ETH Zurich, Geological Institute, Sonneggstrasse 5, 8092 Zurich, Switzerland.

C Corresponding author. Email: carla.soliva@inw.agrl.ethz.ch

Animal Production Science 50(3) 159-167 https://doi.org/10.1071/AN09112
Submitted: 14 August 2009  Accepted: 26 January 2010   Published: 8 April 2010



25 articles found in Crossref database.

Variational inverse modeling within the Community Inversion Framework v1.1 to assimilate <i>δ</i><sup>13</sup>C(CH<sub>4</sub>) and CH<sub>4</sub>: a case study with model LMDz-SACS
Thanwerdas Joël, Saunois Marielle, Berchet Antoine, Pison Isabelle, Vaughn Bruce H., Michel Sylvia Englund, Bousquet Philippe
Geoscientific Model Development. 2022 15(12). p.4831
Comparing process-based models with the inventory approach to predict CH4 emission of livestock enteric fermentation
Zhang Jianan, Chen Lan, Chen Yizhao, Groisman Pavel
Environmental Research Letters. 2023 18(3). p.035002
Methane emissions from yak (Bos grunniens) steers grazing or kept indoors and fed diets with varying forage:concentrate ratio during the cold season on the Qinghai-Tibetan Plateau
Ding X.Z., Long R.J., Kreuzer M., Mi J.D., Yang B.
Animal Feed Science and Technology. 2010 162(3-4). p.91
Methane conversion rate of bulls fattened on grass or maize silage as compared with the IPCC default values, and the long-term methane mitigation efficiency of adding acacia tannin, garlic, maca and lupine
Staerfl Sabrina M., Zeitz Johanna O., Kreuzer Michael, Soliva Carla R.
Agriculture, Ecosystems & Environment. 2012 148 p.111
CH4/CO2 Ratios and Carbon Isotope Enrichment Between Diet and Breath in Herbivorous Mammals
Cerling Thure E., Bernasconi Stefano M., Hofstetter Lino S., Jaggi Madalina, Wyss Fabia, Rudolf von Rohr Claudia, Clauss Marcus
Frontiers in Ecology and Evolution. 2021 9
Stable Carbon Isotope Composition of c9,t11‐Conjugated Linoleic Acid in Cow's Milk as Related to Dietary Fatty Acids
Richter Eva Katharina, Spangenberg Jorge E., Klevenhusen Fenja, Soliva Carla R., Kreuzer Michael, Leiber Florian
Lipids. 2012 47(2). p.161
In situ observations of the isotopic composition of methane at the Cabauw tall tower site
Röckmann Thomas, Eyer Simon, van der Veen Carina, Popa Maria E., Tuzson Béla, Monteil Guillaume, Houweling Sander, Harris Eliza, Brunner Dominik, Fischer Hubertus, Zazzeri Giulia, Lowry David, Nisbet Euan G., Brand Willi A., Necki Jaroslav M., Emmenegger Lukas, Mohn Joachim
Atmospheric Chemistry and Physics. 2016 16(16). p.10469
Prediction of enteric methane emissions from cattle
Moraes Luis E., Strathe Anders B., Fadel James G., Casper David P., Kebreab Ermias
Global Change Biology. 2014 20(7). p.2140
Stable carbon isotope composition of perirenal adipose tissue fatty acids from Engadine sheep grazing either mountain or lowland pasture1
Richter E. K., Spangenberg J. E., Willems H., Kreuzer M., Leiber F.
Journal of Animal Science. 2012 90(3). p.905
Animal Feed Science and Nutrition - Production, Health and Environment (2022)
Samal Lipismita, Kumar Dash Susanta
Characterisation of methane sources in Lutjewad, The Netherlands, using quasi-continuous isotopic composition measurements
Menoud Malika, Van der Veen Carina, Scheeren Bert, Chen Huilin, Szénási Barbara, Morales Randulph P., Pison Isabelle, Bousquet Philippe, Brunner Dominik, Röckmann Thomas
Tellus B: Chemical and Physical Meteorology. 2020 72(1). p.1823733
Dietary habits of pastoralists on the Tibetan plateau are influenced by remoteness and economic status
Li Shanshan, Li Yinfeng, Wang Wenyin, Jiao Jianxin, Degen A. Allan, Zhang Tao, Bai Yanfu, Zhao Jingxue, Kreuzer Michael, Shang Zhanhuan
Food Research International. 2023 174 p.113627
Can we separate industrial CH4 emission sources from atmospheric observations? - A test case for carbon isotopes, PMF and enhanced APCA
Assan Sabina, Vogel F.R., Gros V., Baudic A., Staufer J., Ciais P.
Atmospheric Environment. 2018 187 p.317
Plume mapping and isotopic characterisation of anthropogenic methane sources
Zazzeri G., Lowry D., Fisher R.E., France J.L., Lanoisellé M., Nisbet E.G.
Atmospheric Environment. 2015 110 p.151
Methane emissions and δ13C composition from beef steers consuming increasing proportions of sericea lespedeza hay on bermudagrass hay diets
van Cleef Flavia O S, Dubeux José C B, Naumann Harley D, Santos Erick R S, Sollenberger Lynn E, Vendramini João M B, Ruiz-Moreno Martin, Ciriaco Francine M, DiLorenzo Nicolas
Journal of Animal Science. 2021 99(8).
Symposium review: Uncertainties in enteric methane inventories, measurement techniques, and prediction models
Hristov A.N., Kebreab E., Niu M., Oh J., Bannink A., Bayat A.R., Boland T.M., Brito A.F., Casper D.P., Crompton L.A., Dijkstra J., Eugène M., Garnsworthy P.C., Haque N., Hellwing A.L.F., Huhtanen P., Kreuzer M., Kuhla B., Lund P., Madsen J., Martin C., Moate P.J., Muetzel S., Muñoz C., Peiren N., Powell J.M., Reynolds C.K., Schwarm A., Shingfield K.J., Storlien T.M., Weisbjerg M.R., Yáñez-Ruiz D.R., Yu Z.
Journal of Dairy Science. 2018 101(7). p.6655
Investigation of the renewed methane growth post-2007 with high-resolution 3-D variational inverse modeling and isotopic constraints
Thanwerdas Joël, Saunois Marielle, Berchet Antoine, Pison Isabelle, Bousquet Philippe
Atmospheric Chemistry and Physics. 2024 24(4). p.2129
Source partitioning of atmospheric methane using stable carbon isotope measurements in the Reuss Valley, Switzerland
Stieger Jacqueline, Bamberger Ines, Siegwolf Rolf T. W., Buchmann Nina, Eugster Werner
Isotopes in Environmental and Health Studies. 2019 55(1). p.1
Revisiting enteric methane emissions from domestic ruminants and their δ13CCH4 source signature
Chang Jinfeng, Peng Shushi, Ciais Philippe, Saunois Marielle, Dangal Shree R. S., Herrero Mario, Havlík Petr, Tian Hanqin, Bousquet Philippe
Nature Communications. 2019 10(1).
Swiss diet types for cattle: how accurately are they reflected by the Intergovernmental Panel on Climate Change default values?
Zeitz Johanna O., Soliva Carla R., Kreuzer Michael
Journal of Integrative Environmental Sciences. 2012 9(sup1). p.199
Transfer of linoleic and linolenic acid from feed to milk in cows fed isoenergetic diets differing in proportion and origin of concentrates and roughages
Khiaosa-ard Ratchaneewan, Klevenhusen Fenja, Soliva Carla R, Kreuzer Michael, Leiber Florian
Journal of Dairy Research. 2010 77(3). p.331
Comparative evaluation of equations predicting methane production of dairy cattle from feed characteristics
Hippenstiel Friederike, Pries Martin, Büscher Wolfgang, Südekum Karl-Heinz
Archives of Animal Nutrition. 2013 67(4). p.279
Isotopic Ratios of Tropical Methane Emissions by Atmospheric Measurement
Brownlow R., Lowry D., Fisher R. E., France J. L., Lanoisellé M., White B., Wooster M. J., Zhang T., Nisbet E. G.
Global Biogeochemical Cycles. 2017 31(9). p.1408
Indications for a lower methane yield from digested fibre in ruminants digesting fibre more efficiently
Terranova M., Kreuzer M., Li Y., Schwarm A., Clauss M.
Animal Feed Science and Technology. 2024 307 p.115834
New contributions of measurements in Europe to the global inventory of the stable isotopic composition of methane
Menoud Malika, van der Veen Carina, Lowry Dave, Fernandez Julianne M., Bakkaloglu Semra, France James L., Fisher Rebecca E., Maazallahi Hossein, Stanisavljević Mila, Nęcki Jarosław, Vinkovic Katarina, Łakomiec Patryk, Rinne Janne, Korbeń Piotr, Schmidt Martina, Defratyka Sara, Yver-Kwok Camille, Andersen Truls, Chen Huilin, Röckmann Thomas
Earth System Science Data. 2022 14(9). p.4365

Committee on Publication Ethics


Abstract Export Citation Get Permission