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

Articles citing this paper

Methane emissions and feeding behaviour of feedlot cattle supplemented with nitrate or urea

J. I. Velazco A B C , D. J. Cottle A and R. S. Hegarty A
+ Author Affiliations
- Author Affiliations

A School of Environmental and Rural Science, University of New England, Armidale, NSW 2351, Australia.

B National Institute of Agricultural Research, Ruta 8 Km 281, Treinta y Tres 33000, Uruguay.

C Corresponding author. Email: jvelazco@myune.edu.au

Animal Production Science 54(10) 1737-1740 https://doi.org/10.1071/AN14345
Submitted: 13 March 2014  Accepted: 23 June 2014   Published: 19 August 2014



38 articles found in Crossref database.

Risk assessment of nitrate and nitrite in feed
Schrenk Dieter, Bignami Margherita, Bodin Laurent, Chipman James Kevin, del Mazo Jesús, Grasl‐Kraupp Bettina, Hoogenboom Laurentius (Ron), Leblanc Jean‐Charles, Nebbia Carlo Stefano, Nielsen Elsa, Ntzani Evangelia, Petersen Annette, Sand Salomon, Schwerdtle Tanja, Vleminckx Christiane, Wallace Heather, Bampidis Vasileios, Cottrill Bruce, Frutos Maria Jose, Furst Peter, Parker Anthony, Binaglia Marco, Christodoulidou Anna, Gergelova Petra, Guajardo Irene Munoz, Wenger Carina, Hogstrand Christer
EFSA Journal. 2020 18(11).
Coated cysteamine, a potential feed additive for ruminants — An updated review
Yaqoob Muhammad Umar, Hou Jia, Zhe Li, Qi Yingying, Wu Peng, Zhu Xiangde, Cao Xiaoli, Li Zhefeng
Animal Bioscience. 2024 37(2). p.161
Does grazing management provide opportunities to mitigate methane emissions by ruminants in pastoral ecosystems?
Zubieta Ángel Sánchez, Savian Jean Victor, de Souza Filho William, Wallau Marcelo Osorio, Gómez Alejandra Marín, Bindelle Jérôme, Bonnet Olivier Jean François, de Faccio Carvalho Paulo César
Science of The Total Environment. 2021 754 p.142029
Effects of dietary fat, nitrate, and 3-nitrooxypropanol and their combinations on methane emission, feed intake, and milk production in dairy cows
Maigaard Morten, Weisbjerg Martin R., Johansen Marianne, Walker Nicola, Ohlsson Christer, Lund Peter
Journal of Dairy Science. 2024 107(1). p.220
Effects of encapsulated nitrate on eating behavior, rumen fermentation, and blood profile of beef heifers fed restrictively or ad libitum1,2
Lee C., Araujo R. C., Koenig K. M., Beauchemin K. A.
Journal of Animal Science. 2015 93(5). p.2405
Reducing the carbon footprint of Australian milk production by mitigation of enteric methane emissions
Moate Peter J., Deighton Matthew H., Williams S. Richard O., Pryce Jennie E., Hayes Ben J., Jacobs Joe L., Eckard Richard J., Hannah Murray C., Wales William J.
Animal Production Science. 2016 56(7). p.1017
Insights on Alterations to the Rumen Ecosystem by Nitrate and Nitrocompounds
Latham Elizabeth A., Anderson Robin C., Pinchak William E., Nisbet David J.
Frontiers in Microbiology. 2016 7
Are dietary strategies to mitigate enteric methane emission equally effective across dairy cattle, beef cattle, and sheep?
van Gastelen Sanne, Dijkstra Jan, Bannink André
Journal of Dairy Science. 2019 102(7). p.6109
Behavior and foraging ecology of cattle: A review
Sahu Bhupendra Kumar, Parganiha Arti, Pati Atanu Kumar
Journal of Veterinary Behavior. 2020 40 p.50
Paraffin-wax-coated nitrate salt inhibits short-term methane production in sheep and reduces the risk of nitrite toxicity
de Raphélis-Soissan V., Nolan J.V., Godwin I.R., Newbold J.R., Perdok H.B., Hegarty R.S.
Animal Feed Science and Technology. 2017 229 p.57
Measuring the respiratory gas exchange by grazing cattle using an automated, open-circuit gas quantification system1
Gunter Stacey A, Beck Matthew R
Translational Animal Science. 2018 2(1). p.11
Nitrate is safe to feed ad libitum in molasses roller drums as a source of non-protein nitrogen
Goopy J. P., Hegarty R. S.
Animal Production Science. 2019 59(7). p.1288
Application of a hand-held laser methane detector for measuring enteric methane emissions from cattle in intensive farming
Kang Kyewon, Cho Hyunjin, Jeong Sinyong, Jeon Seoyoung, Lee Mingyung, Lee Seul, Baek Yulchang, Oh Joonpyo, Seo Seongwon
Journal of Animal Science. 2022 100(8).
Nitrate and Inhibition of Ruminal Methanogenesis: Microbial Ecology, Obstacles, and Opportunities for Lowering Methane Emissions from Ruminant Livestock
Yang Chengjian, Rooke John A., Cabeza Irene, Wallace Robert J.
Frontiers in Microbiology. 2016 7
Effect of different forage types and concentrate levels on energy conversion, enteric methane production, and animal performance of Holstein × Zebu heifers
Silva F. A. S., Filho S. C. Valadares, Detmann E., Santos S. A., Godoi L. A., Silva B. C., Pacheco M. V. C., Alhadas H. M., Rotta P. P.
Animal Production Science. 2017 57(10). p.2042
Dose-response effect of encapsulated nitrate replacing soybean meal on growth performance, ingestive behavior, and blood metabolites of feedlot finishing bulls
Araujo Rafael C., Pereira Marcela L.R., Couto Victor R.M., Lemos Barbara J.M., Jorge da Cunha Paulo H., Arnhold Emmanuel, Silva Jordanna A., Fernandes Juliano J.R.
Livestock Science. 2021 247 p.104475
Estimating daily methane production in individual cattle with irregular feed intake patterns from short-term methane emission measurements
Cottle D.J., Velazco J., Hegarty R.S., Mayer D.G.
Animal. 2015 9(12). p.1949
The effect of molasses nitrate lick blocks on supplement intake, bodyweight, condition score, blood methaemoglobin concentration and herd scale methane emissions in Bos indicus cows grazing poor quality forage
Callaghan M. J., Tomkins N. W., Hepworth G., Parker A. J.
Animal Production Science. 2021 61(5). p.445
Methane Emissions from Ruminants in Australia: Mitigation Potential and Applicability of Mitigation Strategies
Black John L., Davison Thomas M., Box Ilona
Animals. 2021 11(4). p.951
Measurement of Long-Term CH4 Emissions and Emission Factors from Beef Feedlots in Australia
Bai Mei, Coates Trevor, Hill Julian, Flesch Thomas K., Griffith David W. T., Van der Saag Matthew, Rinehart Des, Chen Deli
Atmosphere. 2023 14(9). p.1352
Effects of feed consumption rate of beef cattle offered a diet supplemented with nitrate ad libitum or restrictively on potential toxicity of nitrate12
Lee C., Araujo R. C., Koenig K. M., Beauchemin K. A.
Journal of Animal Science. 2015 93(10). p.4956
Effects of encapsulated nitrate on growth performance, carcass characteristics, nitrate residues in tissues, and enteric methane emissions in beef steers: Finishing phase1,2
Lee C., Araujo R. C., Koenig K. M., Beauchemin K. A.
Journal of Animal Science. 2017 95(8). p.3712
Effect of combining wheat grain with nitrate, fat or 3-nitrooxypropanol on in vitro methane production
Alvarez-Hess P.S., Moate P.J., Williams S.R.O., Jacobs J.L., Beauchemin K.A., Hannah M.C, Durmic Z., Eckard R.J.
Animal Feed Science and Technology. 2019 256 p.114237
Archaea in the microbial community of the reindeer rumen in the Russian Arctic
Ilina Larisa, Filippova Valentina, Yildirim Elena, Layshev Kasim, Valiev A., Ziganshin B., Nezhmetdinova F., Taylan A., Nizamov R.
BIO Web of Conferences. 2020 27 p.00066
Effects of bismuth subsalicylate and encapsulated calcium-ammonium nitrate on enteric methane production, nutrient digestibility, and liver mineral concentration of beef cattle
Henry Darren D, Ciriaco Francine M, Araujo Rafael C, Fontes Pedro L P, Oosthuizen Nicola, Rostoll-Cangiano Lautaro, Sanford Carla D, Schulmeister Tessa M, Dubeux Jose C B, Cliff Lamb Graham, DiLorenzo Nicolas
Journal of Animal Science. 2020 98(8).
Net reductions in greenhouse gas emissions from feed additive use in California dairy cattle
Feng Xiaoyu, Kebreab Ermias, Yildirim Arda
PLOS ONE. 2020 15(9). p.e0234289
Global beef cattle methane emissions: yield prediction by cluster and meta-analyses
Cottle D. J., Eckard R. J.
Animal Production Science. 2018 58(12). p.2167
Effects of mass airflow rate through an open-circuit gas quantification system when measuring carbon emissions1
Gunter Stacey A., Bradford James A., Moffet Corey A.
Journal of Animal Science. 2017 95(1). p.475
Nitrate supplementation has marginal effects on enteric methane production from Bos indicus steers fed Flinders grass (Iseilema spp.) hay, but elevates blood methaemoglobin concentrations
Tomkins N., Parker A. J., Hepworth G., Callaghan M. J.
Animal Production Science. 2018 58(2). p.262
Cysteamine: a human health dietary additive with potential to improve livestock growth rate and efficiency
Barnett M. C., Hegarty R. S.
Animal Production Science. 2016 56(8). p.1330
The GreenFeed system for measurement of enteric methane emission from cattle
Hammond K. J., Waghorn G. C., Hegarty R. S.
Animal Production Science. 2016 56(3). p.181
Comparison of Methods to Measure Methane for Use in Genetic Evaluation of Dairy Cattle
Garnsworthy Philip C., Difford Gareth F., Bell Matthew J., Bayat Ali R., Huhtanen Pekka, Kuhla Björn, Lassen Jan, Peiren Nico, Pszczola Marcin, Sorg Diana., Visker Marleen H.P.W., Yan Tianhai
Animals. 2019 9(10). p.837
Effect of Encapsulated Nitrate and Microencapsulated Blend of Essential Oils on Growth Performance and Methane Emissions from Beef Steers Fed Backgrounding Diets
Alemu Aklilu, Romero-Pérez Atmir, Araujo Rafael, Beauchemin Karen
Animals. 2019 9(1). p.21
Oral administration of Pinus koraiensis cone essential oil reduces rumen methane emission by altering the rumen microbial composition and functions in Korean native goat (Capra hircus coreanae)
Choi Youyoung, Lee Shin Ja, Kim Hyun Sang, Eom Jun Sik, Jo Seong Uk, Guan Le Luo, Seo Jakyeom, Park Tansol, Lee Yookyung, Lee Sang Suk, Lee Sung Sill
Frontiers in Veterinary Science. 2023 10
Feed intake, growth, and body and carcass attributes of feedlot steers supplemented with two levels of calcium nitrate or urea1
Hegarty R. S., Miller J., Oelbrandt N., Li L., Luijben J. P. M., Robinson D. L., Nolan J. V., Perdok H. B.
Journal of Animal Science. 2016 94(12). p.5372
Effects of encapsulated nitrate on growth performance, nitrate toxicity, and enteric methane emissions in beef steers: Backgrounding phase1,2
Lee C., Araujo R. C., Koenig K. M., Beauchemin K. A.
Journal of Animal Science. 2017 95(8). p.3700
Effect of dietary nitrate on enteric methane emissions, production performance and rumen fermentation of dairy cows grazing kikuyu-dominant pasture during summer
van Wyngaard J.D.V., Meeske R., Erasmus L.J.
Animal Feed Science and Technology. 2018 244 p.76
Meta-analysis quantifying the potential of dietary additives and rumen modifiers for methane mitigation in ruminant production systems
Almeida Amelia K., Hegarty Roger S., Cowie Annette
Animal Nutrition. 2021 7(4). p.1219

Committee on Publication Ethics


Abstract Export Citation Get Permission