References
- AOAC. 2006. Official Methods of Analysis. 18th edn. Association of Official Analytical Chemists International, Gaithersburg, MD, USA
- Beauchemin, K. A., M. Kreuzer, F. O’Mara and T. A. McAllister. 2008. Nutritional management for enteric methane abatement: a review. Aust. J. Exp. Agric. 48:21-27 https://doi.org/10.1071/EA07199
- Kume, S. and S. Tanabe. 1996. Effect of supplemental lactoferrin with ferrous iron on iron status of newborn calves. J. Dairy Sci. 79:459-464 https://doi.org/10.3168/jds.S0022-0302(96)76386-5
- Kume, S., T. Toharmat and N. Kobayashi. 1998. Effect of restricted feed intake of dams and heat stress on mineral status of newborn calves. J. Dairy Sci. 81:1581-1590 https://doi.org/10.3168/jds.S0022-0302(98)75724-8
- Kume, S. 2002. Establishment of profitable dairy farming system on control of methane production in Hokkaido region. In: Greenhouse gases and animal agriculture (Ed. J. Takahashi and B. A. Young). Elsevier, Amsterdam. pp. 87-94
- McCaughey, W. P., K. Wittenberg and D. Corrigan. 1999. Impact of pasture type on methane production by lactating beef cows. Can. J. Anim. Sci. 82:3346-3356
- Statistical Analysis System (SAS). 2005. JMP6 Statistics and Graphics Guide. SAS Institute Inc, Cary, NC, USA
- Takahashi, J., A. S. Chaudhry, R. G. Beneke and B. A. Young. 1999. An open-circuit hood system for gaseous exchange measurements in small ruminants. Small Rumin. Res. 32:31-36 https://doi.org/10.1016/S0921-4488(98)00163-1
- Takahashi, J. 2005. Emission of GHG from livestock production in Japan. In: 2nd International Conference on Greenhouse Gases And Animal Agriculture, pp. 30-37
- Takahashi, J., B. Mwenya, B. Santoso, C. Sar, K. Umetsu, T. Kishimoto, K. Nishizaki, K. Kimura and O. Hamamoto. 2005. Mitigation of methane emission and energy recycling in animal agricultural systems. Asian-Aust. J. Anim. Sci. 18:1199-1208
- Van Dorlanda, H. A., H. R. Wettsteina, H. Leuenbergera and M. Kreuzer. 2007. Effect of supplementation of fresh and ensiled clovers to ryegrass on nitrogen loss and methane emission of dairy cows. Livestock Science 111:57-69 https://doi.org/10.1016/j.livsci.2006.11.015
- Waghorn, G. C., M. H. Tavendale and D. R. Woodfield. 2002. Methanogenesis from forages fed to sheep. In: Proceedings of the New Zealand Society of Animal Production. pp. 266-277
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