Agriculture and Agri-Food Canada, Lethbridge Research and Development Centre, 5403 - 1 Avenue S, Lethbridge, AB, T1J 4B1, Canada.
J Anim Sci. 2021 Mar 1;99(3). doi: 10.1093/jas/skab046.
There are knowledge gaps in animal agriculture on how to best mitigate greenhouse gas emissions while maintaining animal productivity. One reason for these gaps is the uncertainties associated with methods used to derive emission rates. This study compared emission rates of methane (CH4) and carbon dioxide (CO2) measured by a commercially available GreenFeed (GF) system with those from (1) a mass flow controller (MFC) that released known quantities of gas over time (i.e., emission rate) and (2) a respiration chamber (RC). The GF and MFC differed by only 1% for CH4 (P = 0.726) and 3% for CO2 (P = 0.013). The difference between the GF and RC was 1% (P = 0.019) for CH4 and 2% for CO2 (P = 0.007). Further investigation revealed that the difference in emission rate for CO2 was due to a small systematic offset error indicating a correction factor could be applied. We conclude that the GF system accurately estimated enteric CH4 and CO2 emission rates of cattle over a short measurement period, but additional factors would need to be considered in determining the 24-hr emission rate of an animal.
在动物农业领域,如何在保持动物生产力的同时最大程度地减少温室气体排放,这方面存在知识空白。造成这些空白的原因之一是,用于推导排放率的方法存在不确定性。本研究通过比较商业上可用的 GreenFeed(GF)系统测量的甲烷(CH4)和二氧化碳(CO2)排放率与以下两种方法的结果:(1)随着时间推移释放已知数量气体的质量流量控制器(MFC)(即排放率),以及(2)呼吸室(RC)。GF 和 MFC 之间 CH4 的差异仅为 1%(P = 0.726),CO2 的差异为 3%(P = 0.013)。GF 和 RC 之间 CH4 的差异为 1%(P = 0.019),CO2 的差异为 2%(P = 0.007)。进一步的研究表明,CO2 排放率的差异是由于存在小的系统偏移误差,这表明可以应用校正因子。我们得出结论,GF 系统可以在短时间内准确估计反刍动物的 CH4 和 CO2 排放率,但在确定动物的 24 小时排放率时,还需要考虑其他因素。