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On the importance of background sampling in applications of the SF6 tracer technique to determine ruminant methane emissions

机译:关于背景采样在SF6示踪剂技术确定反刍动物甲烷排放中的重要性

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Implementations of the sulphur hexafluoride (SF6) tracer technique to determine methane (CH4) emission rates from individual ruminant animals involve measuring levels of both CH4 and SF6 in background air. In well-ventilated settings, including grazing, background sampling is straightforward and the algebraic correction for background levels is then usually minor. In a recent paper in this journal (Vol. 170, p. 265-276), Williams et al. drew attention to the much more careful consideration that is needed for background sampling in experiments that use the SF6 tracer technique with housed animals when both CH4 and SF6 levels can build up unevenly within the housing. This note builds on that study to show specifically and rigorously: (a) what is meant by background air, and that background corrections to CH4 emission estimates are unaffected by the recycling of CH4 and SF6 through inhalation of self-exhaled gases; (b) that in studies of the role of various treatments on CH4 emission rates, the siting of background samplers can crucially impact on findings; and, in particular, (c) that reports of a possible dependence of estimated CH4 emission rates upon the rate of SF6 release in the rumen are called into question due to the sensitivity of those findings to the siting of background samplers
机译:六氟化硫(SF6)示踪剂技术的实施,用于确定来自反刍动物的甲烷(CH4)排放速率,涉及测量背景空气中CH4和SF6的水平。在通风良好的环境中,包括放牧,背景采样很简单,因此背景水平的代数校正通常很小。 Williams等人在该杂志的最新论文中(第170卷,第265-276页)。提请注意在将SF6示踪剂技术用于家畜的实验中,当CH4和SF6含量均可能在房屋内不均匀地堆积时,进行背景采样时需要更加仔细的考虑。本说明以该研究为基础,以具体而严格地显示:(a)背景空气的含义,并且通过吸入自呼气而对CH4和SF6进行再循环不会影响对CH4排放估算值的背景校正; (b)在研究各种处理方法对CH4排放速率的作用时,背景采样器的选址会严重影响研究结果; (c)特别是,由于这些发现对背景采样者所处位置的敏感性,使有关CH4估计排放速率可能与瘤胃中SF6释放速率有关的报道受到质疑。

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