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Measuring livestock CH4 emissions with the laser methane detector: a review
Measuring livestock CH4 emissions with the laser methane detector: a review
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Methane
1 (2022), Heft 1
1 (2022), Heft 1
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SORG, Diana, 2022. Measuring livestock CH4 emissions with the laser methane detector: a review. Methane [online]. 2022. Bd. 1 (2022), Heft 1. DOI 10.60810/openumwelt-199. Verfügbar unter: https://openumwelt.de/handle/123456789/2890
Abstract english
The handheld, portable laser methane detector (LMD) was developed to detect gas leaks in industry from a safe distance. Since 2009, it has also been used to measure the methane (CH4) concentration in the breath of cattle, sheep, and goats to quantify their CH4 emissions. As there is no consensus on a uniform measurement and data-analysis protocol with the LMD, this article discusses important aspects of the measurement, the data analysis, and the applications of the LMD based on the literature. These aspects, such as the distance to the animal or the activity of the animals, should be fixed for all measurements of an experiment, and if this is not possible, they should at least be documented and considered as fixed effects in the statistical analysis. Important steps in data processing are thorough quality control and reduction in records to a single point measurement or "phenotype" for later analysis. The LMD can be used to rank animals according to their CH4 breath concentration and to compare average CH4 production at the group level. This makes it suitable for genetic and nutritional studies and for characterising different breeds and husbandry systems. The limitations are the lower accuracy compared to other methods, as only CH4 concentration and not flux can be measured, and the high amount of work required for the measurement. However, due to its flexibility and non-invasiveness, the LMD can be an alternative in environments where other methods are not suitable or a complement to other methods. It would improve the applicability of the LMD method if there were a common protocol for measurement and data analysis developed jointly by a group of researchers. © 2021 by the author