Methane emission from naturally ventilated livestock buildings can be determined from gas concentration measurements

Bjarne Bjerg, Guoqiang Zhang, Jørgen Madsen, Hans Benny Rom

    21 Citationer (Scopus)

    Abstract

    Determination of emission of contaminant gases as ammonia, methane, or laughing gas from natural ventilated livestock buildings with large opening is a challenge due to the large variations in gas concentration and air velocity in the openings. The close relation between calculated animal heat production and the carbon dioxide production from the animals have in several cases been utilized for estimation of the ventilation air exchange rate for the estimation of ammonia and greenhouse gas emissions. Using this method, the problem of the complicated air velocity and concentration distribution in the openings is avoided; however, there are still some important issues remained unanswered: (1) the precision of the estimations, (2) the requirement for the length of measuring periods, and (3) the required measuring point number and location. The purpose of this work was to investigate how estimated average gas emission and the precision of the estimation are influenced by different calculation procedures, measuring period length, measure point locations, measure point numbers, and criteria for excluding measuring data. The analyses were based on existing data from a 6-day measuring period in a naturally ventilated, 150 milking cow building. The results showed that the methane emission can be determined with much higher precision than ammonia or laughing gas emissions, and, for methane, relatively precise estimations can be based on measure periods as short as 3 h. This result makes it feasible to investigate the influence of feed composition on methane emission in a relative large number of operating cattle buildings and consequently it can support a development towards reduced greenhouse gas emission from cattle production.
    OriginalsprogEngelsk
    TidsskriftEnvironmental Monitoring and Assessment
    Vol/bind184
    Udgave nummer10
    Sider (fra-til)5989-6000
    Antal sider12
    ISSN0167-6369
    DOI
    StatusUdgivet - okt. 2012

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