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Spatial variability of mixing ratios of ammonia and tracer gases in a naturally ventilated dairy cow barn

机译:自然通风的奶牛舍中氨气和示踪气体混合比的空间变异性

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摘要

The use of the tracer gas ratio method to estimate emissions from naturally ventilated (NV) livestock barns excludes the need of monitoring ventilation rates. However, it requires accurate measurement of tracer release rate (Q(T)) and a representative estimate of the mixing ratio between pollutant (P) and tracer (T) gases(([P/[T]))over bar>. While the quality of QT simply depends on using an accurate commercial mass flow controller, determination of a representative mixing ratio (([P/[T]))over bar> is not trivial, since the NV livestock barn airspace presents complex movements that might be dependent on spatial vertical and cross horizontal dimensions. The goal was to assess the spatial variability of concentrations of the artificial tracer gas sulphur hexafluoride (SF6), the metabolic carbon dioxide (CO2) and the pollutant ammonia (NH3), along with their mixing ratios ([NH3]/[CO2], [NH3]/[SF6], [CO2]/[SF6]), inside a NV dairy cow barn. The resuls indicated that the vertical variability of the calculated mixing ratios became more stable with increase in height, reaching approximately constant values above the animal occupied zone. Using both the metabolic CO2 and the artificially injected SF6 as tracer gases led to a homogeneous spread in behaviour of mixing ratios along V and HC directions. Finally, the possibility of finding a zone within the barn airspace where mixing ratios are considered to be representative for the whole barn, and the implications of applying artificial or metabolic tracers are discussed. (C) 2014 IAgrE. Published by Elsevier Ltd. All rights reserved.
机译:使用示踪气体比率法估算自然通风(NV)牲畜棚的排放量无需监测通风速率。但是,它需要精确测量示踪物释放速率(Q(T)),并需要代表性地估算污染物(P)和示踪物(T)气体之间的混合比<(([[P / [T]))over bar>。虽然QT的质量仅取决于使用精确的商用质量流量控制器,但确定代表性混合比<(([[P / [T]))bar>并非易事,因为NV牲畜棚空域呈现出复杂的运动,可能取决于空间的垂直和横向水平尺寸。目的是评估人造示踪气体六氟化硫(SF6),代谢二氧化碳(CO2)和污染物氨(NH3)的浓度及其混合比([NH3] / [CO2], NV奶牛棚内的[NH3] / [SF6],[CO2] / [SF6])。结果表明,随着高度的增加,所计算的混合比的垂直变化变得更加稳定,在动物占据区上方达到近似恒定的值。使用新陈代谢的二氧化碳和人工注入的六氟化硫作为示踪气体会导致混合比沿V和HC方向均匀分布。最后,讨论了在谷仓领空内找到一个区域的可能性,该区域的混合比被认为是整个谷仓的代表,并讨论了使用人工或代谢示踪剂的含义。 (C)2014年。由Elsevier Ltd.出版。保留所有权利。

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