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Effect of the volume of methane released into respiration chambers on full system methane recovery

机译:甲烷体积释放到呼吸室释放到全系统甲烷回收中的影响

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摘要

The respiration chamber method is considered to be the most precise approach for measuring enteric methane emissions in cattle. A set of experimental runs was carried out in which increasing volumes of pure methane (168.5, 194.9, 234.9, 264.9, 301.0, 339.8, and 375.7 L per run) were gravimetrically released into open-circuit respiration chambers to simulate the volumes of methane eructated by cattle of different weights. The aim was to assess the effect of the volume of methane released into the chambers on percentage of methane recovered at the exit by the infrared methane analyzer. It was found that as the volume of methane released into the respiration chambers was decreased, methane recovery percentages were concomitantly reduced. The recovery percentages ranged from 103.7% down to 18.3% and from 102.7% down to 31.6% for chambers one and two, respectively. It can be concluded that the slow stabilization of methane inside the large volume chamber, when injected at low rates from the cylinder, led to low recoveries of the gas at an air extraction rate of 300 L/min. As a result, the recovery of methane was constrained, leading to underestimation of the actual volumes released from the pure methane cylinders. Poor mixing of air inside the chambers did also constrain the recovery of methane with the experimental approach employed. The possible implications for methane measurements in respiration chambers under in vivo conditions with cattle are discussed.
机译:呼吸室方法被认为是测量牛中肠溶甲烷排放的最精确的方法。进行了一组实验运行,其中纯甲烷的量增加(168.5,194.9,234.9,264.9,301.0,339.8和375.7μm,每次运行的375.7μm)被重热量释放到开路呼吸室中,以模拟被筛选的甲烷的体积通过不同权重的牛。目的是评估甲烷体积释放到腔室中的甲烷的效果对红外甲烷分析仪在出口处回收的甲烷百分比。发现随着释放到呼吸室的甲烷的体积减小,甲烷恢复百分比伴随着。恢复百分比分别为103.7%至18.3%,分别为18.3%,分别为18.3%,分别为18.3%至31.6%,分别为21.6%。可以得出结论,当从圆柱体的低速率注入时,大容量室内的甲烷缓慢稳定,导致气体的空气提取率为300L / min的空气提取率低。结果,甲烷的回收率受到约束,导致低估了从纯甲烷圆筒释放的实际体积。室内空气混合较差,还限制了采用实验方法的甲烷的回收率。讨论了牛呼吸室中的甲烷测量的可能影响。

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  • 来源
    《Animal Feed Science and Technology》 |2019年第2019期|共8页
  • 作者单位

    Natl Polytech Inst CINVESTAV IPN Ctr Res &

    Adv Studies Dept Appl Phys Carretera Antigua Progreso Km 6 Merida 97310 Yucatan Mexico;

    Univ Yucatan UADY Fac Vet Med &

    Anim Sci Dept Anim Nutr Lab Climate Change &

    Livestock Prod Carretera Merida Xmatkuil Km 15-5 Merida 97100 Yucatan Mexico;

    Univ Yucatan UADY Fac Vet Med &

    Anim Sci Dept Anim Nutr Lab Climate Change &

    Livestock Prod Carretera Merida Xmatkuil Km 15-5 Merida 97100 Yucatan Mexico;

    Technol Inst Conkal Div Higher Studies &

    Res Ave Tecnol S-N Conkal 97345 Yucatan Mexico;

    Univ Yucatan UADY Fac Vet Med &

    Anim Sci Dept Anim Nutr Lab Climate Change &

    Livestock Prod Carretera Merida Xmatkuil Km 15-5 Merida 97100 Yucatan Mexico;

    Univ Yucatan UADY Fac Vet Med &

    Anim Sci Dept Anim Nutr Lab Climate Change &

    Livestock Prod Carretera Merida Xmatkuil Km 15-5 Merida 97100 Yucatan Mexico;

    Univ Yucatan UADY Fac Vet Med &

    Anim Sci Dept Anim Nutr Lab Climate Change &

    Livestock Prod Carretera Merida Xmatkuil Km 15-5 Merida 97100 Yucatan Mexico;

    Univ State Mexico UAEM Fac Vet Med &

    Anim Sci Inst Literario 100 Toluca 50000 Estado De Mexic Mexico;

    Natl Polytech Inst CINVESTAV IPN Ctr Res &

    Adv Studies Dept Appl Phys Carretera Antigua Progreso Km 6 Merida 97310 Yucatan Mexico;

    Univ Yucatan UADY Fac Vet Med &

    Anim Sci Dept Anim Nutr Lab Climate Change &

    Livestock Prod Carretera Merida Xmatkuil Km 15-5 Merida 97100 Yucatan Mexico;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 动物学;
  • 关键词

    Methane; Respiration chamber; Gas recovery test; Calibration;

    机译:甲烷;呼吸室;气体回收试验;校准;

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