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首页> 外文期刊>Animals >Methane Emissions and Milk Fatty Acid Profiles in Dairy Cows Fed Linseed, Measured at the Group Level in a Naturally Ventilated Housing and Individually in Respiration Chambers
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Methane Emissions and Milk Fatty Acid Profiles in Dairy Cows Fed Linseed, Measured at the Group Level in a Naturally Ventilated Housing and Individually in Respiration Chambers

机译:喂食亚麻籽的甲烷排放和牛奶脂肪酸曲线,在天然通风的外壳中的组水平上测量,在呼吸室中单独测量

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The present study evaluated the effects of linseed supplementation on CH 4 emission and milk fatty acid composition in dairy cows measured at the group level in an experimental dairy loose housing using a tracer gas technique and individually in tied stalls and respiration chambers. Cows (2 × 20) were maintained in two separate sections under loose-housing conditions and received a diet supplemented with extruded linseed (L) lipids (29 g·kg ?1 dry matter) or a control (C) diet containing corn flour. Subsequently, 2 × 6 cows per dietary group were investigated in a tied-housing system and respiration chambers. Substantially higher proportions of favorable milk fatty acids were recovered in L cows when compared with C cows at the group level, making the analysis of bulk milk a suitable control instrument for retailers. Linseed supplementation resulted in a slightly lower diurnal course of CH 4 emission intensity than the control at the group and individual levels. However, we found no more than a trend for a CH 4 mitigating effect, unlike in other studies supplementing similar linseed lipid levels. Feed supplements in concentrations that lead to a significant reduction in CH 4 emissions must show whether the reduction potential determined at the group and individual levels is comparable.
机译:本研究评估了在实验乳制品松散壳体在实验乳制品松散壳体测量的乳制奶牛中使用示踪气体技术和呼吸腔内单独进行的乳制奶牛中测量的乳奶牛奶牛脂肪酸组合物对CH 4排放和乳脂肪酸组成的影响。奶牛(2×20)保持在松井空壳条件下的两个单独的部分中,并接受补充含有挤出的亚麻籽(L)脂质(29g·kg?1干物质)的饮食或含玉米粉的对照(c)饮食。随后,在封闭式系统和呼吸室中研究了每个饮食组的2×6牛。与群体水平的C奶牛相比,在L母牛中回收了基本上更高的良好乳脂酸的比例,使散装牛奶的分析是零售商的合适控制仪器。亚麻籽补充导致CH 4发射强度略低于组和个体水平的控制。然而,我们发现不超过CH 4减轻效果的趋势,与其他研究补充类似的亚麻籽脂质水平。饲料补充剂的浓度导致CH 4排放显着减少,必须显示在本集团和个体层面确定的还原电位是否可比。

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