首页> 外文期刊>Frontiers in Veterinary Science >Replacement of soybean meal with soybean cake reduces methane emissions in dairy cows and an assessment of a face-mask technique for methane measurement
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Replacement of soybean meal with soybean cake reduces methane emissions in dairy cows and an assessment of a face-mask technique for methane measurement

机译:用豆饼代替豆粕减少了奶牛的甲烷排放,并评估了用于测量甲烷的口罩技术

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The objective of this study was to a) evaluate the effect of replacing soybean meal (SBM) with soybean cake (SBC) on feeding behavior, rumen fermentation, milk production, nutrient digestibility and CH4 emissions and b) investigate whether a face-mask technique could be used to predict daily methane (CH4) emissions in dairy cattle. The experiment was conducted as a completely randomized design, with 32 crossbred Holstein × Gyr cows (days in milk (DIM): 112 ± 25.1) randomly assigned to the following treatments (n = 8/group) for 75 days: 1) 0 % SBC, 2) 6 % SBC, 3) 14 % SBC, and 4) 23 % SBC, in place of SBM on a dry matter (DM) basis. Across the final 4 weeks of the study, CH4 production was estimated using the proposed face-mask technique subsequent to a respiration chamber measurement for an evaluation of treatment efficacy and face-mask accuracy. There was no effect of SBM replacement by SBC on intake, feeding or drinking behavior (P0.21). Total VFA concentration, the individual proportions of VFA and blood metabolites were not altered (P0.17) by SBC, however there was a tendency for decreased (P = 0.08) lactate and plasma urea nitrogen (P=0.07) concentration associated with SBC addition. Fat-corrected milk yield (FCM4%) and composition was not affected (P0.27) by SBC; however, there was a tendency for decreased total milk solids (P=0.07) and milk fat (P = 0.08) associated with 23% SBC treatment. There was no treatment × technique interaction (P 0.05) effect on gas measurements. A maximum reduction (P=0.01) in CH4 yield (g/kg DM) and intensity (g/kg milk) of 11 and 20 %, respectively, was observed for the 14 % SBC inclusion. Compared to the week of mask measurements, chambers decreased (P=0.01) intake (kg/d, %BW) and increased (P=0.05) FCM4%. The face-mask method over estimated O2 consumption by 5%. The face-mask method accurately predicted daily CH4 emissions when compared to the chamber at the same time-point. However, there was a linear bias of CH4 outputs so further evaluation of the calculation of total CH4 from a spot measurement is required.
机译:这项研究的目的是:a)评估用豆饼(SBC)代替豆粕(SBM)对喂养行为,瘤胃发酵,产奶量,营养物质消化率和CH4排放的影响,以及b)研究是否采用口罩技术可用于预测奶牛每天的甲烷(CH4)排放。实验以完全随机的设计进行,将32头杂交的荷斯坦奶牛×吉尔牛(产奶天数(DIM):112±25.1)随机分配给以下处理(n = 8 /组),共75天:1)0% SBC,2)6%SBC,3)14%SBC和4)23%SBC,以干物质(DM)为基础代替SBM。在研究的最后4周内,在呼吸室测量后使用提议的口罩技术估算CH4的产生,以评估治疗效果和口罩的准确性。用SBC代替SBM对摄入,喂养或饮水行为没有影响(P> 0.21)。添加SBC不会改变总VFA浓度,VFA和血液代谢物的个别比例(P> 0.17),但是与添加SBC相关的乳酸和血浆尿素氮浓度有降低(P = 0.08)的趋势。脂肪校正乳产量(FCM4%)和组成不受SBC影响(P> 0.27);但是,与23%SBC处理相关的总乳固体含量(P = 0.07)和乳脂(P = 0.08)有降低的趋势。气体测量没有处理×技术相互作用(P> 0.05)的影响。对于14%的SBC夹杂物,CH4产量(g / kg DM)和强度(g / kg牛奶)的最大减少量分别为11%和20%。与面罩测量周相比,腔室的FCM4%减少(P = 0.01)(kg / d,%BW),增加(P = 0.05)。面罩法使估计的氧气消耗量增加了5%。与同一时间点的腔室相比,口罩方法可准确预测每日的CH4排放量。但是,CH4输出存在线性偏差,因此需要对通过现场测量得出的总CH4的计算进行进一步评估。

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