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首页> 外文期刊>International Journal of Health, Animal Science and Food Safety >Chemical homogeneity and particle size distribution of dairy cow TMR along the feeding alley with different mixing times
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Chemical homogeneity and particle size distribution of dairy cow TMR along the feeding alley with different mixing times

机译:不同混合时间的奶牛TMR沿饲养区的化学均匀性和粒径分布

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Following the concepts of precision feeding, the right components balance (Sova et al., 2014) and the correct particle size distribution (PSD, Khan et al., 2014) of total mixed ration (TMR) are essential for a complete homogeneity of the diet and are strongly influenced by adopted mixing time (MT, Humer et al., 2018, Schingoethe et al.,2017). The aim of the trial was to determine the influence of two MTs (MT1≤7min and MT27min) on the chemical homogeneity and PSD along the feeding alley. Diets were performed with a horizontal cutter-mixer wagon (Gulliver 4016, Sgariboldi), and TMR samples were collected from the beginning, middle and end of the feeding alley after discharge. Triplicate samples of the diet were collected for chemical composition analyses (moisture, CP, Ash, EE, NDF and ADF) and PSD evaluation (Heinrichs and Kononoff, 2002) over two months (two sampling/week). Statistical analysis was performed by a PROC MIXED for repeated measurements of SAS. MT1 evidenced a non-uniform distribution of moisture content along the feeding alley (P=0.05): lower moisture was found at the end than at the beginning and in the middle (47.55 vs 51.13 and 51.00%, respectively; P0.01). No significant effects of MTs were recorded for other chemical parameters. The PSD showed trend to a higher retained amount of fibre in MT1 upper sieve (14.79 vs. 10.14%; P=0.06), while lower amount of feed was found in middle and bottom sieve than MT2 (38.9 and 12.81 vs 42.17 and 14.32%, respectively; P=0.08 and P=0.06). With respect to TMR distribution along the feeding alley, no differences were found between MT1 and MT2. Day of sampling evidenced significant variation both in chemical and physical composition (P0.05). Obtained preliminary data evidenced the influence of MTs on composition and on PSD of the provided diet; results suggest to daily measure moisture of raw material in order to avoid negative changes in dry matter intake.
机译:遵循精确进料的概念,正确的成分平衡(Sova等人,2014)和正确的总混合定量(TMR)粒度分布(PSD,Khan等人,2014)对于保证饲料的完全均匀性至关重要。饮食,并且受到采用的混合时间的强烈影响(MT,Humer等人,2018,Schingoethe等人,2017)。该试验的目的是确定两个MT(MT1≤7min,MT2> 7min)对沿饲料小巷化学均匀性和PSD的影响。用卧式切碎混合车(Gulliver 4016,Sgariboldi)进行饮食,并在出院后从喂食通道的开始,中间和末端收集TMR样品。在两个月内(每周两次采样)收集三份饮食样品进行化学成分分析(水分,CP,灰分,EE,NDF和ADF)和PSD评估(Heinrichs和Kononoff,2002)。通过PROC MIXED进行统计分析,以重复测量SAS。 MT1证明沿饲喂小径的水分含量分布不均匀(P = 0.05):结束时的水分含量低于开始时和中间的水分含量(分别为47.55、51.13和51.00%; P <0.01)。对于其他化学参数,未记录MT的显着影响。 PSD显示出MT1上筛中纤维保留量更高的趋势(14.79 vs. 10.14%; P = 0.06),而中下部筛中的进料量低于MT2(38.9和12.81 vs 42.17和14.32% ,分别为P = 0.08和P = 0.06)。关于沿饲养区的TMR分布,MT1和MT2之间没有发现差异。采样日证明化学和物理组成均存在显着差异(P <0.05)。获得的初步数据证明了MT对所提供饮食的组成和PSD的影响;结果建议每天测量原材料的水分,以避免干物质摄入量的负面变化。

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