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首页> 外文期刊>Journal of Animal Science >Diet mixing time affects nursery pig performance.
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Diet mixing time affects nursery pig performance.

机译:日粮混合时间影响育苗猪的生产性能。

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The objective of this study was to determine the effects of mixing time (mixer efficiency) of diets containing several low-inclusion ingredients (crystalline AA, ZnO, a medication, and vitamin and trace mineral premixes) on growth performance of nursery pigs. In a pilot study, mixing efficiency of a 1,360-kg capacity, horizontal ribbon mixer was evaluated with salt of different particle sizes (440, 730, 2,000, and 3,000 micro m). Sample preparation was evaluated by analyzing diet samples as collected (unground) or by grinding the entire sample to approximately 400 micro m in particle size (ground). Diets (907 kg) were mixed, and samples were collected after 0, 30, 60, 120, 210, 330, 480, and 630 s of mixing. The coefficient of variation among 10 samples for each mixing time was used to measure mixer efficiency as determined by Cl concentration. A salt particle size x sample preparation x mixing time interaction was observed (P=0.04). Samples with 2,000- or 3,000- micro m salt particle size (unground or ground) never reached the desired mixing efficiency of a 10% CV. Using 440- micro m salt (unground or ground) or 730- micro m salt particle sizes (ground) was necessary to accurately achieve a mixing efficiency of a <10% CV within 330 and 630 s, respectively. Next, 180 weanling pigs (PIC, 6.31+or-0.84 kg of BW, 21+or-3 d of age) were fed diets in 2 phases (d 0 to 14 and d 14 to 28). Treatments consisted of mixing diets for 0, 30, 60, 120, or 330 s (440- micro m salt particle size). Samples were collected in the mixer, and then each bag of feed (22.5 kg) was labeled (first to last as-manufactured) and sampled to determine the mixing efficiency. An individual bag of feed was fed to a single pen of pigs, and when finished, the next sequential bag was used. As mixing time increased, mixer CV were 178, 38, 26, 21, and 5% for phase 1 and 172, 79, 60, 48, and 26% for phase 2. As mixing time increased, bag CV values were 26, 20, 16, 11, and 7% for phase 1 and 56, 45, 40, 33, and 12% for phase 2. From d 0 to 14, increasing mixing time increased ADG (linear, P<0.01) and G:F (quadratic, P=0.03). From d 0 to 28, increasing mixing time increased ADG (quadratic, P<0.01) and G:F (linear, P=0.04). These data demonstrate that inadequate diet mixing (CV>12%) reduces nursery pig performance..
机译:这项研究的目的是确定含有几种低夹杂成分(晶体AA,ZnO,一种药物以及维生素和微量矿物质预混物)的日粮的混合时间(混合机效率)对保育猪生长性能的影响。在一项初步研究中,使用了不同粒径(440、730、2,000和3,000微米)的盐评估了1,360千克容量的卧式螺带混合器的混合效率。通过分析所收集的饮食样品(未研磨)或将整个样品研磨至约400微米的颗粒大小(研磨)来评估样品制备。混合日粮(907千克),在混合0、30、60、120、210、330、480和630 s后收集样品。对于每个混合时间,在10个样品之间的变异系数用于测量混合器效率,该效率由Cl浓度确定。观察到盐粒度×样品制备×混合时间相互作用(P = 0.04)。盐粒度为2,000微米或3,000微米(未研磨或研磨)的样品从未达到所需的10%CV混合效率。必须分别使用440微米的盐(未研磨的或研磨的)或730微米的盐粒度(研磨的),以分别在330和630 s内准确达到<10%CV的混合效率。接下来,对180头断奶仔猪(PIC,体重6.31±0.84 kg,年龄21±3d)分两个阶段(d 0至14和d 14至28)进行饲喂。处理包括混合饮食0、30、60、120或330秒(440微米盐粒度)。在混合器中收集样品,然后将每袋饲料(22.5千克)贴上标签(首先制造到最后制造)并取样以确定混合效率。将单个袋子的饲料喂给一头猪,完成后,使用下一个连续的袋子。随着混合时间的增加,第一阶段的混合器CV为178、38、26、21和5%,第二阶段的混合器CV为172、79、60、48和26%。随着混合时间的增加,袋式CV值为26、20阶段1分别为16、11、7%和7%,阶段2为56、45、40、33和12%。从d 0到14,增加混合时间会增加ADG(线性,P <0.01)和G:F(二次,P = 0.03)。从d 0到28,增加混合时间会增加ADG(二次方,P <0.01)和G:F(线性,P = 0.04)。这些数据表明,日粮混合不足(CV> 12%)会降低保育猪的生产性能。

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