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Enhancing digestibility of corn fed to pigs at two stages of growth through management of particle size using a hammermill or a roller mill

机译:通过使用锤磨机或辊磨机管理颗粒大小在两个生长阶段提高饲喂猪的玉米的消化率

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摘要

The experimental objective was to determine the role of mean particle size (PS), grinding method, and body weight (BW) category on nutrient, fiber, and energy digestibility of corn. A total of 48 barrows were housed in individual pens and randomly assigned to one of six dietary treatments for 11 d at two BW categories (55 kg and 110 kg). The six treatments consisted of corn ground at three different targeted mean PSs (300, 500, and 700 µm) using either a roller mill or a hammermill. Fecal samples were collected for the last 3 d of each feeding period. Titanium dioxide was used as an indigestible marker. Digestibility data were analyzed as a linear mixed model using the MIXED procedure of SAS. Finishing pigs had greater apparent total tract digestibility (ATTD) of dry matter (DM), gross energy (GE), and N than growing pigs ( = 0.02, = 0.01, and <0.01, respectively). The ATTD of DM, GE, and N was similar in pigs fed hammermilled corn across all PS treatments. However, in roller-milled corn, they increased as PS was reduced ( < 0.05). The ATTD of acid-hydrolyzed ether extract (AEE) in growing pigs was similar between corn ground at 700 and 500 µm, but it was increased by further reducing PS to 300 µm ( < 0.05). In finishing pigs, the ATTD of AEE increased as mean PS decreased from 700 to 300 µm ( < 0.05). The ATTD of AEE was similar in hammermilled corn at all three PS treatments. On the other hand, the ATTD of AEE was similar in corn ground in a roller mill to 700 and 500 µm, but it increased when PS was reduced to 300 µm ( < 0.05). In conclusion, reducing PS of corn with a roller mill increased digestibility of energy and nutrients, but there was less effect using a hammermill. It is possible that differences in SD, distribution, chemical composition, and the shape of the particles resulting from the two grinding processes help to explain the different response.
机译:实验目的是确定平均粒径(PS),研磨方法和体重(BW)类别对玉米营养,纤维和能量消化率的作用。总共48头公猪被圈养在单独的围栏中,并随机分配给六种饮食疗法之一,持续11天,分别为两种体重(55 kg和110 kg)。六种处理方法包括使用辊磨机或锤磨机以三种不同的目标平均PS(300、500和700 µm)研磨玉米。在每个喂养期的最后3天收集粪便样品。二氧化钛被用作难消化的标记物。使用SAS的MIXED程序将消化率数据分析为线性混合模型。育成猪的干物质(DM),总能量(GE)和氮的表观总消化率(ATTD)高于生长猪(分别为0.02,= 0.01和<0.01)。在所有PS处理中,用锤磨玉米喂养的猪的DM,GE和N的ATTD相似。但是,在碾磨的玉米中,它们随着PS的降低而增加(<0.05)。玉米地面在700和500 µm处,生长猪的酸水解醚提取物(AEE)的ATTD相似,但通过将PS进一步降低至300 µm(<0.05)可以提高。在育肥猪中,随着平均PS从700微米降至300微米(<0.05),AEE的ATTD升高。在所有三种PS处理中,锤磨玉米的AEE ATTD均相似。另一方面,AEE的ATTD在碾磨机的玉米研磨机中相似,为700和500 µm,但当PS降至300 µm时,ATD却增加(<0.05)。总之,用辊磨机降低玉米的PS可以提高能量和养分的消化率,但使用锤磨机的效果较小。两种研磨过程导致的SD,分布,化学成分和颗粒形状的差异可能有助于解释不同的响应。

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