...
首页> 外文期刊>Animal Production Science >The effect of sieve agitators and dispersing agent on the method of determining and expressing fineness of feed materials by sieving.
【24h】

The effect of sieve agitators and dispersing agent on the method of determining and expressing fineness of feed materials by sieving.

机译:筛搅拌器和分散剂对筛分饲料饲料料法测定和表达细度的影响。

获取原文
获取原文并翻译 | 示例
           

摘要

Research in both swine and poultry continue to investigate the optimal particle size for growth and gut health. Although researchers have reported the methods used to determine the particle size of the grain in a study, most reports have not provided details of the actual procedure. Although the standard method suggested adding both agitators and dispersing agents to facilitate the flow of material through the sieves there has been limited research as to whether these modifiers significantly change the particle size value. Researchers, laboratories, and feed mills that analyse samples without sieve agitators or a dispersing agent could overestimate the particle size and underestimate the distribution of the particles of a sample. Two experiments were conducted to determine the effect of adding sieve agitators and dispersing agent to the ANSI/ASAE S319.3 FEB03 'Method of Determining and Expressing Fineness of Feed Materials by Sieving'. The first experiment evaluated the effect of sieve agitator use and dispersing agent use on the geometric mean diameter (dgw) and geometric standard deviation (Sgw) of hammermill and roller mill corn samples. Whole corn was ground to produce samples that were classified as either coarse, medium, or fine. The second experiment evaluated the effect of sieve agitators, a dispersing agent, and the combination of agitators with a dispersing agent on dgw and Sgw of hammermill ground corn, wheat, and sorghum. The results of Expt 1 indicated that a decreased (P<0.01) dgw resulted when agitators were added to the hammermill ground samples while a further decrease (P<0.01) was observed due to the addition of the dispersing agent. The largest decrease in dgw was observed due to the addition of the dispersing agent. The addition of agitators to the roller mill samples only decreased the dgw of the medium grind sample. The dispersing agent decreased (P<0.01) the dgw of roller mill samples. The addition of a dispersing agent consistently decreased the dgw of all the ground corn samples as compared with the standard method without modifiers. The results of Expt 2 were consistent with those of Expt 1 in that the addition of the dispersing agent and agitators decreased dgw values and appeared to have an additive effect in both corn and sorghum samples. The addition of a dispersing agent facilitated the flow of product through the sieves. The wider distribution (Sgw) indicated that a greater percentage of material flowed to the smaller sieves. The results of the experiments clearly showed the benefit of adding sieve agitators and a dispersing agent to facilitate the flow of material through the sieves, so that a better estimate of the micron diameter and particle size distribution could be achieved.Digital Object Identifier http://dx.doi.org/10.1071/AN11124
机译:猪和家禽的研究继续探讨增长和肠道健康的最佳粒径。尽管研究人员报告了用于确定研究中谷物的粒度的方法,但大多数报告都没有提供实际程序的细节。尽管标准方法建议添加搅拌器和分散剂以促进通过筛网流动的材料,但这些改性剂是否显着改变粒度值,仍然有限的研究。研究人员,实验室和饲料厂分析没有筛剂或分散剂的样品或分散剂可以高估粒径并低估样品颗粒的分布。进行了两次实验以确定将筛搅拌器和分散剂添加到ANSI / ASAE S319.3222303'的疗法通过筛分来确定和表达饲料材料的细度的方法。第一个实验评估了筛搅拌器使用和分散剂在哈曼和辊磨机的几何平均直径(D Gw )上的几何标准偏差(S GW )的影响。玉米样品。整个玉米被研磨生产样品,分类为粗,培养基或细。第二种实验评估筛搅拌器,分散剂和搅拌器的组合在D Gw 和S gw 的刺激剂,小麦,小麦,和高粱。 Expt 1的结果表明,当搅拌器加入哈曼接地样品时,D Gw <0.01)D Gw <0.01)导致搅拌器( P <由于添加分散剂,观察到/液保育器。由于添加分散剂,观察到D Gw 的最大降低。将搅拌器添加到辊磨机样品上仅降低了培养基研磨样品的D <亚> Gw 。分散剂降低( P <0.01)辊磨机样品的D <亚> GW 。与没有改性剂的标准方法相比,添加分散剂始终降低所有玉米样品的D Gw 。 EXPT 2的结果与EXPT 1的结果一致,因为分散剂和搅拌器的添加降低D GW 值,并且似乎在玉米和高粱样品中具有添加剂作用。添加分散剂通过筛子促进了产品的流动。更广泛的分布(S gw )表明,流入较小筛的材料更大百分比。实验结果清楚地表明添加筛搅拌器和分散剂以促进材料流过筛子的益处,从而可以实现更好地估计微米直径和粒度分布。分发对象标识符http:/ /dx.doi.org/10.1071/an11124

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号