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Reducing crude protein variability and maximizing savings when formulating corn-soybean meal-based feeds

机译:配制玉米豆粕基饲料时,降低粗蛋白变异性并最大程度地节省成本

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Crude protein in corn and soybean meal have been documented to vary, and such inherent variability can result in under-or over-feeding of CP when feeds are formulated, leading to reduced bird growth, added input costs, and increased environmental pollution. the purpose of this study was to compare 2 grain-handling techniques and 2 feed formulation methods (linear vs. stochastic programming) to reduce CP variability in finished feeds and determine resulting costs or savings. the 2 grain-handling techniques were placing all the random batches of each delivered ingredient in to (1) a single bin (1-bin method) or (2) segregating above-and below-average samples into 2 bins (2-bin method). A fast way of estimating the composition of the ingredients is now available (near-infrared reflectance spectroscopy). Microsoft excel workbooks were constructed to solve broiler starter feed formulation problems. Formulating feeds by linear and stochastic models based on the 2-bin method reduced CP variability by at least 50% compared with the 1-bin method. Formula cost was reduced by similar to 20 cents per ton (averages of August 2012 United States ingredient prices) when the 2-bin method was used with the linear model. Formulating feed with a margin of safety increased formula cost by $3.40 per ton. Stochastic feed formulation increased formula cost to meet the specified CP level in feed at any probability of success, and formula cost was reduced substantially with the 2-bin method (up to $6.47 per ton). the magnitude of savings and reduced feed variability suggested that, regardless of the costs associated with building extra bins, the 2-bin method can be economically efficient in the long run. therefore, it could be possible to split the batches of feed ingredients at a feed mill into above-or below-average bins before feed formulation to reduce CP variability and to maximize savings
机译:玉米和豆粕中的粗蛋白质已被记录在册,并且这种固有的可变性可能导致配制饲料时CP的饲喂不足或过量,从而导致禽类生长减少,投入成本增加和环境污染增加。本研究的目的是比较2种谷物处理技术和2种饲料配制方法(线性规划与随机编程),以减少成品饲料中CP的变化并确定成本或节省。这2种谷物处理技术是将每种交付成分的所有随机批次放入(1)一个容器中(1-容器方法)或(2)将高于和低于平均值的样本分成2个容器(2-容器方法) )。现在有一种快速估算成分组成的方法(近红外反射光谱法)。 Microsoft Excel工作簿旨在解决肉鸡起子饲料配方问题。与1箱方法相比,基于2箱方法通过线性和随机模型配制饲料可将CP变异性降低至少50%。当线性模型使用2槽法时,配方成本降低了约每吨20美分(2012年8月美国原料价格的平均值)。在安全范围内配制饲料会使每吨配方成本增加3.40美元。随机饲料配方在任何成功概率下均增加了配方成本,以满足饲料中指定的CP水平,并且采用2槽法大大降低了配方成本(每吨最高$ 6.47)。节省的数量和减少的饲料波动性表明,无论与建造额外的料仓相关的成本如何,从长远来看,2料仓法在经济上都是有效的。因此,有可能在饲料配方之前将饲料厂的饲料原料批次分成高于或低于平均水平的料箱,以减少CP差异并最大程度地节省成本

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