陈化稻谷替代玉米对混合粉料制粒成型性能影响及工艺参数优化

    The Influence of aged paddy rice replacing corn on pelleting performance of mixed powder and optimization of process parameters

    • 摘要: 为探究陈化稻谷替代玉米不同比例对混合粉料理化特性、制粒成型特性和产品质量的影响,并优化预测不同替代比例下的最佳加工工艺参数。试验采用Box-Behnken试验设计,以陈化稻谷替代比例(0、50%、100%)、调质温度(70、80、90 ℃)和调质时间(45、135、225 s)为自变量,以颗粒饲料耐久性、成型率和吨料电耗为因变量,共设计17组制粒加工试验,测定混合物料的理化特性、颗粒饲料的成型特性和产品质量等指标,并对3个自变量参数进行优化预测。试验结果表明:1)随着陈化稻谷替代玉米比例的增加,混合物料的休止角和摩擦角、松散密度和振实密度显著下降(P<0.05);混合粉料的吸水性、峰值黏度、保持黏度先升高后降低,糊化温度和最终黏度显著升高(P<0.05)。2)随着陈化稻谷替代玉米比例的增加,颗粒饲料的成型率先升高后降低,吨料电耗和颗粒饲料耐久性显著升高(P<0.05)。随着调质温度的升高,吨料电耗先下降后显著上升(P<0.05);颗粒耐久性先升高后逐渐降低。随着调质时间的延长,成型率逐渐升高,吨料电耗先下降后上升;颗粒耐久性先升高后显著降低(P<0.05)。3)响应面方差分析结果显示各因素对颗粒饲料制粒成型特性的影响的主次顺序为:陈化稻谷替代比例>调质温度>调质时间。4)工艺参数优化预测结果表明,随着陈化稻谷替代玉米比例的增加,调质温度可调整的范围先上升后下降,调质时间先下降后上升。该研究表明,在饲料加工中使用陈化稻谷替代玉米可显著提高颗粒质量,但也相应增加了制粒能耗。

       

      Abstract: The purpose of this study was to investigate the effects of different proportions of aged paddy rice replacing corn on the physicochemical characteristics, pelleting characteristics and product quality of corn soybean meal mixed powder, and the processing parameters under different replacement ratio were optimized and the best replacement ratio and process parameters were obtained. In this experiment, aged paddy rice, corn and soybean meal were used as feed raw materials, ground by a hammer mill with a sieve diameter of 2 mm. mixed evenly in a mixer according to a certain proportion, three samples of mixed powder were randomly taken and stored in a sealed bag for the determination of physical and chemical properties. The Box-Behnken experimental design was used in the experiment. A total of 17 groups of pelleting experiments were designed with aged paddy rice replacement ratio, the conditioning temperature and the conditioning time were used as independent variables, and the feed pellet durability index, pelleting rate and power consumption per ton were used as dependent variables. A pellet mill was used in the test, and the diameter of the die hole was 3 mm and the length-diameter ratio was 10:1. When the process parameters of the conditioner and pellet mill were qualified and stable, the pellet feed samples were taken and the working parameters in the production process were recorded. The physicochemical properties of mixed powder such as angle of repose, angle of frictional, bulk density, tap density, compressibility, water absorption index, water solubility index, swelling power, viscosity characteristic value and pelleting characteristics such as pellet durability index, pelleting rate and power consumption per ton were measured. The three independent variable parameters were optimized and predicted. The results showed as follows: 1) With the increase of the proportion of aged paddy rice replacing corn, the angle of repose and the angle of friction, bulk density and tap density decreased significantly (P<0.05); the water absorption, peak viscosity and holding viscosity increased first and then decreased, and the pasting temperature and final viscosity increased significantly (P<0.05). 2) With the increase of the proportion of aged paddy rice replacing corn, the pelleting rate first increased and then decreased, and the power consumption per ton gradually increased, and the pellet durability index gradually increased (P<0.05). With the increase of conditioning temperature, the power consumption per ton decreased first and then increased significantly (P<0.05). The pellet durability index first increased and then decreased gradually. With the extension of conditioning time, the pelleting rate gradually increased, and the power consumption per ton decreased first and then increased. The pellet durability index first increased and then significantly decreased (P<0.05). 3) The results of response surface variance analysis showed that the main order of effects of each factor on the pelleting characteristics was: the replacement ratio of aged paddy rice > conditioning temperature > conditioning time. 4) The optimization and prediction results of process parameters showed that with the increase of the proportion of aged paddy rice replacing corn, the adjustable range of conditioning temperature increased first and then decreased, and the conditioning time decreased first and then increased. The study shows that the use of aged paddy rice instead of corn in feed processing can significantly improve the product quality, but also increase the energy consumption of pelleting.

       

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