首页> 外文期刊>International Journal of Agricultural and Biological Engineering >Optimization of tracer coating parameters and their effects on the mechanical properties and quality of food-grade tracers for grain traceability
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Optimization of tracer coating parameters and their effects on the mechanical properties and quality of food-grade tracers for grain traceability

机译:示踪剂包衣参数的优化及其对食品级示踪剂的机械性能和品质的影响,以实现谷物的可追溯性

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The purpose of this study was to optimize the coating process of food-grade tracers to manufacture tracers with good physical, mechanical and practical properties and an excellent appearance. The effects of the coating weight gain (1.00%-5.00%), coating solution spray rate (1.50-7.50 g/min) and tablet bed temperature (30°C-40°C) on the coating appearance quality, moisture absorption rate, friction coefficient, peak shear force, breaking rate, barcode recognition rate, transport wear rate and transport recognition rate were analysed using a Box–Behnken design (BBD) of response surface methodology (RSM). The experimental data were fitted to quadratic polynomial models by multiple regression analysis. The mathematical models of the barcode recognition rate, transport wear rate and transport recognition rate exhibited no statistically significant difference in these data. The optimum coating parameters were as follows: a 5.00% coating weight gain, spray rate of 5.47 g/min and tablet bed temperature of 35.42°C. Under the optimized conditions, the tracers had a good appearance (coating appearance quality), moisture resistance (moisture absorption rate), and frictional (friction coefficient), compression (peak shear force), and impact characteristics (breaking rate).
机译:这项研究的目的是优化食品级示踪剂的涂层工艺,以制造具有良好物理,机械和实用性能以及出色外观的示踪剂。包衣增重(1.00%-5.00%),包衣溶液喷雾速率(1.50-7.50 g / min)和片剂床温(30°C-40°C)对包衣外观质量,吸湿率,摩擦系数,峰值剪切力,断裂率,条形码识别率,运输磨损率和运输识别率使用响应表面方法(RSM)的Box-Behnken设计(BBD)进行了分析。通过多元回归分析将实验数据拟合到二次多项式模型。条形码识别率,运输磨损率和运输识别率的数学模型在这些数据中没有显示出统计学上的显着差异。最佳包衣参数如下:包衣重量增加5.00%,喷涂速率为5.47 g / min,片剂床温为35.42°C。在优化的条件下,示踪剂具有良好的外观(涂层外观质量),耐湿性(吸湿率)和摩擦(摩擦系数),压缩(峰值剪切力)和冲击特性(断裂率)。

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