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Development and Characterization of Food-Grade Tracers for the Global Grain Tracing and Recall System

机译:全球谷物追踪和召回系统食品级示踪剂的开发和表征

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Tracing grain from the farm to its final processing destination as it moves through multiple grain-handling systems, storage bins, and bulk carriers presents numerous challenges to existing record-keeping systems. This study examines the suitability of coded caplets to trace grain, in particular, to evaluate methodology to test tracers' ability to withstand the rigors of a commercial grain handling and storage systems as defined by physical properties using measurement technology commonly applied to assess grain hardness and end-use properties. Three types of tracers to dispense into bulk grains for tracing the grain back to its field of origin were developed using three food-grade substances [processed sugar, pregelatinized starch, and silicified microcrystalline cellulose (SMCC)] as a major component in formulations. Due to a different functionality of formulations, the manufacturing process conditions varied for each tracer type, resulting in unique variations in surface roughness, weight, dimensions, and physical and spectroscopic properties before and after coating. The applied two types of coating [pregelatinized starch and hydroxypropylmethylcellulose (HPMC)] using an aqueous coating system containing appropriate plasticizers showed uniform coverage and clear coating. Coating appeared to act as a barrier against moisture penetration, to protect against mechanical damage of the surface of the tracers, and to improve the mechanical strength of tracers. The results of analysis of variance (ANOVA) tests showed the type of tracer, coating material, conditioning time, and a theoretical weight gain significantly influenced the morphological and physical properties of tracers. Optimization of these factors needs to be pursued to produce desirable tracers with consistent quality and performance when they flow with bulk grains throughout the grain marketing channels.
机译:在谷物通过多个谷物处理系统,存储箱和散装货箱移动时,将其从农场追踪到最终加工目的地,对现有的记录保存系统提出了许多挑战。这项研究检查了编码囊片对谷物的适应性,特别是评估了用于测试追踪器承受商业谷物处理和存储系统严酷条件的能力的方法,该能力由物理性质定义,使用了通常用于评估谷物硬度和硬度的测量技术。最终使用属性。使用三种食品级物质[加工糖,预糊化淀粉和硅化微晶纤维素(SMCC)]作为配方中的主要成分,开发了三种分配到散装谷物中的示踪剂,以追溯到原产地。由于配方的功能不同,每种示踪剂类型的制造工艺条件都不同,导致涂覆前后的表面粗糙度,重量,尺寸以及物理和光谱性质发生独特变化。使用包含适当增塑剂的水性涂料体系施加的两种类型的涂料[预糊化淀粉和羟丙基甲基纤维素(HPMC)]显示出均匀的覆盖度和透明涂层。涂层似乎是防止水分渗透的屏障,可防止示踪剂表面受到机械损伤,并提高示踪剂的机械强度。方差分析(ANOVA)测试结果表明,示踪剂的类型,涂层材料,调节时间和理论重量增加显着影响了示踪剂的形态和物理性能。当这些颗粒随散装谷物流经整个谷物销售渠道时,需要对这些因素进行优化以产生具有一致质量和性能的理想示踪剂。

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