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Analysis of the Performance of a Dehulling System for Confectionary Sunflower Seeds

机译:糖果葵花籽脱壳系统性能分析

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Confectionary sunflower, which has a larger size and lower oil content than oilseed sunflower, has a considerable market, since it is used for birdfeed and human consumption. The characteristics of use of confectionary sunflower seeds require a dehulling process that is efficient in the removal of the hull and that also allows obtaining a product consisting mainly of whole kernels. Response surface methodology was used to determine an optimal combination of working conditions in the dehulling process of confectionary sunflower seeds. Optimization factors were impact speed, expressed in terms of the peripheral speed (28.3 -41.9 m/s), and moisture content of the seeds (4% -14%, dry basis—db). A central composite rotatable design (CCRD) was used to develop models for the responses (dehulling ability—DA and percentage of whole kernels—WK). Applying the desirability function method, the optimal values of the factors were determined using maximum WK and maximum DA as criteria. The results of the optimization technique suggest that by dehulling Mycogen 9338 confectionary sunflower seeds at 12.3% db and 32.5 m/s, the maximum values of DA and WK (72.6% and 63%, respectively) would be obtained. The moisture value defined as optimal determines a requirement of humidification of the seeds prior to dehulling, establishing the need for a technical and economic feasibility study.
机译:糖果向日葵比油籽向日葵具有更大的尺寸和更低的油含量,因为它被用于禽类饲料和人类消费,因此具有很大的市场。使用糖食葵花籽的特性需要脱壳过程,该过程可以有效地去除壳,并且还可以得到主要由整个仁组成的产品。响应面方法用于确定糖果葵花籽脱壳过程中工作条件的最佳组合。最优化因素是冲击速度,以圆周速度(28.3 -41.9 m / s)表示,种子的水分含量(4%至-14%,干基-db)。中央复合可旋转设计(CCRD)用于开发响应模型(脱壳能力-DA和整个内核的百分比-WK)。应用期望函数法,以最大WK和最大DA为准则确定因子的最佳值。优化技术的结果表明,通过以12.3 %db和32.5 m / s对Mycogen 9338糖果向日葵种子进行脱皮处理,可获得DA和WK的最大值(分别为72.6 %和63 %)。定义为最佳的水分值决定了脱壳之前种子的加湿要求,从而需要进行技术和经济可行性研究。

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