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Optimization of Process Parameters for Microwave Sterilization of Maize Based on Response SurfaceMethodology

机译:基于响应抑制学的玉米微波灭菌过程参数的优化

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Maize, as the main energy source of food and animal feed, is liable to suffer from fungal infection in the process of storage. Microwave treatment can effectively improve the sterilization effects of agricultural products including maize. In the present study, four factors affecting efficacy of microwave sterilization were investigated such as microwave power, sterilization time, load and moisture content of maize. The design of rotation regression orthogonal combination was used to analyze the fourcontrolled variables: microwave power (170, 340, 510, 680 and 850 W); sterilization time (50, 60, 70, 80 and 90 s); load (50, 100, 150, 200 and 250 g); moisture content (12, 14, 16, 18 and 20%). The results showed that the primary and secondary order offactors influencing the sterilization rate was microwave power, sterilization time, load and moisture content in sequence, while the order of interaction effect of these four factors was the microwave power and sterilization time, the microwave power andload, the moisture content and microwave power, moisture content and sterilization time. The regression equation of microwave sterilization was established and the regression effect was significant. Based on optimization of the regression model, the maximum sterilization rate (99.68%) was obtained when the microwave power, sterilization time, maize load and moisture content were 680 W, 64 s, 200 g and 12.96%, respectively. The application of this analysis nUethod for optimizing the microwave sterilization of maize was discussed.
机译:作为食品和动物饲料的主要能量来源,玉米是患有储存过程中的真菌感染的含量。微波处理可以有效提高农产品在内的玉米灭菌效果。在本研究中,研究了影响微波灭菌功效的四种因素,例如玉米的微波功率,灭菌时间,载荷和水分含量。旋转回归正交组合的设计用于分析四个变量:微波功率(170,340,510,680和850 w);灭菌时间(50,60,70,80和90s);负载(50,100,150,200和250g);水分含量(12,14,16,18和20%)。结果表明,影响灭菌速率的初级和二次订单休息器是微波功率,灭菌时间,依次载荷和水分含量,而这四种因素的相互作用效果顺序是微波功率和灭菌时间,微波功率和载荷。 ,水分含量和微波功率,水分含量和灭菌时间。建立了微波灭菌的回归方程,回归效果显着。基于回归模型的优化,当微波功率,灭菌时间,玉米载荷和水分含量分别为680W,64秒,200g和12.96%时,获得最大灭菌速率(99.68%)。讨论了该分析Nuethod用于优化玉米微波灭菌的方法。

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