Effects of Heating and Storage Conditions on Growth Properties of Mould in Rice

Qing Xiong, Jian Hu, Si-ming Zhao
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引用次数: 2

Abstract

the effects of low intensity of heating treatments and storage conditions on growth properties of mould in rice were investigated and a model was obtained to describe the growth properties of mould. The parameters of growth properties of rice mould were obtained in order to provide the information for the control of rice mould. The rice samples were treated with traditional heating and microwave radiation, then were stored in the conditions of 20~35 °C and 75%~97%(Relative Humidity) for 30 days. Rice mould counts were enumerated periodically. There were lag phases for the rice mould during storage. The growth properties of rice mould were fitted to Gompertz equation precisely. The growth rate constant was between 0.015 ~0.6 d and was influenced by heating methods and storage conditions. The growth rate constant of rice mould treated by the two heating methods was lower than that of the control, whereas the amplitude difference between the treatments and control was reduced as the temperature risen, and the value of the mould treated by microwave radiation was bigger than that of traditional heating. The equivalent mould counts increased as the temperature risen, the values of mould treated with heating are higher in comparison with the control and the difference was more obvious when the treated mould were stored in low temperature and low relative humidity.
加热和贮藏条件对水稻霉菌生长特性的影响
研究了低强度热处理和贮藏条件对水稻霉菌生长特性的影响,建立了霉菌生长特性的模型。获得了稻霉的生长特性参数,为防治稻霉提供了依据。稻谷样品经传统加热和微波辐照处理后,在20~35℃、75%~97%(相对湿度)条件下保存30 d。定期进行稻霉计数。稻瘟病菌在贮藏过程中存在滞后期。水稻霉的生长特性与Gompertz方程吻合较好。生长速率常数在0.015 ~0.6 d之间,受加热方式和贮存条件的影响。两种加热方式处理的稻霉生长速率常数均低于对照,但随温度升高,处理与对照的幅度差减小,且微波辐射处理的霉菌生长速率值大于传统加热处理。等效霉菌数随温度升高而增加,加热处理后的霉菌数高于对照,低温低相对湿度保存时差异更明显。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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