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Germination rate of watermelon seeds as affected by temperature, moisture content and heating rate

机译:受温度,水分含量和加热速率影响的西瓜种子的发芽率

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Thermal treatments are widely used to control bacterial fruit blotch on watermelon seeds contaminated by pathogens. It is necessary for developing effective pasteurization methods, which may not affect the germination rate of seeds by meeting the commercial circulation requirements. The purpose of this study was to determine the effect of moisture content, temperature and heating rate on the germination rate of watermelon seeds by using a special heating block system. The results showed that the heating rate during the come-up time had no significant "effect (P>0.05) on the germination rate of watermelon seeds, however, the holding time had a significant effect (PO.05). The germination rate of watermelon seeds heated at a fixed heating rate of 5 °C/min satisfied the national standard when the treatment temperature was below 75 °C. The curves for germination rate under different moisture contents and temperatures with holding time were fitted by Weibull model. The germination rate of watermelon seeds decreased with increasing temperature but increased with decreasing moisture content. ANN model was established under the fixed heating rate of 5 °C/min for predicting treatment conditions within the range of experiments. The mean square error and correlation coefficient for predicted and actual values on germination rate in this model were 0.013 and 0.950, respectively. Results of this study could be used to develop a rapid and effective watermelon seed treatment process based on watermelon seed germination and microbial / insect inactivation.
机译:热处理广泛用于控制由病原体污染的西瓜种子上的细菌果实污染。有效地开发有效的巴氏杀菌方法,这可能不会通过满足商业循环要求来影响种子的发芽率。本研究的目的是通过使用特殊的加热块系统确定水分含量,温度和加热速率对西瓜种子的发芽率的影响。结果表明,上升时间的加热速率对西瓜种子的萌发率没有显着的“效果(p> 0.05),但保持时间具有显着影响(PO.05)。发芽率当处理温度低于75℃时,以5°C / min的固定加热速率加热的西瓜种子满足国家标准。通过Weibull模型将萌发率下的萌发率和温度的温度下的曲线。西瓜种子的发芽率随温度的增加而降低,但随着水分含量的降低而增加。在5°C / min的固定加热速率下建立了ANN模型,用于预测实验范围内的治疗状况。平均方误差和相关系数对于预测和该模型发芽率的实际值,分别为0.013和0.950.本研究的结果可用于开发快速有效的西瓜S.基于西瓜种子萌发和微生物/昆虫灭活的EED处理过程。

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