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NUMERICAL MODELING OF PEROXIDASE INACTIVATION IN POTATO TUBERS

机译:马铃薯块茎过氧化物酶失活的数值模拟

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The properties of peroxidase (POD) inactivation in potato during hot water heating were studied. In the conventional method, the vegetable sample is heated at a constant temperature, and the POD inactivation rate at each temperature is obtained. The activation energy and frequency factor are then calculated from Arrhenius plots of the inactivation rates. Although only the temperature of the hot water is used in the calculation, the actual potato sample temperature is not considered. In this study, unequal temperature distributions in a potato cylinder during hot water heating were simulated by a finite element method using COMSOL Multiphysics. In this simulation, thermal conductivity of the potato tuber was determined to fit best with the measured temperature as lambda = (-3.1 x 10(-5))T-2 + (1.8 x 10(-2))T - 1.9. Additionally, POD inactivation was predicted based on the simulated temperature distribution. The activation energy and frequency factor were then determined as 29.2 kJ mol(-1) and 2.0 x 10(2) s(-1) to minimize the root mean square error between predicted and measured POD activities. The adequacy of these parameters was confirmed using a validation test with a potato cylinder of a different size. It was concluded that finite element method simulation was valid for determining the POD inactivation property.
机译:研究了热水加热过程中马铃薯中过氧化物酶(POD)灭活的性质。在常规方法中,将植物样品在恒定温度下加热,获得每个温度的POD灭活率。然后从灭活率的Arhenius图计算激活能量和频率因子。尽管在计算中仅使用热水的温度,但不考虑实际的马铃薯样品温度。在该研究中,通过使用COMSOL多发性的有限元法模拟热水加热过程中的马铃薯圆筒中的不等温度分布。在该模拟中,测定马铃薯块茎的导热率,以测量的温度为Lambda =(-3.1×10(-5))T-2 +(1.8×10(-2))t-1.9。另外,基于模拟温度分布预测POD失活。然后将活化能量和频率系数确定为29.2kJ摩尔(-1)和2.0×10(2)s(-1),以最小化预测和测量的POD活动之间的根均方误差。使用具有不同尺寸的马铃薯缸的验证测试确认了这些参数的充分性。得出结论,有限元方法模拟对于确定豆荚灭活性有效。

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