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Radio-frequency treatment for stabilization of wheat germ: Dielectric properties and heating uniformity

机译:小麦胚芽稳定的射频处理:介电性能和加热均匀性

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Wheat germ (WG) is a valuable by-product of wheat milling but is highly susceptible to lipid rancidity induced by lipase (LA) activity. Therefore a stabilization step is required to reduce LA activity. Radio-frequency (RF) heating is an alternative thermal technology suitable for processing food and has great potential for WG stabilization. However, in order to develop effective RF stabilization treatments, a knowledge of the dielectric properties (DPs) (i.e. dielectric constant (epsilon '') and dielectric loss factor (epsilon '')) of WG at frequencies used for heating is required. Furthermore, an understanding of the influence of RF processing conditions on heating uniformity and LA inactivation is needed. Findings in the present study show that epsilon' and epsilon '' of WG increased with increasing temperature and moisture content (MC). Furthermore, the relationship between DPs and temperature/MC can be described by quadratic order models. RF heating uniformity in WG gradually improved with decreasing heating rate from 19.6 to 6.3 degrees C/min and MC from 15.96 to 7.05% (wet basis, w.b.). Placing the WG on a moving conveyor at 4 m/h slightly improved RF heating uniformity in the interior layers of the WG. Placing a pair of rectangular polyetherimide plates (12 x 8 cm) above and below the container during RF heating at 6.3 degrees C/min further improved temperature distribution leading to a more uniform LA inactivation in WG. Overall, the results obtained from this study are useful in computer simulation and optimizing process parameters for WG stabilization by RF heating.
机译:小麦胚芽(WG)是小麦铣削的有价值的副产物,但对脂肪酶(LA)活性诱导的脂质腐蚀性高度敏感。因此,需要稳定步骤来减少La活性。射频(RF)加热是一种适用于加工食品的替代热技术,具有巨大的WG稳定潜力。然而,为了开发有效的RF稳定化处理,需要了解用于加热的频率的WG的电介质性质(即介电常数(ε')和介电损耗因数(ε')。此外,需要了解RF处理条件对加热均匀性和LA失活的影响。目前研究中的发现表明,WG的epsilon'和epsilon''随着温度和水分含量的增加而增加(MC)。此外,可以通过二次阶模型来描述DPS和温度/ MC之间的关系。 WG中的RF加热均匀性随着从19.6至6.3摄氏度的加热速率降低,MC为15.96至7.05%(湿基础,W.B.)。将WG放置在移动输送机上,以4m / h略微改善WG的内层的RF加热均匀性。在RF加热期间将容器上方和下方的一对矩形聚醚酰亚胺板(12×8cm)放置在6.3摄氏度期间,进一步改善温度分布,导致WG中更均匀的LA灭活。总的来说,从该研究获得的结果可用于计算机仿真和优化RF加热WG稳定的过程参数。

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