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The effect of drying methods on the energy consumption bioactive potential and colour of dried leaves of Pink Rock Rose (Cistus creticus)

机译:干燥方法对粉红色岩蔷薇(Cistus creticus)干燥叶片的能量消耗生物活性势和颜色的影响

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摘要

This study aimed to investigate the changes in the total polyphenolic content and antioxidant properties after subjecting Pink Rock Rose (Cistus creticus) leaves to three different drying procedures, including convection drying (CD) at 40, 50 and 60 °C; vacuum-microwave drying (VMD) at 240 W microwave power; and combined drying consisting of convective pre-drying at 50 °C followed by vacuum-microwave finish drying at 240 W microwave power (CPD-VMFD). The total polyphenolic content and antioxidant properties (DPPH, ABTS) of leaves subjected to these three drying methods were spectrophotometrically determined. The results show that convection drying at 40 °C and vacuum-microwave drying yielded dried leaves with the highest bioactive potential in terms of the total polyphenol content and antioxidant activity, with the highest and lowest values of final specific energy consumption, respectively. The lowest bioactive potential was found in a product dried at 60 °C, which can be attributed to the possible degradation or changes in polyphenol structures under high temperatures. During the combined treatment (CPD-VMFD), most of the moisture was efficiently removed from the raw material by CPD, whereas the time of drying was significantly reduced by the application of VMFD. Combined drying CPD-VMFD is most suitable for industrial applications as it produces dried leaves with a bioactive potential that is only slightly lower than that achieved with VMD while providing a high-throughput capacity relative to operating costs.
机译:这项研究旨在研究将粉红岩蔷薇(Cistus creticus)叶片进行三种不同的干燥程序(包括在40、50和60°C下对流干燥(CD))后总多酚含量和抗氧化性能的变化;在240 W微波功率下进行真空微波干燥(VMD);组合干燥包括在50°C下对流预干燥,然后在240 W微波功率(CPD-VMFD)下进行真空微波精整干燥。分光光度法测定了经过这三种干燥方法的叶片的总多酚含量和抗氧化性能(DPPH,ABTS)。结果表明,在40°C下对流干燥和真空微波干燥产生的干叶在总多酚含量和抗氧化活性方面具有最高的生物活性潜力,最终比能耗分别最高和最低。在60°C下干燥的产品中发现了最低的生物活性潜力,这归因于高温下多酚结构可能降解或改变。在联合处理(CPD-VMFD)期间,通过CPD有效地从原料中去除了大部分水分,而通过应用VMFD大大缩短了干燥时间。组合式干燥CPD-VMFD最适合工业应用,因为它产生的生物活性电位仅比VMD略低,同时具有较高的生产能力(相对于运营成本)。

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