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Effect of Ultra High Pressure Under Argon and Temperature on the Volatiles and Piperine Content and Microbiological Quality of Black Pepper (Piper Nigrum L.)

机译:氩气和温度下超高压对黑胡椒挥发物和哌啶含量及微生物质量影响的影响(吹笛者Nigrum L.)

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In the search of effective decontamination methods of herbal spices, combined action of high pressure under argon at various temperatures has been applied. Ground black pepper (Piper nigrum L.) samples were exposed to hydrostatic pressure of 1 000 MPaunder argon for 30 minutes at elevated temperature (60°C, 80°C, 100°C and 140°C). Under all experiments conditions vegetative cells of bacteria were totally inactivated. Under conditions of 1 000 MPa and temperature 60°C 84.3 % of moulds spores were killed. The total destruction of vegetative microorganisms was observed at 1 000 MPa in 140°C. For inactivation of 99.9 % of aerobic bacterial spores it was necessary to apply pressure of 1 000 MPa and 140°C under argon.These results indicate that microorganisms present in ground black pepper, which is the product of low water activity, are very resistant to treatment with pressure and temperature. Changes in the essential oil and piper ine content as well as changes in the volatile constituents bymeans of GC and GC-MS were studied. The essential oil content decreased significantly in all treated samples, the losses increased with temperature, Piperine content significantly (ca. 20%) decreased only in samples pressurised at 100°C and 140°C Volatiles composition changed after all kind of treatment. Decrease of most of the monoterpenes, minor decrease of sesquiterpenes and increase of α- and γ-terpinene and 1-terpinen-4-ol were observed.
机译:在寻找草药香料的有效净化方法中,应用了在各种温度下氩气下的高压的组合作用。将黑胡椒(吹笛式Nigrum L.)样品暴露于1000mPa在氩气的静压压力下,在升高的温度下(60℃,80℃,100℃和140℃),30分钟。根据所有实验,条件细菌的营养细胞完全灭活。在1000MPa的条件下,温度60°C 84.3%的模具孢子被杀死。在140℃下以1000MPa观察到营养微生物的总破坏。为了灭活99.9%的有氧细菌孢子,在氩气下施加1000MPa和140℃的压力。这些结果表明,在底黑辣椒中存在的微生物,这是低水活性的产物,非常耐受压力和温度处理。研究了必需油和吹笛者含量的变化以及GC和GC-MS的挥发性成分的变化。在所有处理的样品中,精油含量显着下降,损耗随温度而增加,哌啶含量显着(约20%)仅在100℃加压的样品中降低,并且在所有种类的治疗后改变了140℃挥发物组合物。观察到大部分单色细胞的降低,癫痫患者的轻微降低和α-和γ-萜烯和1-Terpinen-4-醇的增加。

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