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High power ultrasound combined with supercritical carbon dioxide for the drying and microbial inactivation of coriander

机译:高功率超声结合超临界二氧化碳,用于干燥和微生物灭活香菜

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摘要

This work explores the use of supercritical carbon dioxide (scCO(2)) drying in combination with High Power Ultrasound (HPU) to enhance both the dehydration efficiency and the microbial inactivation on coriander leaves. ScCO2 drying process alone was compared with a combined drying process (HPU + scCO(2)) at different powers (10, 40 and 80 W), different drying times (up to 90 min) and two process temperatures (40 and 50 degrees C). At the most effective condition tested (40 W; 10 MPa; 40 degrees C), mesophilic bacteria were reduced up to 4 Log, mesophilic spores up to 1 Log, while yeast and molds were never detected ( 2 log CFU/g). 40 W was identified as the threshold HPU value to achieve a beneficial effect on mesophilic bacterial spores reduction. Besides, the use of HPU enhanced the water loss and lowered the water activity of the samples, compared to the ones processed with scCO(2) alone. The appearance and color of the dried samples did not show significant differences after the two processes. Overall, HPU + scCO(2) process resulted a promising technology to enhance both the dehydration and microbial inactivation efficiency compared to scCO(2) drying alone.
机译:这项工作探讨了使用超临界二氧化碳(SCCO(2))干燥与高功率超声(HPU)的组合,以增强脱水效率和香菜叶上的微生物灭活。将SCCO2干燥方法与不同功率(10,40和80 W)的组合干燥过程(HPU + SCCO(2))进行比较,不同的干燥时间(高达90分钟)和两个工艺温度(40和50℃) )。在最有效的条件下测试(40 W; 10MPa; 40摄氏度),嗜苯胺细菌减少至4个原点,嗜苯胺孢子高达1个原木,而从未检测到酵母和模具(&lt 2 log cfu / g)。 。 40 W被鉴定为阈值HPU值,以实现对嗜合细菌孢子的有益作用。此外,与用SCCO(2)加工的人相比,HPU的使用增强了水分损失并降低了样品的水活性。在两种过程后,干燥样品的外观和颜色没有显示出显着的差异。总体而言,HPU + SCCO(2)工艺导致有希望的技术来增强与SCCO(2)干燥相比的脱水和微生物灭活效率。

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