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Effects of ultrasonic pretreatments on quality, energy consumption and sterilization of barley grass in freeze drying

机译:超声波预处理对冷冻干燥大麦草质量,能源消耗和灭菌的影响

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摘要

Barley grass is a plant resource for rehabilitation therapy. Its processing requires retaining nutrition well for rehabilitation cure of consumers. To meet the aim as well as low energy consumption and microbiological safety of products, ultrasonic treatments (UT) were applied to bathing materials at different power levels (10, 30, 45, 60 W/L) for 10 mins. After treatments, the bathed barley grass (100 g) was freeze-dried under vacuum -0.09 MPa with fixed power of 2 W/g. Parameters of color, microbial colony, energy consumption, glass transition temperature, moisture content, water activity, taste substances, contents of flavonoid and chlorophyll were determined after drying. In contrast with no treatment case, UT (45 W/L) decreased drying time by 14% and decreased energy consumption by 19%; UT (60 W/L) decreased total microbial colonies by 33%. Also, UT (30 W/L) yielded contents of flavonoid (9.2/kg) and chlorophyll (10.5 g/kg) of dried sample; UT power (10 W/L) yielded the highest L*(51.5) and the lowest a*(-9.3) value. Simultaneously, UT leads to a higher glass transition temperature (Tg), lower water activity and produces less sourness and bitterness of dried products. Ultra-sonication is an alternative to improve quality, flavor and energy consumption of barley grass in freeze drying.
机译:大麦草是康复治疗的植物资源。其处理需要保留营养良好的消费者康复治疗。为了满足产品的目的以及低能耗和微生物安全性,超声波处理(UT)以不同功率水平(10,30,45,60 w / l)的沐浴材料10分钟。处理后,沐浴的大麦草(100g)在真空下冷冻干燥 - 0.09MPa,固定功率为2W / g。干燥后,测定颜色,微生物菌落,能耗,玻璃化转变温度,水分含量,水活性,味道物质,黄酮类化合物含量和叶绿素的参数。相反,没有治疗情况,UT(45 w / l)减少干燥时间减少14%并降低了能耗减少19%; UT(60W / L)减少了总微生物菌落33%。此外,UT(30w / l)产生黄酮类化合物(9.2 / kg)和叶绿素(10.5g / kg)干燥样品的含量; UT功率(10 w / l)产生最高的l *(51.5)和最低的a *( - 9.3)值。同时,UT导致更高的玻璃化转变温度(Tg),较低的水活性,并产生较少的干燥产品的酸痛和苦味。超声波是一种改善冻干中大麦草的质量,风味和能量消耗的替代方案。

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