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首页> 外文期刊>Agricultural Engineering International: CIGR Ejournal >Optimization of ultrasound-assisted osmotic treatment of Aleo vera gel impregnated with grape pomace phenolic compounds using response surface methodology
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Optimization of ultrasound-assisted osmotic treatment of Aleo vera gel impregnated with grape pomace phenolic compounds using response surface methodology

机译:利用响应表面方法浸渍葡萄斑酚类化合物的芦荟凝胶超声辅助渗透治疗优化

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摘要

This study was focused on investigating the use of pulsed ultrasound-assisted osmotic dehydration (UAOD) for enhancing the infusion of phenolic compounds extracted from grape pomace (GPx) to Aloe vera?( Aloe barbadensis Miller,) gel (AVG) using response surface methodology (RSM) and produce a dehydrated product with high antioxidant content. Fresh AVG were initially immersed in a sucrose solution of 50° B with three levels of GPx (10, 20, and 30 v/v) and subjected to pulsed ultrasound (US) treatment with a probe of 2?cm diameter, two levels of ultrasound amplitude (UA) (50 and 100%), and three ultrasound treatment times (UT) (30, 135 and 210 min). The pulsed on and off times were set at 15 and 1 min, respectively. A multiple regression analysis was carried out to develop second-order polynomial models with high coefficients of determination value ( R 2 ?0.81). The optimal conditions were obtained using the Design Expert software. The best condition obtained for the UAOD optimization was UA = 59%, 20% grape pomace extract in 50% sucrose, UT = 173 min to result in a moisture loss of 51.3 % (predicted 49.9%), solid gain of 4.3 % (5.0%), total phenolic contents of 30.5 mg/g (31.8%), and DPPH radical scavenging activity of 15.3% (15.0%). UAOD therefore appears to be a promising process for antioxidant incorporation and preparing added value product.
机译:本研究专注于调查使用脉冲超声辅助渗透脱水(UAOD)来增强从葡萄渣(GPX)中提取的酚类化合物的输注,使用响应面方法凝胶(ALOE BARBADENSIS MILLER,)凝胶(AVG) (RSM)并制备具有高抗氧化含量的脱水产物。新鲜的AVG最初浸入50°B的蔗糖溶液中,具有三个水平的GPX(10,20和30V / V),并用探针进行脉冲超声(US)处理,直径为2Ω厘米超声幅度(UA)(50和100%)和三次超声处理时间(UT)(30,135和210分钟)。脉冲开启和关闭时间分别设定为15至1分钟。进行多元回归分析以开发具有高系数值的二阶多项式模型(R 2> 0.81)。使用设计专家软件获得最佳条件。为UAOD优化获得的最佳条件是uA = 59%,在50%蔗糖中20%葡萄渣提取物,UT = 173分钟,导致水分损失51.3%(预测49.9%),固体增益为4.3%(5.0 %),酚醛含量为30.5mg / g(31.8%),DPPH自由基清除活性为15.3%(15.0%)。因此,UAOD似乎是抗氧化掺入和制备附加值产物的有希望的方法。

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