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首页> 外文期刊>Innovative Food Science & Emerging Technologies >Optimization of supercritical fluid extraction of bioactive compounds from grape (Vitis labrusca B.) peel by using response surface methodology.
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Optimization of supercritical fluid extraction of bioactive compounds from grape (Vitis labrusca B.) peel by using response surface methodology.

机译:采用响应面法优化超临界流体萃取葡萄皮中生物活性化合物的工艺。

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摘要

Supercritical fluid extraction (SFE) was applied for the extraction of valuable compounds from grape (Vitis labrusca B.) peel. Extraction was carried out according to an orthogonal array design (OAD) and independent variables selected were temperature, pressure and modifier concentration. SFE process was optimized by using response surface methodology (RSM) for the extract yield, total phenols, antioxidants and total anthocyanins from grape peel. Effects of extraction temperature and pressure were found to be significant on all responses. Optimal SFE conditions were identified as 45-46 degrees C temperature, 160-165 kgcm-2 pressure and 6-7% ethanol as modifier for maximum extract yield (12.31%), total phenols (2.156 mg GAE/100 mL), antioxidants (1.628 mg/mL) and total anthocyanins (1.176 mg/mL). Experimental values for response variables at these optimal conditions match well with the predicted values. Grape peel extracts obtained by SFE showed more than 93% DPPH radical scavenging activities. Industrial relevance: This study describes the response surface optimization of supercritical fluid extraction (SFE) process for the enhanced recovery of total phenols, antioxidant and anthocyanins from grape peel. SFE uses CO2 as supercritical fluid which is environment friendly solvent; allows extraction at lower temperature and the extracts obtained possess higher quality and safety. Industrially, it may be used as a promising technique for the extraction of bioactive compounds from plant materials
机译:超临界流体萃取(SFE)用于从葡萄(Vitis labrusca B.)果皮中提取有价值的化合物。根据正交阵列设计(OAD)进行提取,选择的独立变量为温度,压力和改性剂浓度。通过使用响应表面方法(RSM)对葡萄皮中的提取物产量,总酚,抗氧化剂和总花青素进行了优化,从而优化了SFE工艺。发现提取温度和压力对所有响应均具有显着影响。确定最佳的SFE条件为45-46摄氏度的温度,160-165 kgcm-2的压力和6-7%的乙醇作为改性剂,以最大提取率(12.31%),总酚(2.156 mg GAE / 100 mL),抗氧化剂( 1.628 mg / mL)和总花青素(1.176 mg / mL)。在这些最佳条件下,响应变量的实验值与预测值非常匹配。通过SFE获得的葡萄皮提取物显示出超过93%的DPPH自由基清除活性。行业相关性:这项研究描述了超临界流体萃取(SFE)过程的响应面优化,以提高葡萄皮中总酚,抗氧化剂和花色苷的回收率。 SFE使用CO2作为超临界流体,是环境友好型溶剂;允许在较低的温度下提取,所得提取物具有更高的质量和安全性。在工业上,它可以用作从植物材料中提取生物活性化合物的有前途的技术

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