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Impact of micro wet milling process on pomegranate peel phenolics extraction using multi-response optimization

机译:微湿铣过程对利用多响应优化石榴剥皮酚类萃取的影响

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Pomegranate peel is a rich source of various phenolics. Many extraction methods were developed and utilized for pomegranate peel extraction (PPE) with varying effect on its bioactive compounds. We hypothesized that micro wet milling (MWM) can be used to extract such compounds from fresh peel without drying to powder, as their particle size is reduced to micrometers. This will preserve the bioactive compounds as no heat treatment is involved in this proposed extraction method. To assess the MWM extraction process, response surface methodology (RSM) was used to determine the optimum extraction conditions. The main influential factors such as rotational speed (RS) 20-50 rpm, solid to solvent ratio (SS) 5-30 g/100 mL, and ethanol to water ratio (EW) 30-80% were optimized for total phenolic content (TPC), total anthocyanin content (TAC), punicalagin, ellagic acid (EA), gallic acid (GA), catechin, and epicatechin. The optimum operational conditions were 50 rpm of RS, 19.62 g/100 mL of SS, and 49.65 % v/v of EW. The most significant influential factor for pomegranate peel extraction was SS. The optimum phenolic compound values were 225.7 mg GAE/g dw of TPC, 3.1 mg/g dw of TAC, 71.6 mg/g dw of punicalagin, 6.9 mg/g dw of ellagic acid, 6.2 mg/g dw of gallic acid, 13.1 mg/g dw of catechin and 14.8 mg/g dw of epicatechin. Validation of the model and its comparison with the results obtained from the ultrasonic bath extraction method and scanning electron microscopy (SEM) revealed that MWM can be used to mill the peel into micro-scale particles making the extraction of pomegranate peel phenolics easier.
机译:石榴皮富含各种酚类物质。石榴皮提取物(PPE)的提取方法多种多样,对其生物活性成分有不同的影响。我们假设,微湿法研磨(MWM)可以用于从新鲜果皮中提取此类化合物,而无需干燥成粉末,因为它们的粒径减小到微米。这将保留生物活性化合物,因为该拟议提取方法不涉及热处理。为了评估MWM提取过程,采用响应面法(RSM)确定最佳提取条件。对总酚含量(TPC)、总花青素含量(TAC)、石榴苷、鞣花酸(EA)、没食子酸(GA)、儿茶素和表儿茶素等主要影响因素进行了优化,如转速(RS)20-50 rpm、固溶比(SS)5-30 g/100 mL、乙醇水比(EW)30-80%。最佳操作条件为50 rpm的RS、19.62 g/100 mL的SS和49.65%v/v的EW。影响石榴皮提取的最显著因素是SS。最佳酚类化合物值为225.7 mg GAE/g dw TPC、3.1 mg/g dw TAC、71.6 mg/g dw punicalagin、6.9 mg/g dw鞣花酸、6.2 mg/g dw没食子酸、13.1 mg/g dw儿茶素和14.8 mg/g dw表儿茶素。该模型的验证及其与超声波浴提取法和扫描电子显微镜(SEM)所得结果的比较表明,MWM可用于将石榴皮研磨成微小颗粒,从而使石榴皮酚的提取更容易。

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