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Process Development for Antioxidant Extraction from Wet Pomegranate Peel

机译:湿石榴剥离的抗氧化萃取过程开发

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Pomegranate peel (PP) is underused as animal feed or discarded in landfills, causing environmental pollution, even though it has a unique polyphenol profile with health-promoting properties. Past research has focused on the potential utilization of dried pomegranate peel (DPP), involving extended processing time, energy usage, and potential quality loss. The objective of this study was to develop a process to extract water-soluble antioxidants from wet pomegranate peel (WPP) and compare its antioxidant attributes with that of DPP. The WPP was sliced and ground into two sizes, and phenolics were extracted in water at different temperatures (20°C, 30°C, 40°C, 50°C, and 60°C), solvent (water) ratios (1:1, 2:1, 4:1, 6:1, and 8:1), and extraction times (2, 3, 4, 5, and 6 min). WPP extraction was compared with DPP extraction using hot air (HA, 40°C) and infrared radiation (IR, 60°C). The total phenolic yield (TPY) from WPP ranged from 10.37% to 12.80%, and the extraction rate increased significantly with increasing extraction time, temperature, and solvent ratio. DPPH scavenging activity (DSA), an important indicator of antioxidant activity, was in the range of 5.366 to 6.591 g g~(-1) and decreased only with the increase in temperature. Extraction using WPP particles resulted in 10% more extract yield and 2.5% more TPY compared to DPP powders with similar DSA. This study demonstrated that WPP could be used for the extraction of phenolic compounds with high antioxidant activity and without energy-intensive drying.
机译:石榴皮(PP)未被充分用作动物饲料或被丢弃在垃圾填埋场,造成环境污染,尽管它具有独特的多酚特性,具有促进健康的特性。过去的研究集中在干石榴皮(DPP)的潜在利用上,涉及延长加工时间、能源使用和潜在质量损失。本研究的目的是开发一种从湿石榴皮(WPP)中提取水溶性抗氧化剂的工艺,并将其抗氧化特性与DPP进行比较。将WPP切片并研磨成两种尺寸,然后在不同温度(20℃、30℃、40℃、50℃和60℃)、溶剂(水)比(1:1、2:1、4:1、6:1和8:1)和提取时间(2、3、4、5和6 min)的水中提取酚类。将WPP提取与使用热空气(HA,40°C)和红外辐射(IR,60°C)的DPP提取进行比较。WPP的总酚收率(TPY)在10.37%到12.80%之间,随着萃取时间、温度和溶剂比的增加,萃取率显著增加。DPPH清除活性(DSA)是抗氧化活性的重要指标,其范围为5.366至6.591 g-1,仅随温度升高而降低。与具有类似DSA的DPP粉末相比,使用WPP颗粒进行提取可使提取率增加10%,TPY增加2.5%。本研究表明,WPP可用于提取具有高抗氧化活性的酚类化合物,且无需能耗高的干燥。

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