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Effect of Carrier Agents on the Physicochemical and Technofunctional Properties and Antioxidant Capacity of Freeze-Dried Pomegranate Juice (

机译:载体试剂对冷冻干燥石榴汁物理化学和技术性质及抗氧化能力的影响(

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摘要

The physicochemical and technofunctional properties and antioxidant capacity of freeze-dried “Wonderful” pomegranate juice powder (PJP), produced with different carrier agents, were investigated. Powders were produced using maltodextrin, gum Arabic, and waxy starch as carrier agents and characterised by scanning electron microscopy (SEM) and particle size distribution. Results showed that PJP produced with maltodextrin had the highest yield (46.6%), followed by gum arabic (40.6%), while waxy starch had the least yield (35.4%). Powders produced with maltodextrin (96.5%) and gum arabic (96.1%) were highly soluble, which indicates better reconstitution properties. Waxy starch-added PJP had the lowest hygroscopicity (4.7%), which offers good stability during storage and a lower degree of caking compared to maltodextrin (10.2%) and gum arabic (12.6%) powders. Powders obtained from maltodextrin and gum arabic exhibited larger particle diameters ranging between 12 to 120 µm while the lowest particle diameter range was with powders formed from waxy starch (8–40 µm). Freeze-dried pomegranate powder produced with maltodextrin retained more redness (a*) by approximately 44%, compared to gum arabic. Similarly, PJP with maltodextrin and gum arabic had higher total soluble solids (10.3 and 10.4 °Brix), respectively. Total anthocyanin content was 54% more in PJP with maltodextrin than waxy starch PJP. Similarly, the powder produced with maltodextrin had higher radical scavenging activity (33.19 mM TE/g dry matter; DM) compared to gum arabic (28.45 mM TE/g DM) and waxy starch (26.96 mM TE/g DM). Overall, maltodextrin reflected the most suitable carrier agent to produce PJP.
机译:研究了用不同载体试剂产生的冷冻干燥“精彩”石榴汁粉(PJP)的物理化学和技术能力和抗氧化能力。使用麦芽糖糊精,阿拉伯胶和蜡质淀粉作为载体制备粉末作为载体剂,并通过扫描电子显微镜(SEM)和粒度分布。结果表明,用麦芽糖糊精产生的PJP具有最高的产率(46.6%),其次是阿拉伯语(40.6%),而蜡质淀粉率最少(35.4%)。用麦芽糖糊精(96.5%)和阿拉伯树胶(96.1%)产生的粉末是高度可溶的,这表明了更好的重构性能。蜡状淀粉添加的PJP具有最低的吸湿性(4.7%),其在储存期间提供良好的稳定性,与麦芽糖糊精(10.2%)和阿拉伯胶(12.6%)粉末相比较低的结块。从麦芽糖糊精和阿拉伯胶中获得的粉末在12至120μm之间表现出较大的粒径,而最低粒径范围是由蜡淀粉(8-40μm)形成的粉末。与阿拉伯文胶相比,用麦芽糖糊精产生的冷冻干燥的石榴粉末在麦芽糖糊精保留了大约44%的红肿(A *)。类似地,具有麦芽糖糊精和阿拉伯胶的PJP分别具有更高的总可溶性固体(10.3和10.4°Brix)。在PJP中,麦芽糖蛋白含量总量比蜡状淀粉PJP更高为54%。类似地,与麦芽糖糊精产生的粉末具有更高的自由基清除活性(33.19mm TE / G干物质; DM),与阿拉伯胶(28.45mM TE / G DM)和蜡质淀粉(26.96mm TE / G DM)相比。总体而言,麦芽糊精反映了最合适的载体剂以产生PJP。

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