Anean Hosam Aboul, Mallasiy L O, Bader Dina M D, Shaat Heba A
Food Engineering and Packaging Department, Food Technology Research Institute (FTRI), Agriculture Research Center (ARC), Giza 12619, Egypt.
Department of Home Economics, Faculty of Science and Arts in Tihama, King Khalid University, Muhayil Asir 61913, Saudi Arabia.
Materials (Basel). 2023 Feb 13;16(4):1569. doi: 10.3390/ma16041569.
Edible coating and film from chitosan and incorporating it with the action of ZnONPs on active phenol compounds from extracts of pomegranate peel (PPE) The physical and chemical properties of edible films composed of zinc oxide ZnONPs and active phenol compounds extracted from pomegranate peel (PPE) were investigated. Adding ZnONPs with active phenol compounds from extracted pomegranate peel(PPE) to chitosan films can provide safe edible films, decrease microbial growth and consequently prolong the shelf life of pomegranates, as well as improve the physiochemical stability of the pomegranate. The substances used in this experiment were film with a (A) extract of pomegranate peels (PPE), 5% (0.1%), (B)ZnONPs 1% (0.02%), (C) ZnONPs 2% (0.04%), (D) ZnONPs 3% (0.06%), (E) ZnONPs 1%/PPE1% (0.02%), (F) ZnONPs 2%/PPE2% (0.04%), (G) ZnONPs 3%/PPE3% (0.06%) wt% of chitosan on quality attributes and prolonging the shelf life of pomegranates were stored in plastic containers at 2 °C and 90-95% relative humidity for 20 days. The treatments of (G) ZnONPs 3%/PPE3% (0.06%) loaded on chitosan as well as chitosan and (D) ZnONPs 3% (0.06%) reduced the weight loss, had excellent microbial count until 20 days of storage, and recorded the lowest microbial count and mould & yeast colonies. Other chemical properties, such as total soluble solids content, acidity, anthocyanin content, firmness, and ascorbic acid, were investigated. Results indicated that ZnONPs 3%/PPE3% (0.06%) loaded on chitosan or ZnONPs 3% (0.06%) are the best treatments for preserving pomegranate arils. It was found that the best measurements were that the film-forming nan emulsion solutions decreased by E% 110 nm and B% 134 nm. Nano followed treatment, F% 188.7 nm, compared to nano edible films, which were A 0% 1312 nm.
壳聚糖可食用涂层和薄膜及其与氧化锌纳米颗粒对石榴皮提取物中活性酚类化合物的作用 研究了由氧化锌纳米颗粒(ZnONPs)和从石榴皮(PPE)中提取的活性酚类化合物组成的可食用薄膜的物理和化学性质。将ZnONPs与从石榴皮(PPE)中提取的活性酚类化合物添加到壳聚糖薄膜中,可以提供安全的可食用薄膜,减少微生物生长,从而延长石榴的保质期,并提高石榴的理化稳定性。本实验中使用的物质为含有(A)石榴皮提取物(PPE)5%(0.1%)、(B)ZnONPs 1%(0.02%)、(C)ZnONPs 2%(0.04%)、(D)ZnONPs 3%(0.06%)、(E)ZnONPs 1%/PPE1%(0.02%)、(F)ZnONPs 2%/PPE2%(0.04%)、(G)ZnONPs 3%/PPE3%(0.06%)重量百分比壳聚糖的薄膜,研究其对石榴品质属性的影响以及在2℃和90 - 95%相对湿度下于塑料容器中储存20天对延长石榴保质期的作用。负载在壳聚糖上的(G)ZnONPs 3%/PPE3%(0.06%)以及壳聚糖和(D)ZnONPs 3%(0.06%)处理降低了重量损失,在储存20天内具有优异的微生物数量,且记录到最低的微生物数量和霉菌及酵母菌落数。还研究了其他化学性质,如总可溶性固形物含量、酸度、花青素含量、硬度和抗坏血酸。结果表明,负载在壳聚糖上的ZnONPs 3%/PPE3%(0.06%)或ZnONPs 3%(0.06%)是保存石榴籽的最佳处理方法。发现最佳测量结果为成膜纳米乳液溶液的E%为110 nm,B%为134 nm。纳米随后处理,F%为188.7 nm,相比之下纳米可食用薄膜A为0% 1312 nm。