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Postharvest Physicochemical Properties and Fungal Populations of Treated Cucumber with Sodium Tripolyphosphate/Titanium Dioxide Nanoparticles during Storage

机译:在储存过程中与三氧化磷酸钠/二氧化钛纳米粒子处理过的黄瓜的Postharvest理化性质和真菌群体

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Cucumbers have a limited shelf-life, from 10 to 14 days at commercial temperatures with relative humidity (80%). The aim of the work was to evaluate the postharvest physicochemical properties and fungal populations of cucumber treated with sodium tripolyphosphate/titanium dioxide nanoparticles during storage at 10 °C to prolong the shelf-life to 21 days. Cucumber samples treated with chitosan/sodium tripolyphosphate/titanium dioxide nanoparticles (Cu-CHS-TDN-ST) and (Cu-CHS-TDN-ST) were found to be in a well-hydrated state and with a green-colored appearance upon day 21, with excellent quality for consumption. Chitosan coating (Cu-CHS) alone prolonged the cucumber shelf-life for 14 days of storage. The Cu-CHS coating was less evident in reducing the respiration rate of cucumbers on day 14 than both nanocoatings, which were reported at the end of the storage period to be 5.09 and 5.38 mg·kg?1 h?1 for Cu-CHS-TDN-ST and Cu-CHS-TDN, respectively. The Cu-CHS-TDN-ST treatment reduced the loss of ascorbic acid content to 13.17 mg/100 g, delayed chilling injury, and had the highest chlorophyll contents during the whole storage period. The presence of sodium tripolyphosphate with the nanocoating delayed tissue damage. Peroxidase enzyme activity reached the maximum of 54.65 Ug?1 for Cu-CHS-TDN-ST on day 21, followed by Cu-CHS-TDN 50.1 Ug?1. On day 21, the fungal populations of Cu-CHS-TDN samples (3.77 log CFU/g) were more than that of Cu-CHS-TDN-ST (3.15 log CFU/g) against Cu-Control (100 % spoiled). It was noted that the Cu-CHS-TDN-ST and CHS-TDN-ST coating treatments were capable of preserving the cucumber samples’ quality during storage. The addition of sodium tripolyphosphate as a crosslinker for stabilizing the nanoparticle polymers in the coating treatments prolonged the shelf-life and achieved excellent quality for the cucumbers.
机译:黄瓜的保质期有限,10至14天,在具有相对湿度的商业温度(80%)。该作品的目的是评估用三氧化钠/二氧化钛纳米颗粒在10℃的储存期间用三氧化磷酸钠/二氧化钛纳米颗粒治疗的后氨基钙的性能和真菌群体延长保质期至21天。发现用壳聚糖/三氧化磷酸钠/二氧化钛纳米颗粒(Cu-CHS-TDN-ST)和(Cu-CHS-TDN-ST)处理的黄瓜样品是在水性水合状态下,并在白天用绿色外观21,具有卓越的消费品质。壳聚糖涂层(Cu-CHS)单独延长黄瓜保质期储存14天。 Cu-CHS涂层在减少比纳米织物的第14天在第14天的第14天的呼吸速率下显而易见,这在储存期末报告为5.09和5.38mg·kg?1 h 2对于cu-chs-分别为TDN-ST和CU-CHS-TDN。 Cu-CHS-TDN-ST处理将抗坏血酸含量的损失降低至13.17mg / 100g,延迟冷冻损伤,并且在整个储存期间具有最高的叶绿素含量。用纳米织物延迟组织损伤存在三聚磷酸钠的存在。过氧化物酶活性在第21天的Cu-CHS-TDN-ST达到最大54.65ug≤1,然后是Cu-CHS-TDN 50.1UG≤1。在第21天,Cu-CHS-TDN样品的真菌群体(3.77 log cfu / g)大于Cu-CHS-TDN-ST(3.15对照CFU / g)的Cu-CHS-TDN-ST(3.15对照)(100%损坏)。注意,Cu-CHS-TDN-ST和CHS-TDN-ST涂层处理能够在储存期间保留黄瓜样品的质量。添加三聚磷酸钠作为涂料处理中的用于稳定纳米颗粒聚合物的交联剂的交联剂延长了保质期并为黄瓜达到了优异的品质。

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