首页> 外文期刊>International Journal of Biosciences >Optimization of carboxy methyl cellulose-pectin and ascorbic acid based edible coating formulations for performance of osmotic dehydration of quince by RSM
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Optimization of carboxy methyl cellulose-pectin and ascorbic acid based edible coating formulations for performance of osmotic dehydration of quince by RSM

机译:基于羧甲基纤维素-果胶和抗坏血酸的食用涂料配方的优化,用于木瓜通过RSM的渗透脱水

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摘要

In recent years, edible coatings are extensively applied for improving processing and preservation of food stuffs. The using of edible coating as a pretreatment in osmotic dehydration is an efficient method for decreasing of solids diffusion from osmotic solution to food textures. In this research, optimization of active-blend edible coating formulation was investigated for using in osmotic dehydration of quince by response surface methodology (RSM). For this purpose, central composite design with three variable (concentration of pectin, carboxymethyl cellulose and ascorbic acid) three replicate and 18 treatments were used .Osmotic dehydration efficiency coefficient and water loss (WL) are selected as model responses. For osmotic dehydration, optimized osmotic solution that resulted from previous research works (fructose 50%, calcium chloride 5%, acid citric 3%) was used. On the base of maximum osmotic efficiency coefficient, the coating solution containing 1.49% carboxymethyl cellulose, 1.49% pectin and 0.58% ascorbic acid was determined as best coating solution by RSM modeling. The study of dehydration kinetics and mass transfer was carried outwith osmotic solution of fructose 50%, calcium chloride 5%, acid citric 3%) (w/v), and weight reduction, water loss and solids gain were measured. CMC-pectin coatings improved the efficiency of osmotic dehydration process, increasing the water loss and decreasing the solids gain
机译:近年来,可食用涂料被广泛应用于改善食品的加工和保存。使用可食用涂层作为渗透脱水的预处理是减少固体从渗透溶液扩散到食物质地的有效方法。在这项研究中,通过反应表面方法(RSM)研究了活性混合食用涂料配方的优化,用于木瓜的渗透脱水。为此,采用了三个变量(果胶,羧甲基纤维素和抗坏血酸的浓度)三个重复处理和18个处理的中央复合设计。选择渗透脱水效率系数和失水量(WL)作为模型响应。对于渗透脱水,使用了先前研究工作(果糖50%,氯化钙5%,柠檬酸3%)产生的优化的渗透溶液。在最大渗透效率系数的基础上,通过RSM模型确定了含有1.49%羧甲基纤维素,1.49%果胶和0.58%抗坏血酸的涂料溶液为最佳涂料溶液。用果糖50%,氯化钙5%,柠檬酸3%(w / v)的渗透溶液进行脱水动力学和传质的研究,并测定了重量减轻,失水和固体增加。 CMC-果胶涂层提高了渗透脱水过程的效率,增加了水分损失并降低了固体含量

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