Seth Dibyakanta, Dash Kshirod Kumar, Mishra Hari Niwas, Deka Sankar Chandra
1Department of Food Engineering and Technology, Tezpur University, Napaam, Tezpur, Assam 784028 India.
2Department of Agricultural and Food Engineering, Indian Institute of Technology, Kharagpur, WB 721302 India.
J Food Sci Technol. 2018 Oct;55(10):4139-4147. doi: 10.1007/s13197-018-3340-6. Epub 2018 Jul 25.
Sorption isotherm is a quantitative approach to predict the shelf life of dried foods. Adsorption isotherms of spray dried sweetened yoghurt powder (SYP) were determined by static gravimetric technique at 20, 30, 40 and 50 °C. The data obtained were fitted to eight different sorption models. A non-linear least square regression analysis was adopted to evaluate the model constants. The experimental sorption data were best fitted to four parameter Peleg model. The monolayer moisture contents found from GAB model were 4.88, 4.54, 3.86 and 3.52% at 20, 30, 40 and 50 °C, respectively. The maximum net isosteric heat of sorption and sorption entropy of SYP were 9.399 kJ/mol and 20.28 J/mol K, respectively. The Gibb's free energy change for sorption was in the range 3436.19-303.91 J/mol. The storage stability in terms of moisture content, thiobarbituric acid, free fatty acid, hydroxymethyl furfural values and starter counts of SYP packed in aluminium laminated polyethylene (ALPE) and low density polyethylene (LDPE) were studied along with their change kinetics. The relationship between the water vapour permeability of packaging materials and adsorbed moisture (determined from GAB equation) in powder was used to predict the shelf life and was predicted as 28 and 44.44 days in LDPE and ALPE pouches, respectively.
吸附等温线是预测干燥食品保质期的一种定量方法。采用静态重量法在20、30、40和50℃下测定了喷雾干燥加糖酸奶粉(SYP)的吸附等温线。将获得的数据拟合到八种不同的吸附模型中。采用非线性最小二乘回归分析来评估模型常数。实验吸附数据最适合四参数佩莱格模型。由GAB模型得到的单层水分含量在20、30、40和50℃时分别为4.88%、4.54%、3.86%和3.52%。SYP的最大净等量吸附热和吸附熵分别为9.399kJ/mol和20.28J/mol·K。吸附的吉布斯自由能变化范围为3436.19 - 303.91J/mol。研究了包装在铝塑复合聚乙烯(ALPE)和低密度聚乙烯(LDPE)中的SYP在水分含量、硫代巴比妥酸、游离脂肪酸、羟甲基糠醛值和发酵剂数量方面的储存稳定性及其变化动力学。利用包装材料的水蒸气透过率与粉末中吸附水分(由GAB方程确定)之间的关系来预测保质期,预测在LDPE袋和ALPE袋中的保质期分别为28天和44.44天。