Moisture sorption isotherms and thermodynamic properties of mexican mennonite-style cheese

被引:0
作者
Sergio I. Martinez-Monteagudo
Fabiola Salais-Fierro
机构
[1] University of Alberta,Department of Agricultural, Food and Nutritional Science
[2] Centro de Desarrollo Tecnológico para la Industria Láctea A.C.,undefined
来源
Journal of Food Science and Technology | 2014年 / 51卷
关键词
Mexican Mennonite-style cheese; Adsorption isotherms; Thermodynamic properties; Compensation theory; Sorption models; Weighed non-linear regression;
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中图分类号
学科分类号
摘要
Moisture adsorption isotherms of fresh and ripened Mexican Mennonite-style cheese were investigated using the static gravimetric method at 4, 8, and 12 °C in a water activity range (aw) of 0.08–0.96. These isotherms were modeled using GAB, BET, Oswin and Halsey equations through weighed non-linear regression. All isotherms were sigmoid in shape, showing a type II BET isotherm, and the data were best described by GAB model. GAB model coefficients revealed that water adsorption by cheese matrix is a multilayer process characterized by molecules that are strongly bound in the monolayer and molecules that are slightly structured in a multilayer. Using the GAB model, it was possible to estimate thermodynamic functions (net isosteric heat, differential entropy, integral enthalpy and entropy, and enthalpy-entropy compensation) as function of moisture content. For both samples, the isosteric heat and differential entropy decreased with moisture content in exponential fashion. The integral enthalpy gradually decreased with increasing moisture content after reached a maximum value, while the integral entropy decreased with increasing moisture content after reached a minimum value. A linear compensation was found between integral enthalpy and entropy suggesting enthalpy controlled adsorption. Determination of moisture content and aw relationship yields to important information of controlling the ripening, drying and storage operations as well as understanding of the water state within a cheese matrix.
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页码:2393 / 2403
页数:10
相关论文
共 126 条
[1]  
Alam SMd(2011)Sorption isotherm characteristics of aonla flakes J Food Sci Technol 48 335-343
[2]  
Singh A(2002)Moisture sorption isotherm characteristics of food products: a review Food Bioprod Process 80 118-128
[3]  
Al-Muhtaseb AH(2006)The fitting of various models to water sorption isotherms of tea stored in a chamber under controlled temperature and humidity J Stored Prod Res 42 112-135
[4]  
McMinn WAM(2002)Thermodynamics of moisture sorption in melon seed and cassava J Food Eng 55 107-113
[5]  
Magee TRA(1985)Thermodynamic properties of water on rice as calculated from reversible and irreversible isotherms J Food Sci 50 101-105
[6]  
Arslan N(2008)Effect of resistant starch on the water binding properties of imitation cheese J Food Eng 84 108-115
[7]  
Togrul H(2006)Thermodynamic properties of sweetpotato J Food Eng 75 149-155
[8]  
Aviara NA(1999)Thermodynamics of moisture sorption in winged bean seed and gari J Food Process Eng 22 405-418
[9]  
Ajibola OO(2008)Water sorption isotherms for lemon peel at different temperatures and isosteric heats LWT- Food Sci Technol 41 18-25
[10]  
Benado AL(2008)Water sorption isotherms and glass transition temperature of spray dried tomato pulp J Food Eng 85 73-83