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1.
High-pressure-induced changes in bovine milk: a review   总被引:2,自引:1,他引:1  
High-pressure (HP) treatment of food products is a novel processing technique during which the product is treated in a vessel of suitable strength at a high pressure, generally in the range 100–1000 MPa. As a result, several constituents and properties of the treated product are altered. HP-induced changes in the constituents and properties of milk are arguably among the most extensive of the range of food products studied to date. HP treatment of milk induces solubilization of minerals associated with the casein micelles, denatures whey proteins and, depending on pressure, can either induce aggregation or disruption of the casein micelles. These HP-induced changes in milk constituents affect the properties of the milk; cheesemaking properties of milk can be enhanced considerably, indicating potential application of HP treatment in this area; furthermore, encouraging results have also been reported for HP treatment of milk prior to yogurt manufacture. HP treatment of milk also affects its microflora; however, considerable variation in baroresistance between bacterial species and strains exists. Further applied research appears warranted to establish the full commercial potential of HP treatment of milk.  相似文献   
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The concentrations of nine individual minerals were determined in oysters harvested over a 10-month period. Significant (p > 0.01) monthly variations were observed in the levels of all the minerals determined. Salinity of the growing waters was significantly (p > 0.01) correlated to levels of sodium, magnesium, iron, chromium, and nickel in the oysters. Levels of potassium, copper and chromium were related to pH. Zinc and iron levels were correlated (p > 0.05) to water temperature. In this study, variations in the mineral content of oysters were often directly influenced by the growing water. This variation must be taken into consideration, should sodium labeling be required for fresh oysters.  相似文献   
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The adsorption of gas-phase phenanthrene on atmospheric water and ice films was investigated in a flow-tube reactor with a view to understanding the processing of semi-volatile organic compounds by fog and snow. Air-water (ice) interface partition constants were obtained by measuring the mass uptake of phenanthrene vapor on thin water and ice films with varying thickness. Adsorption enthalpies and entropies were obtained from the temperature dependence of the interfacial partition constants. The surface adsorption is the predominant mechanism for the uptake of phenanthrene in water and ice films with small film thickness or at low temperature. The adsorption of phenanthrene to ice resembles that to sub-cooled water and there's no significant difference between the adsorption of phenanthrene to water and that to quasi liquid layer (QLL) if we take into account the uncertainties on the thermodynamic quantities measured. Molecular dynamics simulations of phenanthrene at air/water and air/ice interfaces support these experimental observations. The interfacial air-water and air-ice partition constants of phenanthrene increased greatly in the presence of surface-active substances, indicating that surface active materials effectively enhanced the uptake of organic compounds by atmospheric water and ice films.  相似文献   
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Drawings provide a medium for communicating design decisions. The dtask of preparing and changing design drawings has been simplified by various packages available for computer aided drafting (CAD). Recently, expert-systems techniques are being used to aid the design process by monitoring and refining design decisions. Combining expert systems and CAD techniques raises issues concerning representation of the design. An expert system for evaluation of the design. An expert system for evaluation of preliminary structural designs has been implemented using an expert system shell and a CAD package. This and other similar implementations illustrate different approaces to the integration problems  相似文献   
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