1 |
Effect of Carboxymethyl Cellulose Concentration on Rheological Behavior of Milk and Aqueous Systems. A Creep and Recovery Study Bayarri S, Dolz M, Hernandez MJ Journal of Applied Polymer Science, 114(3), 1626, 2009 |
2 |
Rheological properties of progesterone microemulsions: Influence of xanthan and chitosan biopolymer concentration Corrias F, Dolz M, Herraez M, Diez-Sales O Journal of Applied Polymer Science, 110(2), 1225, 2008 |
3 |
Rheological characterization of chitosan matrices: Influence of biopolymer concentration Diez-Sales O, Dolz M, Hernandez MJ, Casanovas A, Herraez M Journal of Applied Polymer Science, 105(4), 2121, 2007 |
4 |
Influence of xanthan gum and locust bean gum upon flow and thixotropic behaviour of food emulsions containing modified starch Dolz M, Hernandez MJ, Delegido J, Alfaro MC, Munoz J Journal of Food Engineering, 81(1), 179, 2007 |
5 |
Oscillatory measurements for salad dressings stabilized with modified starch, xanthan gum, and locust bean gum Dolz M, Hernandez MJ, Delegido J Journal of Applied Polymer Science, 102(1), 897, 2006 |
6 |
Analysis of stability of food emulsions by Eyring's theory: Influence of different biopolymers Dolz M, Hernandez MJ, Cabeza C, Casanovas A, Delegido J Journal of Applied Polymer Science, 92(4), 2653, 2004 |
7 |
Analysis of stability of food emulsions by Eyring's theory: Influence of different biopolymers (vol 92, pg 2653, 2004) Dolz M, Hernandez MJ, Cabeza C, Casanovas A, Delegido J Journal of Applied Polymer Science, 93(1), 481, 2004 |
8 |
Kinetic interpretation of influence of sodium chloride concentration and temperature on xanthan gum dispersion flow model Dolz M, Hernandez MJ, Delegido J Journal of Applied Polymer Science, 83(2), 332, 2002 |