TURBISCAN - Dispersion Stability Analysis Applications
 Dispersibility characterization of pigments & coatings with static multiple light scattering
 Mean size determination in real and concentrated liquid dispersions with S-MLS
 Direct mean size measurement in native concentrated dispersions with static multiple light scattering
 Static multiple light scattering to predict long term stability of emulsions with polymers
 Size and stability control during wet nanomilling using SMLS technology
 Impact of centrifugation on stability study
 Settling particles speed via Turbiscan and Lumifuge
 Effect of the Introduction of Polymer on Pigment Dispersion Stability
 Method to measure the concentration profile during destabilization
 Ultrafine bubble characterization Stability monitoring by S-MLS
 Stability analysis for different grades of Micro-fibrillated Cellulose (MFC)
 Antifouling properties of polymeric membranes
 Effect of raw materials on a sunscreen formulation
 Turbiscan Stability Index (TSI)
 The Cycle of Formulation Characterization from dispersibility and stability to redispersion
 Static multiple light scattering to predict long term stability of emulsions with polymers
 Evaluating mean particle size in concentrated dispersions
 Nanoparticles and toxicity - Establishing more detailed protocol for fate evaluation -
 Stability of graphene dispersions - Study of polymer-assisted exfoliation -
 Turbiscan stability scale - The stability criteria and correlation to visual observation -
 Study of the release of an encapsulated active in double emulsion
 Graphene oxides dispersions
 Using the Turbiscan Stability Index (TSI) to determine surfactant efficiency on emulsions stabilisation
 Evaluation of new weighting agent to stabilize beverage emulsions
 Using the Turbiscan Stability Index to determine the Stability Diagram of a liquid dispersion
 Metalworking fluids physical stability & size analysis
 Metal working fluids Stability measurement with Turbiscan¢ç at each product life stage
 Fast and reliable sedimentation studies
 Fast and reliable creaming studies
 Pigments and fillers (Part 1) - Fast and effective raw material screening -
 Pigments and fillers (Part 2) - Automated dispersant efficiency screening -
 Raw material optimization via dispersibility Part 1
 Raw material optimization via dispersibility Part 2
 Measureing resuspending properties
 Online emulsification studies
 Direct emulsification screenimg fast method and small volume
 Emulsion optimization surfactant concentration screening
 Shelf life prediction by Turbiscan method and case study
 Fast and reliable creming studies identify and quantify emulsion creaming
 Shelf life prediction by Turbiscan
 Foamability and Foam Stability with Turbiscan¢ç
 Resuspension reversible destabilization study
 Foamability and foam stability with Turbiscan¢ç
 Optimize particle suspension stability by the Hansen approach using the Turbiscan technology
 Optimize the compatibility between graphene and TiO©ü particles using the Hansen approach
 3 steps characterization of dispersions
 Detect stability up to 1,000¡¿ faster with turbiscan
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