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        - 2025
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                        Mark
        Break-Up of Plant Cell Structures in High Pressure Homogenizers – Prospects and Challenges for Processing of Plant-Based Beverages
    
    
- Contribution to journal › Article
 
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                        Mark
        Experimental investigation of single drop breakup in a confined turbulent wall-jet : Effect of Weber number
    
    
- Contribution to journal › Article
 
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                        Mark
        Particle impact in high-pressure homogenizer valves – A step towards understanding wear and cell breakup in food and beverage processing
    
    
- Contribution to journal › Article
 
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                        Mark
        Drop breakup can occur inside the gap of a high-pressure homogenizer – New evidence from experimental breakup visualizations
    
    
- Contribution to journal › Article
 
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                        Mark
        Single drop turbulent breakup in the anisotropic turbulence inside a high-pressure homogenizer scale-up model
    
    
- Contribution to journal › Article
 
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                        Mark
        A CFD-based approach to study cavitation in high-pressure homogenizer valves. Part 2. Cavitation intensity
    
    
- Contribution to journal › Article
 
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                        Mark
        A Low-Cost Method for Characterizing the Inception and Extent of Cavitation in High-Pressure Homogenizers
    
    
- Contribution to journal › Article
 
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                        Mark
        Evaluation of laser diffraction as a fast method for particle size distribution measurement of plant cell structures in whole oat and soy beverages
    
    
- Contribution to journal › Article
 
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                        Mark
        A CFD-based approach to study cavitation in high-pressure homogenizer valves. Part 1. Cavitation inception, extent and location
    
    
- Contribution to journal › Article
 
 - 2024
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                        Mark
        High-pressure homogenizer valve design modifications allowing intensified drop breakup without increasing power consumption. I. Optimization of current design-principle
    
    
- Contribution to journal › Article
 
 
