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- Effect of an innovative sorbent material coupled to continuous flow process in the protein and oxidative stability of white wines.: This research demonstrates the use of glass beads as part of an innovative sorbent system to improve the stability and quality of white wines, highlighting its practical applications in food chemistry (Ricci et al., 2024).
- Thin-section- and matrix-free mass spectrometry imaging: Reproducible sample transfer using novel platinum-coated porous plate formed of glass beads.: This study introduces a new application of glass beads in mass spectrometry, creating a platform that enhances the reproducibility and efficiency of sample analysis, crucial for precise chemical imaging (Ikeda et al., 2024).
- Raman Spectroscopy of Glass Beads in Ammonium Nitrate Solution and Compensation of Signal Losses.: This paper explores the use of glass beads to refine Raman spectroscopy techniques, specifically in identifying and compensating for signal losses in complex solutions, which is vital for accurate analytical measurements (Spoor et al., 2024).
- Force on a sphere suspended in flowing granulate.: This research utilizes glass beads to study the dynamics of granular flows around suspended objects, providing insights into the physical interactions and forces in granular materials, which can be applied to various industrial and research settings (Wang et al., 2023).
- Micro computed tomography images of capillary actions in rough and irregular granular materials.: This study uses glass beads to simulate and study capillary actions in granular materials through micro computed tomography, enhancing understanding of fluid dynamics in porous media, relevant in both environmental science and engineering (Nadimi et al., 2024).
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