Jul 24, 2024

Measuring nano particle size distribution during the grinding process

The inline probe designed by the Fraunhofer ILT team makes it possible to decouple the sample liquid using a rotating impeller as the probe head, allowing inline measurement to take place.
Source: Fraunhofer ILT, Aachen.
Jul 24, 2024

The effectiveness of pharmaceuticals, the efficiency of catalysts, and the performance of printing inks depend significantly on the size of the nanoparticles they contain. However, there has been a lack of methods to monitor particle size distribution during the milling process. In the EU-funded project PAT4Nano, a consortium of industry and research partners has explored practical approaches for inline measurements over the past four years. The Fraunhofer Institute for Laser Technology ILT in Aachen has developed a promising laser-based method that could soon fill this gap.

Inline Measurement of Particle Size Distribution

The ILT has developed a novel method for inline measurement of particle size distribution during the milling process. This method is crucial for industries such as pharmaceuticals, catalysts, and printing inks, where nanoparticle size is vital for product quality. For example, the dissolution rate and sustained effect of drug particles in the body depend on their size. A newly developed inline probe with a rotating paddle wheel allows precise sampling and measurement without interrupting the process. The required inline measurement technology combines a laser scattering method with real-time mathematical algorithms.

The Dynamic light scattering probe (DLS) uses lasers to measure the particle size distribution in grinding processes.

Challenges and Solutions

Measuring particles under 100 nanometers poses a significant challenge, as conventional microscopic imaging methods often reach their limits. The ILT team has addressed this challenge by combining laser scattering techniques with real-time mathematical algorithms, significantly improving measurement precision. Dynamic light scattering (DLS) and advanced optical systems are used to overcome issues such as multiple scattering and high particle concentrations.

Great Potential for Industrial Applications

The ILT's novel measurement technique shows great potential for industrial applications. The institute is currently working on further refining and commercializing the technology. Successful integration of this method could lead to significant improvements in process monitoring and product consistency across various sectors.

Member profile

Recommended articles

Feb 22, 2023

In the current energy crisis, alternative energy sources and energy-efficient systems are becoming more and more important. Companies such as …

Jul 25, 2024

RAITH, the global market and technology leader in maskless nanofabrication systems and characterization solutions, presents its new brand identity and …

Apr 11, 2024

The optical industry almost completely relies on mechanical processes in its process chains. This, however, could soon change. The Fraunhofer …

Recommended events

Sep 10 - 12, 2025
Special Exhibiting Area ‘’Manufacturing Processes and Components for Medical Technology’’
Feb 26 - 28, 2025
Discover the Future of Photonics with IVAM
Feb 20, 2025, 10:00 a.m. - 11:00 a.m.
Virtual technology talk between IVAM Members