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Press release
23.10.2023  |  651x
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Meet us during SEPAWA Conngress

Much more than just soaps, perfumes and detergents...

LUM Talk and Exhibition on SEPAWA Congress 2023

...are characterized in industry and research with regard to dispersion and particle properties using the analytical measuring devices from Berlin-based LUM GmbH.
The annual SEPAWA® CONGRESS is the most significant meeting point of the detergents/cleansers, cosmetics and fragrance industry in Europe. The lecture programme will cover a number of different topics in the areas referred to above. In more than 150 interesting and diversified lectures and poster presentations, international experts share their latest research findings and innovative developments. In the exhibition area, over 300 companies present their latest products, trends and wide-ranging know-how. The ever-popular After Event and countless networking possibilities round off the framework of the congress and give you the opportunity to establish and expand business and personal contacts.

From 25th to 27th October 2023, LUM will present the latest developments, e.g. for direct and accelerated stability testing of liquid detergents, for the characterization of encapsulated active ingredients for the perfume industry, and for materials testing of packaging in the cosmetics industry. The LUM team welcomes you at stand D623.
On the topic of “From dispersibility via stability to the secrets of sediments,” Dr. Arnold Uhl introduces the ideal combination for analysis in product formulation and testing of cosmetics, household and personal care products based on emulsions and suspensions on October 25th at 4:45 p.m.. The focus of this presentation is on formulations containing titanium dioxide, iron oxides, zinc oxide or other inorganic ingredients. The formulation is filled into a sample cuvette in its original concentration and subjected to three independent follow-up measurements, after filling, during accelerated separation and after accelerated demixing. Supplemented by observation with the naked eye, a matrix of four different pieces of information is obtained, which enables the comprehensive understanding of the physical separation behavior of formulations.

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