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BioLoop Technology for Aqueous White Dispersions
Following a laboratory study by Lankem into the performance of bio-based dispersants in aqueous dispersions of titanium dioxide pigment, two products were shown to give excellent performance in comparison to a conventional sodium polyacrylate dispersant.
3 days ago3 min read


BioLoop SUN56-PG: The Future of Clean Beauty Emulsifiers
BioLoop SUN56-PG can single-handedly stabilize rich emulsions without the need for traditional waxes. It simplifies the ingredient list, reduces formulation complexity, and aligns with eco-conscious product development.
Whether you're a formulator seeking cleaner labels or a brand innovating in sustainable skincare, this approach offers a compelling path forward.
Nov 10, 20252 min read


BioLoop Micellar Water: Raising the Bar for Clean Beauty Performance
This study demonstrates that Bioloop 56L-PG is a standout surfactant for micellar water, offering:
- Superior cleansing with minimal residue
- Low-foaming for optimal leave-on application
- Stable and mild, suitable for sensitive skin
Nov 6, 20252 min read


New Bio-based Substrate Wetter for Aqueous Systems
When compared to the standard sulphosuccinate (Lanwet JH1), Lansperse SUN10 showed comparable wetting properties but with the added benefit of very low foam generation. Additionally, the favourable labelling of Lansperse SUN10 makes it a compelling choice for use as a substrate wetter in a wide range of coating applications.
Oct 8, 20253 min read


The Benefits of Lansperse BIO868 for Pigment Violet 23 in Water-Based Systems
Lansperse BIO868 performs very well as a bio-based dispersant for Pigment Violet 23 in water-based systems. It consistently produced low-viscosity millbases, remained stable during storage, and achieved strong colour development with fewer milling passes than the market standard.
Aug 27, 20255 min read


100% Bio-based Dispersants for Water-based Carbon Black Systems
Our BioLoop range of dispersants in an aqueous carbon black pigment concentrate.
Apr 25, 20242 min read
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