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2-in-1 Shampoo/Conditioner Locus Performance Ingredients Locus PI’s shampoo formulations utilize Ferma® S sophorolipid ingredients as non-toxic alternatives to legacy surfactants that do not require amphoteric co-surfactants such as betaines. These biosurfactants have a high degree of synergy with cellulosic ad...voir plus Locus PI’s shampoo formulations utilize Ferma® S sophorolipid ingredients as non-toxic alternatives to legacy surfactants that do not require amphoteric co-surfactants such as betaines. These biosurfactants have a high degree of synergy with cellulosic additives, like xanthan gum, to produce viscosity and rheologies similar to traditional salt-thickened formulations. voir moins
Clear Shampoo with Ferma® SH Locus Performance Ingredients Locus PI’s shampoo formulations utilize Ferma® S sophorolipid ingredients as non-toxic alternatives to legacy surfactants that do not require amphoteric co-surfactants such as betaines. These biosurfactants have a high degree of synergy with cellulosic ad...voir plus Locus PI’s shampoo formulations utilize Ferma® S sophorolipid ingredients as non-toxic alternatives to legacy surfactants that do not require amphoteric co-surfactants such as betaines. These biosurfactants have a high degree of synergy with cellulosic additives, like xanthan gum, to produce viscosity and rheologies similar to traditional salt-thickened formulations. voir moins
Clear Shampoo with Ferma® SL Locus Performance Ingredients Locus PI’s shampoo formulations utilize Ferma® S sophorolipid ingredients as non-toxic alternatives to legacy surfactants that do not require amphoteric co-surfactants such as betaines. These biosurfactants have a high degree of synergy with cellulosic ad...voir plus Locus PI’s shampoo formulations utilize Ferma® S sophorolipid ingredients as non-toxic alternatives to legacy surfactants that do not require amphoteric co-surfactants such as betaines. These biosurfactants have a high degree of synergy with cellulosic additives, like xanthan gum, to produce viscosity and rheologies similar to traditional salt-thickened formulations. voir moins