INCI Name
CALCIUM POTASSIUM CA...
Functions
3 Roles
Sustainability
N/A
Category
emulsion stabilizer
What It Does
Calcium Potassium Carbomer is the calcium potassium salt of Carbomer
Ingredient Attributes
Ingredient Compatibility
Known Interactions
Sodium Chloride collapses Carbomer gel networks: the electrolyte screens the polymer's anionic charges, so viscosity drops sharply and the gel can break. If salt is needed (osmotic/sensorial), switch the thickener to a salt-tolerant rheology modifier (e.g. a Sclerotium/Xanthan gum or a salt-tolerant acrylates copolymer), or remove the sodium chloride.
Magnesium Chloride destabilizes Carbomer gels more aggressively than sodium: the divalent Mg2+ ion both screens and crosslinks the polymer's anionic groups, collapsing viscosity and often precipitating the carbomer. Thicken with a salt-tolerant rheology modifier (Sclerotium/Xanthan gum or a salt-tolerant acrylates copolymer) instead of carbomer, or remove the magnesium salt.
Calcium Chloride destabilizes Carbomer gels: the divalent Ca2+ ion screens and crosslinks the polymer's anionic charges, collapsing viscosity and risking precipitation. Switch to a salt-tolerant thickener (Sclerotium/Xanthan gum or a salt-tolerant acrylates copolymer), or remove the calcium salt.
Potassium Chloride collapses Carbomer gel networks the same way sodium chloride does: the electrolyte screens the polymer's anionic charges and viscosity drops sharply. Use a salt-tolerant rheology modifier (Sclerotium/Xanthan gum or a salt-tolerant acrylates copolymer), or remove the potassium chloride.
Aluminum Chlorohydrate is acidic and strongly polyvalent, so it collapses and precipitates Carbomer gels. Antiperspirant gels should be thickened with an aluminum-compatible rheology modifier (a suitable acrylates copolymer or a cellulose gum), not carbomer.
Calcium inhibits both heme and non-heme iron absorption by 50-60% when taken together. These minerals compete for the same absorption pathways. Separate by at least 2 hours or formulate for different serving times.
High-dose Calcium (>600mg) can reduce Zinc absorption by 30-50%. Consider separating doses or using chelated zinc (zinc bisglycinate) for better absorption.
Calcium and Magnesium compete for absorption at high doses. While they can be combined at moderate levels, high-dose formulations should separate them or use chelated forms.
High Calcium + Citric Acid can form calcium citrate precipitate in beverages, causing cloudiness or sedimentation. Manageable with proper formulation (sequestrants, pH control), but test stability.
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Quick Reference
- Full INCI Name
- CALCIUM POTASSIUM CARBOMER
- Category
- emulsion stabilizer