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Sodium lauroamphoacetate is produced in a 2 step process. Firstly lauric acid reacts with aminoethylethanolamine (AEEA); this initially produces the amide however heating causes this to cyclize to give the imidazoline group. This reacts with 1 equivalent of sodium chloroacetate to give the final product. A reaction with 2 equivalents gives the ...
Hazard statements. H315, H318, H319, H335: ... As the sodium salt of a fatty acid (lauric acid), it is classified as a soap. It is a white solid. Use.
A colorless solid, it is often sold as a water-damped solid. It is the symmetrical peroxide of lauric acid. It is produced by treating lauroyl chloride with hydrogen peroxide in the presence of base: [2] 2 C 11 H 23 COCl + H 2 O 2 + 2 NaOH → (C 11 H 23 CO 2) 2 + 2 HCl
Lauric acid, systematically dodecanoic acid, is a saturated fatty acid with a 12-carbon atom chain, thus having many properties of medium-chain fatty acids. [6] It is a bright white, powdery solid with a faint odor of bay oil or soap. The salts and esters of lauric acid are known as laurates.
The pictogram for harmful substances of the Globally Harmonized System of Classification and Labelling of Chemicals.. The Globally Harmonized System of Classification and Labelling of Chemicals (GHS) is an internationally agreed-upon standard managed by the United Nations that was set up to replace the assortment of hazardous material classification and labelling schemes previously used around ...
an identification of the product; one or more hazard pictograms (where necessary) a signal word – either Danger or Warning – where necessary; hazard statements, indicating the nature and degree of the risks posed by the product; the identity of the supplier (who might be a manufacturer or importer)
H-phrases Physical Hazards [5] Code Phrase H200: Unstable explosive H201: Explosive: mass explosion hazard H202: Explosive: severe projection hazard H203: Explosive: fire, blast or projection hazard H204: Fire or projection hazard H205: May mass explode in fire H206: Fire, blast or projection hazard: increased risk of explosion if desensitizing ...
Lauric acid can be ingested in coconut oil and the human body converts it into monolaurin. Furthermore, coconut oil, coconut cream, grated coconut and others products are sources of lauric acid and, consequently, monolaurin.