Pigment Yellow 104
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Pigment Yellow 104
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CAS No:
15790-07-5
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Chemical Name:
Pigment Yellow 104
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Synonyms:
C.I. Pigment Yellow 104;2-Naphthalenesulfonic acid,6-hydroxy-5-[(4-sulfophenyl)azo]-,aluminum complex;Aluminum,6-hydroxy-5-[(4-sulfophenyl)azo]-2-naphthalenesulfonic acid complex;C.I. Food Yellow 3 Al salt;Certolake Sunset Yellow;C.I. 15985 Aluminum Lake;C.I. Food Yellow 3 Aluminium Lake;FD and C Yellow No. 6 Aluminium Lake;C.I. Food Yellow 3 Aluminum Lake;FD and C Yellow No. 6 Aluminum Lake;C.I. 15985:1;FD and C Aluminum lake yellow 6;C.I. Food Yellow 3:1;Pigment Yellow 104;Japan Yellow 5 aluminum lake;FD&C Yellow 6 aluminum lake;Lake sunset yellow;Sunset yellow lake;Yellow 6 lake;Sunset yellow aluminum lake;Aluminum lake sunset yellow;FD&C Yellow No. 6 Aluminum Lake;Sunset Yellow FCF Aluminum Lake;12227-60-0;39290-75-0;53026-64-5;68921-43-7;1342-60-5
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CAS No:
Pigment Yellow 104 Use and Manufacturing
It is obtained by reacting aluminum salts such as aluminum sulfate and aluminum chloride with alkalis such as sodium carbonate to prepare aluminum hydroxide, and then adding sunset yellow aqueous solution and precipitation.
Eat yellow pigment. It is used for the coating of fat food, powder food (cake powder, powder juice), sugar-coated cakes and lozenges, used alone or in combination with other food coloring aluminum lakes. It is also used in printing inks or colorants for paper and plastic food containers, cookware, etc.
Dyes
Synthetic dye and pigment manufacturing|C.I. Pigment Yellow 104: ACTIVE
EPA Safer Chemical Functional Use Classes -> Colorants|Safer Chemical Classes -> Yellow triangle - The chemical has met Safer Choice Criteria for its functional ingredient-class, but has some hazard profile issues
Computed Properties
Molecular Weight:432.4
Hydrogen Bond Acceptor Count:9
Rotatable Bond Count:2
Exact Mass:431.9666564
Monoisotopic Mass:431.9666564
Topological Polar Surface Area:179
Heavy Atom Count:28
Complexity:722
Covalently-Bonded Unit Count:2
Compound Is Canonicalized:Yes
Drug Function and Efficacy
Vitamin C participates in many reactions in the body, such as participating in the redox process, and plays an important role in biological oxidation and reduction and cellular respiration. From the tissue level, the main role of vitamin C is related to the synthesis of intercellular matrix. Including collagen, the matrix of teeth and bones, and the junction between capillary endothelial cells. Therefore, when scurvy caused by vitamin C deficiency is accompanied by collagen synthesis defects, it manifests as difficult wound healing, impaired tooth formation and capillary damage causing a large number of ecchymosis points, which merge to form ecchymosis.
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