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CARMINE, also known as cochineal, is a natural red dye obtained from the dried bodies of female cochineal insects. It is primarily composed of carminic acid, which is extracted and processed into a pigment. Carmine serves as an alternative to synthetic red dyes and is recognized on product labels as "cochineal extract" or "carmine." Despite its widespread use in food and cosmetic products, carmine has faced ethical and sustainability concerns due to the harvesting of cochineal insects, and some individuals may experience allergic reactions to it.
[Data of usage]:
Used in Food Industry:
CARMINE is used as a natural colorant for adding a red or pink hue to various food products. It is favored for its vibrant color and is often chosen over synthetic dyes.
Used in Cosmetic Industry:
CARMINE is used as a pigment in cosmetic products to impart a red or pink shade. Its natural origin makes it an attractive option for consumers seeking eco-friendly and ethically sourced ingredients.
However, it is important to note that due to potential allergic reactions and ethical concerns, the use of carmine may be limited or require clear labeling for consumer awareness.

1328-60-5

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1328-60-5 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1328-60-5 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 1,3,2 and 8 respectively; the second part has 2 digits, 6 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 1328-60:
(6*1)+(5*3)+(4*2)+(3*8)+(2*6)+(1*0)=65
65 % 10 = 5
So 1328-60-5 is a valid CAS Registry Number.

1328-60-5Upstream product

1328-60-5Downstream Products

1328-60-5Related news

Batch and continuous column adsorption of indigo CARMINE (cas 1328-60-5) onto activated carbon derived from date palm petiole07/21/2019

In this work, the date palm petiole was transformed into activated carbon implying sodium hydroxide as the activating agent. The carbon obtained was exerted for the adsorption of indigo carmine in batch and continuous mode. The properties of activated carbon were established. The effects of pH, ...detailed

Thermodynamic and kinetics studies on adsorption of Indigo CARMINE (cas 1328-60-5) from aqueous solution by activated carbon07/18/2019

The kinetic and equilibrium parameters of the quantitative adsorption for Indigo Carmine (IC) removed by commercial activated carbon (AC) were studied by UV–visible absorption spectroscopy. AC with a high specific surface area (1250.320 m2/g) was characterized by the Brunauer–Emmett–Teller (B...detailed

Fast decolourization of Indigo CARMINE (cas 1328-60-5) and Crystal Violet in aqueous environments through micellar catalysis07/17/2019

Herein we report the modulating effect of sodium dodecyl sulphate (SDS), hexadecyl-pyridinium chloride (HDPC) and octylphenol ethoxylate (Triton X100) on the degradation of indigo carmine (IC) and crystal violet (CV) in bicarbonate-activated peroxide (BAP) system. Upon the addition of surfactant...detailed

ZnO-Bi2O3/graphitic carbon nitride photocatalytic system with H2O2-assisted enhanced degradation of Indigo CARMINE (cas 1328-60-5) under visible light07/16/2019

Indigo carmine in aqueous solution was effectively degraded using ZnO-Bi2O3/Graphitic Carbon Nitride heterojunction structure by visible light/H2O2 system. The mechanism of photocatalytic degradation of Indigo carmine shows the responsible species for the degradation of Indigo carmine in the ZnO...detailed

Preparation of novel magnetic grafted raft agent nanocomposite: Application in CARMINE (cas 1328-60-5) dye adsorptive removal from waste water07/12/2019

An efficient adsorptive removal of carmine dye onto the synthesized magnetic Octaminopropyl silsesquioxane (POSS)-grafteD-RAFT agent (MPGR) nanocomposite was investigated. The effect of the variables such as contact time, adsorbent mass loaded, pH, initial dye concentration and temperature was c...detailed

Catalytic effect of siderite on H2O2 oxidation of CARMINE (cas 1328-60-5) dye: Performance, mechanism and kinetics07/11/2019

The role of siderite in catalyzing the H2O2 degradation of carmine was studied by using batch experiments. The effects of the size of siderite particles, ratio of H2O2 to siderite, initial pH, reaction time, and reaction temperature were examined, and the degradation mechanism and kinetics were ...detailed

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