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Erucyl Alcohol

CAS No: 629-98-1

Synonyms:
cis-13-Docosenol; Erucyl alcohol; 629-98-1; Docosen-(13)-ol-(1); (Z)-Docos-13-enol; UNII-1OOE093KBY; (Z)-docos-13-en-1-ol; cis-13-docosen-1-ol; (13Z)-docosen-1-ol; 1OOE093KBY; 13-Docosen-1-ol, (Z)-; (13Z)-docos-13-en-1-ol; NSC 2311; (13Z)-docosenol; EINECS 211-122-0; AI3; 11006; SCHEMBL93479; CHEBI:77416; NSC2311; (13Z)-13-Docosen-1-ol #; NSC-2311; MFCD00055936; ZINC96095581; AKOS015839766; erucyl alcohol (cis-13-docosen-1-ol); AS-56766; D2174; Q27146946; UNII-CH428W5O62 component CFOQKXQWGLAKSK-KTKRTIGZSA-N; UNII-UDR641JW8W component CFOQKXQWGLAKSK-KTKRTIGZSA-N

Molecular Formula
C22H44O
n CH3(CH2)7CH=CH(CH2)11CH2OH. A monounsaturated, fatty alcohol used as a mold lubricant.
A chemical structure of a molecule includes the arrangement of atoms and the chemical bonds that hold the atoms together. The Erucyl alcohol molecule contains a total of 66 bond(s) There are 22 non-H bond(s), 1 multiple bond(s), 19 rotatable bond(s), 1 double bond(s), 1 hydroxyl group(s) and 1 primary alcohol(s).
The 2D chemical structure image of Erucyl alcohol is also called skeletal formula, which is the standard notation for organic molecules. The carbon atoms in the chemical structure of Erucyl alcohol are implied to be located at the corner(s) and hydrogen atoms attached to carbon atoms are not indicated – each carbon atom is considered to be associated with enough hydrogen atoms to provide the carbon atom with four bonds.
The 3D chemical structure image of Erucyl alcohol is based on the ball-and-stick model which displays both the three-dimensional position of the atoms and the bonds between them. The radius of the spheres is therefore smaller than the rod lengths in order to provide a clearer view of the atoms and bonds throughout the chemical structure model of Erucyl alcohol.
For a better understanding of the chemical structure, an interactive 3D visualization of Erucyl alcohol is provided here.
The Erucyl alcohol molecule shown in the visualization screen can be rotated interactively by keep clicking and moving the mouse button. Mouse wheel zoom is available as well – the size of the Erucyl alcohol molecule can be increased or decreased by scrolling the mouse wheel.
The information of the atoms, bonds, connectivity and coordinates included in the chemical structure of Erucyl alcohol can easily be identified by this visualization.
The invention concerns an aqueous viscoelastic fluid for use in the recovery of hydrocarbons. According to the invention this fluid comprises a first viscoelastic surfactant and a second surfactant able to decompose under downhole conditions to to reduce the viscosity of the aqueous viscoelastic fluid.
The present invention concerns an aqueous viscoelastic fluid for use in the recovery of hydrocarbons and, in particular, for use as a fracturing fluid.
Hydrocarbons such as oil or natural gas are obtained from hydrocarbon-bearing subterranean geologic formations via flow paths connecting a reservoir of said formations and the wellbore. Impeded flow paths may lead to an insufficient hydrocarbon production. In such case, various techniques are used to stimulate this production. Amongst these techniques, it is common to inject specialised fluids via the wellbore into the formation at sufficient pressures to create fractures in the formation rocks through which the hydrocarbons may more readily flow into the wellbore. The latter technique is referred to as fracturing or hydraulic fracturing and the specialised fluids used in said technique are referred to fracturing fluids.
Ideally, fracturing fluids should impart a minimal pressure drop in the pipe within the wellbore during placement and have an adequate viscosity to carry a propping agent that prevents the fracture from closing. Also, they should have a minimal leak-off rate and should degrade so as not to leave residual material that may prevent accurate hydrocarbons to flow back into the wellbore.
(13Z)-docosen-1-ol is a long-chain fatty alcohol that is (13Z)-docosene in which one of the terminal methyl hydrogens at position 1 is replaced by a hydroxy group It is a long-chain primary fatty alcohol and a fatty alcohol 22:1.

On basis of application: Chemical manufacturing
•    Erucyl alcohol

On basis of  end use industry
•    Plastic
•    Printing ink
•    Personal care
•    Rubber
•    Pharmaceutical
•    High temperature lubricants and metal working

On the basis of source;
•    Rapeseed oil
•    Canola
•    Tame mustard
•    Fish


Chemical Properties:

Density: 0.847
Melting Point: 33 °C
Boiling Point: 225 °C / 5mmHg
Refractive Index: 1.463
Flash Point: 123.4°C
Chemical Properties: White, soft solid; almost odorlessSoluble inalcohol and most organic solvents. Combustible.

Usage:

Lubricants, surfactants, petrochemicals, plastics, textiles, rubber.

IUPAC NAME:

(Z)-docos-13-enol
(Z)-docos-13-enol

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