Alkyl group polyoxyethylene ether surface active agent with Guerbet structure and preparation method and application thereof

A technology of alkyl polyoxyethylene ether and alkyl polyoxyethylene ether hydroxypropyl, applied in the field of alkyl polyoxyethylene ether surfactant with Gubet structure and its preparation and application, can solve the problem of large adsorption capacity , poor wettability, high cost of use, etc.

Active Publication Date: 2010-06-23
TECHNICAL INST OF PHYSICS & CHEMISTRY - CHINESE ACAD OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Jin Zhiqiang etc. have invented a kind of surfactant of Jubet alcohol polyoxyethylene ether sulfate sodium salt in CN1470317, because its unique branched chain structure makes it have excellent interface / surface property; But, because Gubet Alcohol raw materials must be prepared by catalysis of short-chain alcohols, and the palladium / carbon catalyst used therein is expensive, which is not conducive to large-scale production. Far inferior to commonly used quaternary ammonium salt (CTAB) cationic surfactants
The disadvantage of cetyltrimethylammonium bromide (CTAB) wetting agent is its critical micelle concentration (CMC) (1x10 -3 mol / L) is relatively too high, and the adsorption amount on the reservoir rock is too large, resulting in high cost of use
In order to obtain a surfactant with more excellent surface properties and wetting properties, the present invention designs and prepares the surfactant by changing the structure of the hydrophilic group on the basis of the Gubet alcohol polyoxyethylene ether sulfate sodium salt surfactant Surfactants with quaternary ammonium salt cations, carboxybetaine zwitterions, and polyoxyethylene ether sulfate ester salts with polyoxyethylene ether hydroxypropyl groups have been discovered. So far, there have been no cationic and zwitterionic surfactants with this structure. See the report

Method used

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  • Alkyl group polyoxyethylene ether surface active agent with Guerbet structure and preparation method and application thereof
  • Alkyl group polyoxyethylene ether surface active agent with Guerbet structure and preparation method and application thereof
  • Alkyl group polyoxyethylene ether surface active agent with Guerbet structure and preparation method and application thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0060] Preparation of Cetyl Polyoxyethylene (3) Ether Hydroxypropyl Trimethyl Ammonium Chloride Cationic Surfactant with Gubet Structure

[0061] a) Preparation of hexadecyl polyoxyethylene (3) ether alcohol of Jubet structure

[0062] In the 1000mL round-bottomed three-neck flask equipped with electromagnetic stirrer, thermometer, reflux condenser and drying tube, add 2mol of triethylene glycol and 16g of mass fraction as 50% sodium hydroxide (or potassium hydroxide) aqueous solution, Raise the temperature to 100°C, react at a constant temperature for 2 hours, then slowly drop 0.2 mol of terminal hexadecane bromide with Gubet structure into the reaction flask with a constant pressure addition funnel under constant stirring, after the addition is completed, Continue to react for 10 hours, after cooling, add 500mL of water, pour the mixture into a 1000ml separating funnel, extract with 400mL of petroleum ether (60-90°C) several times, and wash the obtained petroleum ether extract...

Embodiment 2

[0070] Preparation of Zwitterionic Surfactant of Cetyl Polyoxyethylene (3) Ether Hydroxypropyl Carboxylate Betaine with Gubet Structure

[0071] Add 0.05mol (21.675g) of the alkylpolyoxyethylene glycidyl ether of the Gubet structure in Example 1 to a 250mL round-bottomed three-necked flask equipped with an electromagnetic stirrer, a thermometer, a reflux condenser and a drying tube, and the mass fraction is 33 0.05 mol (6.82 g) of dimethylamine aqueous solution was reacted for 1 hour at a temperature of 50° C. under constant stirring, and then directly used for the next reaction after removing water. Add 30ml of isopropanol to the reaction flask, dissolve 0.055mol (6.4g) of sodium chloroacetate in 15mL of distilled water, raise the temperature to 70°C, and use a constant pressure dropping funnel to gradually dissolve the prepared sodium chloroacetate aqueous solution under constant stirring. Add it dropwise into the reaction flask, and react at constant temperature for 2 hours...

Embodiment 3

[0074] The pure aqueous solution of the cationic surfactant of the hexadecyl polyoxyethylene (3) ether hydroxypropyl trimethyl ammonium chloride of the Jubet structure in embodiment 1 and the hexadecane of the Jubet structure of the embodiment 1 The surface tension curve of the 1wt% sodium chloride aqueous solution of the cationic surfactant of alkyl polyoxyethylene (3) ether hydroxypropyl trimethyl ammonium chloride is as Figure 5 shown.

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Abstract

The invention relates to an alkyl group polyoxyethylene ether surface active agent with a Guerbet structure and a preparation method and the application thereof, which is applied to the tertiary oil recovery technology; alpha-olefin with dialkyl, which is obtained by catalyzing dimerization by the alpha-olefin with short carbon chain, is used as starting material, and after a series of the chemical reaction, the corresponding alkyl group polyoxyethylene ether surface active agent with the Guerbet structure is prepared; the surface active agent comprises a quaternary ammonium cationic surfactant of alkyl polyoxyethylene ether hydroxypropyl and a carboxylic acid oxyneurines amphoteric surfactant of alkyl group polyoxyethylene ether hydroxypropyl, a special molecular structure determines the alkyl group polyoxyethylene ether surface active agent to have good water solubility, low critical micelle concentration, good surface or interface tensile force reduction capacity and high-efficiency foaming capacity, ultra-low oil-water interface tensile force (10-3mN / m) is formed between the brine solution energy and crude oil, therefore, the alkyl group polyoxyethylene ether surface active agent which is used as an effective oil displacement agent has application potential in the tertiary oil recovery; the surface active agent has the following chemical structure.

Description

technical field [0001] The invention belongs to the field of high-efficiency surfactants, in particular to an alkyl polyoxyethylene ether surfactant with a Gubet structure used in tertiary oil recovery technology and its preparation method and application. The alkyl polyoxyethylene ether surfactant with a Gubet structure Oxyethylene ether surfactants include alkyl polyoxyethylene ether hydroxypropyl quaternary ammonium salt cationic surfactants and alkyl polyoxyethylene ether hydroxypropyl carboxybetaine zwitterionic surfactants. Background technique [0002] In the tertiary oil recovery technology, whether it is using surfactant flooding (micelle, microemulsion or foam), or using ASP flooding (combination of alkali / surfactant / polymer), it is inseparable to choose a A suitable surfactant is used to reduce the interfacial tension of oil and water, so that the interfacial tension of oil and water can reach ultra-low (10 -3 -10 -4 mN / m), so as to greatly increase the recovery...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01F17/42C09K23/42
Inventor 赵濉徐志成周朝辉靳志强俞稼镛
Owner TECHNICAL INST OF PHYSICS & CHEMISTRY - CHINESE ACAD OF SCI
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