Preparation and application method of fatty alcohol ethoxylation reaction catalyst

A fatty alcohol ethoxylation and catalyst technology is applied in the field of catalysts for preparing fatty alcohol polyoxyethylene ethers by ethoxylation of fatty alcohols, and can solve the problems of reduced by-products, shortened reaction induction period, poor catalyst stability and the like

Active Publication Date: 2015-12-02
TONGXIANG HENGLONG CHEM CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In 2005, Song Weiming and others studied the catalytic properties of mesoporous molecular sieve Al-MCM-41 in the ethoxylation reaction of iso-octanol and obtained good results. However, due to the poor hydrothermal stability of Al-MCM-41, The stability of the catalyst is not good
(2) In US4210764, it is reported that a kind of alkaline earth metal oxide and its composite are used as catalyst for ethoxylation reaction. High but its disadvantage is that there is a long induction period, which is not conducive to industrial production
However, some patents, such as US4453023 and US5220077, use polybasic acids such as phosphoric acid, citric acid and oxalic acid as cocatalysts, so that the reaction induction period is significantly shortened, and the reaction rate is greatly improved. But at the same time, the product distribution is greatly affected, and The catalyst is not easy to separate from the product, affecting product quality

Method used

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Examples

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Embodiment Construction

[0010] The technical solutions of the present invention will be further specifically described below through examples.

[0011] Example of preparation method

[0012] 1. Add 12700mmol of water, 67mmol of 20% TEAOH aqueous solution, and 10mmol of NaAlO in the crystallization kettle in sequence 2 and 333 mmol of gas-phase nano-silica, stirred evenly, and reacted at 100° C. for 18 hours. Then, 86.5 mmol of hexadecyltrimethylammonium bromide, a template agent, was added to the above-prepared seed crystals, reacted at 150°C for 48 hours, finally filtered, dried, and roasted at 580°C for 5 hours to remove the template agent to obtain a silicon-aluminum ratio A 33:1 MSU-S mesoporous molecular sieve was used as the catalyst.

[0013] 2. Add 12700mmol, 67mmol and 10mmol of 20% TEAOH aqueous solution to the crystallization kettle in sequence 2 and gas phase nano silicon dioxide 667mmol, stirred evenly, and reacted at 100°C for 18 hours. Then, 86.5 mmol of hexadecyltrimethylammonium ...

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Abstract

The invention aims to provide a preparation and usage method of a fatty alcohol ethoxylation reaction catalyst. The catalyst is a highly-acid mesoporous molecular sieve MSU-S, and the silica-alumina ratio of the catalyst is in a range of 22:1-66:1; the dosage of the catalyst is 1%-20% of the mass of fatty alcohol, the operating temperature is in a range of 120-220 DEG C, and the operating pressure is in a range of 0.05-10MPa. The catalyst is high in activity, recyclable, environment-friendly, high in fatty alcohol conversion ratio and narrower in product molecular weight distribution, and a reaction process can be finished in any one of existing ethoxylation devices.

Description

Technical field: [0001] The invention belongs to the technical field of chemical industry, and relates to a catalyst for preparing fatty alcohol polyoxyethylene ether by ethoxylation of fatty alcohol and its application. Background technique: [0002] Fatty alcohol polyoxyethylene ether is a kind of important nonionic surfactant, and its preparation method is fatty alcohol ethoxylation reaction. Ethoxylation refers to the stepwise addition reaction between ethylene oxide and active hydrogen-containing compounds. The traditional ethoxylation catalyst is an acid or alkali dissolved in the liquid phase, and the product has a wide molecular weight distribution and many by-products. In recent years, solid catalysts such as various magnesium-aluminum composites and hydrotalcites have been used in ethoxylation reactions, and a good narrow distribution effect has been achieved, but the reaction temperature is too high and the catalyst activity is relatively poor. With the continuo...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C08G65/28
Inventor 沈亚芬朱建成张杰
Owner TONGXIANG HENGLONG CHEM CO LTD
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