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China Surfactant Detergent & Cosmetics ›› 2019, Vol. 49 ›› Issue (1): 19-23.doi: 10.3969/j.issn.1001-1803.2019.01.005

• Development and application • Previous Articles     Next Articles

Research of the performance of a series of narrow distribution fatty alcohol ether carboxylates prepared by oxidation

XU Fu-li,ZHANG Wei(),WANG Feng-shou   

  1. Shanghai Finechemical Co., Ltd., Shanghai 201505, China
  • Received:2018-05-28 Revised:2018-11-26 Online:2019-01-20 Published:2019-03-06
  • Contact: Wei ZHANG E-mail:chemzhangwei@163.com

Abstract:

A series of fatty alcohol ether carboxylates (AEC) with narrow distribution (AEC3/AEC5/AEC7/AEC9) were synthesized by oxidation and using narrow distribution AEO (AEO3/AEO5/AEO7/AEO9), oxygen and sodium hydroxide as raw materials. The process conditions of synthesis of narrow distribution AEC7 (7EO units) were optimized. The surface tension, foaming performance and wettability of a series of narrow distribution AEC at different pH values were also investigated. The results show that: Given that the palladium carbon supported catalyst is in an amount corresponding to 0.4% of the mass of alcohol ether (by palladium chloride), the optimized conditions to synthesize AEC7 are as follows: the reaction temperature is 75 ℃, the oxygen pressure is 0.03 MPa, the rotating speed is 700 r/min, the molar ratio of narrow distribution AEO7 to NaOH is 1∶1.02, and the yield thus obtained can reach 93.8%; The pH value has significant effects on the properties of AEC with narrow distribution. Among the AECs under investigation, the surface tension of AEC7 being 41.66 mN/m is the highest compared with AEC3/AEC5/AEC9 under neutral conditions; AEC3 (3EO units) has the weakest foaming performance under acidic conditions and the strongest foaming performance under alkaline conditions; Among the narrow distribution AECs, AEC3 has obvious advantages in wetting and surface tension compared with AEC5/AEC7/AEC9 under neutral and alkaline conditions.

Key words: narrow distribution fatty alcohol ether carboxylate, oxidation, synthesis, performance

CLC Number: 

  • TQ423