应用化学 ›› 2015, Vol. 32 ›› Issue (6): 689-694.DOI: 10.11944/j.issn.1000-0518.2015.06.140305

• 研究论文 • 上一篇    下一篇

蓖麻油酸甲酯乙氧基化物水溶液的动态表面张力

张谦a,孙永强a*(),智丽飞a,张勇a,孙晋源a,武华萍a   

  1. a中国日用化学工业研究院 太原 030001
    b
    那不勒斯菲里德里克第二大学化学科学系 意大利 那不勒斯 80126
  • 收稿日期:2014-09-02 接受日期:2015-02-11 出版日期:2015-06-10 发布日期:2015-06-10
  • 通讯作者: 孙永强
  • 基金资助:
    国家国际科技合作专项项目(2013DFA42120);山西省国际科技合作项目(2013081019);国家科技支撑项目(2012BAD32B10)

Dynamic Surface Tensions of Castor Oil Acid Methyl Ester Ethoxylate Aqueous Solutions

ZHANG Qiana, SUN Yongqianga, *, ZHI Lifeia, ZHANG Yonga, SUN Jinyuana, WU Huapinga, DI SERIO Martinob   

  1. aChina Research Institute of Daily Chemical Industry,Taiyuan 030001,China
    bDepartment of Chemical Sciences,University of Naples Federico Ⅱ,M. Napoli 80126,Italy
  • Received:2014-09-02 Accepted:2015-02-11 Published:2015-06-10 Online:2015-06-10
  • Contact: Yongqiang SUN
  • Supported by:
    Supported by the National Science and Technology Support Project of International(No.2013DFA42120), International Science and Technology Cooperative Project of Shanxi Province(No.2013081019), Natural Science and Technology Support Project of China(No.2012BAD32B10)

摘要:

用最大气泡压力法分别测定了不同环氧乙烷(EO)加合数(10、12、14、16、20)的蓖麻油酸甲酯乙氧基化物(ECAME)水溶液的动态表面张力(DST)。考察了浓度、温度和无机电解质对DST的影响,探讨了不同浓度时DST参数(动态表面张力特性参数n,平衡时间t*,曲线最大斜率R1/2)的变化规律。结果表明,随着EO数由10增加到20,DST不断增大;随着浓度由0.5×10-5 mol/L增加到10×10-5 mol/L,n由3.02减小到1.05,t*值由14.45减小到2.29,R1/2由0.43增大到6.44,则动态表面活性增大,DST降低;随着温度由25 ℃升高至45 ℃,DST降低;吸附初期DST曲线随无机电解质浓度的增大而升高,吸附后期DST曲线随无机电解质浓度的增大而降低。和常规的脂肪酸甲酯乙氧基化物(FMEE)相比,ECAME的动态表面活性更加优异,这为开拓ECAME的应用指明了新的方向。

 

关键词: 蓖麻油酸甲酯乙氧基化物, 动态表面张力, 浓度, 温度, 无机电解质

Abstract:

The dynamic surface tensions of different average ethylene oxide(EO) adduct number(10, 12, 14, 16, and 20) of ethoxylated castor oil acid methyl esters(ECAME) were measured by maximum bubble pressure method(MBP). The effect of dynamic surface tension at different concentration, temperature and the presence of inorganic electrolyte were investigated. The dynamic surface tension parameters(EO adduct number n, equilibrium time t*, maximum slope of curve R1/2) of different concentration were discussed. The results show that dynamic surface tension increases with the average n increasing from 10 to 20, n decreases from 3.02 to 1.05, t* decreases from 14.45 to 2.29, and R1/2 increases from 0.43 to 6.44, while the concentration of ECAME ranges from 0.5×10-5 to 10×10-5 mol/L. Therefore, the dynamic surface activity increases and the dynamic surface tension decreases. The dynamic surface tension decreases with the temperature increasing from 25 ℃ to 45 ℃. The initial adsorption dynamic surface tension increases with the increasing of inorganic electrolyte concentration and the late adsorption dynamic surface tension decreases with the increasing of inorganic electrolyte concentration. Comparing with conventional fatty acid methyl ester ethoxylate(FMEE), ECAME has an excellent dynamic surface activity. This indicates a new direction for the application of ECAME.

Key words: ethoxylated castor oil acid methyl esters, dynamic surface tension, concentration, temperature, inorganic electrolyte

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