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首页> 外文期刊>日本化学会誌. 化学と工业化学 >Effect of Alkyl Chain Length and Number of 2-Hydroxyethyl Groups on Drag Reduction Behaviors of Quaternary Ammonium Salt-type Cationic Surfactant Solutions
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Effect of Alkyl Chain Length and Number of 2-Hydroxyethyl Groups on Drag Reduction Behaviors of Quaternary Ammonium Salt-type Cationic Surfactant Solutions

机译:烷基链长和2-羟基乙基数目对季铵盐型阳离子表面活性剂溶液减阻行为的影响

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摘要

Effect of chemical structure on drag reduction behaviors of quaternary ammonium salt cationic surfactant solutions in the presence of sodium salicylate (NaSal) was investigated in terms of 1) alkyl chain length and 2) number of 2-hydroxyethyl groups. From the present investigation, we can draw the following conclusions; 1) Increasing in alkyl chain length in the quaternary ammonium salt in the presence of NaSal increased the maximum temperature at which drag reduction can be sustained. 2) The presence of the double bond in alkyl chain had a significant effect on lower temperature drag reduction limit. 3) The DR effect of HMODA complexed with NaSal, which was replaced the methyl groups in TMODA with two 2-hydroxyethyl groups, gave better drag reduction in the wide temperature range 6-60 deg C.
机译:从1)烷基链长和2)2-羟乙基数的角度研究了化学结构对水杨酸钠(NaSal)存在下季铵盐阳离子表面活性剂溶液减阻性能的影响。从目前的调查,我们可以得出以下结论: 1)在存在NaSal的情况下,增加季铵盐中烷基链的长度会增加可以持续减阻的最高温度。 2)烷基链中双键的存在对较低的温度减阻极限有显着影响。 3)HMODA与NaSal络合的DR效应被TMODA中的甲基替换为两个2-羟乙基,在6-60摄氏度的宽温度范围内,减阻效果更好。

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