|本期目录/Table of Contents|

[1]张乐,李辉,朱廷春,等.丁基橡胶胶乳制备工艺的优化[J].合成橡胶工业,2023,2:105-108.
 ZHANG Le,LI Hui,ZHU Ting-chun,et al.Optimization of preparation process of butyl rubber latex[J].China synthetic rubber industy,2023,2:105-108.
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丁基橡胶胶乳制备工艺的优化

《合成橡胶工业》[ISSN:1000-1255/CN:62-1036/TQ]

期数:
2023年2期
页码:
105-108
栏目:
实验
出版日期:
2023-03-15

文章信息/Info

Title:
Optimization of preparation process of butyl rubber latex
文章编号:
1000-1255(2023)02-0105-04
作者:
张乐李辉朱廷春李建业李斌
邯郸学院 化学化工与材料学院/河北省杂环化合物重点实验室,河北 邯郸 056006
Author(s):
ZHANG LeLI HuiZHU Ting-chunLI Jian-yeLI Bin
College of chemical Engineering and Materials/Hebei Key Laboratory of Heterocyclic Compounds, Handan University, Handan 056006, China
关键词:
丁基橡胶胶乳乳化剂乳化工艺浓缩工艺稳定性胶乳产率
Keywords:
butyl rubber latex emulsifier emulsification process concentration process stability latex yield
分类号:
TQ 331.4
DOI:
DOI:10.19908/j.cnki.ISSN1000-1255.2023.02.0105
文献标识码:
A
摘要:
以丁基橡胶(IIR)为原料,采用“溶解-乳化”法制备了稳定性较好的IIR胶乳,考察了乳化剂种类、乳化剂组成、pH值、油水质量比、浓缩工艺等对乳化效果和IIR胶乳产率的影响。结果表明,优化的IIR胶乳制备的乳化剂配方及制备工艺如下:乳化剂为油酸钾和Triton X-100,二者质量比为4/1;当体系pH值为10,油水质量比为4/5时,得到的IIR乳液稳定性最佳,胶乳产率最高;采用膏化工艺进行胶乳浓缩,以藻酸钠为膏化剂,占胶乳中橡胶质量分数为0.6%时浓缩效果最好;并采用离心分离工艺缩短浓缩时间,当转速为1 500 r/min,离心时间为20 min时,可获得总固物质量分数约为55%的IIR胶乳,胶乳产率达90%以上。
Abstract:
The butyl rubber(IIR)latex with good stablility was preparated by solution-emulsion method using IIR as raw material. And the effects of emulsifier type, emulsifier composition, pH value, mass ratio of oil to water and concentration process on emulsifying effect and IIR latex yield were investigated. The results showed that the optimized emulsifier formulation and preparation technology of IIR latex were as follows: The emulsifiers were potassium oleate and Triton X-100, the mass ratio of which was 4/1. When the pH value of the system was 10 and the mass ratio of oil to water was 4/5, the stability of the IIR emulsion was the best and the yield of latex was the highest. The latex was concentrated by paste method, and sodium alginate was used as paste agent. The concentration effect was best when the mass fraction of paste agent was 0.6% of the rubber in the latex. The concentration time was further shorten by centrifugal method. When the rotating speed was 1 500 r/min and the centrifugation time was 20 min, the mass fraction of total solids was about 55%, and the latex yield was over 90%.

参考文献/References

[1] 赵燕,李楠,徐典宏,等. 国内丁基橡胶产业现状及发展建议[J]. 合成橡胶工业,2021,44(1):76-79. [2] Majumdar S. Properties and manufacturing technology of butyl rubber[J]. Rubber India:Official Organ of All India Rubber Industries Association,2019,71(10):58-81. [3] 马珍万,卢锡立,王占华,等. 丁基橡胶/还原氧化石墨烯复合材料的制备及性能[J]. 高分子材料科学与工程,2022,38(2):73-79. [4] 李志锋,陶金龙,孔娜,等. 乳胶手套的性能与乳胶手套穿戴的选择[J]. 材料导报,2021,35(Z 1):518-521. [5] 高世双,吴炼,张燕,等. 氧化钐/丁基乳胶防辐射复合材料的制备[J]. 大众科技,2018,20(1):22-24. [6] 巫惠琼,陈国梁,李小峰. 一种丁基胶乳及其制备方法和用其制备的手套的制备方法:中国,109503963[P]. 2019-03-22. [7] 林浩,周元林,付万发,等. 溴化丁基胶乳乳化工艺研究[J]. 橡胶工业,2011,58(1):43-46. [8] 陆军,李建军,张宏. 一种丁基胶乳及其制备方法:中国,106046576[P]. 2016-10-26. [9] 毛晨曦,程斌. 丁基胶乳乳化剂配方的优化[J]. 化工中间体,2006(1):18-20. [10] 王辉,程烨,吴明生. 一种丁基胶乳及其制备方法和应用:中国,111363259[P]. 2020-07-03. [11] 魏邦柱. 胶乳·乳液应用技术[M]. 北京:化学工业出版社,2003:168-183. [12] 周元林,李迎军,李银涛. 一种阳离子溴化丁基橡胶胶乳的制备方法:中国,108424531[P]. 2018-08-21. [13] 周元林,宋开平. 溴化丁基橡胶乳液的制备方法:中国,101935401[P]. 2011-01-05.

备注/Memo

备注/Memo:
更新日期/Last Update: 1900-01-01