[1]吕小军,赵卿波,赵洪福,等.用稀土聚异戊二烯橡胶制备人造异戊胶乳的乳化体系及制备工艺[J].合成橡胶工业,2025,02:92-96.
L? Xiao-jun,ZHAO Qing-bo,ZHAO Hong-fu,et al.Emulsification system and preparation process of artificial isoprene rubber latex using rare earth polyisoprene rubber[J].China synthetic rubber industy,2025,02:92-96.
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用稀土聚异戊二烯橡胶制备人造异戊胶乳的乳化体系及制备工艺(PDF)
《合成橡胶工业》[ISSN:1000-1255/CN:10-2023/TQ]
- 期数:
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2025年02
- 页码:
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92-96
- 栏目:
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- 出版日期:
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2025-03-15
文章信息/Info
- Title:
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Emulsification system and preparation process of artificial isoprene rubber latex using rare earth polyisoprene rubber
- 文章编号:
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1000-1255(2025)02-0092-05
- 作者:
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吕小军1; 赵卿波1; 赵洪福1; 王红红2; 李俊杰2; 申凯华2
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1. 新疆天利石化股份有限公司,新疆 克拉玛依 833699; 2. 大连理工大学 化工学院,辽宁 大连116024
- Author(s):
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L?譈 Xiao-jun1; ZHAO Qing-bo1; ZHAO Hong-fu1; WANG Hong-hong2; LI Jun-jie2; SHEN Kai-hua2
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1. Xinjiang Tianli Petrochemical Co Ltd, Karamay 833699, China; 2. School of Chemical Engineering, Dalian University of Technology, Dalian 116024, China
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- 关键词:
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人造异戊胶乳; 稀土聚异戊二烯橡胶; 乳化; 蒸馏; 离心浓缩
- Keywords:
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artificial isoprene rubber latex; rare earth polyisoprene rubber; emulsification; distillation; centrifugal concentration
- 分类号:
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TQ 331.4+4
- DOI:
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DOI:10.19908/j.cnki.ISSN1000-1255.2025.02.0092
- 文献标识码:
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B
- 摘要:
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以新疆天利石化稀土聚异戊二烯橡胶为原料,通过剪切乳化、蒸馏脱溶剂、离心浓缩和pH值调节等制备了人造异戊胶乳并研究其乳化体系和制备工艺。结果表明,制备人造异戊胶乳的乳化体系以歧化松香酸钾和硬脂酸钾为主乳化剂、Span 80为助乳化剂,pH值范围为9~10,油水质量比为5/5,乳化剂质量分数为2.2%;采用反相预乳化加剪切乳化两段法进行剪切乳化时,在转速3 500 r/min条件下剪切10 min得到的胶液最稳定;采用连续常压蒸馏釜和间歇减压蒸馏釜串联的方式可有效脱除溶剂。常温时在转速3 000 r/min的条件下离心15 min可得到固体物质量分数60%的人造异戊胶乳,其性能与美国科腾公司Kraton IRL产品相当。
- Abstract:
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Using rare earth polyisoprene rubber from Xinjiang Tianli Petrochemical as raw material, artificial isoprene rubber latex was prepared by shear emulsification, distillation desolventization, centri-fugal concentration, and pH value adjustment processes, and its emulsification system and preparation process were studied. The results showed that the emulsion system for preparing artificial isoprene rubber latex was mainly composed of potassium disproportionate rosin and potassium stearate as emulsifiers, Span 80 as a co-emulsifier, pH value range of 9-10, oil and water mass ratio of 5/5, and emulsifier mass fraction of 2.2% of the total material. When using the two-stage method of reverse phase pre-emulsification and shear emulsification for shear emulsification, the most stable gel was obtained by shearing for 10 min at a speed of 3 500 r/min. The series connection of continuous atmospheric distillation kettle and intermittent vacuum distillation kettle could effectively remove solvents. Under the condition of centrifugation at a speed of 3 000 r/min for 15 min at room temperature, an artificial latex with a solid mass fraction of 60% could be obtained, and its performance met the product specifications of Kraton IRL from the United States.
参考文献/References
[1] 裴素明, 陶俊, 池水媛, 等. 聚异戊二烯胶乳及其应用现状[J]. 合成橡胶工业, 2014, 37(2): 150-153.[2] 李志锋, 陶金龙, 孔娜, 等. 合成胶乳和人造胶乳外科手套发展概况[J]. 高分子通报, 2021(7): 27-32.[3] 李花婷, 曹振纲. 异戊橡胶应用技术及其发展前景分析[J]. 合成橡胶工业, 2007, 30(3): 165-168.[4] 张建, 邹华, 张继阳, 等. 天然胶乳发泡材料的制备及性能研究[J]. 橡胶工业, 2022, 69(1): 28-33.[5] KAITA S, DOI Y, KANEKO K. An efficient gadolinium metallocene-based catalyst for the synthesis of isoprene rubber with perfect 1,4-cis microstructure and marked reactivity difference between lanthanide metallocenes toward dienes as copolyme-rization catalysts[J]. Macromolecules, 2004,37(16): 5860-5862.[6] van der WAAL A W, SONDERMAN M S, BOURNE S W,et al . Process for the preparation of an artificial latex: WO 2008074513 A 1[P]. 2008-06-26.[7] THUONG T N, NGHIA T P, KAWAHARA S. Factors in-fluencing green strength of commercial natural rubber[J]. Green Processing and Synthesis, 2018, 7(5): 399-403.[8] SARA M, ZAHRA P, ALIREZA Z, et al. Prevalence of type I allergy to natural rubber latex and type IV allergy to latex and rubber additives in operating room staff with glove-related symptoms[J]. Allergy Asthma Proc, 2007, 28(5): 557-563. [9] WEI X N, PENG P, PENG F, et al. Natural polymer eucommia ulmoides rubber: A novel material[J]. Journal of Agricultural and Food Chemistry, 2021, 69(13): 3797-3821.
备注/Memo
- 备注/Memo:
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新疆维吾尔自治区重点研发计划项目(2022 B 01043)。
更新日期/Last Update:
1900-01-01