1 实验部分
1.1 实验原料和仪器
1.2 EA的合成
1.3 测试与表征
2 结果与讨论
2.1 实验条件优化
表1 催化剂的种类对EA酸值的影响Table 1 Effect of different kinds of catalyst on EA acid value |
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2.2 最终产物的酸值与环氧值
表2 EA的酸值与环氧值结果Table 2 The index test of EA |
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Preparation of Bisphenol A Epoxy Acrylic Resin in Microstructured Reactor
Received date: 2018-02-08
Online published: 2018-09-19
Copyright
In an attempt to solve the problems of difficult control of temperature, long reaction period, poor stability in preparation of bisphenol A epoxy acrylic resin(EA) in batch reactor, a kind of EA is synthesized via a high-efficiency heat transfer and mass transfer microstructured reactor. The optimization is obtained by systematically studying the influential factors including reaction temperature, flow rate, residence time, diameter of tube, category and amount of catalyst. The structures of bisphenol epoxy resin and synthesized EA are characterized by FT-IR. The results show that EA can be successfully prepared by microstructured reactor. The optimization is as follows: a reaction temperature of 140 ℃, a flow rate of 3.05 mL/min, a residence time of 4 min, a diameter of 1 mm, triphenylphosphine as catalyst with contents of bisphenol A epoxy resin 2%. Under the conditions as above, the conversion of acrylic acid and epoxy group could reach 99.1% and 96.3% respectively. Finally, the adhesion, pencil hardness and abrasion resistance are tested, indicating that these properties are qualified.
Key words: EA; microstructured reactor; reaction temperature preparation
Xiaofeng Han , Zhenye Ma , Lixiong Zhang . Preparation of Bisphenol A Epoxy Acrylic Resin in Microstructured Reactor[J]. Paint & Coatings Industry, 2018 , 48(4) : 9 -14 . DOI: 10.12020/j.issn.0253-4312.2018.4.9
表1 催化剂的种类对EA酸值的影响Table 1 Effect of different kinds of catalyst on EA acid value |
|
表2 EA的酸值与环氧值结果Table 2 The index test of EA |
|
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