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1)  polyamine flocculants
聚环氧氯丙烷胺
1.
Study of the decolorization property of polyamine flocculants;
有机絮凝剂聚环氧氯丙烷胺的脱色性能研究
2)  polyaminoamide-epichlorohydrin
聚酰胺聚胺环氧氯丙烷
1.
The repulping experiments of polyaminoamide-epichlorohydrin(PAE) and glyoxal-acrylamide copolymer (PAMG) wet strengthened brokes were carried out respectively.
对聚酰胺聚胺环氧氯丙烷树脂(PAE)、乙二醛聚酰胺树脂(PAMG)等2种湿强损纸进行了再制浆实验;实验表明:乙二醛聚酰胺湿强树脂再制浆工艺简单、且无毒,对湿强度要求不高、用后就丢弃的生活用纸,该湿强树脂为一良好的选择。
3)  PAE
聚酰胺多胺环氧氯丙烷
1.
As the practical application,it is necessary to add the PAE can be used as the special retention aid for the cationic rosin sizing.
叙述了阳离子分散松香胶的应用 ,在近中性施胶时加一种能使松香胶沉淀并固定于纤维上的留着剂 ,实验结果表明聚酰胺多胺环氧氯丙烷 (PAE)比阳离子淀粉有很好的施胶效
2.
This paper discussed the impact of factors such as the time of temperature rising, the amount of water added, on the synthesis of PAE intermediate, and found suitable synthesis conditions for the intermediate.
讨论了升温时间和加水量等主要因素对聚酰胺多胺环氧氯丙烷树脂(PAE)中间体合成的影响,并找到比较合适的条件。
3.
Cationic crosslinking blocked polyurethane(BPU)/ PAE sequential interpenetrating polymer networks (BPU/PAE IPNs) were prepared by the reaction of polyaminamide and epihalohydrin in the medium of cationic crosslinking blocked polyurethane.
以对羟基苯甲酸甲酯(MPHB)封闭的阳离子交联聚氨酯为反应介质,聚酰胺多胺和环氧氯丙烷进行反应制备出阳离子封闭聚氨酯(BPU)/聚酰胺多胺环氧氯丙烷(PAE)顺序互穿聚合物网络(BPU/PAE)。
4)  polyamide epichlorohydrin (PAE)
聚酰胺环氧氯丙烷(PAE)
5)  Flocculant polyamine
聚环氧氯丙烷-二甲胺
1.
IR and TEM were used to test the structure and figure of flocculant polyamine.
以环氧氯丙烷和二甲胺为原料,加入交联剂合成了有机絮凝剂聚环氧氯丙烷-二甲胺,利用红外光谱 IR 和电子透射电镜(TEM)对聚合物的结构形貌进行了表征分析,对模拟染料废水进行了脱色效果实验,并对炼油厂含油废水进行了除油效果实验。
6)  polyamide epichlorhydrin resin modified by rosin
聚酰胺环氧氯丙烷树脂
1.
The preparation of polyamide epichlorhydrin resin modified by rosin (PAE-R) and its application in paper surface sizing were studied.
探讨了松香改性聚酰胺环氧氯丙烷树脂的制备及其对纸张表面施胶性能的影响,并利用红外图谱和DSC对其结构进行了表征。
补充资料:二聚乙二胺与环氧氯丙烷的反应产物
CAS:72207-68-2
分子式:C4H13N3·C3H5ClO
中文名称:二聚乙二胺与环氧氯丙烷的反应产物
英文名称:1,2-Ethanediamine, N-(2-aminoethyl)-, reaction products with epichlorohydrin
Diethylenetriamine, epichlorohydrin reaction product
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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