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acrylic acid相关的网络例句

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LIN Hailin,CUI Yingde,DU Lin,CHEN JianpingInstitute of Applied Chemistry,Zhongkai University of Agriculture and TechnologySuper water absorbent resins P,SA/NaAA,SA/NaAA/PVA and SA/NaAA/AM were synthesized from sodium alginate,acrylic acid,polyvinyl alcoholand acrylamide,with N,N–methylenebisacrylamide as crosslinking agent,(NH4)2S2O8 - NaHSO3 as initiator,by means of aqueous solution polymerization.

以醚化海藻酸钠、聚乙烯醇、丙烯酰胺、丙烯酸为单体,N, N–亚甲基双丙烯酰胺为交联剂,过硫酸铵-亚硫酸氢钠为引发剂,采用水溶液法制备聚丙烯酸钠p吸水树脂和海藻酸钠/丙烯酸钠、海藻酸钠/丙烯酸钠/聚乙烯醇(SA/NaAA/PVA)及海藻酸钠/丙烯酸钠/丙烯酰胺吸水性复合树脂。

Ethylene 1 octene copolymer ; ethylene acrylic acid copolymer ; polyamide 6; alloy

乙烯1辛烯聚合物;乙烯丙烯酸共聚物;聚酰胺6;合金

The effects of compatibilizer ethylene acrylic acid copolymercontent on micro morphology, mechanical and rheological properties of polyamide 6(PA6)/ethylene 1 octene copolymer blends compatibilized by EAA were atudied.

采用乙烯丙烯酸共聚物作为尼龙 6/乙烯 1 辛烯共聚物弹性体共混体系的增容剂。详细研究了增容剂用量与共混体系的相态、力学性能和流变性能的关系。

Surface modification of up-conversion luminescence by overcoating with carboxyl groups and its characterization;2. The effects of concentration and adding methods of acrylic acid on the content of carboxyl groups on the magnetic microspheres surface were studied.

利用双层表面活性剂改性的Fe3O4磁流体为种子,通过乳液聚合法考察了苯乙烯或苯乙烯-丙烯酸对Fe3O4磁流体的包覆情况,并考察了丙烯酸浓度及加入时间对磁性微球表面羧基含量的影响。

The main contribution of this paper is summarized as follow:1 Copolymer acrylate resin including hydroxyl, carboxylic and amina(-NH_2) is a new type of antifogging system and ahydrophi- lic antifogging constituents which is not found before.2 Water-soluble acrylate resin hydrophilic antifogging coating material is a new-type environmental protection material which takes ethanol as solvent and whose pastiness is adjusted by deionized water.3 The quality rate of accessory soft monomer ethyl acrylate and accessory hard monomer butyl methacrylate is 6 to 4, the quality rate of functional monomers in all monomers is 20 percent, the quality rate of MAA in the functional monomers is 22 percent, the quality rate of β-hydroxyl ethyl acrylate in the functional monomers is 8 to 10 percent and the remainder of functional monomer is acrylic acid.4 Cross-linking agent methylol acrylamide belongs to self-cross-linking system.

本文的主要贡献概述如下: 1 含有亲水羧基、羟基和氨基(-NH_2)丙烯酸共聚树脂是一种新型高效的防雾体系,用的亲水防雾组分是前所未有的。 2 以乙醇为溶剂制得水溶性丙烯酸树脂具有很好的水溶性能和防雾性能,只需加入去离子水就可以调节它的粘度,是一种新型的环保型防雾材料。 3 辅助软单体丙烯酸乙酯和辅助硬单体甲基丙烯酸甲酯最佳配比为质量比6∶4;官能单体占单体总量的20%,甲基丙烯酸占官能单体总量10~15%,甲基丙烯酸β-羟乙酯占官能单体总量的8~10%,剩下的为丙烯酸。

In this study, Chitosan-Poly complex nanoparticles were prepared by template polymerization of acrylic acid in the chitosan solution. The preparation and characterization of CS-PAA nanoparticles including the yields of the nanoparticles, FT-IR spectrum analysis, dynamic light scattering, zeta potential, and morphology of nanoparticles were concentrated in this study. The effects of temperature, weight ratio of CS and PAA, and pH value on the physicochemical properties of nanoparticles were studied.

本研究中,我们以模板聚合法在几丁聚醣(Chitosan, CS)溶液中聚合丙烯酸(Acrylicacid, AA)以制备几丁聚醣-聚丙烯酸复合奈米颗粒并计算其产率,再以傅利叶红外线光谱仪、动态光散射粒径分析仪(Dynamic light scattering, DLS)、表面电位测定仪及穿透式电子显微镜等仪器分析CS-PAA 复合奈米颗粒之性质,以探讨聚合时温度、聚合反应时间、CS 与AA 之重量比,以及介质pH 值对CS-PAA 复合奈米颗粒结构的影响。

In this paper, the emulsion of polyacrylamide was synthesized in the polyglycol solutions, acryl amide and sodium acrylic acid was used as the monomers.

以丙烯酰胺与丙烯酸钠为原料,在聚乙二醇水溶液中合成了聚丙烯酰胺分散液。

A photosensitive prepolymer was prepared by the reaction of tetrahydrocannabinol phthalate glycidyl and acrylic acid, and optimized the reaction conditions. The structure of the resin was characterized by FT-IR.

以四氢邻苯二甲酸二缩水甘油酯与丙烯酸反应制备缩水甘油丙烯酸酯,优化了合成反应的条件,并用红外光谱对产物结构进行了表征。

Urushiol -based epoxy acrylate was prepared from urushiol, epichlorohydrin and acrylic acid.

以漆酚、环氧氯丙烷、丙烯酸为主要原料,通过两步反应合成了漆酚基环氧丙烯酸酯,其结构经IR表征。

We use Poly vinyl alcohol, acrylic acid and acrylonitrile as the materials, through the aldolisation of PVA and copolymerization of AA and AN, we prepared the composite membrane with balance theory of hydrophilic and hydrophobic water.

本文以聚乙烯醇和丙烯酸、丙烯腈为主要原料,通过PVA缩醛中醛的选择及膜制备方法的选择,根据亲憎水平衡理论设计出PVA缩甲醛膜上下两层包覆AA和AN共聚膜的复合膜,用此膜进行甲醇/水溶液的渗透汽化分离。

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