1、

Use: Polymerization initiator for vinyl compounds.

用途: 乙烯基化合物的聚合引发剂.

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2、

Purposes: Manufacturing hydrogen peroxide, dye intermediates, light-cured resin catalyst, photodegradation membrane, coatings and photosensitive polymerization initiator.

用途: 制造双氧水 、 染料中间体 、 光固化树脂催化剂 、 光降解膜, 涂料和光敏聚合引发剂.

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3、

The emulsion polymerization stability varied with the concentration of initiator and reaction temperature, the optimum value of which are 0.5% ( wt) initiator and 60 ℃.

当引发剂用量为0.5%、聚合温度为60℃时,聚合的稳定性和转化率达到最佳;

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4、

Photopolymerization of MMA was studied Kinetically using thioxanthone ( TX)/ triethylamine ( TEA)/ oxygen system as initiator. The various factors influencing the polymerization rate were studied.

本文研究了硫杂蒽酮(TX)/三乙胺(TEA)/氧体系引发甲基丙烯酸甲酯(MMA)光聚合的动力学及影响聚合速度的各种因素。

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5、

Research of Influence on Starch Graft Polymerization Reaction of New Type Initiator System

新型引发体系对淀粉接枝共聚反应的影响研究

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6、

The effects of reaction temperature, mass of surfactant, mass of initiator and mass of PSG on the polymerization conversion were investigated.

考察了聚合温度、乳化剂用量、引发剂用量和PSG用量对细乳液聚合转化率的影响。

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7、

Study on Graft Polymerization of Acrylamide onto Carbon Black with Manganic Pyrophosphate Complex as Initiator

焦磷酸络锰(Ⅲ)引发炭黑表面接枝聚合研究

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8、

Hexahydrobenzene is taken as the dispersion medium, the proportion of the oil/ water is 1.5, Span 80-Tween 80 is used as emulsifier and the potassium persulfate as the initiator, functional polymer MA-AM-AA-MMA was synthesized by reversion emulsion polymerization.

以环己烷为分散介质,油/水比例为1.5,Span80-Tween80为乳化剂,过硫酸钾为引发剂,用反相乳液合成了功能高分子马来酸酐-丙烯酰胺-丙烯酸-甲基丙烯酸甲酯。

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9、

The effects of the main factors such as polymerization temperature, the contents of initiator and emulgent on the performance of acrylic co-polymerization emulsion were investigated.

研究了引发剂用量、乳化剂用量以及聚合温度等因素对丙烯酸酯共聚乳液性能的影响。

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10、

With the increase of temperature and initiator concentration, the polymerization rate of VC-IBVE-HEMA increased.

KPS浓度和聚合温度增加使VC-IBVE-HEMA乳液共聚速率增加。

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11、

Sodium persulfate being initiator and sodium hydrosulfite being reducer, aqueous solution polymerization of maleic anhydride and acrylic acid was applied to synthesize the copolymer, which can be used as STPP substitute in laundry powder.

以马来酸酐和丙烯酸为单体,以过硫酸钠为引发剂,以亚硫酸氢钠为还原剂,采用水溶液聚合法,合成了用作洗衣粉代磷助剂的马来酸酐-丙烯酸共聚物。

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12、

Electrostatic absorption of azo initiator onto tio_2 particles and in situ anchoring polymerization of butyl acrylate from modified tio_2

纳米TiO2粒子静电吸附引发剂及其原位锚固丙烯酸丁酯聚合

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13、

The Relationship between Monomeric Solubility and Kinetics of Emulsion Polymerization Initiated by Redox Initiator System

氧化还原引发乳液聚合单体水溶性与动力学之间的关系

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14、

Polymerization kinetics of high molecular weight and water-soluble poly ( acrylate) sodium initiated by redox initiator of ammonium persulfate ( APS)/ aliphatic amine were studied.

选择过硫酸铵(APS)/脂肪胺类氧化还原型引发体系,研究合成高分子量的水溶性聚丙烯酸钠(PNaAA)的聚合动力学。

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15、

Preparation of high water absorbent poly ( sodium acrylate) was carried out by inverse suspension polymerization in cyclohexane with Span-60 as suspension stabilizer, potassium persulfate as initiator and N, N ′ methylene bisacrylamide as crosslinking agent.

以环己烷为连续相,Span-60为悬浮稳定剂,过硫酸钾为引发剂,N,N′亚甲基双丙烯酰胺为交联剂,对反相悬浮聚合制备聚丙烯酸钠高吸水性树脂进行了研究。

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16、

Grafting polymerization of acrylamide ( AAM) was performed onto the surface of a PET film under ultra violet light irradiation with benzophenone ( BP) as photo initiator after removing oxygen with nitrogen.

研究了在氮气保护下,紫外光照射,以二苯甲酮(BP)为光引发剂,丙烯酰胺(AAM)在聚酯(PET)薄膜表面的气相接枝聚合。

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17、

Study on the initiator used in the polymerization of vinyl chloride

氯乙烯聚合用引发剂的研究

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18、

Optimization of Initiator System for Suspension Polymerization of Vinyl Chloride

氯乙烯悬浮聚合过程引发体系优化

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19、

The optimum reaction conditions of synthesizing before-mentioned two materials have also been studied, such as the kinds and dosage of monomers, the dosage of initiator and emulsifier, the kinds of emulsifiers, reaction temperature, proceeding of polymerization, and so on.

研究了合成上述两种物质的最佳反应条件,如单体的种类及用量、引发剂用量、乳化剂种类及用量、反应温度和聚合工艺等;

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20、

Conversion of polymerization can be improved by using oxidation-reduction initiator system but it is difficult to extend the idle time.

采用氧化还原引发体系可以提高单体转化率并实现单体聚合,但无法延长单体聚合的诱导期。

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