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1.
在聚丙烯基聚偕氨肟(PPAO)—硫脲(TU)体系引发丙烯腈(AN)聚合过程中,将 c(TU)/c(PPAO)摩尔比调节在0.5以上,可以观察到 PPAO、硫脲和硝酸浓度的变化对聚合速度都不产生实质性的影响,但聚合诱导期则随 c(TU)/c(PPAO)摩尔比增大而延长。根据实验结果,得表观聚合速度R_p=2.07e~(-32.6KJ/RT)c~(2.0)(AN)碰撞频率因子极低和引发体系的零级反应是链自由基向初级自由基碰撞终止的特征。  相似文献   

2.
Polymerization of acrylonitrile (AN) in aqueous nitric acid initiated by polypropylene-based polyamidoxime (PPAO)-thiourea (TU) combination has been investigated. The overall rate of polymerization (R_p) under the conditions of [TU]/[PPAO]<0.5 molar ratio isThe molecular weights of the polymers were found to be inversely proportional to 3/2-power of nitric acid concentration and 1-power of thiourea concentration. In addition, it is independent with the concentrations of monomer and PPAO, and decreases with increasing temperature.On the basis of these experimental results, a coordination-proton transfer mechanism for the initiation was proposed and discussed.  相似文献   

3.
研究了硝酸溶液中聚丙烯基聚偕氨肟(PPAO)—硫脲(TU)络合物引发丙烯腈(AN)聚合动力学。在[TU]/[PPAO]<0.5摩尔比的条件下,表观聚合速度(R_p)是R_p=9.1×10~4e~(-45.2k J/RT)[AN]~(2.0)[HNO_3]~(1.5)[TU]~(1.0)聚合物分子量随聚合温度升高而下降,并与硝酸浓度的1.5次方和硫脲浓度的1.0次方成反比,与丙烯腈浓度和 PPAO 浓度无关。可表示为_m=K·1/T·(1/[HNO_3]~(1.5)[TU]~(1.0))=K_M·1/T·(R_p/R_t)根据实验结果,提出了“络合—质子转移”引发机理。  相似文献   

4.
用负载偏钒酸根的强碱性阴离子交换树脂(PV)与硫脲(TU)组成氧化还原体系在硝酸溶液中引发丙烯腈(AN)聚合,表观聚合速度是: R=1.92×10~4e~(-6860)/RT[AN]~(1.2)[RV]~(0.44)[TU]~(1.8)[HNO_ 3]~(1.0)聚合动力学参数与V~(6+)—TU体系所得者不同,表明初级自由基的产生受扩散控制因素的重要影响,并且载体树脂在聚合过程中存在着强烈的大分子场效应。聚合诱导期(ι)与引发速度成反比。聚合物分子量与聚合速度成正比,与终止速度和聚合温度成反比。加料方式实验再一次表明了引发种是由五价钒和硫脲络合和/或缔合所产生而不是和异硫脲结合的结果。本文讨论了引发聚合机理。  相似文献   

5.
The present paper deals with the kinetics of polymerization of acrylonitrile (AN) initialed by the redox system of polypropylene-based vanadyi polyimidodiacetate (PV)-thiourea (TU)in aqueous sulfuric acid in the temperature range from 25 to 40℃. The polymerization rate was measured by varying the concentrations of monomer, vanadyl polyimidodiacetate, thiourea and sulfuric acid. The overall rate of polymerization was summarized asRp=2.2×10~5e~(-6.560/RT) [AN]~(1.0)[PV]~(0.50)[TU]~(1.5)[H_2SO_4]~(2.0)The molecular weight of polyacrylonitrile based on the experimental data was:(?)=k 1/T [pv]~(0.50)[TU]~(1.5)[H_2SO_4]~(2.0)These results indicated that the chain radicals are terminated by combination and/or disproportionation rather than chain transfer. The cooperation effect of carboxylic groups and the macromolecular field effect of polymer supporter are the characters of vanadyl polyimidodiacetate such as the case reported in early paper.  相似文献   

6.
The kinetics of polymerization of acrylonitrile (AN) initiated by quinquevalent vanadium (V~(5+))-thiourea (TU) redox system has been investigated in aqueous nitric acid in the temperature range from 30 to 50℃. The polymerization rate (R_p) can be expressed as follows: In the copolymerization of acryionitrile with methyl acrylate (MA), the reactivity ratios were found to be 1.0 and 1.1, respectively. The experimental observations suggest that the initiating species is probably a complex consisting of a central ion of Lewis acid-VO_2~+ and the ligands of Lewis bases-acrylonitrile, thiourea, and nitrate anions, while the initiating system in lower concentration, the polymerization of acrylonitrile does not occur if the thiourea is acidified prior to its reaction with quinquevalent vanadium. This indicates that the primary radicals (or the monomeric radicals in the present article) are produced by associated thiourea rather than isothlourea.  相似文献   

7.
The polymerization of acrylonitrile (AN) in aqueous nitric acid initiated by " cage " vanadyl polycarboxylate (P=VO)-thiourea (TU) complex was investigated. The overall rate ofpolymerization isThe relationship between the induction period (τ) and the temperature of polymerization as well as the concentrations of reactants can be expressed as follows :The molecular weight of polyacrylonitrile increases with increasing monomer concentration and decreases with increasing temperature of polymerization and concentrations of vanadyl polycarboxylate and thioureaThe polymerization mechanism was proposed and discussed.  相似文献   

8.
研究了杨梅形聚肟偕亚氨二乙酸树脂负载VO~(2+)(PV)与疏脲(TU)组合在硝酸溶液中引发丙烯腈(AN)的聚合反应。在实验条件下,表观聚全速度可表示为 R_p=1.91×10~5e~(-45.0/RT)c~(1.9)(AN)c~(1.0)(HNO_3)c~(0.60)(PV)c~(1.50)(TU) 聚合诱导期(τ)与反应物浓度和聚合温度关系是 1/τ=8.27×10~7e~(-38.3/RT)c~(1.9)(HNO_3)c~(0.60)(PV)C~(1.50)(TU)=K_τ;·R_i/R_p 在酸性介质中,氨羧基的协同作用促使键合的VO~(2+)氧化为VO_2~+,随后硫脲配位并通过氢桥缔合,后者分解生成初级自由基,引发丙烯腈的聚合反应。  相似文献   

9.
The polymerization of acrylonitrile (AN) in aqueous nitric acid initiated by metavanadate-containing anion exchange resin (PV)-thiourea (TU) redox system at 20—40℃. has been investigated. The overall rate of polymerization (R_p) is given byR_p=1.92×10~4e~(-6.860/RT) [AN]~(1.2) [PV]~(0.44) [TU]~(1.0)[HNO_3]~(1.0)The kinetic parameters differed from those of V~(5+)-TU system indicated that the generation of the primary radicals is mainly a difffusion-controlled reaction. The effect of macromolecular field arisen from the polymer matrix exerts a great influence on the polymerization process.  相似文献   

10.
研究了笼形聚羧酸钒(PV)-硫脲(TU)体系在硝酸溶液中引发丙烯腈(AN)聚合动力学。表观聚合速度(R_p)是 R_p=9.7×10~5e~(-10500)/RT[AN]~1.0[PV]~0.50[TU]~0.76[HNO_3]~1.5聚合诱导期(τ)随反应条件而变化,聚合温度越高,引发种浓度越大,聚合诱导期越短,但与单体浓度的变化无关。 1/τ=4.6×10~(12)e~(-13500)/RT[AN]~0[PV][TU]~(-3/2)[HNO_3]~3=K_τ·R_i聚合物分子量随单体浓度增大而提高,但随聚合温度及引发种浓度增大而下降,即 笼形聚羧酸钒—硫脲体系引发丙烯腈聚合的动力学参数和引发机理与杨梅型聚羧酸钒—硫脲体系在相同的条件下引发聚合的行为有明显的区别,认为是和两种树脂大分子链的空间结构所引起的传质阻力有关。  相似文献   

11.
研究了酸性介质中五价钒氧离子(VO)、强碱性阴离子交换树脂负载钒(V)(BAEV)、硫酸氧钒(VOSO4)、杨梅形聚羧酸氧钒(IV)(APCV)、杨酸形聚亚氨二乙酸氧钒(IV)(APIV)、杨梅形聚得偕亚氨二乙酸氧钒(IV)(APOV)、笼形聚羧酸氧钒(IV)(CPCV)和笼形聚肟偕亚氨二乙酸氧钒(IV)(CPOV)等与硫脲(TU)配住生成活性种并引发丙烯腈(AN)聚合反应。表观聚合速度(Rp)分别是:VO-TU:Rp=2.8X105e-14200/RTC2.2'(AN)c.20(HNO3)c0(V5+)c1.3(TU)BAEV-TU:Rp=1.9X104e-6860/RTc1.2(AN)c1.0'(HNO3)c0.44(PV)c1.0(TU)VOSO4-TU:Rp=0APCV-TU:Rp=2.3X104e-4100/Rtc1.5(AN)c1.5(HNO3)c0.5(PV)c2.0(TU)APIV-TU:RP=2.2X105e-6860/RTc1.0(AN)c2.0(H2SO4)c0.5(PV)c1.5(TU)APOV-TU:RP=1.9X108e-10800/RTc.10(AN)c1.0(HNO3)c0.6(PV)c1.5(TU)CPCV-TU:Rp=9.7X105e-10500/RTc1.0(AN)c1.5(HNO3)c0.5(PV)c0.76(TU)CPOV-TU:Rp=1.0X108e-10500/RTc1.0(AN)c3.0(HNO3)c1.0(PV)c1.5(TU)根据实验结果,认为:(一)钒化合物与硫脲在酸性介质中通过“逐步配位—质子转移”机理产生引发种;(二)钒络合物及其活化后所产生的阳离子自由基(i=0,1,2,…,n)处于大分子引力场内进行链引发,在某些情况下,原地进行键增长反  相似文献   

12.
The rate of polymerization Rp of methyl methacrylate initiated by Fe(CIO4)3 and thiourea (TU) in tert-butyl alcohol is indepenent of [Fe(III)] and [TU] in the concentration range studied. In contrast to Rp, the degree of polymerization DP changes markedly with the change in the initiator concentration. DP is overwhelmingly lower than is expected in a standard radical polymerization at the same Rp. Further, Rp is proportional to the square of the monomer concentration. Initiation efficiency is less than one. Independent experiments proved that in the azobisisobutyronitrile-initiated polymerization the Rp and DP are negligibly affected by [Fe(CIO4)3] or [TU], though high [TU] brings about high induction periods. The results of Fe(III)-TU-initiated polymerization have been interpreted in terms of the predominant termination of polymer radicals by primary radicals.  相似文献   

13.
关于含有芳香叔胺基的烯类单体,我们曾报道过N,N-二甲氨基苯乙烯,N-(4—N′,N′-二甲氨基苯基代丙烯酰胺(DMAPAA),N-(4-N′,N′-二甲氨基苯基代甲基丙烯酰胺(DMAPMA),甲基丙烯酸-4-N,N-二甲氨基苄脂(DMABMA),8-丙烯  相似文献   

14.
芳香叔胺特别是N,N-二甲基对甲苯胺(DMT)是丙烯腈(AN)聚合有效的光引发剂。聚合速度与AN浓度的1.62次方、DMT浓度的0.62次方成正比。本体聚合与溶液聚合(DMF中)的活化能分别为7.8和4.2千卡/摩尔。研究了介质对聚合速度的影响,极性大,聚合速度快。氧对聚合有明显的影响,随氧含量增加聚合诱导期增加,速度下降。  相似文献   

15.
The photopolymerization of AN by using N-acryloyl-N'-phenylpiperazine (APP) and N-methacryloyl-N'-phenylpiperazine (MPP) as sensitizers under UV irradiation has been investigated. The corresponding polymerization kinetic equations are as follows:Rp [APP]0.81[AN]0.61 Rp [MPP]0.48[AN]0.77 Rp [P(APP)]0.53[AN]0.78 From the fluorescent analysis, it was confirmed that APP, MPP and P(APP) not only initiated the polymerization of AN but also entered into the chains of AN polymer. The photopolymerization mechanism for exciplex formation of AN with above sensitizers was proposed.  相似文献   

16.
In the presence of triphenyl phosphite (TPP), the radical polymerization of acrylonitrile (AN) with α,α′-azobisisobutyronitrile (AIBN) as the initiator was carried out at 50°C, and the effects of TPP on the polymerization were kinetically investigated. The rate of polymerization was found to be proportional to the first order of the AIBN concentration and the AN concentration, respectively, at all concentrations of TPP. However, the rate of polymerization was proportional to the reciprocal of the TPP concentration at low concentrations, but to the first order of the TPP concentration at high concentrations. On assuming two termination reactions, i.e., the usual unimolecular termination by occlusion of the polymer radical and a bimolecular termination between the propagating radical and TPP, and the formation of the weak n-π complex between AN and TPP which accelerates propagation step, the rate of polymerization and the degree of polymerization were kinetically discussed. The equations derived were in good agreement with the experimental results.  相似文献   

17.
The polymerization of acrylamide (M) initiated by the Ce4+/thiourea (TU) redox system has been studied in an aqueous sulfuric acid medium at 35 ± 0.2°C under nitrogen atmosphere. The rate of polymerization is governed by the expression The activation energy is 5.9 kcal deg?1 mol?1 in the investigated temperature range 30–50°C. The molecular weight is directly proportional to the concentration of monomer and inversely proportional to the catalyst concentration. With increasing concentration of DMF molecular weight decreases. The range of concentrations for which these observations hold at sulfuric acid concentration of 2.5 × 10?2 mol/L are [monomer] = 5.0 × 10?2–3.0 × 10?1, [catalyst] = (5.0–15.0) × 10?4, and [activator] = (1.0–6.0) × 10?3 mol/L.  相似文献   

18.
本文研究了过氧化氢在二甲基甲酰胺中的热分解反应,测定了不同温度下的分解速率常数和表现活化能。同时研究了过氧化氢引发丙烯腈的聚合反应,确定了聚合动力学方程。  相似文献   

19.
<正> 关于二苯甲酮-三级胺体系引发烯类单体光聚合的研究已有许多报道。其引发机理研究得也比较透彻。此类引发体系之所以引人注目,除其本身具有良好的引发效果外,还有重要的一点在于氧气对于此体系不但无阻聚作用,而且在一定条件下能够加速其聚合反应。甲基丙烯酸N,N-二甲氨基乙酯(DMAEMA)是可聚合的脂肪叔胺。有关芳香酮类如二苯甲酮。芴酮与DMAEMA构成的引发体系的研究已有城田等人和张举贤  相似文献   

20.
KIO3-I2氧化法同时测定TU,TD和TT   总被引:3,自引:0,他引:3  
以I2和KIO3为氧化剂,建立了同时测定硫脲(TU),二氧化硫脲(TD)和三氧化硫脲(TT)的方法.强酸性条件下,用I2氧化TU;适当酸度条件下,用KIO3氧化TU和TD;强碱性条件下用I2氧化TU,TD和TT.方法已用于合成样品和TD结晶母液的分析.  相似文献   

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