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1.
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   

2.
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   

3.
 研究了笼形聚肟偕亚氨二乙酸钒(CPV)-硫脲(TU)体系在硝酸溶液中引发丙烯腈(AN)聚合反应.表观聚合速度(RP)是 RP=1.0×108e(-10.500/RT)[AN]1.0[CPV]1.0[TU]1.5[HNO3]3.0 聚合诱导期(τ)随反应温度和物料浓度发生变化,可表示为 1/τ=5.2×109e-12.800/RT[AN]1.0[CPV]1.0[TU]1.5[HNO3]3.0实验结果表明,聚合反应以单基终止为特征,可能是和高分子载体较大的空间位阻有关.  相似文献   

4.
研究了笼形聚肟偕亚氨二乙酸钒(CPV)-硫脲(TU)体系在硝酸溶液中引发丙烯腈(AN)聚合反应.表观聚合速度(R_P)是 R_P=1.0×10~8e~(-10.500/RT)[AN]~(1.0)[CPV]~(1.0)[TU]~(1.5)[HNO_3]~(3.0) 聚合诱导期(τ)随反应温度和物料浓度发生变化,可表示为 1/τ=5.2×10~9e~(-12.800/RT)[AN]~1.0[CPV]~1.0[TU]~1.5[HNO_3]~3.0实验结果表明,聚合反应以单基终止为特征,可能是和高分子载体较大的空间位阻有关.  相似文献   

5.
研究了聚丙烯基聚肟偕氮合铜(Ⅱ)(PPAO—Cu)—亚硫酸钠体系引发甲基丙烯酸甲酯(MMA)水溶液聚合。表观聚合速度(Rp)是 Rp=9.7×10~(12)e~(88.8kJ/RT) c(MMA)~(0.88) c(Na_2SO_3)~(0.50) 聚合诱导期(τ)与亚硫酸钠浓度成反比,与PPAO—Cu用量和单体浓度无关。可表示为 1/τ=1.2×10~(12)e~(-55.3KJ/R) c(Na_2SO_3)=K_τ·R_ 聚合是由PPAO—Cu/Na_2SO_3氧化还原反应产生的初级自由基所引发。  相似文献   

6.
本文叙述了笼形聚肟偕亚氨二乙酸钠与二价金属离子的交换反应。实验结果表明,树脂对重金属离子有良好的选择性。Hg~(2+)、Cu~(2+)、Pb~(2+)离子的交换效率分别是95、90、85%;但对碱土金属离子的交换能力较低。交换容量顺序和EDTA-Me(Ⅱ)络合物的稳定常数顺序基本相同。笼形聚肟偕亚氨二乙酸钠和Pb~(2+)离子的交换反应服从经验方程。交换速度的观测结果认为交换反应主要是在相邻的两个亚氨二乙酸基之间进行。  相似文献   

7.
笼形聚偕氨肟树脂吸附溴和碘   总被引:3,自引:0,他引:3  
用酸、碱处理的笼形聚偕氨肟树脂(ACAO、BCAO)吸附溴和碘,发现它们的吸附能力无显著差别。吸附客量与溴和碘浓度关系符合Freundlich方程.从扫描电子显微镜观察到碘在树脂表面形成微晶.联系到溴和碘的超当量吸附现象,初步认为,它们是通过物理吸附在树脂表面富集。  相似文献   

8.
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   

9.
碱处理笼形聚偕氨肟树脂(BCAO)对羧酸表现出强的吸附能力。一元羧酸在BCAO树脂上以多层吸附为主要特征。二元和三元羧酸则以单层吸附占优势。后者可能是以双阴离子的一个负极吸着在BCAO树脂表面,形成了对其他羧酸阴离子起排斥作用的负离子场。另外,双阴离子也有可能和两个氨基结合形成次级交联,妨碍着其他离子迁移和扩散。  相似文献   

10.
聚丙烯颗粒在水溶液中与丙烯腈和二乙烯基苯反应,得接枝交联产物(Ⅰ)。Ⅰ被氨肟化再经成笼反应.得笼形聚偕氨肟树脂(Ⅱ)。笼内仅吸留易于除去的溶剂丙酮。若Ⅰ成笼后再氨肟化,所得吸收剂(Ⅲ)将吸留大量的羟胺,它缓慢地释放出来,干扰吸收剂对酸、碱离子或分子吸附容量的测定。Ⅱ对一些离子例如Hg2+和MnO4-的吸附能力与Ⅲ不同,被认为是两者的网络结构不同所致。  相似文献   

11.
The polymerization of acrylonitrile (AN) initiated by polypropylene based-polyamidoxime (PPAO)-thiourea (TU) system was investigated at [TU]/[PPAO]>0.5 molar ratio. It shows that the variation of the concentrations of PPAO, thiourea and nitric acid does not exert an observable influence on the reaction rate. The overall rate of polymerization (R_p) isR_p = 2.07e~(-7,800/RT)[ AN]~(2.0)The zero order dependence on PPAO and thiourea concentrations and the lowest value of the collision frequence factor were considered to be a feature of the primary radical termination.  相似文献   

12.
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   

13.
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   

14.
<正> 关于硫氰化物对丙烯腈聚合的影响,早期的报道认为对过硫酸盐引发丙烯腈水溶液聚合时,硫氰化钾起阻聚作用.但丙烯腈在浓硫氰化钠水溶液中,可顺利地用偶氮双异丁腈(AIBN)、光、叔丁基过氧化氢(TBH)或TBH-醇胺引发聚合,在这些聚合反应中硫氰化钠无阻聚或缓聚作用.为了弄清硫氰化钠的影响,我们比较系统地研究硫氰化钠对丙烯腈水溶液聚合的影响.实验结果表明,其影响与所用的引发剂有关.如用TBH时,硫氰化钠起活化作用,缩短反应的诱导期,提高聚合速度与转化率,30—50℃  相似文献   

15.
Nano-sized polyacrylonitrile (PAN) particles were prepared under the catalytic effect of in situ developed CoCl2/EDTA complex with ammonium persulfate as the initiator in the absence of any added emulsifier. The emulsion polymerization was studied at varying concentrations of the initiator, monomer, complex and solvent over a temperature range of 30-70℃. The overall activation energy (Ea, 49.79 kJ/mol), energy of dissociation of initiator (Ed,82.68 kJ/mol), number of micelles (0.163×1018) and the viscosity average molecular weight of the polymer were computed. The distribution of particle sizes was determined by transmission electron microscopy (TEM). It was found that the oil-in-water polymerization was stabilized by the presence of the CoCl2/EDTA in situ complex reducing the particle size into the nano order. The average diameters of PAN nano particles, obtained by TEM, were in the range of 50-150 nm at the maximum conversion. The experimental particle size was mainly dependent on the concentration of the complex and temperature.  相似文献   

16.
 Nano-sized polyacrylonitrile (PAN) particles were prepared under the catalytic effect of in situ developed CoCl2/EDTA complex with ammonium persulfate as the initiator in the absence of any added emulsifier. The emulsion polymerization was studied at varying concentrations of the initiator, monomer, complex and solvent over a temperature range of 30-70oC. The overall activation energy (Ea, 49.79 kJ/mol), energy of dissociation of initiator (Ed, 82.68 kJ/mol), number of micelles (0.163 x 1018) and the viscosity average molecular weight of the polymer were computed. The distribution of particle sizes was determined by transmission electron microscopy (TEM). It was found that the oil-in-water polymerization was stabilized by the presence of the CoCl2/EDTA in situ complex reducing the particle size into the nano order. The average diameters of PAN nano particles, obtained by TEM, were in the range of 50–150 nm at the maximum conversion. The experimental particle size was mainly dependent on the concentration of the complex and temperature.  相似文献   

17.
丙烯腈的悬浮聚合   总被引:7,自引:0,他引:7  
<正> 适用于普通溶液纺丝加工成形的聚丙烯腈(PAN)的分子量一般在5—8万范围内,近年来发展起来的冻胶纺丝方法使得(?)>4.0×10~5的超高分子量PAN也可以纺丝成形,成为制备高强高模PAN纤缎的有效方法之一。随着PAN材料应用领域的开拓,合成超高分子量的PAN是一个首要解决的问题。  相似文献   

18.
研究了羧化聚丙烯载体(不饱和羧酸接枝聚丙烯)接枝链的结构对丙烯腈聚合速度的影响。在引发活性方面对聚羧酸氧钒(聚合物负载催化剂)、异丁酸氧钒(小分子同系物)和硫酸氧钒(小分子非同系物)作了对比。实验结果表明:(1)(P-COO)_2VO两羧基之间存在着协同作用;(2)大分子链效应加强了羧基的协同作用;(3)聚羧酸链的d-、1-构型、羧基间距和载体的传质效应对聚合速度均有影响;(4)在本实验条件下,引发机理与高分子载体的链结构无关。  相似文献   

19.
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   

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