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1.
钛硅沸石的结晶动力学研究   总被引:7,自引:1,他引:7  
 在TPABr-正丁胺体系中合成了钛硅沸石TS-1, 研究了此体系中的结晶动力学,求出了不同温度下的成核速率、晶体生长速率及表观活化能. 还研究了晶种类型和用量对钛硅沸石晶化的影响. 结果表明,随着晶化温度的升高, TS-1成核诱导期缩短,成核速率及晶体生长速率加快; 加入晶种可明显缩短TS-1成核诱导期,并减小晶粒粒度; TS-1, M, ZSM-11和β沸石等均可作为晶种合成TS-1, 并存在一个最佳晶种用量; 不加晶种时TS-1成核活化能和晶体生长活化能分别为44.4和75.7 kJ/mol.  相似文献   

2.
高聚物非等温结晶动力学   总被引:2,自引:0,他引:2  
由于等温DSC法测定结晶动力学参数在实验上存在着一定的局限性,这些缺点可通过非等温DSC法来克服。本文基于上述观点介绍了高聚物非等温结晶动力学的理论和实验方法,并对影响动力学过程的一些因素进行了讨论,对非等温结晶动力学的最新情况及发展倾向,应用情况作了介绍。  相似文献   

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以四丙基溴化按作模板剂,以白炭黑(Ⅰ)、硅溶胶(Ⅱ)和水玻璃(Ⅲ)为不同硅源在140~180℃合成MFI型硅佛石(Silicalite-1).反应物配比相同,其结晶动力学曲线有明显差异.从它们的成核诱导期及生长速度计算出各体系硅佛石晶核形成活化能与生长活化能,在体系(Ⅰ)中为46/76kJ/mol,体系(Ⅱ)中为41/43kJ/mol,体系(Ⅲ)中为38/78kJ/mol.产物结晶粒径的大小由各体系成核活化能与生长活化能的差值决定.合成产物的结晶度以白炭黑为硅源时最高.提高温度有利于提高产物结晶度.  相似文献   

5.
高铝沸石的钙离子交换动力学研究   总被引:5,自引:0,他引:5  
由于含磷洗涤剂的使用所带来的环境危害日益严重,高铝沸石作为洗涤剂助剂三聚磷酸钠的替代品已获得广泛的应用。作为洗涤剂助剂,沸石的Ca2+、Mg2+离子交换性能是影响其助洗效果的主要因素之一犤1,2犦。但目前对沸石的离子交换性质的研究多集中在离子交换平衡等温线的研究犤3~6犦,涉及沸石离子交换动力学的研究却鲜有报道。作为硬水的软化剂,洗涤剂用沸石对Ca2+、Mg2+离子的交换速率大小对洗涤效果的意义更为重要犤1犦。沸石的离子交换过程包括离子由溶液中扩散到沸石表面,再由沸石表面扩散到沸石孔道中的离子位等步骤…  相似文献   

6.
尼龙1010非等温结晶动力学与机理研究   总被引:3,自引:0,他引:3  
尼龙1010非等温结晶动力学与机理研究朱诚身,王经武,李卓美(郑州大学材料工程系郑州450052)(中山大学高分子研究所广州510275)关键词尼龙1010,非等温结晶动力学,结晶机理,动力学结晶能力尼龙1010的结晶动力学,无论是等温还是非等温,研...  相似文献   

7.
聚合物结晶动力学   总被引:23,自引:0,他引:23  
本文介绍了聚合物等温及非等温结晶动力学过程的理论和实验方法,对影响动力学过程的一些因素进行了讨论。  相似文献   

8.
β沸石的铝化   总被引:1,自引:2,他引:1  
杨春  须沁华 《物理化学学报》1996,12(12):1057-1060
β沸石自1988年结构被确定以来受到普遍重视,由干结构上的特殊性,G沸石既具有较强酸性又具有明显的碱性[‘,‘].但q佛石的高硅铝比使其在化学组成上对碱性的贡献甚微,如果能降低其硅铝比,则有可能获得具有较强碱性的佛石分子筛.直接合成的o佛石,硅铝比一般在10以上.  相似文献   

9.
以四丙基溴化铵作模板剂,以白炭黑(I)、硅溶胶(Ⅱ)和水玻璃(Ⅲ)为不同硅源在140 ̄180℃合成MFI型硅沸石。反应物配比相同,其结晶动力学曲线有明显差异。从它们的成核诱导期及生长速度计算出各体系硅沸石晶核形成活化能与生长活化能,在体系(I)中为46/76kJ/mol,体系(Ⅱ)中为41/43kJ/mol,体系(Ⅲ)中为38/79kJ/mol。产物结晶粒径的大小由各体系成核活化能与生长活化能的差  相似文献   

10.
采用DSC方法研究了不同分子量聚乳酸在不同降温速率下的结晶过程,利用Ozawa方程和Kissinger方程研究了其非等温结晶动力学。结果表明,随着降温速率的增大和分子量增加,结晶峰向低温偏移,且峰形趋于平缓。求得分子量为2.6×104的聚乳酸的Ozawa指数m接近3,以异相成核的三维球晶生长为主,而分子量为14.3×104和19.2×104的聚乳酸的Ozawa指数m接近4,以均相成核的三维球晶生长为主,结晶活化能分别为-165.8kJ/mol、-82.1kJ/mol和-75.4kJ/mol。建立的"铰链"模型解释了不同分子量聚乳酸结晶活化能的显著差异,得到了聚乳酸分子量与结晶活化能的关系。  相似文献   

11.
Addition of an α‐nucleating agent is the simple and effective method to increase nucleation efficiency of isotactic polypropylene (iPP). However, severe agglomeration and poor dispersibility of sodium 2,2′‐methylene‐bis(4,6‐di‐tertbutylphenyl) phosphate (NA11) decrease the nucleation efficiency in the iPP, and much more nucleating agent is needed to maintain the nucleating property. As a result, it becomes the key how to decrease the size of NA11 and increase the nucleating property. In this paper, zeolite 4A (Z4A) was firstly supported by NA11 through solution impregnation, and NA11 was dispersed by Z4A depending on the dispersion of zeolite as carrier for the second component. Then, the dispersed NA11 system (NA11‐Z4A) exhibited a superior nucleation behavior during the crystallization of the iPP matrix when it was used with iPP together. The isothermal and nonisothermal crystallization kinetics indicated that the NA11‐Z4A/iPP system had the best crystallization effect. Polarized optical microscopy (POM) and scanning electron microscopy (SEM) analyses showed that the size of NA11 decreased obviously when it was adsorbed on the surface of Z4A, which leads a better dispersibility of the nucleating agent and thus an accelerated nucleation process in the iPP matrix. In the end, the mechanism for the excellent dispersibility of NA11‐Z4A, which was based on hydrogen bonding between NA11 and Z4A, was confirmed by Fourier‐transform infrared spectroscopy (FTIR). Based on the research work, the solution impregnation strategy can potentially be applied to other systems to inhibit the agglomeration and improve the dispersibility of additives in iPP.  相似文献   

12.
The thermal characterization of polypropylene (PP) composites containing untreated and treated zeolite with different silane coupling agents was carried out using thermogravimetric analysis (TG) and differential scanning calorimetry (DSC) to investigate the effects of natural zeolite and surface modifiers on melting, crystallization and degradation behaviour of PP. 3-aminopropyltriethoxysilane (AMPTES), methyltriethoxysilane (MTES) and 3-mercaptopropyltrimethoxysilane (MPTMS) were used as surface modifiers at four different concentrations (0.5–2.0 mass%). Thermal analyses indicated that silane treatment and 2–6 mass% zeolite addition have no significant effect on the melting and degradation temperatures of the composites. The crystallization temperatures of the composites were increased due to the nucleating effect of the zeolite. The influence of the modifiers on the interactions between PP and zeolite was determined by the activities of untreated and treated zeolite. The maximum interactions leading to good adhesion were observed in the AMPTES treated composites. Also, non-isothermal crystallization kinetics of the composites was analyzed using Avrami and Kissinger models.  相似文献   

13.
The formation of crystal nuclei occurs when alkaline aluminosilicate gels are treated at temperatures below the crystallization temperature or during crystallization of gels rather than during precipitation of the gels. The linear growth rate of the crystals of Na-A zeolites yielded by alkaline aluminosilicate gels in the presence of amorphous seeds is a function of the product of the concentrations of the silicate and aluminate ions in the intermicellar liquid.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 5, pp. 799–804, May, 1994.  相似文献   

14.
The injection moulding of semi-crystalline thermoplastic polymers requires an exact knowledge of the thermodynamic data and of the crystallization kinetics. The behaviour of the polymer melt during rapid cooling in the mould determines, to a great extent, the quality and usability of a final product. Technical raw materials are often equipped with nucleating agents in order to obtain crystallization within the desired temperature range and at the required rate. The use of recycled material (regranulate) shows an analogous effect such as the addition of nucleating agents, i.e. crystallization begins at a higher temperature and a higher crystallization rate is detected compared to materials without added regranulate. Heat flux DSC was used to study the crystallization of polyamides, polyolefins and polyoxymethylene during cooling at various cooling rates. Although the temperature gradients and pressures which occur in the proceesing machine cannot be realised in DSC tests, the DSC results reproduce the direction of influence of the regranulate additive very clearly.  相似文献   

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The temperature dependences of nucleation of zeolite ZSM-5 and silicalite-I pass through extrema in the range from 110 °C to 120 °C. Despite having the same crystalline structures, zeolite ZSM-5 has a maximum and silicalite-1 has a minimum of nucleation in the temperature range mentioned. A method for preparation of single crystals of silicalite-1 up to 150 m in size has been developed. The comparison of the curves of the temperature dependences of nucleation for zeolites Na-X, Na-A, and ZSM-5 shows that the positions of the maxima on these curves are determined by the type of the crystal structure of zeolite.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 5, pp. 1091–1095, May, 1996.  相似文献   

17.
Incomparisonwiththealuminumanalogues,boroncontainingMFItypezeolitehasbeenexpectedtohavemilderacidicpropertiesandspecificcatalyticperformance.Uptonow,muchworkhasbeendoneinthisaspect[1—5],includingsynthesis,structuralcharacterizationandcatalysis,etc.Therear…  相似文献   

18.
Polypropylene (PP)/octavinyl polyhedral oligomeric silsesquioxane (POSS) composites were prepared by two different processing methods: reactive blending and physical blending, and the crystallization behavior of PP and PP/POSS composites was studied by means of differential scanning calorimetry and polarized optical microscope. The results showed that the crystallization of PP in PP/POSS composites was strongly influenced by the different processing methods. POSS particles can act as effective nucleating agent, accelerating the crystallization of PP. The crystallization rate increased more dramatically for the reactive blending composite due to the stronger nucleating effect of PP grafted POSS. © 2008 Wiley Periodicals, Inc. J Polym Sci Part B: Polym Phys 46: 1762–1772, 2008  相似文献   

19.
采用新型薄片状MFI沸石晶体作为晶种,通过无凝胶蒸汽辅助晶化法(gel-less steam-assisted crystallization,GLSAC)在烧结氧化硅多孔载体上制备了致密平整、b轴取向的MFI沸石膜。考察了GLSAC中模板剂浓度、釜底水量、生长温度及时间对MFI沸石膜的影响。扫描电子显微镜和X射线衍射结果显示,适量的模板剂和釡底水量能抑制晶种的面外生长。成功制备了厚度750 nm、致密平整的MFI沸石膜。制备的对丁烷异构体气体分离测试表明,25℃时,等物质的量的丁烷异构体的分离因子(SFA/B)可达36,对正丁烷的渗透速率为1.5×10-7mol·m-2·s-1·Pa-1。  相似文献   

20.
The crystallization behavior of a commercial chain‐extended PET (foam grade) was evaluated and compared to that of bottle‐grade PET. Cold and melt isothermal crystallization were analyzed by using the Avrami' model. The foam grade PET showed a slower crystallization kinetic compared to the bottle‐grade PET. The Hoffman‐Lauritzen analysis showed that the energetic barriers to nucleation and molecular mobility were higher for the chain‐extended PET. This resulted in a lower nucleation rate in both cold and melt crystallization. © 2005 Wiley Periodicals, Inc. J Polym Sci Part B: Polym Phys 43: 1966–1972, 2005  相似文献   

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