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反应物粒度对多相化学反应影响的研究
Investigation of the Effect of the Size of Reactants on the Heterogeneous Reactions
【作者】 杜建平;
【导师】 薛永强;
【作者基本信息】 太原理工大学 , 物理化学, 2005, 硕士
【摘要】 本文综述了国内外关于多相反应体系中反应物的粒度对化学反应热力学和动力学影响方面的研究,提出了本课题的研究内容,阐述了该课题的理论意义,预测了纳米粒子作为反应物在化学领域中的应用前景和发展趋势。目前,在非催化的多相反应热力学研究中发现反应物粒度对标准平衡常数有明显影响,但关于反应物粒度对化学反应标准平衡常数和热力学性质的影响规律的实验研究还未见报道。在非催化的多相反应动力学研究中,关于反应物粒度对动力学参数的影响,前人已经进行了一些研究,提出了不同形式的收缩核模型,所报道的动力学方程主要局限于经验或半经验的动力学模型,而动力学参数与反应物粒度间的显函数关系式、反应物粒度对反应级数的影响规律还未见报道,关于减小反应物粒度导致活化能降低和指前因子减小的原因也未能给出合理的解释。因此,有必要对纳米级反应物参与的非催化多相反应的热力学和动力学进行深入研究。 本论文选择了适合于本课题研究的多相反应体系;采用液相法和固相法制备了不同粒度的纳米颗粒,其平均粒度通过X射线衍射
【Abstract】 The effect of particle size of reactants in heterogeneous systems on chemical thermodynamics and kinetics were reviewed in this paper, the research contents were put forward, the academic significance involving this work was elaborated and the prospects of application and the developing trends of nanoparticles as reactants in chemical fields were forecasted. At present, it is found that there are obvious effects of particle size of reactants in non-catalysis heterogeneous reactions studies on the standard equlibrium constants, but the reports on the regularity of effect of the reactant size on the standard equlibrium constants haven’t been discovered so far. Some scientists have in theory studied the effects of reactant sizes on kinetics of heterogeneous reactions and have brought forward many shrinking-core models with different forms in non-catalysis heterogeneous reactions studies. But the kinetic equations reported are mainly limited to some experiential or semiexperientialkinetic models, it isn’t reported that the relations of the kinetic parameters to reactant sizes and that the effect of reactant size on the reaction order, and it isn’t reasonably explained that the reactant size may result in the apparent activation energy and the pre-exponential factor decreasing. Therefore, it is necessary to investigate deeply thermodynamics and kinetics of the non-catalysis heterogeneous reactions involving nano-reactants.Firstly, the heterogeneous reaction systems used for the studies, reactions of nano-CuO and nano-ZnO with sodium bisulfate respectively, were selected in this work. Secondly, the nanoparticles with different sizes were preparated by using the liquid phase reaction and the solid phase reaction. Finally, the regularities of effects of the reactant size on the standard equilibrium constants and thermodynemic properties in heterogeneous reactions were firstly investigated, at the same time the theoretical models of the heterogeneous reaction was established and the regularities of effects of the reactant size on kinetic parameters were also investigated, and these regularities were discussed.The nano-CuO and nano-ZnO with different sizes were prepared in this work, and then the reactants were reacted with NaHSC>4 at differenttemperatures, so the standard equilibrium constant and the standard Gibbs free energy of the reactions with the different reactant sizes can be calculated by using the concentrations of H* and Cu2+or Zn + in the equilibrium solution, whereas the standard molar enthalpy and the standard molar entropy for reaction can also be calculated by use of the curve equations of ArG* -T, thus the regularities of the standard equilibrium constant, the standard molar Gibbs free energy, the standard molar enthalpy and the standard molar entropy for reaction varying with the sizes of reactants were obtained. The instantaneous concentrations of products were determined by a auto-recording ion meter or atomic absorption spectrometry at regular intervals, and then the regularities of the reaction rate constant, the apparent activation energy, the pre-exponential factor and the reaction order varying with the reactant sizes were acquired. Main conclusions are showed as follows:(1) The nanoparticles with different sizes can be prepared by the liquid reaction and the solid reaction, the average sizes of nano-CuO and nano-ZnO prepared are 10 to 24nm and 22 to 70nm respectively.(2) There are obvious effects of the reactant size on the standard equilibrium constant, the standard molar Gibbs free energys, thestandard molar enthalpy, the standard molar entropy, the reaction rate constant, the apparent activation energy, the pre-exponential factor and the reaction order.(3) The standard equilibrium constant is not only the function of the temperatures, but also is related to the sizes of the reactant. The standard equilibrium constant increase, whereas the standard Gibbs free energy, the standard molar enthalpy and the standard molar entropy decrease with the reactant size decreasing.(4) The apparent activation energy and the pre-exponential factor decrease, whereas the reaction rate constant and the reaction order increase with the reactant sizes decreasing, and there are better linear relations of the reaction rate constants at different temperatures and the apparent activation energy to the reciprocal of the reactant sizes, the explanation of the effects of reactant size on the apparent activation energy and the pre-exponential factor was given satisfactorily.
【Key words】 nanoparticles; reactant sizes; heterogeneous reactions; chemical thermodynamics; kinetics; effect regularities;
- 【网络出版投稿人】 太原理工大学 【网络出版年期】2006年 02期
- 【分类号】O643.1
- 【被引频次】4
- 【下载频次】341