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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Simulation of Liesegang Patterns: Effect of Reversible Complex Formation of Precipitate
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Simulation of Liesegang Patterns: Effect of Reversible Complex Formation of Precipitate

机译:LiEsegang模式的仿真:可逆复合沉淀物形成的影响

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摘要

Formation of 1D Liesegang patterns was studied numerically by assuming precipitation and reversible complex formation. The Ostwald's supersaturation model reported by Buki, Karpati-Smidroczki, and Zrinyi (BKZ model) was developed and extended further. The position of the first and last bands measured from the junction point of the inner and outer electrolytes is linearly proportional to the square root of its formation time for the different initial concentrations of inner electrolyte (β_o). The propagation of patterns along the diffusion column is slower at higher β_o. The correlation between the distance of the first and last bands measured from the beginning of the diffusion column is strictly linear. The variation of the total number of bands with β_o has a maximum. The presented model reproduces the moving precipitate zones and nonlinear oscillation of the total number of bands in time due to the complex formation of the precipitate.
机译:通过假设沉淀和可逆的复杂形成,数值研究了1D LiESegang模式的形成。 Buki,Karpati-Smidroczki和Zrinyi(BKZ Model)报告的OSTWALD的超饱和模型进行了开发并进一步扩展。 从内电解质的结点测量的第一和最后一个带的位置与其形成时间的平方根线性成比例,用于内电解质(β_o)的不同初始浓度的形成时间。 沿着扩散塔的图案传播在较高β_O时较慢。 从扩散柱开始测量的第一和最后一个带的距离之间的相关性是严格的线性的。 具有β_o的频带总数的变化最大。 由于沉淀物的复杂形成,所呈现的模型再现移动沉淀区域和非线性带的总数的非线性振荡。

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