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Quantification of Gypsum Crystal Nucleation, Growth, and Breakage Rates in a Wet Flue Gas Desulfurization Pilot Plant

机译:湿法烟气脱硫中试厂石膏晶体成核,生长和破损率的量化

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The aim of this work is to study the influence of nucleation, growth and breakage on the particle size distribution (PSD) of gypsum crystals produced by the wet flue gas desulfurization (FGD) process. The steady state PSD, obtained in a falling film wet FGD pilot plant during desulfurization of a 1000 ppm(v) SO2 gas stream, displayed a strong nonlinear behaviour (in a ln(n(1)) vs. 1 plot) at the lower end of the particle size range, compared to the well-known linear mixed suspension mixed product removal model. A transient population balance breakage model, fitted to experimental data, was able to model an increase in the fraction of small particles, but not to the extent observed experimentally. A three-parameter, size-dependent growth model, previously used for sodium sulphate decahydrate and potash alum, was able to describe the experimental data, indicating either size-dependent integration kinetics or growth rate dispersion.
机译:这项工作的目的是研究成核,生长和破裂对湿法烟气脱硫(FGD)工艺产生的石膏晶体粒度分布(PSD)的影响。在降膜湿法烟气脱硫中试装置在1000 ppm(v)SO2气流脱硫过程中获得的稳态PSD在较低温度下表现出很强的非线性行为(在ln(n(1))与1的关系图中)相对于著名的线性混合悬浮液混合产物去除模型,其粒径范围的上限。符合实验数据的瞬时种群平衡破坏模型能够模拟小颗粒比例的增加,但不能达到实验观察到的程度。以前用于硫酸钠十水合物和钾肥明矾的三参数,尺寸依赖性生长模型能够描述实验数据,表明尺寸依赖性集成动力学或生长速率分散。

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