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Simulation and Experiment Study on Carbonization Process of Calcified Slag with Different Ventilation Modes

机译:不同通风模式钙化渣碳化过程的仿真与实验研究

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To solve the problem of high alkali red mud stockpiling, a new method of "calcification and carbonization" to treat Bayer red mud was proposed. The carbonization process of calcified slag in the process was mainly studied in this paper, that is, the hydrogarnet in the calcified slag was decomposed by CO_2 at high temperature and high pressure. Firstly, the water model experiments were conducted under different ventilation modes to investigate the influence of pressure on the bubble disintegration and dispersion in the 1 L high pressure transparent autoclave. The results showed that the number of bubbles was less, and the mean diameter was smaller under the airtight conditions whereas the number of bubbles was more, and the effects of gas bubble disintegration and gas liquid mixing were better under the circulated condition, which was beneficial to the mass transfer and the chemical reaction rate between gas and liquid. Secondly, the influence of these factors on the carbonization process of calcified slag was verified in the 2 L high temperature and pressure reactor. The optimum experimental conditions were obtained by measuring the carbon content of the slag in the reaction process. The results showed that the reaction time under the circulated condition was reduced by 23% compared with airtight conditions.
机译:为了解决高碱红色泥浆储存的问题,提出了一种对待拜耳红泥的“钙化和碳化”的新方法。本文主要研究了该方法中钙化渣的碳化过程,即钙化渣中的肝胆在高温和高压下分解。首先,在不同的通风模式下进行水模型实验,以研究1 L高压透明高压釜中的压力对气泡崩解和分散的影响。结果表明气泡的数量较小,并且在气密条件下平均直径较小,而气泡的数量越多,并且在循环条件下,气泡崩解和气体液体混合的效果更好,这是有益的在气体和液体之间的传质和化学反应速率。其次,在2L高温和压力反应器中验证了这些因素对钙化渣碳化过程的影响。通过测量反应过程中炉渣的碳含量获得最佳的实验条件。结果表明,与密闭条件相比,循环条件下的反应时间减少了23%。

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