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REACTIONS OF CARBON DIOXIDE WITH TRI-CALCIUM ALUMINATE

机译:碳酸钙与铝酸三钙的反应

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摘要

Tri-caLcium aluminate (TCA) is a dominant alkaline component of the red mud residue from the Bayer process. A method being considered for industrial implementation partially neutralizes the residue by contacting it with gaseous CO_2. This paper outlines the chemistry of CO_2 neutralisation of TCA under conditions relevant to the treatment of Bayer residue. CO_2 neutralisation of the liquor is fast. It results in the formation of amorphous aluminium hydroxide and dawsonite that agglomerate together. Neutralisation of solid TCA is slower and leads to the formation of calcite, dawsonite and amorphous aluminium hydroxide. The dissolution of TCA in partially neutralised slurries causes pH reversion. However the carbonated solutions contain a store of bicarbonate that can supply aqueous carbon dioxide to complete the transformation. The pH at which the carbonation is carried out will affect the degree of TCA transformation during the carbonation process. In particular, if the pH of the carbonation is too low (near 7.0), calcite precipitation is inhibited and the degree of transformation is low. Controlling the carbonation pH helps to optimise the neutralisation process.
机译:铝酸三钙(TCA)是拜耳法生产的红泥残渣的主要碱性成分。考虑用于工业实施的一种方法是通过使残留物与气态CO_2接触来部分中和残留物。本文概述了在与拜耳残渣处理有关的条件下,TCA的CO_2中和反应的化学过程。液体的CO_​​2中和速度很快。结果形成无定形的氢氧化铝和片钠铝石,它们聚结在一起。固体三氯乙酸的中和速度较慢,导致形成方解石,片钠铝石和无定形氢氧化铝。 TCA在部分中和的浆料中的溶解导致pH值回复。但是,碳酸溶液含有碳酸氢盐存储,可以提供二氧化碳水溶液以完成转化。在碳酸化过程中进行碳酸化的pH值将影响TCA转化的程度。特别地,如果碳酸化的pH太低(接近7.0),则方解石沉淀被抑制并且相变程度低。控制碳酸化pH值有助于优化中和过程。

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