通过在分解过程中制备和引入活性种子,提高铝酸盐液的分解效率

K. D. Alekseev, I. V. Loginova, I. E. Chetyrkin, I. S. Gostinskaya
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引用次数: 0

摘要

目的是确定活性种子(细分散氢氧化铝)的制备和投加的最佳参数,以控制拜耳工艺中铝酸盐液的分解。在温度控制的旋转水浴上进行了实验室测试(Intronics,澳大利亚)。所得氢氧化铝的粒度分析使用VideoTest图像分析系统和德国卡尔蔡司Axioskop-40显微镜,并辅以图像分析软件。将碱性铝酸盐溶液与循环水按不同比例混合,得到分散良好的氢氧化铝(活性种子)。确定了溶液的填充顺序:首先是循环水,然后是冷却的碱性铝酸盐溶液。确定了活性种子的最佳制备条件:在50℃铝酸盐溶液中保温48 ~ 72小时,回水率分别为60%和40%。研究了在头部分解器中添加活性种子的剂量。结果表明,在连续分解模式下采用主动播种可以稳定生产级氢氧化铝的粒度分布。活性种子的存在使得初始分解温度从62℃降至58℃,而不改变氢氧化铝的粒度分布。此外,研究证实了主动播种对铝酸盐液的分解程度提高了1.5%的积极作用。因此,根据研究结果,可以确定使用新方法制备活性种子并在主要分解器中添加活性种子会导致氧化铝生产中的分解过程加剧。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving decomposition efficiency of aluminate liquor through preparation and introduction of active seed during the decomposition process
The aim is to determine the optimal parameters for the preparation and dosing of active seeding (finely dispersed aluminium hydroxide) to control the decomposition of aluminate liquor in the Bayer process. Laboratory tests were carried out on a temperature-controlled rotating water bath (Intronics, Australia). The granulometric analysis of the obtained aluminium hydroxide was carried out using the VideoTest image analysis system and a Carl Zeiss Axioskop-40 microscope (Germany) supplemented with Image Analysis software. Finely dispersed aluminium hydroxide (active seed) was obtained by mixing an alkaline aluminate solution and recycled water in various ratios. The filling order of solutions was determined – first, recycled water, followed by cooled alkaline aluminate solution. Optimal conditions for the preparation of active seeding were established: the solution was held for 48–72 hours at 50°C at an aluminate solution to recycle water ratio of 60% and 40%, respectively. The dosing of the obtained active seeding into the head decomposers was examined. It was demonstrated that using active seeding in continuous decomposition mode stabilises the particle-size distribution of the production-grade aluminium hydroxide. The presence of active seeding allowed the initial decomposition temperature to be reduced from 62°C to 58°C without altering the particle-size distribution of aluminium hydroxide. In addition, the study confirmed the positive effect of active seeding on increasing the degree of decomposition of the aluminate liquor up to 1.5%. Therefore, based on the research results, it was established that the use of the new method for preparing and dosing active seeding into the main decomposers leads to the intensification of the decomposition process in alumina production.
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