首页> 外文学位 >Study on High-Purity Alumina Preparation and Its Applications =Étude sur la préparation de l'alumine de haute pureté et ses applications
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Study on High-Purity Alumina Preparation and Its Applications =Étude sur la préparation de l'alumine de haute pureté et ses applications

机译:高纯氧化铝的制备及其应用研究=高纯氧化铝的制备及其应用研究

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摘要

Wastewater from different aluminum processing plants contains different surface treatment liquids. These liquids are strictly prohibited from being discharged directly into the environment due to their high acidity. Different factories and enterprises add water to dilute them or neutralize them with alkali. These approaches not only cause a part of the aluminum ions being discharged, but also result in the release of a large number of harmful metal ions and heavy metal ions. In such cases, a large amount of water and alkali are consumed; at the same time, surface water, groundwater and soil become polluted by a large volume of wastewater and different metal ions.;The main objectives of the project are: 1) to extract ultra-pure aluminum ions from wastewater and to study the effect of different parameters on the efficiency of the process; 2) to produce ultra-pure nano-alumina from wastewater using an organic template and to study the effect of different parameters on the particle size distribution as well as on the morphology of the nanoparticles; 3) to explore the possibility of different applications for different types of alumina particles.;In this work, aluminum was extracted from the wastewater in the form of alum. This aluminum alum solution was later used to produce 99.999% pure (5N) nano-alumina particles. Two different methods, namely single and double template methods, were used to control the size and the nature of the alumina particles.;A single template method was used to produce 99.999% pure (5N) spherical alumina nanoparticles. The aluminum alum solution was hydrolyzed to produce boehmite which was used to produce the spherical alumina nanoparticles. Gum arabic and urea were used to produce the single template. These alumina nanoparticles were converted to alpha (alpha) form by heating. Then, the alpha-alumina particles were used to produce sapphire crystals.;An evaporation-induced synthesis approach with double template was used to produce spherical mesoporous nanoparticles of uniform size distribution. These particles were used for the photoacoustic tomography. The originality of the project lies in the utilization of new sources of raw materials (wastewater from industries) and using chelating polymers as well as additives to develop a novel and environment friendly high purity alumina (HPA) production method. In addition, the alumina particle size and its distribution are controlled precisely, which is difficult to achieve with other alumina production methods.
机译:来自不同铝加工厂的废水包含不同的表面处理液。这些液体由于其高酸性而被严格禁止直接排放到环境中。不同的工厂和企业加水稀释或用碱中和。这些方法不仅导致一部分铝离子被排出,而且导致大量有害金属离子和重金属离子的释放。在这种情况下,会消耗大量的水和碱。同时,地表水,地下水和土壤被大量废水和不同的金属离子污染。该项目的主要目标是:1)从废水中提取超纯铝离子并研究其效果。工艺效率的不同参数; 2)使用有机模板从废水中生产超纯纳米氧化铝,并研究不同参数对粒径分布以及纳米颗粒形态的影响; 3)探索不同类型的氧化铝颗粒在不同应用中的可能性。在这项工作中,铝以明矾的形式从废水中提取出来。此铝矾土溶液随后用于生产99.999%的纯(5N)纳米氧化铝颗粒。两种不同的方法,即单模板方法和双模板方法,用于控制氧化铝颗粒的大小和性质。单一模板方法用于生产99.999%纯(5N)球形氧化铝纳米颗粒。铝矾土溶液水解产生勃姆石,勃姆石用于生产球形氧化铝纳米颗粒。阿拉伯胶和尿素用于生产单个模板。通过加热将这些氧化铝纳米颗粒转变成α(α)形式。然后,将α-氧化铝颗粒用于制备蓝宝石晶体。;采用双模板的蒸发诱导合成方法制备了尺寸均一的球形介孔纳米颗粒。这些颗粒用于光声层析成像。该项目的独创性在于利用新的原材料来源(工业废水),并使用螯合聚合物以及添加剂来开发一种新颖且环保的高纯度氧化铝(HPA)生产方法。此外,氧化铝的粒度及其分布受到精确控制,这是其他氧化铝生产方法难以实现的。

著录项

  • 作者

    Xie, Yadian.;

  • 作者单位

    Universite du Quebec a Chicoutimi (Canada).;

  • 授予单位 Universite du Quebec a Chicoutimi (Canada).;
  • 学科 Civil engineering.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 153 p.
  • 总页数 153
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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