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从三级铝工业中回收危险废物制成增值材料。

Recycling of hazardous waste from tertiary aluminium industry in a value-added material.

机构信息

National Centre for Metallurgical Research, CSIC, Madrid, Spain.

出版信息

Waste Manag Res. 2011 Feb;29(2):127-34. doi: 10.1177/0734242X10378330. Epub 2010 Jul 28.

Abstract

The recent European Directive on waste, 2008/98/EC seeks to reduce the exploitation of natural resources through the use of secondary resource management. Thus the main objective of this study was to explore how a waste could cease to be considered as waste and could be utilized for a specific purpose. In this way, a hazardous waste from the tertiary aluminium industry was studied for its use as a raw material in the synthesis of an added-value product, boehmite. This waste is classified as a hazardous residue, principally because in the presence of water or humidity, it releases toxic gases such as hydrogen, ammonia, methane and hydrogen sulfide. The low temperature hydrothermal method developed permits the recovery of 90% of the aluminium content in the residue in the form of a high purity (96%) AlOOH (boehmite). The method of synthesis consists of an initial HCl digestion followed by a gel precipitation. In the first stage a 10% HCl solution is used to yield a 12.63 g L(-1) Al( 3+) solution. In the second stage boehmite is precipitated in the form of a gel by increasing the pH of the acid Al(3+) solution by adding 1 mol L(-1) NaOH solution. Several pH values were tested and boehmite was obtained as the only crystalline phase at pH 8. Boehmite was completely characterized by X-ray diffraction, Fourier transform infrared and scanning electron microscopy. A study of its thermal behaviour was also carried out by thermogravimetric/differential thermal analysis.

摘要

最近的欧洲废弃物指令 2008/98/EC 试图通过二次资源管理来减少对自然资源的开发利用。因此,本研究的主要目的是探索一种废物如何不再被视为废物,并可以用于特定目的。通过这种方式,研究了来自 tertiary aluminium 工业的一种危险废物,以将其用作合成增值产品 boehmite 的原材料。这种废物被归类为危险残留物,主要是因为在有水或湿度的情况下,它会释放出有毒气体,如氢气、氨、甲烷和硫化氢。开发的低温水热法允许以高纯度(96%)AlOOH(boehmite)的形式回收残留物中 90%的铝含量。合成方法包括初始 HCl 消化和凝胶沉淀。在第一阶段,使用 10%HCl 溶液生成 12.63 g L(-1)Al(3+)溶液。在第二阶段,通过向酸性 Al(3+)溶液中添加 1 mol L(-1)NaOH 溶液来增加 pH 值,以凝胶形式沉淀出 boehmite。测试了几个 pH 值,并且在 pH 8 时仅得到了 boehmite 作为唯一的结晶相。通过 X 射线衍射、傅里叶变换红外和扫描电子显微镜对 boehmite 进行了完全表征。还通过热重/差热分析研究了其热行为。

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