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Reduction of pollutants in painting operation and suggestion of an optimal technique for extracting titanium dioxide from paint sludge in car manufacturing industries-case study (SAIPA)

机译:减少喷漆操作中的污染物并提出一种在汽车制造行业中从油漆污泥中提取二氧化钛的最佳技术的建议-案例研究(SAIPA)

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摘要

Paint sludge of car manufacturing industries are not disposed in landfills, since they contain hazardous materials with a high concentration of chromium, aluminum, titanium, barium, copper, Iron, magnesium, strontium, and so on. Thus, it is essential to find solutions in order to neutralize them or suggest cost-effective techniques, which are also environmentally acceptable. Because, this sludge contains considerable amounts of Ti pigments and unbaked resins, recycling these pigments-which could be used in a variety of industries such as paint factories- is an appropriate subject for further research. In this article, with the aim of identification of main pollutants in order to eliminate them and suggest a cost-effective solution to recover the sludge, a large number of tests including X-ray fluorescence spectroscopy, X ray diffraction spectroscopy, and diffusion thermal analysis are conducted to determine types and concentration of elements, and combinations of paint sludge in car manufacturing industries. As titanium dioxide (TiO2) is widely used as the main pigment of automobile paints, an optimal technique is suggested for extracting TiO2 with high purity percentage through adopting scientific methods such as membrane and electrolysis.
机译:汽车制造行业的油漆污泥不包含在垃圾填埋场中,因为它们含有高浓度的铬,铝,钛,钡,铜,铁,镁,锶等有害物质。因此,必须找到解决方案以中和它们或提出具有成本效益的技术,这也是环境可接受的。因为该污泥中含有大量的Ti颜料和未烘烤的树脂,所以可以将这些颜料回收(可用于各种行业,如油漆厂)是进一步研究的合适对象。在本文中,为了鉴定主要污染物以消除它们并提出一种经济有效的解决方案,以回收污泥,大量测试包括X射线荧光光谱法,X射线衍射光谱法和扩散热分析用于确定汽车制造业中元素的类型和浓度以及油漆污泥的组合。由于二氧化钛(TiO2)广泛用作汽车涂料的主要颜料,因此建议采用膜和电解等科学方法提取高纯度百分比的TiO2的最佳工艺。

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