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SYNTHESIS OF HYDROTALCITE-LIKE COMPOUNDS FROM ACID WASTE STREAMS FROM THE Al-ANODISING INDUSTRY

机译:从Al阳性阳性酸废物流合成水滑石状化合物

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The sulphuric acid process is the most common method for anodisation. Such treatment invariably produces a large volume of waste acid effluents containing mainly sulphuric acid and aluminium. Conventionally these effluents are neutralised with the basic streams from the etching step, producing a large amount of aluminium sludge that causes serious disposal problems. Furthermore, this process implies a continuous loss of resource materials. Alternative ways to deal with the environmental impact of the anodising industry are proposed. These He in the recovery of materials from the waste streams by means of geochemical engineering. Synthesis of hydrotalcite-like compounds from the acid waste streams can recover almost 100% of the Al lost during the anodising stage. Waste waters of any concentration are suitable for this synthesis, from concentrated ones (about 60 g/l (SO{sub}4){sup}(2-) and 6 g/l Al) to the more diluted rinsing effluents. Anionic clays such as hydrotalcite are suitable for catalysis and environmental applications.
机译:硫酸工艺是最常见的散发方法。这种治疗总是产生大量的含有主要硫酸和铝的废酸流出物。通常,这些污水与蚀刻步骤中和碱性流中和,产生大量的铝污泥,导致严重的处置问题。此外,该过程意味着持续损失资源材料。提出了处理阳极化行业环境影响的替代方式。这些他在通过地球化学工程中从废物流中恢复了材料。从酸废物流中合成水滑石状化合物可以在阳性阳性期间恢复几乎100%的Al损失。任何浓度的废水被适合于该合成,由浓缩的人(约60克/升(SO {子} 4){SUP}(2-)和6克/升的Al),以更稀释冲洗流出物。诸如水滑石的阴离子粘土适用于催化和环境应用。

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