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Role of the mixing conditions and composition of galvanic sludges on the inertization process in clay-based ceramics

机译:污泥的混合条件和成分对粘土基陶瓷惰性化过程的影响

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摘要

Hydroxide-metal sludges from electroplating industry are a potential source of environmental contamination due to their high content of heavy metals. The incorporation of these residues in a ceramic matrix can be a promising way to suppress the harmful effect of metals normally present in those sludges. This work reports the role of the mixing time between the waste and ceramic materials and of the calcination step on the fixing level of several metal-containing species (Al, Zn, Ni, Fe, Ca, Cu, Cr) after sequential leaching in different media (aqueous, acetate and citrate). A strong and/or long mixing process will promote the deagglomeration of the coarser agglomerates and then will increase the reactivity of remaining grains towards the ceramic material during the calcination. As a consequence, inertization is improved for fired samples. With non-calcined samples leaching increases as a result of increasing dispersability/availability of species.
机译:电镀行业的金属氢氧化物污泥由于重金属含量高而成为潜在的环境污染源。将这些残留物掺入陶瓷基质中可能是抑制这些污泥中通常存在的金属的有害影响的有前途的方法。这项工作报告了废物和陶瓷材料之间的混合时间以及煅烧步骤对不同浸出顺序浸出后几种含金属的物种(Al,Zn,Ni,Fe,Ca,Cu,Cr)的固定水平的影响。介质(水性,醋酸盐和柠檬酸盐)。强烈和/或长时间的混合过程将促进较粗的附聚物的解聚,然后将增加煅烧过程中剩余颗粒对陶瓷材料的反应性。结果,焙烧样品的惰性化得到改善。对于非煅烧样品,由于物种的分散性/可用性增加,浸出增加。

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