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Investigation of the hydrothermal treatment for maximizing the MSWI bottom ash content in fine lightweight aggregates

机译:最大化轻质骨料中MSWI底灰含量的水热处理研究

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The recycling of Municipal Solid Waste Incineration Bottom ash (BA) with a size below 4 mm is often difficult, due to its high contmination and porosity. To increase its reuse, the manufacture of lightweight aggregates represents a suitable option, as it takes advantage of the BA porous structure and uses cement for the immobilization of harmful contaminants. For highly contaminated ashes, hydrothermal treatment (HT) is known for further improving the immobilization of some heavy metals in the cementitious matrix. However, not many studies have investigated it as a curing method for pellets. This study addresses the application of highly contaminated BA fines in the production of lightweight aggregates. Firstly, pellets containing up to 80%wt. BA are manufactured and classified as lightweight aggregates, according to EN 13055. In the absence of HT, the formation of Friedel's salt helps the Cl- retention, lowering the leaching by 65% compared to theoretical values. After HT, the formation of tobermorite on the pellet surface is beneficial for the flexural strength (+14%). However, the decomposition of phases such as Friedel's salt increases the leaching of Cl-, Cu, Mo, and Zn compared to standard cured samples. (C) 2019 Elsevier Ltd. All rights reserved.
机译:尺寸小于4毫米的城市固体垃圾焚烧底灰(BA)经常难以回收,因为它的污染度和孔隙率很高。为了提高其可重复使用性,轻质集料的制造是一种合适的选择,因为它利用了BA多孔结构的优势,并使用水泥固定了有害污染物。对于高度污染的灰烬,已知水热处理(HT)可进一步改善某些重金属在胶结基质中的固定性。然而,很少有研究将其作为颗粒的固化方法进行研究。这项研究致力于在轻质骨料的生产中应用高度污染的BA细粉。首先,粒料含量高达80%wt。根据EN 13055,BA被制造并归类为轻质骨料。在没有HT的情况下,Friedel盐的形成有助于Cl的保留,与理论值相比,浸出率降低了65%。高温处理后,在颗粒表面形成水辉石有利于提高抗弯强度(+ 14%)。但是,与标准固化样品相比,诸如弗里德尔盐之类的相的分解会增加Cl-,Cu,Mo和Zn的浸出。 (C)2019 Elsevier Ltd.保留所有权利。

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