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首页> 外文期刊>Advances in Applied Ceramics >Use of vitrified bottom ashes of municipal solid waste incinerators in bituminous mixtures in substitution of natural sands
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Use of vitrified bottom ashes of municipal solid waste incinerators in bituminous mixtures in substitution of natural sands

机译:使用城市固体废物焚化炉的玻璃化底灰代替沥青混合料,用沥青混合料

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摘要

Bottom ashes derived from an Italian municipal solid waste incinerator (MSWI) were vitrified at 1450 deg C and subsequently employed, after adequate size reduction, as sand fractions in partial or total substitution of natural aggregates in bituminous mixtures for road pavements. The experimental plan is focused on the effects associated to variations of both the binder content (4.5-5.5percent) and the percentage of sand substitution with vitrified MSWI ashes (0-100percent). The investigation was carried out by considering performance related compaction, volumetric and mechanical properties, which were assessed in the laboratory by employing a number of different characterisation techniques. It was observed that the key factor which allows a detailed interpretation of test results is the minimum absorption, which takes place in the mixtures at the vitrified ash bitumen interface. Consequently, mixtures including this type of secondary (recycled) aggregates may lead to substantial savings associated to the reduction of binder dosage and therefore, to economic and environmental advantages. Although mixtures containing vitrified MSWI ashes need to be thoroughly investigated with special attention devoted to mix design and moisture susceptibility issues, the results obtained in this study appear to be promising. The presence of vitrified ashes does not negatively affect the stiffness and fatigue failure properties of the mixtures, while benefits deriving from their high angle of internal friction may be beneficial regarding the resistance to accumulation of permanent deformation.
机译:将源自意大利市政固体废物焚化炉(MSWI)的底灰在1450摄氏度下进行玻璃化,然后在适当减小尺寸后用作部分沥青或全部代替沥青混合料中天然骨料的沥青。实验计划的重点是与粘结剂含量(4.5-5.5%)和玻璃化MSWI灰烬的砂替代百分比(0-100%)变化相关的影响。通过考虑与性能相关的压实度,体积和机械性能进行研究,并在实验室中通过使用多种不同的表征技术对其进行了评估。观察到,可以详细解释测试结果的关键因素是最小吸收,该吸收发生在玻璃化烟灰沥青界面处的混合物中。因此,包括这种类型的次级(再生)聚集体的混合物可导致与减少粘合剂用量相关的大量节省,因此可带来经济和环境优势。尽管需要彻底研究含玻璃化MSWI灰的混合物,并特别注意混合设计和湿气敏感性问题,但这项研究获得的结果似乎是有希望的。玻化灰的存在不会对混合物的刚度和疲劳破坏性能产生负面影响,而从其高内摩擦角产生的益处可能会在抵抗永久变形积累方面带来益处。

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