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Accelerated carbonation technology granulation of industrial waste: Effects of mixture composition on product properties

机译:加速碳酸化技术造粒工业废物:混合组成对产品性质的影响

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The use of accelerated carbonation technology in combination with a granulation process was employed to produce aggregates from a variety of industrial wastes, which included municipal solid waste incineration fly ash and air pollution control residue, oil shale ash, cement kiln dust, and quarry fines that have been produced in Estonia. Focusing mainly on the effects produced by the content of municipal solid waste incineration ash in the admixtures, the granule compositions were varied in order to tailor granule properties on the basis of CO2 uptake, strength development, leaching behaviour, microstructure, and morphology. All the steps involved in the accelerated carbonation technology granulation process, from mixing with additives to granulation and carbonation treatment, were carried out in the same apparatus - an Eirich EL1 intensive mixer/granulator. The amount of CO2 that was bound ranged from 23 to 108 kg per tonne of waste. The granules that included the optimised mixture of municipal solid waste incineration air pollution control residue, oil shale ash, cement kiln dust, and ordinary Portland cement were characterised by the highest compressive strength (4.03 MPa) and water durability for the size range of 4-10 mm. In addition, the process was found to be effective in reducing alkalinity (pH < 11.5) and immobilising heavy metals (especially zinc) and chloride. The composition and properties of the respective waste materials and mechanisms associated with the characteristics of the resulting granules were also addressed.
机译:采用加速碳化技术与造粒工艺组合使用,生产各种工业废物的聚集体,其中包括市政固体废物焚烧粉煤灰和空气污染控制残留物,油页岩灰,水泥窑粉和采石场已在爱沙尼亚生产。专注于在外加剂中的城市固体废物焚烧灰分含量产生的效果,改变颗粒组合物,以根据CO 2吸收,强度发育,浸出行为,微观结构和形态定制颗粒性能。在同一装置中进行加速碳酸化技术造粒工艺中涉及加速碳酸化技术造粒工艺的所有步骤,在同一装置中进行了eIRICH EL1强化混合器/造粒机。绑定的二氧化碳量范围为每吨废物23至108千克。包括城市固体废物焚烧空气污染控制残留物,油页岩灰,水泥窑粉尘和普通波特兰水泥的优化混合物的颗粒的特点是最高的抗压强度(4.03MPa)和4-尺寸范围的水耐用性。 10毫米。此外,发现该方法有效地减少碱度(pH <11.5)和固定重金属(尤其是锌)和氯化物。还解决了各种废料的组成和性质和与所得颗粒的特征相关的机制。

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