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利用采矿和工业废料生产轻质集料。

Production of lightweight aggregates from mining and industrial wastes.

作者信息

González-Corrochano B, Alonso-Azcárate J, Rodas M

机构信息

Department of Chemistry-Physics, School of Environmental Sciences, University of Castilla-La Mancha, Toledo, Spain.

出版信息

J Environ Manage. 2009 Jun;90(8):2801-12. doi: 10.1016/j.jenvman.2009.03.009. Epub 2009 Apr 21.

Abstract

Washing aggregate sludge from a gravel pit, sewage sludge from a wastewater treatment plant (WWTP) and a clay-rich sediment have been physically, chemically and mineralogically characterized. They were mixed, milled and formed into pellets, pre-heated for 5 min and sintered in a rotary kiln at 1150 degrees C, 1175 degrees C, 1200 degrees C and 1225 degrees C for 10 and 15 min at each temperature. The effects of the raw material characteristics, heating temperatures and dwell times on the loss on ignition (LOI), bloating index (BI), bulk density (rho(b)), apparent and dry particle densities (rho(a), rho(d)), voids (H), water absorption (WA(24h)) and compressive strength (S) were determined. All the mixtures presented a bloating potential taking into consideration the gases released at high temperatures. The products obtained were lightweight aggregates (LWAs) in accordance with Standard UNE-EN-13055-1 (rho(b)<or=1.20 g/cm(3) or particle density<or=2.00 g/cm(3)). LWAs manufactured with 50% washing aggregate sludge and 50% clay-rich sediment were expanded LWAs (BI>0) and showed the lowest apparent particle density, the lowest water absorption and the highest compressive strength. It was possible to establish three groups of LWAs on the basis of their properties in comparison to Arlita G3, F3 and F5, commercially available lightweight aggregates manufactured in Spain. Our LWAs may have the same or similar applications as these commercial products, such as horticulture, prefabricated lightweight structures and building structures.

摘要

对来自砾石坑的洗选骨料污泥、污水处理厂(WWTP)的污水污泥以及富含黏土的沉积物进行了物理、化学和矿物学特性分析。将它们混合、研磨并制成颗粒,预热5分钟,然后在回转窑中于1150℃、1175℃、1200℃和1225℃下烧结10分钟和15分钟,每个温度下各烧结一次。测定了原料特性、加热温度和保温时间对烧失量(LOI)、膨胀指数(BI)、堆积密度(ρ(b))、表观和干颗粒密度(ρ(a)、ρ(d))、孔隙率(H)、吸水率(WA(24h))和抗压强度(S)的影响。考虑到高温下释放的气体,所有混合物都具有膨胀潜力。根据UNE-EN-13055-1标准(ρ(b)≤1.20 g/cm³或颗粒密度≤2.00 g/cm³),所获得的产品为轻质骨料(LWA)。由50%洗选骨料污泥和50%富含黏土的沉积物制成的LWA是膨胀型LWA(BI>0),其表观颗粒密度最低、吸水率最低且抗压强度最高。与西班牙生产的市售轻质骨料Arlita G3、F3和F5相比,根据其性能可以将LWA分为三组。我们的LWA可能具有与这些商业产品相同或相似的应用,如园艺、预制轻质结构和建筑结构。

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