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Utilization Of Lignite Power Generation Residues For The Production Of Lightweight Aggregates

机译:利用褐煤发电残渣生产轻质骨料

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摘要

A novel process is proposed for the utilization of lignite combustion solid residues in the production of inflammable lightweight aggregates (LWA). The process consists of two stages, pelletization and sintering, and carbon contained in BA was used as the process fuel. The main residues bottom ash (BA) and fly ash (FA) from Megalopolis power plant were characterized, mixed in different proportions and treated through pelletization and sintering process. Sintering benefits from combustion of BA carbon content and the product is a hardened porous cake. The energy required for achievement of high temperatures, in the range of 1250℃, was offered by carbon combustion and CO_2 evolution is responsible for porous structure formation. Selected physical properties of sintered material relevant to use as lightweight aggregates were determined, including bulk density, porosity and water absorption. Bulk density varies from 0.83 to 0.91 g/cm~3, porosity varies from 60% to 64% and water absorption varies from 66% to 80%. LWA formed is used for the production of lightweight aggregate concrete (LWAC). Thermal conductivity coefficient varies from 0.25 to 0.37W/mK (lower than maximum limit 0.43 W/mK) and compressive strength varies from 19 to 23 MPa (higher than minimum limit 17 MPa). The results indicate that sintering of lignite combustion residues is an efficient method of utilization of carbon containing BA and production of LWA for structural and insulating purposes. Carbon content of BA is a key factor in LWA production. Finally, this research work comprises the first proposed application for utilization of BA in Greece.
机译:提出了一种利用褐煤燃烧固体残余物生产易燃轻质骨料(LWA)的新方法。该过程包括造粒和烧结两个阶段,BA中所含的碳用作过程燃料。对Megalopolis电厂的主要残渣底灰(BA)和粉煤灰(FA)进行了表征,按不同比例混合并通过制粒和烧结工艺进行处理。烧结得益于BA碳含量的燃烧,产品为硬化的多孔饼。碳燃烧提供了达到1250℃范围内的高温所需的能量,而CO_2的逸出负责形成多孔结构。确定了与用作轻质骨料有关的烧结材料的选定物理性能,包括堆积密度,孔隙率和吸水率。堆积密度在0.83至0.91g / cm〜3之间变化,孔隙率在60%至64%之间变化,吸水率在66%至80%之间变化。形成的LWA用于生产轻质骨料混凝土(LWAC)。导热系数从0.25到0.37W / mK(低于最大极限0.43 W / mK)变化,抗压强度从19到23 MPa(高于最小极限17 MPa)变化。结果表明,烧结褐煤燃烧残渣是一种有效利用含碳BA和生产LWA用于结构和绝缘目的的方法。 BA的碳含量是LWA生产中的关键因素。最后,这项研究工作包括在希腊首次提出利用BA的申请。

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