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A new approach for the classification of coal fly ashes based on their origin, composition, properties, and behaviour

机译:一种基于粉煤灰的来源,组成,性质和行为进行分类的新方法

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摘要

The present work introduces and evaluates a new approach for the classification system of coal fly ashes (FAs) based on their origin, phase-mineral and chemical composition, properties, and behaviour. The detailed data for 41 FAs produced from various feed coals at 37 coal-fired thermo-electric power stations (TPSs) in Spain, Bulgaria, The Netherlands, Italy, Turkey, and Greece were used for that purpose. The chemical FA classification system was organized according to the contents, common geochemical associations, and significant positive or negative correlations of ash-forming elements in FAs using three end members, namely (1) sum of Si, Al, K, Ti and P oxides; (2) sum of Ca, Mg, S, Na and Mn oxides; and (3) Fe oxide. This approach divided four chemical FA types (Sialic, Calsialic, Ferrisialic, and Ferricalsialic) with three dominant tendencies (high acid, medium acid, and low acid). The most important phase-mineral FA classification system was organized according to the contents, associations, correlations, properties, and behaviours of species in FAs using also three end members, namely; (1) glass; (2) quartz + mullite; and (3) other minerals. This approach divided four phase-mineral FA types (Pozzolanic, Inert, Active, and Mixed) with three dominant tendencies (high pozzolanic, medium pozzolanic, and low pozzo-lanic). The specified chemical and phase-mineral FA types and subtypes were characterized and the relationships and distinctions between them were also described. It was found that characteristics such as (1) feed coal and combustion technology used in TPS; (2) water-soluble, magnetic and heavy fractions, pH, fluid ash-fusion temperature, detrital/authigenic index, and BET specific surface area of FAs; and especially (3) content, modes of occurrence, and distribution of glass, quartz, mullite, lime-portlandite, periclase-bru-cite, Ca sulphates, Ca and Ca-Mg silicates, magnetite-hematite, and char types in FAs; give the most valuable information for the determination of the potential utilization directions and environmental concerns of FAs.
机译:本工作根据煤飞灰的来源,相矿物和化学组成,特性和行为,介绍并评估了一种新的煤飞灰分类系统的方法。为此,使用了西班牙,保加利亚,荷兰,意大利,土耳其和希腊的37个燃煤热电厂(TPS)的各种原料煤生产的41种FA的详细数据。化学FA分类系统是根据FA的成灰元素的含量,常见的地球化学联系以及显着的正相关或负相关来组织的,使用三个末端成员,即(1)Si,Al,K,Ti和P氧化物的总和; (2)钙,镁,硫,钠和锰氧化物的总和; (3)氧化铁。该方法将四种化学FA类型(唾液酸,唾液酸,亚铁酸和Ferricalsialic)分为三种主要趋势(高酸,中酸和低酸)。最重要的阶段-矿物FA分类系统是根据FA中物种的内容,关联,相关性,特性和行为组织的,还使用了三个末端成员: (1)玻璃; (2)石英+莫来石; (3)其他矿物质。该方法将四种矿物相FA类型(火山灰,惰性,活性和混合)分为三种主要趋势(高火山灰,中火山灰和低火山灰)。表征了特定的化学和相矿物FA类型和亚型,并描述了它们之间的关系和区别。结果发现,具有以下特征:(1)TPS中使用的原料煤和燃烧技术; (2)FAs的水溶性,磁性和重质组分,pH,液体灰分融合温度,碎屑/自生指数和BET比表面积;尤其是(3)FA中玻璃,石英,莫来石,石灰-钙矾石,镁长石-brite-铝酸盐,硫酸钙,钙和钙镁镁硅酸盐,磁铁矿-赤铁矿的含量,发生方式和分布;提供最有价值的信息,以确定FA的潜在利用方向和环境问题。

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