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烟气脱硫石膏和粉煤灰作为预制建筑材料的基本成分。

Flue gas desulfurization gypsum and coal fly ash as basic components of prefabricated building materials.

机构信息

Scuola di Ingegneria, Università degli Studi della Basilicata, Viale dell'Ateneo Lucano 10, 85100 Potenza, Italy.

出版信息

Waste Manag. 2013 Mar;33(3):628-33. doi: 10.1016/j.wasman.2012.10.022. Epub 2012 Dec 7.

Abstract

The manufacture of prefabricated building materials containing binding products such as ettringite (6CaO·Al2O3·3SO3·32H2O) and calcium silicate hydrate (CSH) can give, in addition to other well-defined industrial activities, the opportunity of using wastes and by-products as raw materials, thus contributing to further saving of natural resources and protection of the environment. Two ternary mixtures, composed by 40% flue gas desulfurization (FGD) gypsum or natural gypsum (as a reference material), 35% calcium hydroxide and 25% coal fly ash, were submitted to laboratory hydrothermal treatments carried out within time and temperature ranges of 2h-7days and 55-85°C, respectively. The formation of (i) ettringite, by hydration of calcium sulfate given by FGD or natural gypsum, alumina of fly ash and part of calcium hydroxide, and (ii) CSH, by hydration of silica contained in fly ash and residual lime, was observed within both the reacting systems. For the FGD gypsum-based mixture, the conversion toward ettringite and CSH was highest at 70°C and increased with curing time. Some discrepancies in the hydration behavior between the mixtures were ascribed to differences in mineralogical composition between natural and FGD gypsum.

摘要

预制建筑材料的制造包含结合产品,如钙矾石(6CaO·Al2O3·3SO3·32H2O)和硅酸钙水合物(CSH),除了其他明确的工业活动外,还可以利用废物和副产品作为原材料,从而进一步节约自然资源和保护环境。两种三元混合物由 40%的烟气脱硫石膏或天然石膏(作为参考材料)、35%的氢氧化钙和 25%的粉煤灰组成,分别在 2h-7 天和 55-85°C 的时间和温度范围内进行实验室水热处理。在这两种反应体系中,均观察到了(i)由 FGD 石膏或天然石膏提供的硫酸钙、粉煤灰中的氧化铝和部分氢氧化钙水化生成的钙矾石,以及(ii)由粉煤灰中的二氧化硅和残余石灰水化生成的 CSH 的形成。对于基于 FGD 石膏的混合物,在 70°C 时向钙矾石和 CSH 的转化率最高,并随养护时间的增加而增加。混合物之间水化行为的一些差异归因于天然石膏和 FGD 石膏在矿物组成上的差异。

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