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Effects of carbonation and leaching on porosity in cement-bound waste

机译:碳化和浸出对水泥结合废物中孔隙率的影响

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摘要

Porosity is possibly an important parameter with respect to leaching of constituents from cement monoliths. During its lifetime, the pore structure of cementitious matrices changes due to carbonation and leaching. This paper discusses the effects of both accelerated carbonation and continuous leaching on the porosity, and, conversely, how porosity affects leaching properties. Two sample types are investigated: a mortar with MSWI-bottom ash substituting the sand fraction and a cement paste with 30 wt% of the cement substituted by a flue gas cleaning residue. The samples have been intensively carbonated in a 20% CO_2 atmosphere for up to 60 days and were subsequently leached. The porosity was investigated by mercury intrusion porosimetry. Accelerated carbonation decreases total porosity by 12% in the case of 60 days of treatment of bottom ash mortars, whereas continuous leaching during 225 days increases it by 16%. Both carbonation and leaching decrease the amount of smaller capillary pores. Carbonation decreases both porosity and pH. Decreasing porosity diminishes leaching of sodium and potassium, while the decrease in pH increases leaching. However, the former process dominates the latter, resulting in a net decreasing effect of carbonation on the release of sodium and potassium from these cement matrices.
机译:相对于从水泥整料中浸出组分而言,孔隙率可能是重要的参数。在其生命周期中,胶结性基质的孔结构由于碳化和浸出而发生变化。本文讨论了加速碳化和连续浸出对孔隙率的影响,相反,孔隙率如何影响浸出性能。研究了两种样品类型:用MSWI-底灰代替砂子的砂浆和用烟道气清洁残留物代替30%(重量)水泥的水泥浆。样品已在20%CO_2气氛中强烈碳化,长达60天,随后被浸出。用压汞法测定孔隙率。在底灰砂浆处理60天的情况下,加速的碳化作用使总孔隙率降低12%,而在225天的连续浸提过程中,总孔隙率增加16%。碳化和浸出均减少了较小的毛细孔的数量。碳酸化降低了孔隙率和pH。孔隙率降低会减少钠和钾的浸出,而pH值的降低会增加浸出。但是,前者在后者中占主导地位,导致碳酸化对这些水泥基质中钠和钾释放的净降低作用。

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