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Accelerated carbonation of municipal solid waste incineration fly ashes

机译:城市垃圾焚烧粉煤灰的加速碳化

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摘要

As a result of the EU Landfill Directive, the disposal of municipal solid waste incineration (MSWI) fly ash is restricted to only a few landfill sites in the UK. Alternative options for the management of fly ash, such as sintering, vitrification or stabilization/solidification, are either costly or not fully developed. In this paper an accelerated carbonation step is investigated for use with fly ash. The carbonation reaction involving fly ash was found to be optimum at a water/solid ratio of 0.3 under ambient temperature conditions. The study of ash mineralogy showed the disappearance of lime/portlandite/calcium chloride hydroxide and the formation of calcite as carbonation proceeded. The leaching properties of carbonated ash were examined. Release of soluble salts, such as SO_4, Cl, was reduced after carbonation, but is still higher than the landfill acceptance limits for hazardous waste. It was also found that carbonation had a significant influence on lead leachability. The lead release from carbonated ash, with the exception of one of the fly ashes studied, was reduced by 2-3 orders of magnitude.
机译:根据欧盟《垃圾填埋指令》,市政固体垃圾焚烧(MSWI)粉煤灰的处置仅限于英国的少数几个垃圾填埋场。粉煤灰管理的替代方案,例如烧结,玻璃化或稳定/固化,要么成本高昂,要么未得到充分开发。在本文中,研究了用于粉煤灰的加速碳化步骤。发现在环境温度条件下水灰/固体比为0.3时,涉及粉煤灰的碳酸化反应是最佳的。灰分矿物学研究表明,随着碳化的进行,石灰/钙铁矿/氢氧化钙氢氧化物消失,方解石形成。检查了碳酸盐的浸出性能。碳酸化后,可溶性盐(如SO_4,Cl)的释放减少,但仍高于危险废物的填埋场接受极限。还发现碳酸化对铅的浸出性有重要影响。除研究的一种飞灰外,碳酸盐中的铅释放量降低了2-3个数量级。

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