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Increased Sustainability of Carbon Dioxide Mineral Sequestration by a Technology Involving Fly Ash Stabilization

机译:通过粉煤灰稳定化技术提高二氧化碳固存的可持续性

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摘要

Mineral carbonation, involving reactions of alkaline earth oxides with CO2, has received great attention, as a potential carbon dioxide sequestration technology. Indeed, once converted into mineral carbonate, CO2 can be permanently stored in an inert phase. Several studies have been focalized to the utilization of industrial waste as a feedstock and the reuse of some by-products as possible materials for the carbonation reactions. In this work municipal solid waste incineration fly ash and other ashes, as bottom ash, coal fly ash, flue gas desulphurization residues, and silica fume, are stabilized by low-cost technologies. In this context, the CO2 is used as a raw material to favor the chemical stabilization of the wastes, by taking advantage of the pH reduction. Four different stabilization treatments at room temperature are performed and the carbonation reaction evaluated for three months. The crystalline calcium carbonate phase was quantified by the Rietveld analysis of X-ray diffraction (XRD) patterns. Results highlight that the proposed stabilization strategy promotes CO2 sequestration, with the formation of different calcium carbonate phases, depending on the wastes. This new sustainable and promising technology can be an alternative to more onerous mineral carbonation processes for the carbon dioxide sequestration.
机译:作为一种潜在的二氧化碳螯合技术,涉及碱土金属氧化物与CO2反应的矿物碳酸化已经引起了极大的关注。确实,一旦转化为碳酸盐矿物,CO2便可以永久保存在惰性相中。一些研究集中于利用工业废料作为原料,以及将某些副产物作为碳酸化反应的可能材料进行再利用。在这项工作中,城市垃圾焚烧飞灰和其他灰烬(如底灰,煤飞灰,烟气脱硫残渣和硅粉)通过低成本技术得以稳定。在这种情况下,通过利用pH值降低的优势,将CO2用作原料,有利于废物的化学稳定。在室温下进行四种不同的稳定化处理,并评估碳酸化反应三个月。结晶碳酸钙相通过X射线衍射(XRD)图的Rietveld分析进行定量。结果表明,拟议的稳定化策略可促进二氧化碳的封存,并根据废物形成不同的碳酸钙相。这项新的可持续性和有前途的技术可以替代二氧化碳封存的更繁重的矿物碳酸化工艺。

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