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The utilisation of fly ash in CO2 mineral carbonation

机译:粉煤灰在二氧化碳矿物碳化中的利用

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The fixation of CO2 in the form of inorganic carbonates, also known as mineral carbonation, is an interesting option for the removal of carbon dioxide from various gas streams. The captured CO2 is reacted with metal-oxide bearing materials, usually naturally occurring minerals. The alkaline industrial waste, such as fly ash can also be considered as a source of calcium or magnesium. In the present study the solubility of fly ash from conventional pulverised hard coal fired boilers, with and without desulphurisation products, and fly ash from lignite fluidised bed combustion, generated by Polish power stations was analysed. The principal objective was to assess the potential of fly ash used as a reactant in the process of mineral carbonation. Experiments were done in a 1 dm3 reactor equipped with a heating jacket and a stirrer. The rate of dissolution in water and in acid solutions was measured at various temperatures (20 - 80oC), waste-to-solvent ratios (1:100 - 1:4) and stirrer speeds (300 - 1100 min-1). Results clearly show that fluidised lignite fly ash has the highest potential for carbonation due to its high content of free CaO and fast kinetics of dissolution, and can be employed in mineral carbonation of CO2.
机译:以无机碳酸盐的形式固定CO2(也称为矿物碳酸化)是从各种气流中除去二氧化碳的有趣选择。捕获的CO2与通常带有天然氧化物的金属氧化物材料发生反应。碱性工业废料(例如粉煤灰)也可以视为钙或镁的来源。在本研究中,分析了有和没有脱硫产品的传统粉煤燃烧粉煤锅炉中飞灰的溶解度,以及波兰发电厂产生的褐煤流化床燃烧中飞灰的溶解度。主要目的是评估粉煤灰在矿物碳化过程中作为反应物的潜力。实验在配备加热套和搅拌器的1 dm3反应器中进行。在各种温度(20-80oC),废物与溶剂的比例(1:100-1:4)和搅拌器速度(300-1100 min-1)下测量在水中和在酸性溶液中的溶解速率。结果清楚地表明,流化褐煤粉煤灰具有较高的碳酸化潜力,这是因为其游离CaO含量高且溶解动力学快,可用于CO2的矿物碳酸化。

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