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Effect of Alkaline Types on the Production of Calcium Carbonate Particles from Gypsum Waste for Fixation of CO2 by Mineral Carbonation

机译:碱性类型对石膏废弃物碳酸钙颗粒生产矿物质碳酸钙的影响

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摘要

Industrial by-products have been used as an alternative raw material for the long-term storage of CO2 as a mineral carbonate with various polymorphs and properties. For example; desulfurization gypsum (DG) obtained from a power station has great potential due to its high CaO content. This study used a mineral carbonation process to produce CaCO3 particles (PCC) from DG wastes for fixation of CO2 The effects of solid-to-liquid ratio (1:13, 1:9, and 1:7) and hydroxide sources (NaOH, NH4OH) on properties of PCC were determined using XRD, SEM, FTIR, AAS, and wet chemical analyses. Calcite crystals were produced in all cases with the use of NaOH, whereas calcite crystals along with spherical vaterite crystals were observed in the presence of NH4+. This study suggested a good option due to not only fixation of CO2 but also production of PCC with a high purity.
机译:工业副产品已被用作替代原料,用于长期储存二氧化碳作为具有各种多晶型物和性质的矿物质。 例如; 由于高CAO含量,从发电站获得的脱硫石膏(DG)具有很大的潜力。 本研究使用矿物质碳化过程从DG废物中生产CaCO3颗粒(PCC),用于固定CO 2的固定 - 液体比(1:13,1:9和1:7)和氢氧化物来源的影响(NaOH, NH4OH)使用XRD,SEM,FTIR,AAS和湿化学分析测定PCC的性质。 在所有情况下使用NaOH生产方解石晶体,而在NH 4 +存在下,观察到胶铁化晶体以及球形Vaterite晶体。 这项研究表明,由于不仅固定二氧化碳,而且产生高纯度的PCC的良好选择。

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