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Metal extraction and indirect mineral carbonation of waste cement material using ammonium salt solutions

机译:铵盐溶液对废水泥材料的金属提取和间接矿物碳酸化

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The effects of different ammonium salts on the cation extraction and mineral carbonation of waste cement were evaluated using four different ammonium salt solutions: CH3COONH4, NH4C1, NH4NO3, and (NH4)2SO4. Extraction and carbonation tests were conducted using waste cement powder as the raw material under ambient temperature and pressure conditions at a solid to liquid ratio of 50 g/L with two different concentrations of ammonium salt solution (0.5 M and 1.0 M). At higher concentration (1 M), the Ca extraction efficiency (~70%) was higher in the CH3COONH4 and NH4NO3 solutions, but lower in the NH4C1 (32%) and (NH4)2SO4 solutions (5%). The Ca selectivity (~98%) was higher in the CH3COONH4, NH4NO3, and NH4CI solutions, but lower in the (NH4)2SO4 solution (90%). The carbonation efficiency was comparable to the extraction efficiency. The carbonation efficiency with the CH3COONH4 and NH4NO3 solutions was higher. Regardless of the type of ammonium salt, high purity vaterite was precipitated after CO2 injection.
机译:使用四种不同的铵盐溶液(CH3COONH4,NH4Cl,NH4NO3和(NH4)2SO4)评估了不同铵盐对废水泥的阳离子萃取和矿物碳酸化的影响。以废水泥粉为原料,在环境温度和压力条件下,以两种不同浓度的铵盐溶液(0.5 M和1.0 M)的固液比为50 g / L进行萃取和碳化试验。在较高浓度(1 M)下,CH3COONH4和NH4NO3溶液中的Ca提取效率(〜70%)较高,但在NH4C1(32%)和(NH4)2SO4溶液(5%)中较低。在CH3COONH4,NH4NO3和NH4Cl溶液中,Ca选择性(〜98%)较高,但在(NH4)2SO4溶液中,Ca选择性较低(〜98%)。碳酸化效率与提取效率相当。 CH3COONH4和NH4NO3溶液的碳酸化效率更高。无论铵盐的类型如何,注入二氧化碳后都会沉淀出高纯度的球ate石。

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