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CO2 capture performance using limestone modified with propionate acid during calcium looping cycle

机译:COMING循环循环期间使用用丙酸酸改性的石灰石进行捕获性能

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Limestone was modified with excessive propionate acid solution. The cyclic CO2 capture performance of the modified limestone during calcium looping cycle was investigated using a thermo-gravimetric analyzer (TGA) and a twin fixed-bed calcination/carbonation reactor system. The results obtained prove that the modified limestone can be an effective sorbent for CO2 capture at high temperature. The modified limestone exhibits obviously faster carbonation rate,and achieves higher carbonation conversion than the original one under the same reaction conditions. The optimum carbonation temperature for modified limestone is between 680°C and 720°C.Higher calcination temperature can aggravate sintering of the sorbent during calcination periods. The modified limestone shows better anti-sintering properties than original one at high calcinations temperature.Longterm CO2 capture capacity of the sorbent is enhanced by modification using propionate acid,resulting in a carbonation conversion of 0.31 for modified limestone after 100 cycles,while the value for original limestone is only 0.08. The surface morphology of the modified limestone after the first calcination is much more porous and the pores are more connective than that of the original one.A much better pore structure is kept after 100 cycles for modified limestone.It indicates that modified limestone is much more sintering-resistant than original one during cyclic reactions.
机译:用过量的丙酸酸溶液改性石灰石。使用热重分析仪(TGA)和双固定床煅烧/碳化反应器系统研究了改性石灰石期间改性石灰石的环状二氧化碳捕获性能。得到的结果证明,改性的石灰石可以是高温CO 2捕获的有效吸附剂。改性石灰石明显更快的碳酸化速率,并在相同的反应条件下实现比原始的碳酸化转化率高。改性石灰石的最佳碳化温度在680℃和720℃之间,煅烧温度可加剧煅烧时段的吸附剂的烧结。修饰的石灰石显示出比原始的抗烧结性能高于高煅烧温度。使用丙酸酸改性,通过改性增强吸附剂的肺部CO 2捕获能力,导致100次循环后改性石灰石的碳酸化转化率为0.31,而值为原始石灰岩仅为0.08。在第一煅烧之后改性石灰石的表面形态更加多孔,孔隙比原始的孔更新。在100个修饰的石灰石100次循环后保持更好的孔隙结构。表示改进的石灰石更多在循环反应期间烧结抗性。

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