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Influence of Ball Milling on CaO Crystal Growth During Limestone and Dolomite Calcination: Effect on CO2 Capture at Calcium Looping Conditions

机译:球磨对石灰石和白云石煅烧过程中CaO晶体生长的影响:钙循环条件下对CO2捕集的影响

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The multicycle CO2 capture performance of CaO derived from the calcination of ball-milled limestone and dolomite have been tested under high temperature and high CO2 concentration environment for the first time. Here it is shown that the CO2 capture capacity of CaO is inversely to the milling power applied to the starting mineral and the size of nascent CaO nanocrystals. In situ X-ray diffraction analysis used to follow the average crystallite size of CaCO3 and CaO during the calcination process as a function of temperature demonstrates that crystal growth is notably enhanced in a CO2-rich atmosphere for milled sorbents. Contrary to early reports suggesting improved reactivity towards carbonation of CaO from milled sorbents, promoted agglomeration, and crystal growth under these more "realistic" conditions lead to a severe deterioration of both capture capacity and recyclability, as observed from the multicyclic carbonation/calcination experiments. Yet the negative effect of milling is less pronounced in dolomite due to the constrained sintering effect of the inert MgO grains that results in smaller CaO crystallite sizes, reduced crystal growth rate, and improved performance. These results provide insight on the role of CaO crystallinity on the carbonation reaction, useful for devising strategies to improve sorbents performance.
机译:首次在高温高CO2浓度环境下测试了球磨石灰石和白云石煅烧产生的CaO的多循环CO2捕集性能。在此表明,CaO的CO2捕集能力与应用于起始矿物的研磨功率和新生的CaO纳米晶体的尺寸成反比。原位X射线衍射分析用于追踪煅烧过程中CaCO3和CaO的平均微晶尺寸随温度的变化,结果表明,对于研磨后的吸附剂,在富含CO2的气氛中晶体生长显着增强。与早期报道相反,从多环碳酸化/煅烧实验中可以看出,研磨后的吸附剂对CaO碳酸化的反应性提高,团聚和晶体生长在这些“更现实的”条件下会导致捕获能力和可循环性严重下降。然而,由于惰性MgO晶粒的约束烧结效应(导致较小的CaO晶粒尺寸,降低的晶体生长速率和改进的性能),铣削的负面影响在白云石中不太明显。这些结果提供了关于CaO结晶度对碳酸化反应的作用的见解,可用于设计提高吸附剂性能的策略。

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