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CO2 capture of limestone modified by hydration-dehydration technology for carbonation/calcination looping

机译:水合脱水技术改性石灰石的二氧化碳捕集,用于碳酸化/煅烧循环

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摘要

The hydration-dehydration technique was used to improve the cyclic performance of calcined natural limestone to make it highly suitable for carbonation/calcination looping. The modified CaO-based sorbents were tested for their cyclic carbonation behavior in a fixed bed reactor. Their morphology, pore structure and phase composition before and after carbonation/calcination cycles were determined by scanning electron microscopy, nitrogen adsorption, and X-ray diffraction. The modified sorbents exhibited significantly higher CO2 uptake than the calcined limestone under the same experimental conditions. The characterization results indicated that this synthesis offered a new calcium oxide with less crystallinity, greater porosity and higher surface area, which was the main contributor to enhance the reactivity of modified sorbents. Moreover, after the spent sorbents modified with hydration-dehydration technique again, the sorbents recovered their cyclic activity, which was also confirmed by XRD spectrum, nitrogen physisorption analyses and SEM analyses. These results showed that, with periodic hydration-dehydration steps, CaO-based sorbents can be used for extended times in CO2 looping cycles.
机译:水合脱水技术用于改善煅烧天然石灰石的循环性能,使其非常适合碳酸化/煅烧循环。在固定床反应器中测试了改性的基于CaO的吸附剂的环状碳酸化行为。通过扫描电子显微镜,氮吸附和X射线衍射确定碳化/煅烧循环前后的形态,孔结构和相组成。在相同的实验条件下,改性的吸附剂显示出比煅烧石灰石更高的二氧化碳吸收率。表征结果表明,该合成提供了一种新的氧化钙,其具有较低的结晶度,较大的孔隙率和较高的表面积,这是提高改性吸附剂反应性的主要因素。此外,用水合脱水技术对废吸附剂进行再次改性后,吸附剂恢复了其循环活性,这也通过XRD光谱,氮物理吸附分析和SEM分析得到了证实。这些结果表明,通过定期的水合-脱水步骤,基于CaO的吸附剂可以在CO2循环中延长时间。

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