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Influence of the Calcination and Carbonation Conditions on the CO_2 Uptake of Synthetic Ca-Based CO_2 Sorbents

机译:煅烧和碳酸化条件对合成钙基CO_2吸收剂吸收CO_2的影响

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摘要

In this work we report the development of a Ca-based, Al_2O_3- stabilized sorbent using a sol-gel technique. The CO_2 uptake of the synthetic materials as a function of carbonation and calcination temperature and CO_2 partial pressure was critically assessed. In addition, performing the carbonation and calcination reactions in a gas-fluidized bed allowed the attrition characteristics of the new material to be investigated. After 30 cycles of calcination and carbonation conducted in a fluidized bed, the CO, uptake of the best sorbent was 0.31 g CO_2/ g sorbent, which is 60% higher than that measured for Rheinkalk limestone. A detailed characterization of the morphology of the sol-gel derived material confirmed that the nanostructure of the synthetic material is responsible for its high, cyclic CO_2 uptake. The sol-gel method ensured that Ca~(2+) and Al~(3+) were homogenously mixed (mostly in the form of the mixed oxide mayenite). The formation of a finely and homogeneously dispersed, high Tammann temperature support stabilized the nanostructured morphology over multiple reaction cycles, whereas limestone lost its initial nanostructured morphology rapidly due to its intrinsic lack of a support component.
机译:在这项工作中,我们报告了使用溶胶-凝胶技术开发的一种基于钙的,Al_2O_3-稳定的吸附剂。严格评估了合成材料的CO_2吸收量与碳酸化程度,煅烧温度和CO_2分压的关系。此外,在气化床中进行碳酸化和煅烧反应可以研究新材料的磨损特性。在流化床中进行30次煅烧和碳化后,最佳吸附剂的CO吸收量为0.31 g CO_2 / g吸附剂,比Rheinkalk石灰石测得的吸附量高60%。溶胶-凝胶衍生材料的形态的详细表征证实,合成材料的纳米结构是其高环状CO_2吸收的原因。溶胶-凝胶法确保Ca〜(2+)和Al〜(3+)均匀混合(主要以混合的钙铝石形式存在)。精细且均匀分散的高塔曼温度支撑物的形成在多个反应周期内稳定了纳米结构的形貌,而石灰石由于其内在缺乏支撑成分而迅速失去了其初始纳米结构的形貌。

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  • 来源
    《Environmental Science & Technology》 |2012年第19期|p.10849-10856|共8页
  • 作者单位

    Laboratory of Energy Science and Engineering, ETH Zurich, Leonhardstrasse 27, 8092 Zurich, Switzerland;

    Laboratory of Energy Science and Engineering, ETH Zurich, Leonhardstrasse 27, 8092 Zurich, Switzerland;

    Laboratory of Energy Science and Engineering, ETH Zurich, Leonhardstrasse 27, 8092 Zurich, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-17 14:02:57

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