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HCl removal performance of Mg-stabilized carbide slag from carbonation/calcination cycles for CO2 capture

机译:CO2捕获中碳酸化/煅烧循环的Mg稳定碳化物渣的HCl去除性能

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摘要

Mg-stabilized carbide slag (MSCS) was fabricated with carbide slag, magnesium nitrate hydrate and a by-product of biodiesel from transesterification by combustion, and was used as a CO2 sorbent in calcium looping cycles. The cycled MSCS containing a ratio of CaO to MgO of 80 : 20 from the calcium looping cycles (i.e. carbonation/ calcination cycles) for CO2 capture was subsequently used as an HCl sorbent. The HCl capture performance of the cycled MSCS which had experienced repetitive CO2 capture cycles using calcium looping was investigated in a triple fixed-bed reactor. The reaction products of the cycled MSCS after HCl absorption are CaClOH, CaO, and MgO. MgO is an inert support. The cycled MSCS reaches the highest HCl capture capacity at 750 degrees C. The number of CO2 capture cycles increases the effect of chlorination temperature on the HCl capture capacity of the cycled MSCS. The HCl capture capacity of the cycled MSCS drops slightly with the number of CO2 capture cycles. The HCl capture capacity of the MSCS which has undergone 10 CO2 capture cycles can retain 0.21 g HCl/g sorbent, which is about 1.7 times as high as that of the carbide slag. The presence of CO2 leads to a reduction in the HCl capture capacity of the cycled MSCS. MSCS can maintain a more stable microstructure due to the presence of MgO during the repetitive CO2 capture cycles. The cycled MSCS from the CO2 capture cycles exhibits a more porous structure than the cycled carbide slag, especially in the pore size range of 2-10 nm in diameter, which benefits HCl capture. Therefore, the cycled MSCS from CO2 capture cycles using calcium looping appears promising to remove HCl.
机译:用碳化物渣,硝酸镁水合物和丙酸镁通过燃烧从酯交换中制造Mg稳定的碳化物渣(MSCs),并用作钙循环循环中的CO2吸附剂。随后使用含有来自钙循环循环(即碳酸化/煅烧循环)的CaO至MgO的循环的MSCs,随后用作HCl吸附剂。研究了使用钙循环经历重复CO 2捕获循环的循环MSC的HCl捕获性能,在三重固定床反应器中进行了研究。 HCl吸收后循环MSCs的反应产物是CaClOH,CaO和MgO。 MgO是一种惰性支持。循环的MSCs在750℃下达到最高的HCl捕获容量。CO 2捕获循环的数量增加了氯化温度对循环MSC的HCl捕获能力的影响。循环MSC的HCL捕获容量随着CO2捕获循环的数量而略微下降。经过10 CO 2捕获循环的MSCs的HCl捕获能力可以保留0.21g HCl / G吸附剂,其高度为碳化物渣的1.7倍。 CO 2的存在导致循环MSC的HCl捕获能力的降低。由于在重复的CO2捕获循环期间,MSCs可以通过MgO存在而保持更稳定的微观结构。来自CO 2捕获循环的循环的MSCs表现出比环循环的碳化物渣更多孔的结构,特别是在直径为2-10nm的孔径范围内,这有利于HCl捕获。因此,来自CO 2捕获循环的循环的MSCs使用钙循环似乎有望除去HCl。

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  • 来源
    《RSC Advances》 |2016年第106期|共8页
  • 作者单位

    Shandong Univ Sch Energy &

    Power Engn Jinan 250061 Peoples R China;

    Shandong Univ Sch Energy &

    Power Engn Jinan 250061 Peoples R China;

    Southeast Univ Sch Energy &

    Environm Key Lab Energy Thermal Convers &

    Control Minist Educ Nanjing 210096 Jiangsu Peoples R China;

    Shandong Univ Sch Energy &

    Power Engn Jinan 250061 Peoples R China;

    Southeast Univ Sch Energy &

    Environm Key Lab Energy Thermal Convers &

    Control Minist Educ Nanjing 210096 Jiangsu Peoples R China;

    Shandong Univ State Key Lab Crystal Mat Jinan 250100 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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