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Effect of pre-calcination for modified CaO-based sorbents on multiple carbonation/calcination cycles

         

摘要

In the present work,the effect of pre-calcination on carbonation conversion and cyclic stability of modi fied CaObased sorbent was investigated by thermogravimetric analyzer(TGA).The modi fied CaO-based sorbents with CaAc_2 as precursor were respectively doped with different elements(Mg,Al,Ce,Zr and La).The speci fic surface area,pore volume and pore size distribution were tested by N_2 isothermal adsorption measurements.The phase compositions of sorbents were characterized by X-ray diffraction(XRD).The results showed that the cyclic stabilities of the sorbents were improved by pre-calcination.The pre-calcination was conducted at 900°C for 5 h in air by the muf fle furnace.With pre-calcination,the cyclic stabilities of sorbents could be as high as 96% after 22 cycles,such as CaO-Al,CaO-Ce and CaO-La.After contact with air,the carbonation conversions of spent sorbents with pre-calcination suddenly increased by about one-sixth due to the change of channel structure by hydration.Both the cyclic stability of sorbent and the durability of reactivation were related to the structural stability of sample,especially the stability of mesopores between 2 nm and 5.5 nm.The present work also provided an easy and low-cost method for reactivating the spent CaO-based sorbents.

著录项

  • 来源
    《中国化学工程学报:英文版》 |2017年第10期|1412-1421|共10页
  • 作者单位

    School of Chemical Engineering;

    Northwest University;

    Xi'an 710069;

    China;

    Chemical Engineering Research Center of the Ministry of Education for Advanced Use Technology of Shanbei Energy;

    Xi'an 710069;

    China;

    Shaanxi Research Center of Engineering Technology for Clean Coal Conversion;

    Xi'an 710069;

    China;

    International Scientific and Technological Cooperation Base for Clean Utilization of Hydrocarbon Resources;

    Xi'an 710069;

    China;

    China Huaneng Group Clean Energy Technology Research Institute;

    Beijing 100098;

    China;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 TQ114.162;TG139.7;
  • 关键词

    循环稳定性; CaO; 碳酸化; 煅烧; 助烧剂; 碳化转化率; 结构稳定性; 预烧;

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