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首页> 外文期刊>Energy & fuels >The Performance in a Fixed Bed Reactor of Copper-Based Oxides on Titania as Oxygen Carriers for Chemical Looping Combustion of Methane
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The Performance in a Fixed Bed Reactor of Copper-Based Oxides on Titania as Oxygen Carriers for Chemical Looping Combustion of Methane

机译:二氧化钛上的铜基氧化物固定床反应器作为甲烷化学环流燃烧的氧气载体的性能

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摘要

Chemical looping combustion(CLC)of methane has been proposed in the past decade as an efficient method for CO_2 capture without important cost penalties.The combustion is carried out in a two-step process using,in the first one,the lattice oxygen of a reducible inorganic oxide for methane combustion and,in the second one,air for further carrier regeneration.An additional advantage of the CLC is the improbable generation of thermal NO_x because the operating temperature used for carrier regeneration is relatively low.Copper-based oxygen carriers with different copper contents have been prepared by successive wet impregnations on porous titania,used as support,with an aqueous solution of copper nitrate.The prepared oxygen carriers have been subsequently studied in five-cycle reduction-regeneration tests in a fixed bed reactor at atmospheric pressure with the aim of carrier characterization,analysis of the components in the outlet gas,and the study of the effect of some of the main parameters influencing the problem,including copper content and operating temperature.A further 20-cycle performance test has also been carried out with the oxygen carrier with the highest copper loading.The study reveals that copper does not interact with titania as support,which remains unaltered as rutile along all the two steps involved in the process.However,it is redistributed on the support because the melting points of some of the involved copper phases are close to the operating temperature.Neither carbonaceous deposits on the carrier in the reduction step nor subsidiary chemical reactions,especially those involving CO formation,takes place.The copper-based oxygen carriers exhibited a good performance in 20-cycle tests in a fixed bed reactor showing high reactivity and no substantial decay in efficiency with the number of cycles.
机译:甲烷的化学循环燃烧(CLC)是过去十年中提出的一种有效的CO_2捕集方法,没有重大的成本损失。燃烧是分两步进行的,第一个步骤是使用甲烷的晶格氧可还原的无机氧化物,用于甲烷燃烧,第二种是空气,用于进一步的载流子再生。CLC的另一个优点是,由于载流子再生所用的工作温度较低,因此不太可能产生热NO_x。通过在多孔二氧化钛上连续湿浸渍并用作硝酸铜的水溶液,制备了不同的铜含量。用作载体的多孔二氧化钛。随后在大气压下的固定床反应器中进行了五循环还原-再生测试,研究了制得的氧载体。目的是对载流子进行表征,分析出口气体中的成分以及研究某些主要参数的影响影响该问题的因素包括铜含量和工作温度。还用最高铜负载的氧气载体进行了20个循环的性能测试。研究表明,铜不与二氧化钛作为载体相互作用,并且保持不变在该过程的所有两个步骤中都呈金红石型。但是,由于某些涉及的铜相的熔点接近操作温度,它会重新分布在载体上。在还原步骤中,碳质沉积物都不会沉积在载体上在固定床反应器中,铜基氧载体在20个循环的测试中表现出良好的性能,显示出高反应活性,并且随着循环次数的增加,效率没有明显下降。

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  • 来源
    《Energy & fuels》 |2005年第2期|p.433-441|共9页
  • 作者单位

    Instituto de Catdlisis y Petroleoquimica(CSIC),Campus UAM-Cantoblanco,28049-Madrid,Spain,and Instituto de Carboquimica(CSIC),Maria de Luna 12,50015-Zaragoza,Spain;

    Instituto de Catdlisis y Petroleoquimica(CSIC),Campus UAM-Cantoblanco,28049-Madrid,Spain,and Instituto de Carboquimica(CSIC),Maria de Luna 12,50015-Zaragoza,Spain;

    Instituto de Catdlisis y Petroleoquimica(CSIC),Campus UAM-Cantoblanco,28049-Madrid,Spain,and Instituto de Carboquimica(CSIC),Maria de Luna 12,50015-Zaragoza,Spain;

    Instituto de Catdlisis y Petroleoquimica(CSIC),Campus UAM-Cantoblanco,28049-Madrid,Spain,and Instituto de Carboquimica(CSIC),Maria de Luna 12,50015-Zaragoza,Spain;

    Instituto de Catdlisis y Petroleoquimica(CSIC),Campus UAM-Cantoblanco,28049-Madrid,Spain,and Instituto de Carboquimica(CSIC),Maria de Luna 12,50015-Zaragoza,Spain;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TK-;
  • 关键词

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