首页> 外文期刊>Fuel >The reactivity of CuO oxygen carrier and coal in Chemical-Looping with Oxygen Uncoupled (CLOU) and In-situ Gasification Chemical-Looping Combustion (iG-CLC)
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The reactivity of CuO oxygen carrier and coal in Chemical-Looping with Oxygen Uncoupled (CLOU) and In-situ Gasification Chemical-Looping Combustion (iG-CLC)

机译:CuO载氧体和煤在不耦合氧化学环化(CLO​​U)和原位气化化学环化燃烧(iG-CLC)中的反应性

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摘要

Chemical-looping combustion (CLC) has the primary advantage of the generation of a CO2 enriched flue gas, which greatly benefits CO2 capture. Many researchers have been particularly interested in developing combined or mixed oxygen carriers (OC) to enhance and improve single metal OC properties. To advance the development of mixed OC, this study first focused on the conditions that impact the chemical reactions taking place in both In-situ Gasification Chemical-Looping Combustion (iG-CLC) and Chemical-Looping with Oxygen Uncoupled (CLOU) for single metal Cu based OC with coal and the gas product distributions. The Cu compounds present during CuO reduction (CuO - Cu2O - Cu) were also investigated using X-ray diffraction (XRD) as a function of carbon conversion during the reaction. In this study, the reactivity of char with CuO was tested at two different ratios of CuO to coal char (phi = 26 and 8) at 850 degrees C and 950 degrees C in Ar and Ar + H2O. Char conversion rates were greater at higher reaction temperatures (950 degrees C vs 850 degrees C) for all rests. At a high ratio of oxygen carrier to char (phi = 26), char was fully converted by reacting with O-2 released from CuO at both 950 degrees C and 850 degrees C in Ar. CuO was reduced to Cu2O resulting from the thermal release of gaseous oxygen. At a low ratio of oxygen carrier to char under Ar + H2O (phi = 8), char was fully converted at both 950 degrees C and 850 degrees C by char combustion with O-2 from the OC and syngas CLC from char-H2O gasification. Additionally, CuO was reduced to metallic Cu. IG-CLC had a lower CO2 capture efficiency with CO in the product gas and a lower carbon conversion rate compared to CLOU. From a reactivity view point, CLOU is a promising process for coal chemical-looping combustion.
机译:化学循环燃烧(CLC)的主要优势在于可产生富含CO2的烟道气,这大大有利于CO2的捕集。许多研究人员对开发组合或混合氧载体(OC)以增强和改善单金属OC性能特别感兴趣。为了促进混合OC的发展,本研究首先关注影响原位气化化学循环燃烧(iG-CLC)和单金属无氧化学循环(CLOU)发生的化学反应的条件。铜基OC与煤和气体产物的分布。还使用X射线衍射(XRD)研究了反应过程中碳转化率的变化,研究了CuO还原过程中存在的Cu化合物(CuO-> Cu2O-> Cu)。在这项研究中,在850℃和950℃的Ar和Ar + H2O中,以两种不同的CuO与煤焦比(phi = 26和8)测试了焦炭与CuO的反应性。对于所有其余反应,在较高的反应温度(950℃与850℃)下,焦炭转化率更高。在氧气载体与炭的比率高(phi = 26)下,炭与Cu在950℃和850℃的Ar中从CuO释放出的O-2反应完全转化。由于气态氧的热释放,CuO还原为Cu2O。在Ar + H2O(phi = 8)下,氧气载体与炭的比率低的情况下,通过使用OC的O-2进行炭燃烧和使用char-H2O气化的合成气CLC,在950℃和850℃下将焦炭完全转化为焦炭。另外,CuO被还原为金属Cu。与CLOU相比,IG-CLC在产品气中的CO捕获效率较低,CO转化率较低。从反应性的角度来看,CLOU是用于煤化学回路燃烧的有前途的过程。

著录项

  • 来源
    《Fuel》 |2018年第1期|642-649|共8页
  • 作者单位

    NETL, DOE, 626 Cochrans Mill Rd, Pittsburgh, PA 15236 USA;

    NETL, DOE, 626 Cochrans Mill Rd, Pittsburgh, PA 15236 USA;

    NETL, DOE, 626 Cochrans Mill Rd, Pittsburgh, PA 15236 USA;

    NETL, DOE, 3610 Collins Ferry Rd, Morgantown, WV 26507 USA;

    NETL, DOE, 3610 Collins Ferry Rd, Morgantown, WV 26507 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CuO oxygen carrier; Coal; Chemical-looping; iG-CLC; CLOU; Reactivity;

    机译:CuO氧载体;煤;化学环;iG-CLC;CLOU;反应性;

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