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首页> 外文期刊>Environmental Progress & Sustainable Energy >Practicability study of YBaCo4O7+delta and substituted samples for chemical looping air separation process
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Practicability study of YBaCo4O7+delta and substituted samples for chemical looping air separation process

机译:YBaCo4O7 +δ和实用性研究用样品代替化学循环空气分离过程

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摘要

Chemical looping air separation, producing oxygen, is a non-traditional and energy efficient process. Oxygen carrier is core of the process. In the article, practicability of YBaCo4O7+delta and substituted samples reacting at temperature lower than 500 degrees C as oxygen carriers are studied for a chemical looping air separation process. First, the XRD analysis of synthesized samples was performed to discern the formation of 114 phase structure. The TG results obtained by temperature-programmed thermogravimetry show that YBaCo4O7+delta and substituted samples have high oxygen storage capacity. The DTG results obtained by isothermal and temperature-programmed thermogravimetry show that YBaCo4O7+delta and substituted samples have a faster oxygen desorption rate and a slower oxygen absorption rate. The isothermal TG results show that the conversion time decreases, and the amount of oxygen absorption/desorption first increases and then decreases, with increasing the operating temperature of oxygen absorption. With increasing the operating temperature of oxygen desorption, the conversion time decreases. The optimal temperature of oxygen absorption and desorption is 330 and 450 degrees C, respectively. Oxygen absorption and desorption processes occur in a highly reversible manner. (c) 2018 American Institute of Chemical Engineers Environ Prog, 38: 563-569, 2019
机译:化学循环空气分离,产生氧气,是一个非传统和节能的过程。在这篇文章中,YBaCo4O7 +δ的实用性在温度和替代样本的反应低于500摄氏度作为氧载体研究了化学循环空气分离的过程。样品进行辨别的形成114年阶段结构。程序升温热重量分析法表明YBaCo4O7 +δ和替代样本有很高的氧气的存储容量。通过等温和程序升温热重量分析法表明YBaCo4O7 +δ代替样品有一个更快的氧气解吸率和较慢的氧气吸收率。转换时间减少的数量第一增加和氧气吸收/解吸然后减少,增加了操作温度的氧气吸收。氧解吸的工作温度,转换时间减少。温度的氧气吸收和解吸分别是330和450摄氏度。吸收和解吸过程发生在一个高度可逆的方式。化学工程师学会环境掠夺,38:563-569, 2019

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