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首页> 外文期刊>International Journal of Greenhouse Gas Control >Performance of Cu- and Fe-based oxygen carriers in a 500 W-th CLC unit for sour gas combustion with high H2S content
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Performance of Cu- and Fe-based oxygen carriers in a 500 W-th CLC unit for sour gas combustion with high H2S content

机译:第500 W CLC装置中基于铜和铁的氧气载体在高H2S含量的酸性气体燃烧中的性能

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Sour gas represents about 43% of the world's natural gas reserves. The sustainable use of this fossil fuel energy entails the application of CO2 Capture and Storage (CCS) technologies. The Chemical Looping Combustion (CLC) technology can join the exploitation of the energy potential of the sour gas and the CO2 capture process in a single step without the need of a sweetening pre-treatment unit. In this work, a total of 60 h of continuous operation with sour gas and H2S concentrations up to 15 vol% has been carried out in a 500 W-th CLC unit, from which 40 corresponded to a Cu-based oxygen carrier (Cu14 gamma Al) and 20 to a Fe-based material (Fe20 gamma Al). This is the first time that so high H2S concentrations are present in a fuel to be burnt in a CLC process. The Cu14 gamma Al oxygen carrier seems to be not recommendable for the combustion of sour gas because, although all the H2S is burnt to SO2, copper sulfides were formed at all combustion conditions. In contrast, the Fe20 gamma Al oxygen carrier presented an excellent behavior with no agglomeration problems and maintaining the reactivity of the fresh material. The sour gas (CH4, H-2 and H2S) was completely burnt, and neither SO2 was released in the AR nor iron sulfides were formed at usual CLC operating conditions. These tests demonstrated the possibility to use sour gas in a CLC process with 100% CO2 capture without any SO2 emissions to the atmosphere
机译:酸性气体约占全球天然气储量的43%。这种化石燃料能源的可持续利用需要二氧化碳捕集与封存(CCS)技术的应用。化学循环燃烧(CLC)技术可以在不需要增甜预处理单元的情况下,一步将酸性气体的能量潜力和CO2捕集过程结合在一起。在这项工作中,在第500 W CLC单元中使用酸性气体和H2S浓度最高为15 vol%进行了总共60 h的连续运行,其中40对应于Cu基氧载体(Cu14γ Al)和20制成铁基材料(Fe20γAl)。这是第一次在CLC过程中燃烧的燃料中存在如此高的H2S浓度。 Cu14γAl氧气载体似乎不建议用于酸性气体的燃烧,因为尽管所有的H2S都燃烧成SO2,但在所有燃烧条件下都会形成硫化铜。相比之下,Fe20γ-Al氧载体表现出优异的性能,没有结块问题,并保持了新鲜材料的反应性。在常规CLC操作条件下,酸性气体(CH4,H-2和H2S)被完全燃烧,并且既没有在SO中释放SO2也没有形成硫化铁。这些测试证明了在CLC工艺中使用酸性气体并捕获100%CO2且不会向大气排放任何SO2的可能性

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