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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >New insights into intermediate-temperature solid oxide fuel cells with oxygen-ion conducting electrolyte act as a catalyst for NO decomposition
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New insights into intermediate-temperature solid oxide fuel cells with oxygen-ion conducting electrolyte act as a catalyst for NO decomposition

机译:具有氧离子导电电解质的中温固体氧化物燃料电池的新见解可作为NO分解的催化剂

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摘要

The environmental problems and supply of clean and economical energy is grand global challenges. Direct decomposition of nitrogen oxides (NO_x) is the most ideal and effective approach for NO_x removal by catalysis, which has the great potential to alleviate the air pollution. On the other hand, solid oxide fuel cells (SOFCs) are one of the cleanest, most efficient chemical-to-electrical energy conversion systems. Here we reported a new electrochemical system to combine the traditional catalyst for direct decomposition of NO_x with an electric generation process through a SOFC. By nano-sized La_(0.4)Ba_(0.6)Mn_(0.8)Mg_(0.2)O_(3-δ) (LBMM), an effective catalyst widely used for NO_X decomposition, adopting an anode-support SOFC configuration, which consisted with the conventional NiO-samarium doped ceria (SDC) anode, and thin film SDC electrolyte, we demonstrated that complete decomposition of NO_x and a peak power density of 25 mW cm~(-2) at 600 °C when Ar containing 5% NO and 5% O2 was fed to the cathode and 10% H2 was used the fuel. The effect of the ratio between NO and O2 was found to be critical for the NO conversion and SOFC performance. The dependence of temperature and gas composition on NO conversion was also investigated.
机译:环境问题和清洁经济能源的供应是全球面临的巨大挑战。氮氧化物(NO_x)的直接分解是通过催化去除NO_x的最理想,最有效的方法,具有减轻空气污染的巨大潜力。另一方面,固体氧化物燃料电池(SOFC)是最清洁,最有效的化学-电能转换系统之一。在这里,我们报道了一种新的电化学系统,该系统将用于NO_x直接分解的传统催化剂与通过SOFC的发电过程结合在一起。纳米级La_(0.4)Ba_(0.6)Mn_(0.8)Mg_(0.2)O_(3-δ)(LBMM)是一种广泛用于NO_X分解的有效催化剂,采用阳极支撑SOFC构型,传统的NiO-sa掺杂二氧化铈(SDC)阳极和薄膜SDC电解质,我们证明了当Ar含5%NO和5%Ar时,在600°C时,NO_x完全分解,峰值功率密度为25 mW cm〜(-2)。将5%O2送入阴极,并使用10%H2作为燃料。发现NO与O 2之比的影响对于NO转化率和SOFC性能至关重要。还研究了温度和气体组成对NO转化率的依赖性。

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