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首页> 外文期刊>Journal of CO2 Utilization >Carbon dioxide dissociation to carbon monoxide by non-thermal plasma
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Carbon dioxide dissociation to carbon monoxide by non-thermal plasma

机译:非热等离子体将二氧化碳分解为一氧化碳

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摘要

The decomposition of carbon dioxide was investigated in a non-thermal plasma dielectric barrier discharge reactor filled with glass balls. The CO2 conversion was maximum by using a sinusoidal excitation compared to pulsed excitation. The CO2 conversion and the CO selectivity are increased in the presence of helium, particularly with the AC power supply, but with a decrease in energy efficiency. The formation of solid materials composed of carbon but also of silica was highlighted for the first time, proving that carbon was incorporated into the silica network along with CO2 dissociation under non-thermal plasma conditions. The temperature control of the reactor wall has shown that the CO selectivity is favored by a low temperature wall, whereas the CO2 conversion remained constant, suggesting that the carbon balance default is due to the CO decomposition on the reactor wall. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在装有玻璃球的非热等离子体介电势垒放电反应器中研究了二氧化碳的分解。与脉冲激励相比,通过使用正弦激励可以最大程度地提高CO2转化率。在氦气的存在下,特别是使用交流电源时,CO2的转化率和CO的选择性增加,但能量效率却降低。首次强调了由碳和​​二氧化硅组成的固体材料的形成,证明了碳在非热等离子体条件下与CO2的分解一起被引入到二氧化硅网络中。反应器壁的温度控制表明,低温壁有利于CO的选择性,而CO2的转化率保持恒定,这表明碳平衡的缺省值是由于反应器壁上的CO分解所致。 (C)2015 Elsevier Ltd.保留所有权利。

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