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Desorption of CO sub(2) from activated carbon fibre-phenolic resin composite by electrothermal effect

机译:电热效应从活性炭纤维-酚醛树脂复合物中解吸CO sub(2)

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摘要

CO sub(2) capture by electrothermal swing adsorption is considered superior over conventional adsorption approaches: temperature swing adsorption and pressure swing adsorption. In this work, the effects of electricity, preheating and flow rate were studied. An increase in energy input by electricity has been found able to improve desorption performance more significantly than an increase in current level. However, higher current level is recommended because it can minimise energy loss while passing electricity. Higher flow rate can also be beneficial due to the improved desorption rate and reduced desorption time. However, there is a drop in CO sub(2) concentration in the effluent gas. When desorption takes place at a high current level, preheating is not required as it extends desorption duration with no obvious improvement in desorption rate. CO sub(2) capture by electrothermal swing adsorption has also been tested with different concentrations of CO sub(2). It is found that electrothermal swing adsorption can be more energy efficient while dealing with higher concentration CO sub(2).
机译:通过电热摆动吸附捕获CO sub(2)被认为优于常规吸附方法:温度摆动吸附和压力摆动吸附。在这项工作中,研究了电,预热和流量的影响。已经发现,通过增加电能输入可以比电流水平的改善更显着地改善解吸性能。但是,建议使用更高的电流水平,因为它可以使通电时的能量损失降至最低。由于提高的解吸速率和减少的解吸时间,较高的流速也可能是有益的。但是,废气中的CO sub(2)浓度有所下降。当高电流下发生解吸时,不需要预热,因为预热会延长解吸时间,并且解吸速率没有明显改善。还通过不同浓度的CO sub(2)测试了通过电热摆动吸附捕获的CO sub(2)。结果发现,电热摆动吸附可以在处理更高浓度的CO sub(2)时更节能。

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