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Adsorption and desorption characteristics of barium oxide at high temperature

机译:高温氧化钡的吸附与解吸特性

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Oxygen-selective adsorbents were prepared by two different methods, hydrothermal and sol-gel methods. The adsorption and desorption characteristics of these adsorbents were compared in terms of stability and sorption capacity. The sorbents prepared by the sol-gel method showed better cyclic stability and higher adsorption capacity than that prepared by the hydrothermal method because the sol-gel method entrapped well the barium peroxide.rnRelaxation time for adsorption ranged from 4 to 9 min depending on the preparation methods and that for desorption was 6 min regardless of the preparation methods. Breakthrough experiment with the sorbent prepared by the sol-gel method was performed. The adsorption breakthrough curves at 600 ℃ showed two plateau regions. One was at about 3.5%, and the other was 20%. The first plateau region is related to the sharp transition point of the oxygen adsorption isotherm. Though the relaxation time for adsorption was 6 min, the time required from the end of the first plateau to the beginning of the second plateau was just 2 min. During the desorption, a plateau region at 3.5% of oxygen concentration was observed regardless of the desorption flow rate.
机译:氧选择性吸附剂通过两种不同的方法制备,即水热法和溶胶-凝胶法。在稳定性和吸附能力方面比较了这些吸附剂的吸附和解吸特性。与水热法相比,溶胶-凝胶法制备的吸附剂表现出更好的循环稳定性和更高的吸附能力,因为溶胶-凝胶法能很好地包埋过氧化钡。吸附的弛豫时间为4-9分钟,具体取决于制备方法。不论制备方法如何,解吸时间均为6分钟。用溶胶-凝胶法制备的吸附剂进行了突破性实验。 600℃的吸附穿透曲线显示出两个平稳区域。一个是大约3.5%,另一个是20%。第一高原区域与氧吸附等温线的急剧转变点有关。尽管吸附的弛豫时间为6分钟,但从第一个平台结束到第二个平台开始所需的时间仅为2分钟。在解吸过程中,无论解吸流速如何,都观察到氧浓度为3.5%的平稳区域。

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