Department of Chemical Engineering, Faculty of Engineering, Mahidol University, 25/25 Phuttamonthon 4 Road, Salaya, Phuttamonthon, Nakhon Pathom, 73170, Thailand.
Associate Fellow of Royal Society of Thailand (AFRST), Bangkok, 10300, Thailand.
Sci Rep. 2023 Mar 22;13(1):4705. doi: 10.1038/s41598-023-31723-4.
In this work, a series of innovative metal oxide impregnated waste-derived activated carbons (MO/AC) was synthesized and used to purify the simulated biohydrogen based on the concept of CO removal from the gas stream. Effects of metal oxide types (CaO, SrO and MgO) and contents of the best metal oxides on the morphology and the CO adsorption capacity from the biohydrogen were investigated. It was found that both metal oxide types and contents played an important role on the adsorbent textural property and surface chemistry as well as the CO adsorption capacity. Among all synthesized adsorbent, the MgO-impregnated AC with 12 wt.% MgO (12MgO/AC) exhibited the highest CO adsorption capacity of around 94.02 mg/g. With this successive adsorbent, the biohydrogen with the H purity higher than 90 mol% can be achieved from the gas stream with 50 mol% CO for the first 2 min of adsorption period in a fixed bed reactor. The mechanism of CO adsorption occurred via a combined process of the physisorption and chemisorption. Besides, the 12MgO/AC exhibited a high recyclability after several repetitive adsorption/desorption cycles.
在这项工作中,我们合成了一系列创新的负载金属氧化物的废活性炭(MO/AC),并基于从气流中去除 CO 的概念,将其用于净化模拟生物氢。研究了金属氧化物类型(CaO、SrO 和 MgO)和最佳金属氧化物含量对生物氢中 CO 吸附容量的形态和 CO 吸附容量的影响。结果发现,金属氧化物类型和含量对吸附剂的结构性质和表面化学性质以及 CO 吸附容量都有重要影响。在所合成的吸附剂中,负载 12wt.%MgO 的 AC(12MgO/AC)表现出最高的 CO 吸附容量,约为 94.02mg/g。使用这种连续吸附剂,在固定床反应器中,在吸附期的前 2 分钟内,可以从含有 50mol%CO 的气流中获得纯度高于 90mol%的 H 的生物氢。CO 的吸附通过物理吸附和化学吸附的联合过程发生。此外,12MgO/AC 在经过几次重复的吸附/解吸循环后表现出很高的可重复使用性。