Özcan Orhan, Akin Ayşe Nilgün
Department of Chemical Engineering, Faculty of Engineering, Kocaeli University, Kocaeli, Turkey.
Turk J Chem. 2022 Mar 3;46(4):1069-1080. doi: 10.55730/1300-0527.3415. eCollection 2022.
Herein, a performance analysis of La-doped copper-based catalysts (CuO/ZrO/La-AlO) in methanol steam reforming (MSR) was conducted and compared with a commercial low temperature water-gas shift catalyst (HiFUEL W220) to produce H with low CO selectivity. The physicochemical properties of as-obtained catalysts were characterized by N adsorption, XRD, and ICP-OES. Effect of calcination temperature (750 °C and 1000 °C) on the properties of mixed oxide support (La-AlO) were discussed based on catalytic activity. The optimum conditions of HO/CHOH ratio (1.0-3.0), space-time ratio () (40-120 kg s mol), and reaction temperature (180-310 °C) were evaluated by a parametric study using the commercial catalyst (HF220). Additionally, thermodynamic equilibrium calculations of experimentally identified components by using Aspen HYSYS process simulation software were also performed to analyze MSR process. The results were indicated that the calcination temperature significantly affected the structural properties and the activity with respect to CO selectivity. An increasing trend in CO selectivity for catalysts with supports calcined at 750 °C and a decreasing trend for catalysts with supports calcined at 1000 °C were observed. Hence, CZ30LA and CZ30LA catalysts were selected to attain low CO selectivity and comparable activity when compared to other catalysts and the simulated thermodynamic calculation results.
在此,对镧掺杂铜基催化剂(CuO/ZrO/La - AlO)在甲醇蒸汽重整(MSR)中的性能进行了分析,并与商用低温水煤气变换催化剂(HiFUEL W220)进行比较,以生产具有低CO选择性的氢气。通过N吸附、XRD和ICP - OES对所得催化剂的物理化学性质进行了表征。基于催化活性讨论了煅烧温度(750℃和1000℃)对混合氧化物载体(La - AlO)性能的影响。使用商用催化剂(HF220)通过参数研究评估了H₂O/CH₃OH比(1.0 - 3.0)、时空比()(40 - 120 kg s⁻¹ mol⁻¹)和反应温度(180 - 310℃)的最佳条件。此外,还使用Aspen HYSYS过程模拟软件对实验确定的组分进行了热力学平衡计算,以分析MSR过程。结果表明,煅烧温度对结构性能和CO选择性方面的活性有显著影响。观察到煅烧温度为750℃的载体催化剂的CO选择性呈上升趋势,而煅烧温度为1000℃的载体催化剂的CO选择性呈下降趋势。因此,与其他催化剂和模拟热力学计算结果相比,选择CZ30LA和CZ30LA催化剂以实现低CO选择性和相当的活性。