Li Guosheng, Hu Dehong, Xia Guanguang, White J M, Zhang Conrad
Institute for Interfacial Catalysis, Pacific Northwest National Laboratory, Richland, Washington 99352, USA.
Rev Sci Instrum. 2008 Jul;79(7):074101. doi: 10.1063/1.2949389.
A prototype high throughput operando (HTO) reactor designed and built for catalyst screening and characterization combines Fourier transform infrared (FT-IR) imaging and Raman spectroscopy in operando conditions. Using a focal plane array detector (HgCdTe focal plane array, 128x128 pixels, and 1610 Hz frame rate) for the FT-IR imaging system, the catalyst activity and selectivity of all parallel reaction channels can be simultaneously followed. Each image data set possesses 16 384 IR spectra with a spectral range of 800-4000 cm(-1) and with an 8 cm(-1) resolution. Depending on the signal-to-noise ratio, 2-20 s are needed to generate a full image of all reaction channels for a data set. Results on reactant conversion and product selectivity are obtained from FT-IR spectral analysis. Six novel Raman probes, one for each reaction channel, were specially designed and house built at Pacific Northwest National Laboratory, to simultaneously collect Raman spectra of the catalysts and possible reaction intermediates on the catalyst surface under operando conditions. As a model system, methanol partial oxidation reaction on silica-supported molybdenum oxide (MoO3SiO2) catalysts has been studied under different reaction conditions to demonstrate the performance of the HTO reactor.
为催化剂筛选和表征而设计和构建的一种原型高通量原位(HTO)反应器,在原位条件下结合了傅里叶变换红外(FT-IR)成像和拉曼光谱。使用用于FT-IR成像系统的焦平面阵列探测器(HgCdTe焦平面阵列,128×128像素,帧率1610Hz),可以同时跟踪所有平行反应通道的催化剂活性和选择性。每个图像数据集拥有16384个红外光谱,光谱范围为800 - 4000cm⁻¹,分辨率为8cm⁻¹。根据信噪比,生成一个数据集的所有反应通道的完整图像需要2 - 20秒。反应物转化率和产物选择性的结果通过FT-IR光谱分析获得。在太平洋西北国家实验室专门设计并自行构建了六个新颖的拉曼探头,每个反应通道一个,用于在原位条件下同时收集催化剂以及催化剂表面可能的反应中间体的拉曼光谱。作为一个模型系统,已经在不同反应条件下研究了二氧化硅负载的氧化钼(MoO₃/SiO₂)催化剂上的甲醇部分氧化反应,以展示HTO反应器的性能。