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Pd/TiO_2-WO_3 photocatalysts for hydrogen generation from water-methanol mixtures

机译:用于水-甲醇混合物制氢的Pd / TiO_2-WO_3光催化剂

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摘要

Solar light is inexhaustible, and therefore to take advantage of this energy it is necessary to develop materials capable of absorbing energy in the widest range of the solar spectra. Although TiO2 is one of the most studied photocatalysts, it only absorbs in the UV range. With the aim of increasing this light absorption towards the visible range, in this study Pd and WO3 were supported on bare TiO2 to determine their photocatalytic properties for generating hydrogen from water-methanol mixtures under UVA and solar irradiation. Several parameters for the hydrogen production, such as the amount of Pd and the catalyst as well as the influence of the water matrix were studied. These catalytic materials were characterized by means of inductively coupled plasma with an optical emission spectrophotometer, nitrogen adsorption-desorption isotherms, X-ray diffraction, high resolution -transmission electron microscopy, X-ray photoelectron spectroscopy and diffuse reflectance UV-Vis spectroscopy. The hydrogen evolution was monitored by online gas chromatography. The incorporation of a small amount of Pd (lower than 0.01 wt%) produced a large increase in the hydrogen production. Furthermore, adding WO3 on the bare titania also increased hydrogen generation. The highest quantum efficiency obtained in this work under solar radiation was 7.7% by the catalyst based on palladium supported on nanotubes of titanium dioxide and tungsten trioxide (Pd/NT-WO3) using an aqueous solution of methanol (50 vol%).
机译:太阳光是取之不尽用之不竭的,因此,要利用这种能量,必须开发出能够吸收最宽光谱范围内的能量的材料。尽管TiO2是研究最多的光催化剂之一,但它仅在紫外线范围内吸收。为了将光吸收增加到可见光范围,在这项研究中,将Pd和WO3负载在裸露的TiO2上,以确定它们在UVA和日光照射下从水-甲醇混合物中产生氢气的光催化性能。研究了制氢的几个参数,例如Pd和催化剂的量以及水基质的影响。这些催化材料的特征在于:用光发射分光光度计感应耦合等离子体,氮吸附-解吸等温线,X射线衍射,高分辨率-透射电子显微镜,X射线光电子能谱和漫反射紫外-可见光谱。通过在线气相色谱监测氢气的释放。掺入少量的Pd(低于0.01 wt%)可大大提高制氢量。此外,在裸露的二氧化钛上添加WO3也增加了氢气的产生。通过使用甲醇水溶液(50%(体积))负载在二氧化钛和三氧化钨(Pd / NT-WO3)的纳米管上的钯基催化剂,在这项工作中在太阳辐射下获得的最高量子效率为7.7%。

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