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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >TiO2/Lignin-Based Carbon Composited Photocatalysts for Enhanced Photocatalytic Conversion of Lignin to High Value Chemicals
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TiO2/Lignin-Based Carbon Composited Photocatalysts for Enhanced Photocatalytic Conversion of Lignin to High Value Chemicals

机译:基于TiO2 /木质素的碳复合光催化剂,用于增强木质素的光催化转化为高价值化学品

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Upgrading of biomass wastes to be value-added materials has been attempted to apply in various applications. One of the interesting challenges is the effort to utilize biomass wastes to modify metal oxides to form composited photocatalysts to enhance the photoabsorption on the resultant catalysts. In this work, lignin-based carbon was used to modify TiO2 and form the composite photo catalyst (TiO2/lignin). A sol-gel microwave technique was used to prepare these catalysts. The effects of lignin-based carbon modification were investigated on their morphology, crystal structure, surface structure, optical properties, and photocatalytic activity. Characterizations of the obtained catalysts, including field emission scanning electron microscopy, high-resolution transmission electron microscopy, X-ray diffraction, Fourier transform infrared spectroscopy, UV-visible diffuse reflectance spectroscopy, photoluminescence, N-2 adsorption analyzed by the Brunauer-Emmett-Teller method, and UV-vis spectroscopy, were carried out. Here, lignin not only was used as a natural carbon source for modification of TiO2 but also can be used as the biomass resource for green chemical production. Enhancement of photocatalytic performance of TiO2 by carbon from sintered lignin was investigated from conversion of lignin to high value chemicals. It was found that carbon from lignin improved UVA irradiation photocatalytic performance of the TiO2/lignin composite compared with the pristine TiO2. The TiO2/lignin composite with a TiO2 to lignin ratio of 1:0.5 presented good characteristics and showed the highest photocatalytic activity under UVA irradiation for 5 h. After identification by gas chromatography mass spectroscopy, high value chemicals, such as vanillin, were found after photocatalysis.
机译:已经尝试在各种应用中升级生物质废物作为增值材料。其中一个有趣的挑战是利用生物质废物来改变金属氧化物以形成复合光催化剂以增强所得催化剂上的光吸收的努力。在这项工作中,基于木质素的碳用于修饰TiO 2并形成复合光催化剂(TiO 2 /木质素)。使用溶胶 - 凝胶微波技术制备这些催化剂。研究了木质素基碳改性的效果,对其形态,晶体结构,表面结构,光学性能和光催化活性进行了研究。所得催化剂的特征,包括场发射扫描电子显微镜,高分辨率透射电子显微镜,X射线衍射,傅立叶变换红外光谱,UV可见漫射反射光谱,光致发光,由Brunauer-Emmett分析的吸附 - 进行柜员方法和UV-Vis光谱。这里,木质素不仅被用作用于改性TiO2的天然碳源,而且还可以用作绿色化学生产的生物质资源。研究从木质素转化为高价值化学品,研究了来自烧结木质素的碳的TiO2的光催化性能的增强。结果发现,与原始TiO2相比,来自木质素的碳改善了TiO2 /木质素复合材料的UVA辐射光催化性能。 TiO2 /木质素复合材料,TiO2至木质素比为1:0.5呈现良好的特性,并在UVA辐照下显示出最高的光催化活性5小时。在通过气相色谱识别后,在光催化后发现高价值化学品,如香草素。

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