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In situ UV-VIS spectrophotometry within the second time scale as a research tool for solid-state catalyst and liquid-phase reactions at high temperatures: Its application to the formation of HMF from glucose and cellulose

机译:在原位UV-Vis分光光度法中作为高温下固态催化剂和液相反应的研究工具:其在葡萄糖和纤维素中形成HMF

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We successfully developed an in situ UV-VIS absorption spectroscopic flow reactor system for investigation of solid-liquid two-phase reactions within the second time scale at high temperatures (solid-state-catalyst mediated hydrothermal flow reactor system, SSCM-HF). The SSCM-HF consisted of a water reservoir, high-pressure pump, sample injector, high-temperature reactor involving solid-state catalysts, a cooling bath, a pressure regulator, and a temperature controller. The high-temperature reactor contains a reactor column having micrometer sized solid particles, and is connected to an optical window using transparent fused-silica capillary tubing. Liquid samples are exposed for the second time scale, which can be adjusted by changing the flow rate. In situ monitoring of reactions using SSCM-HF was performed at 200-1114 nm within 7.36-117.79 s at temperatures up to 300 degrees C and pressures up to 30 MPa. We demonstrated the usefulness of SSCM-HF by inspecting 5'-hydroxymethylfurfural (HMF) formation from glucose and cellulose. The influence of metal oxides, such as WO3 and Nb2O5, was investigated using both a conventional batch reactor and the SSCM-HF. The simple metal oxides showed catalytic activities for the dehydration of glucose to HMF. The SSCM-HF demonstrated in situ detection of a small amount of HMF in the presence of WO3 deposited solid particles within 29.4 s at 200 degrees C. This study demonstrates the application of the SSCM-HF as a new research tool for screening and investigating solid-state catalysts in detail in liquid-phase reactions at high temperatures. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们成功开发了一种原位UV-Vis吸收光谱流动反应器系统,用于在高温下的第二次刻度内研究固 - 液两相反应(固态 - 催化剂介导的热热流反应器系统,SSCM-HF)。 SSCM-HF由水库,高压泵,样品注射器,高温反应器组成,涉及固态催化剂,冷却浴,压力调节器和温度控制器。高温反应器含有具有千分尺寸固体颗粒的反应器柱,并且使用透明熔融二氧化硅毛细管连接到光学窗口。液体样品暴露于第二次刻度,这可以通过改变流速来调节。原位监测使用SSCM-HF的反应在7.36-117.79秒内在高达300℃的温度范围内进行,并且压力高达30MPa。我们通过检查葡萄糖和纤维素的5'-羟甲基糠醛(HMF)形成,证明了SSCM-HF的有用性。使用常规的批量反应器和SSCM-HF研究金属氧化物(例如WO3和NB2O5)的影响。简单的金属氧化物显示出催化活性的葡萄糖脱水至HMF。 SSCM-HF在29.4秒内在29.4 s内的存在下,在29.4 s的情况下,本研究证明了在29.4秒内的少量HMF的检测。该研究证明了SSCM-HF作为用于筛选和研究固体的新的研究工具 - 在高温下液相反应详细催化催化剂。 (c)2016年Elsevier B.v.保留所有权利。

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