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Cellulose Degradation by Infrared Free Electron Laser

机译:红外线自由电子激光器的纤维素降解

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摘要

We introduce a green approach to obtain glucose and low-molecular-weight saccharides directly from the cellulose aggregate by using near- and mid-infrared free electron lasers (IR-FELs). The IR-FEL is a synchrotron radiation based picosecond pulse laser where the oscillation wavelengths are tunable from 3 to 10 mu m. Electrospray ionization mass spectroscopy analysis showed that mass peaks of glucose (203 Da), cellobiose (365 Da), trisaccharide (527 Da), and tetrasaccharide (689 Da) were clearly detected as each sodium ion adduct in the soluble fraction after the powdered cellulose was serially irradiated by the IR-FEL tuned to 9.1 mu m (nu C-O) following 7.2 mu m (delta H-C-O) or 3.5 mu m (nu C-H). The production yields of these saccharides were higher than those obtained by the single irradiation at 9.1 mu m, as shown by the mass chromatogram analysis. The cleavage of the glucoside bonds was revealed by synchrotron radiation infrared microscopy analysis: the infrared absorption peak of the C-O bonds at 1100 cm(-1) was obviously reduced, and the bandwidth of the broad peak of O-H bonds at 3400 cm(-1) was shortened after those irradiations. The laser irradiation system suggested herein is based on the vibration mode selective multiphoton absorption reaction and requires no cosolvents and no high temperatures and pressures to exert the irradiation effect. One day of operation can process several hundred milligrams of the solid cellulose sample at the current laboratory scale.
机译:我们通过使用近红外自由电子激光器(IR-FEL)引入一种绿色方法来获得直接从纤维素聚集体直接从纤维素聚集体获得葡萄糖和低分子量糖。 IR-FEL是基于同步辐射的PICOSECOND脉冲激光,其中振荡波长可调谐3至10μm。电喷雾电离质谱分析显示,在粉末状纤维素之后,清楚地检测到葡萄糖(203Da),纤维二糖(365A),三糖(527Da),三次糖(527Da)和四糖(689Da)的质量峰在7.2μm(delta hco)或3.5 mu m(nu ch)之后,通过调节至9.1μm(nu co)的IR-FER连续辐照。这些糖类的生产产率高于通过9.1μm的单射线照射获得的生产产率,如质量色谱图分析所示。通过同步辐射红外显微镜分析揭示了葡萄糖苷键的切割:1100cm(-1)的CO键的红外吸收峰明显减少,并且OH键的宽峰的带宽在3400厘米(-1 )在那些照射后缩短了。在此建议的激光照射系统基于振动模式选择性多光子吸收反应,并且不需要脱溶剂,并且没有高温和压力以施加辐照效果。一天的操作可以在当前的实验室规模处理几百毫克的固体纤维素样品。

著录项

  • 来源
    《Energy & fuels》 |2020年第7期|9064-9068|共5页
  • 作者单位

    Tokyo Univ Sci IR FEL Res Ctr Res Inst Sci & Technol Org Res Adv Noda Chiba 2788510 Japan;

    Nihon Univ Inst Quantum Sci Lab Electron Beam Res & Applicat LEBRA Funabashi Chiba 2748501 Japan;

    Kyoto Univ Inst Adv Energy Uji Kyoto 6110011 Japan;

    Nihon Univ Inst Quantum Sci Lab Electron Beam Res & Applicat LEBRA Funabashi Chiba 2748501 Japan;

    Nihon Univ Inst Quantum Sci Lab Electron Beam Res & Applicat LEBRA Funabashi Chiba 2748501 Japan;

    Nihon Univ Inst Quantum Sci Lab Electron Beam Res & Applicat LEBRA Funabashi Chiba 2748501 Japan;

    Ritsumeikan Univ SR Ctr Res Org Sci & Technol Kusatsu Shiga 5258577 Japan;

    Ritsumeikan Univ SR Ctr Res Org Sci & Technol Kusatsu Shiga 5258577 Japan;

    Tokyo Univ Sci IR FEL Res Ctr Res Inst Sci & Technol Org Res Adv Noda Chiba 2788510 Japan;

    Nihon Univ Inst Quantum Sci Lab Electron Beam Res & Applicat LEBRA Funabashi Chiba 2748501 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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