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On-line product analysis of pine wood pyrolysis using synchrotron vacuum ultraviolet photoionization mass spectrometry

机译:同步加速器真空紫外光电离质谱法在线分析松木热解

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摘要

The pyrolysis process of pine wood, a promising biofuel feedstock, has been studied with tunable synchrotron vacuum ultraviolet photoionization mass spectrometry. The mass spectra at different photon energies and temperatures as well as time-dependent profiles of several selected species during pine wood pyrolysis process were measured. Based on the relative contents of three lignin subunits, the data indicate that pine wood is typical of softwood. As pyrolysis temperature increased from 300 to 700 C, some more details of pyrolysis chemistry were observed, including the decrease of oxygen content in high molecular weight species, the observation of high molecular weight products from cellulose chain and lignin polymer, and potential pyrolysis mechanisms for some key species. The formation of polycyclic aromatic hydrocarbons (PAHs) was also observed, as well as three series of pyrolysis products derived from PAHs with mass difference of 14 amu. The time-dependent profiles show that the earliest products are formed from lignin, followed by hemicellulose products, and then species from cellulose.
机译:松木的热解工艺是一种很有前途的生物燃料原料,已通过可调谐同步加速器真空紫外光电离质谱法进行了研究。在松木热解过程中,测量了不同光子能量和温度下的质谱,以及几种选定物种的时间依赖性曲线。根据三个木质素亚基的相对含量,数据表明松木是软木的典型代表。随着热解温度从300℃升高到700℃,观察到了更多的热解化学细节,包括高分子量物质中氧含量的降低,纤维素链和木质素聚合物的高分子量产物的观察以及潜在的热解机理。一些关键物种。还观察到多环芳烃(PAHs)的形成,以及三组衍生自PAHs的热解产物,质量差异为14 amu。随时间变化的曲线表明,最早的产物由木质素形成,然后是半纤维素产物,然后是纤维素。

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