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Nuclear Magnetic Resonance Characterization of Renewable Products from a Two-Step Ex-Situ Hydropyrolysis Vapor Upgrading Process

机译:来自两步的前静水置蒸气升级过程的可再生产物的核磁共振表征

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A novel two-step ex-situ hydropyrolysis vapor upgrading (HPVU) process can generate tailored oxygenated hydrocarbon products from lignocellulosic biomass by adjusting vapor upgrading temperature. Such products, containing varied oxygen contents (ranging from 2 to 17 wt%), are different from traditional petroleum hydrocarbons and conventional biomassderived pyrolysis oil. Elucidation of the comprehensive structural motif of these unconventional products is critical for development and deployment of the HPVU process. To this end, two-dimensional heteronuclear ~1H-~(13)CNMR techniques were employed to first provide single- and multiple-bond correlations between protons and carbons characteristic of different organic functional groups. The distribution of carbon functional groups was further determined by quantitative ~(13)CNMR spectroscopy with full relaxation and well-defined chemical shift regions obtained from diverse NMR methods. Phenols and ketones were identified as the main oxygenate species in these renewable products. At higher vapor upgrading temperatures, a decrease in oxygenate species and an increase in alkylation on aromatic rings were observed. Of particular importance, compared to pyrolysis oil, the amounts of thermally unstable oxygenate species, such as aldehyde, carboxylic acid, and carbohydrate, were found to be minimal, suggesting good thermal stability of these renewable hydrocarbon products.
机译:新型的两步前静水解析蒸气升级(HPVU)工艺可以通过调节蒸气升级温度来从木质纤维素生物量中生成定制的氧化烃产物。此类产品含有不同的氧含量(范围为2至17 wt%),与传统的石油烃和常规的生物剂量热解油不同。阐明这些非常规产品的综合结构图案对于HPVU过程的开发和部署至关重要。为此,采用了二维异核〜1H-〜(13)CNMR技术首先提供不同有机官能团的质子和碳特征之间的单键相关性。通过定量〜(13)CNMR光谱法进一步确定碳官能团的分布,并具有完全弛豫和从不同的NMR方法获得的明确定义的化学移位区域。在这些可再生产品中,苯酚和酮被确定为主要氧化物种。在较高的蒸气升级温度下,观察到氧合物种的降低和芳香环上烷基化的增加。与热解油相比,发现热不稳定的氧合物种的量,例如醛,羧酸和碳水化合物,发现很小,表明这些可再生碳氢化合物的热稳定性良好。

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