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Bio-Oil from Waste: A Comprehensive Analytical Study by Soft-lonization FTICR Mass Spectrometry

机译:来自废物的生物油:软孤独化FTICR质谱分析研究

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Organic solid wastes are potential feedstocks for the production of liquid biofuels, which could be suitable alternatives to fossil fuels for the transport and heating sectors and for industrial use as well. By hydrothermal liquefaction (HTL), the wet biomass is partially transformed into a water-immiscible oil-like organic matter called bio-oil. In this study, three different mass spectrornetric ionization techniques, namely, ESI, APCI, and APPI, in combination with a high-resolution FTICR mass analyzer were used in a comparative approach for the characterization of HTL bio-oil. In terms of the number of assigned molecular formulas, the three ionization techniques gave comparable results but with different distributions of the molecular classes. APPI, in particular, was demonstrated to be the ionization technique that best fits the actual elemental composition of the bio-oil sample. Our results, obtained by the integration of the three mass spectrornetric ionization techniques, offer the opportunity to detect and identify by FTICR mass spectrometry the heteroaromatic compounds in bio-oil. Both aromatic molecules and nitrogen-containing species raise concern for the subsequent upgrading process of the bio-oil into a diesel-like fuel.
机译:有机固体废物是生产液质生物燃料的潜在原料,这可能是用于运输和加热部门的化石燃料的合适替代品,也可以用于工业用途。通过水热液化(HT1),湿生物质部分地转化成称为生物油的水不混溶的油状有机物质。在该研究中,三种不同的质谱离子化技术,即ESI,APCI和APPI与高分辨率FTICR质量分析仪组合用于HTL生物油的表征的比较方法。就指定的分子式的数量而言,三种电离技术得到了可比的结果,而是具有不同分子类的分布。特别地,APPI被证明是最适合生物油样品的实际元素组成的电离技术。我们的结果,通过三种质量频谱电离技术的整合获得,提供了通过FTICR质谱法检测和识别的机会生物油中的杂芳族化合物。芳族分子和含氮物质均为随后将生物油的升级过程提高到柴油状燃料中。

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