首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Fractional condensation of pyrolysis vapors produced from Nordic feedstocks in cyclone pyrolysis
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Fractional condensation of pyrolysis vapors produced from Nordic feedstocks in cyclone pyrolysis

机译:旋风分离器中从北欧原料产生的热解蒸气的部分冷凝

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Pyrolysis oil is a complex mixture of different chemical compounds with a wide range of molecular weights and boiling points. Due to its complexity, an efficient fractionation of the oil may be a more promising approach of producing liquid fuels and chemicals than treating the whole oil. In this work a sampling system based on fractional condensation was attached to a cyclone pyrolysis pilot plant to enable separation of the produced pyrolysis vapors into five oil fractions. The sampling system was composed of cyclonic condensers and coalescing filters arranged in series. The objective was to characterize the oil fractions produced from three different Nordic feedstocks and suggest possible applications. The oil fractions were thoroughly characterized using several analytical techniques including water content; elemental composition; heating value, and chemical compound group analysis using solvent fractionation, quantitative C-13 NMR and H-1 NMR and GC x GC - TOFMS. The results show that the oil fractions significantly differ from each other both in chemical and physical properties. The first fractions and the fraction composed of aerosols were highly viscous and contained larger energy-rich compounds of mainly lignin-derived material. The middle fraction contained medium-size compounds with relatively high concentration of water, sugars, alcohols, hydrocarbonyls and acids and finally the last fraction contained smaller molecules such as water, aldehydes, ketones and acids. However, the properties of the respective fractions seem independent on the studied feedstock types, i.e. the respective fractions produced from different feedstock are rather similar. This promotes the possibility to vary the feedstock depending on availability while retaining the oil properties. Possible applications of the five fractions vary from oil for combustion and extraction of the pyrolytic lignin in the early fractions to extraction of sugars from the early and middle fractions, and extraction of acids and aldehydes in the later fractions. (C) 2017 Elsevier B.V. All rights reserved.
机译:热解油是具有不同分子量和沸点的不同化合物的复杂混合物。由于其复杂性,与处理全油相比,有效分馏油可能是生产液体燃料和化学品的更有前途的方法。在这项工作中,将基于分馏冷凝的采样系统连接到旋风式热解中试设备上,以将产生的热解蒸气分离为五个油馏分。采样系统由串联布置的旋风冷凝器和聚结过滤器组成。目的是表征由三种不同北欧原料生产的油馏分并提出可能的应用。使用包括水含量在内的多种分析技术对油馏分进行了全面表征。元素组成使用溶剂分馏,定量C-13 NMR和H-1 NMR以及GC x GC-TOFMS进行热值和化合物基团分析。结果表明,油馏分的化学和物理性质均存在显着差异。第一馏分和由气溶胶组成的馏分是高粘性的,并且包含较大的能量丰富的化合物,这些化合物主要来自木质素。中间部分包含中等浓度的化合物,具有较高浓度的水,糖,醇,烃基和酸,最后一部分包含较小的分子,例如水,醛,酮和酸。然而,各个馏分的性质似乎与所研究的原料类型无关,即,由不同原料生产的各个馏分相当相似。这提高了根据可获得性改变原料的可能性,同时保持了油的性能。五个馏分的可能应用范围从用于燃烧和提取早期馏分中的热解木质素的油到从早期馏分和中间馏分中提取糖,以及在后期馏分中提取酸和醛,不等。 (C)2017 Elsevier B.V.保留所有权利。

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