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Comparison of fast pyrolysis bio-oils from straw and miscanthus

机译:秸秆和桔属植物快速热解生物油的比较

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Fast pyrolysis is one of the most promising conversion processes for producing advanced biofuels, which can be used as substitute for fuel oils or chemicals. This article investigates the fast pyrolysis of two common types of biomass: a mixture of wheat/barley straw as typical agriculture residue and miscanthus as fast-growing energy plant. All experiments were performed using an ablative hot surface reactor. It was observed that the product yields using wheat/barley straw and miscanthus are almost similar on mass basis. Noteworthy were the higher share on reaction water and a lower content of organics in the wheat/barley straw based pyrolysis bio-oil. As a result of the high total water content (about 48 wt%), the bio-oil separated into two phases: an upper aqueous phase and a bottom tarry phase. The amount of water-soluble organic compounds contained in the aqueous phase of bio-oil derived from miscanthus pyrolysis can be attributed to the higher amount of hemicellulose present in miscanthus compared to straw. The phase separation by decantation is not an efficient method to reduce the water content and total acid number because a part of valuable components will be lost to the aqueous phase. Significance The production of bio-oils through fast pyrolysis technologies (mainly small scale and fluidized bed reactor systems) is widely described in literature. Therefore, the main objective of this work lies in the comparison of yield and quality of bio-oils from different biomasses (straw as example for agricultural residues and miscanthus representing dedicated energy crops) in the same ablative hot surface reactor with a capacity of about 5 kg/hr.
机译:快速热解是生产高级生物燃料的最有希望的转化方法之一,可以用作燃料油或化学品的替代品。本文研究了两种常见类型的生物质的快速热解:小麦/大麦秸秆的混合物作为典型的农业残留物,而桔梗作为快速生长的能源植物。所有实验均使用烧蚀热表面反应器进行。观察到,使用小麦/大麦秸秆和桔梗的产品产量在质量基础上几乎相似。值得注意的是,基于小麦/大麦秸秆的热解生物油中反应水的比例较高,有机物含量较低。由于高的总水含量(约48 wt%),生物油分为两相:上部水相和底部焦油相。源自芒草热解的生物油水相中所含的水溶性有机化合物的量可归因于芒草中存在的半纤维素比秸秆高。通过倾析进行的相分离不是减少水含量和总酸值的有效方法,因为一部分有价值的组分将损失到水相中。重要性在文献中广泛描述了通过快速热解技术(主要是小规模流化床反应器系统)生产生物油的方法。因此,这项工作的主要目的在于在一个容量约为5的烧蚀热表面反应器中比较不同生物量(以稻草为代表的能源作物的农业残留物和芒草)的生物油的产量和质量。公斤/小时

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