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Impact of solvent type and condition on biomass liquefaction to produce heavy oils in high yield with low oxygen contents

机译:溶剂类型和条件对生物质液化的影响,以高产率和低氧含量生产重油

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摘要

Bio-oils produced by processes such as slow or fast pyrolysis typically contain high water and oxygen contents, which make them incompatible with conventional fuels. It is therefore necessary to upgrade the bio-oils to reduce their oxygen and water contents. The bio-oil upgrading process can consume up to 84 wt% of the initial bio-oil it is therefore important to develop other alternative approaches to generate high quality bio-oil. Thermolytic liquid solvent extraction (LSE) has been considered as a potential viable process due to the high liquid yield, better product quality and water free nature of the final products.ududIn this study, a novel LSE process of biomass liquefaction has been studied under various conditions of solvent type, temperature, and biomass species. Compared to currently available commercial pyrolysis approaches, this process using tetralin as a solvent is shown to be capable of generating high quality bio-oil with low oxygen contents (ca. 5.9%) at extremely high overall conversions of up to 87 and 92 (%) dry and ash free basis (DAF) from Scotch pine and miscanthus, respectively. Overall, the study has demonstrated the advantages of LSE for bio-oil generation from biomass, in terms of producing high conversions to liquid products that are compatible with existing petroleum heavy feedstocks.
机译:通过慢速或快速热解等过程产生的生物油通常含有较高的水和氧气含量,这使其与常规燃料不相容。因此,有必要升级生物油以减少其氧气和水含量。生物油提纯过程最多可消耗初始生物油的84 wt%,因此开发其他替代方法来产生高质量生物油非常重要。由于高产液量,更好的产品质量和最终产品的无水性质,热解液体溶剂萃取(LSE)被认为是潜在的可行方法。 ud ud在这项研究中,生物质液化的新型LSE工艺已经被开发出来。在各种溶剂类型,温度和生物质条件下进行了研究。与目前可用的商业热解方法相比,使用四氢萘作为溶剂的这一方法显示出能够以低的氧含量(约5.9%)产生高质量的生物油,总转化率高达87和92(%) )分别来自苏格兰松树和桔梗的干基和无灰基(DAF)。总体而言,该研究证明了LSE在从生物质生产生物油方面的优势,可以产生高转化率,使其与现有的石油重质原料兼容。

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