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Upgrading of biomass sourced pyrolysis oil review: focus on co-pyrolysis and vapour upgrading during pyrolysis

机译:生物质生物质热解油评论的提升:聚焦热解期间的共热分解和蒸气升级

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摘要

Fast pyrolysis bio-oil (FPBO) from lignocellulosic feedstocks has been successfully used as a fuel for boilers in heating applications. However, the oil quality limits application as a transport fuel due in part to the high oxygen and resulting acid content of the pyrolysis oil which complicates storage, handling and use in traditional petroleum based systems. Reduction of the acid or oxygen content can be accomplished via a number of refinery approaches from catalytic upgrading of the liquid post production to co-pyrolysis. While past reviews have focused on catalytic upgrading of the post-production oil, this work compares studies in post-production catalytic processes, in situ and ex situ pyrolysis vapour upgrading and co-pyrolysis. The review includes studies of "natural" additives/catalysts, sourced from waste biomass, as the co-pyrolysis material or catalyst. Additive/catalysts sourced from waste biomass are potentially a more sustainable approach than commercial catalysts. In general, upgrading the liquid post pyrolysis can improve quality; however, the overall oil yield decreases and cost increases due to the additional upgrading step. Co-pyrolysis and/or in and ex situ vapour upgrading during pyrolysis potentially enhance FPBO quality while recovering high-value chemicals.
机译:来自木质纤维素原料的快速热解生物油(FPBO)已成功用作加热应用中锅炉的燃料。然而,油质将应用限制为运输燃料,其部分是高氧和产生的热解油的酸含量,使储存,处理和使用在传统的石油基础系统中。可以通过从液体后产生的催化升级到共热解的催化升级的许多炼油方法来完成酸或氧含量的减少。过去的评论虽然过去的评论侧重于产量后石油催化升级,但这项工作比较了产量后催化过程的研究,原位和原地热解蒸气升级和共热分解。该评价包括对来自废泡的“天然”添加剂/催化剂的研究,作为共热分解材料或催化剂。来自废生物质的添加剂/催化剂可能比商业催化剂更可持续。一般来说,升级液体后热解后会改善质量;然而,由于额外的升级步骤,整体油产量降低和成本增加。热解期间的共热分解和/或和出原位蒸气升级可能提高FPBO质量,同时回收高价值化学品。

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