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Integration of Fossil Fuel-based with Bio-based Industries: The Use of Waste Streams and Biomass to Produce Syngas and Added Value Products

机译:基于生物的行业的化石燃料的整合:使用废物流和生物质生产合成气并增加价值产品

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This study proposes various routes to integrate a fossil fuel-based system, such as an oil-refinery, with bio-refining processes aiming to enhance industry productivity. This is particularly relevant due to the lack of adaptation of existing refineries to diminishing oil supply. Moreover, the integration of oil and bio-refineries has a massively positive effect on the reduction of CO_2 emissions. The proposed integration structure connects the industries through routes such as on-site power generation, syngas production using refinery residue and bio-oil and other waste streams, utility systems, and utilising chemicals produced via biomass sources into the petrochemical and transportation industry as valuable products. Focusing on the latter route of integration, the upgrade of Acetone, Butanol and Ethanol (produced by sugar fermentation via bacterial species) has been chosen as a pathway to produce valuable products that could be used in both the chemical sector and the transportation industry. The reaction system consists of the self-condensation and cross condensation of alcohols and acetone using active metals on their corresponding basic supports as catalysts at high temperatures and pressure in a batch reactor. The proposed approach has resulted in the production of long-chain hydrocarbons suitable for the chemicals or transportation industry.
机译:本研究提出了各种路线,以将化石燃料的系统(如炼油厂)集成,旨在提高行业生产率的生物精炼过程。这尤其相关,因为缺乏现有的炼油厂对递减石油供应的适应性。此外,石油和生物炼油厂的整合对CO_2排放的减少具有大量的积极作用。拟议的集成结构通过现场发电,使用炼油厂残留和生物油和其他废物流,公用事业系统,利用通过生物质来源产生的化学品作为有价值的产品。专注于后一整合途径,已选择丙酮,丁醇和乙醇的升级(通过细菌物种生产)作为一种途径,以生产可用于化学行业和运输业的宝贵产品。反应系统包括在其相应的基本碱基上使用活性金属作为催化剂在批量反应器中的高温和压力下的催化剂上使用活性金属来组成醇和丙酮的交叉缩合。所提出的方法导致生产适合化学品或运输业的长链碳氢化合物。

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