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Process design and evaluations for producing pyrolytic jet fuel

机译:生产热解射流的过程设计和评估

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In this study, process simulation and techno-economic analysis (TEA) were conducted to evaluate the production of renewable jet fuel (RJF) through the pyrolysis-to-RJF process. The process model was developed based on experimental results for the renewable jet fuel production process using the fast pyrolysis of rice husk, hydro-processing of pyrolytic oil, and hydro-cracking / isomerization of hydro-processed oil. The mass and energy flows were input into the TEA model, which was established based on local conditions in Taiwan. The study included three parts: (1) the mass, energy and carbon balances - the major product, RJF, gave an energy yield of 26.8%, a mass yield of 9%, and a carbon yield of 21%; (2) an economic analysis - the MJSP of RJF for the pyrolysis-to-RJF process was $3.21/L, based on the plant capacity of 600 tonnes per day; (3) a sensitivity analysis: the impacts of the feedstock cost, catalyst life, co-product selling price, catalyst cost, hydrogen cost, and plant capacity were discussed. This study demonstrated the economic potential of locally developing a pyrolysis-to-RJF process to produce RJF from solid biomass. (c) 2019 Society of Chemical Industry and John Wiley & Sons, Ltd
机译:在该研究中,进行了过程模拟和技术经济分析(茶),以通过热解 - RJF方法评估可再生射流燃料(RJF)的生产。使用稻壳快速热解,热解油的快速解析,基于可再生射流燃料生产过程的实验结果开发了该过程模型,热解油的水力加工,水加工油的水力裂解/异构化。质量和能量流入茶叶模型,该茶叶模型是基于台湾的当地条件建立的。该研究包括三个部分:(1)质量,能源和碳均衡 - 主要产品,RJF,能源产量为26.8%,质量产量为9%,碳产率为21%; (2)经济分析 - 热解 - RJF过程的RJF的MJSP为3.21 / L,基于每天600吨的植物容量; (3)探灵性分析:讨论了原料成本,催化剂寿命,共产值销售价格,催化剂成本,氢成本和植物能力的影响。本研究表明,局部开发热解 - RJF过程的经济潜力,从固体生物质产生RJF。 (c)2019年化学工业协会和约翰瓦里和儿子有限公司

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