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Technology assessment of plasma arc reforming for greenhouse gas mitigation: a simulation study applied to a coal to liquids process

机译:等离子弧重整技术用于温室气体减排的技术评估:对煤制油工艺的模拟研究

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Coal to liquids processes contribute significantly to coal rich countries like South Africa. However, their sustainability is affected by high greenhouse gas emissions and low carbon productivity. This paper explores the future possibility of applying plasma arc reforming to turn waste carbon dioxide into a useful chemical feedstock. This was achieved through a technology assessment that was performed by applying existing modelling techniques to an existing industrial liquid fuel from coal process. The approach was: 1) the selection of an appropriate plasma reforming technology, 2) evaluation of the potential impact on an industrial coal to liquids process and 3) assessment of commercial status of the chosen technology. Simulation results showed that carbon dioxide based plasma arc reformers are most compatible with coal to liquids processes. Plasma arc reforming of methane is capable of improving carbon efficiency of the coal to liquids process by up to 14% by carbon recovery from carbon dioxide. However, non-catalytic reforming of methane is not yet ready for commercial implementation, with a technology readiness level of 4. High electrical energy consumption and high technical risk in scale-up were identified as key barriers to technology commercialisation. The potential for success of plasma arc reformers would be enhanced by availability of low carbon electricity and characterisation of plasma reforming kinetics to minimise technical risk. This paper highlights the opportunity to derive value from intense, high purity waste carbon dioxide streams by the application of plasma arc reforming. It also identifies the areas technology developers should focus on to bring the technology to commercially readiness. (C) 2015 Elsevier Ltd. All rights reserved.
机译:煤制油工艺为南非等煤炭资源丰富的国家做出了重要贡献。但是,它们的可持续性受到高温室气体排放和低碳生产率的影响。本文探讨了应用等离子弧重整将废二氧化碳转化为有用的化学原料的未来可能性。这是通过一项技术评估来实现的,该评估通过将现有的建模技术应用于煤工艺中的现有工业液体燃料来进行。方法是:1)选择合适的等离子体重整技术; 2)评估对工业煤制油工艺的潜在影响; 3)评估所选技术的商业地位。仿真结果表明,基于二氧化碳的等离子弧重整器与煤制液工艺最兼容。通过从二氧化碳中回收碳,甲烷的等离子弧重整能够将煤制油工艺的碳效率提高多达14%。然而,甲烷的非催化重整尚未准备好用于商业实施,技术准备水平为4。高电能消耗和大规模技术放大风险被确定为技术商业化的主要障碍。等离子弧重整器成功的潜力将通过低碳电力的可用性和等离子重整动力学的特性来最大程度地降低技术风险来增强。本文重点介绍了通过等离子弧重整技术从高强度,高纯度废二氧化碳流中获取价值的机会。它还确定了技术开发人员应重点关注的领域,以使技术进入商业就绪状态。 (C)2015 Elsevier Ltd.保留所有权利。

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