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Thermo-environomic optimisation strategy for fuel decarbonisation process design and analysis

机译:燃料脱碳工艺设计与分析的热环境优化策略

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摘要

To meet the CO_2 reduction targets and ensure sustainable energy supply, the development and deployment of cost-competitive innovative low-carbon energy technologies is essential. To design and evaluate the competitiveness of such complex integrated energy conversion systems, a systematic thermo-environomic optimisation strategy for the consistent modelling, comparison and optimisation of fuel decarbonisation process options is developed. The environmental benefit and the energetic and economic costs are assessed for several carbon capture process options. The performance is systematically compared and the trade-offs are assessed to support decision-making and identify optimal process configurations with regard to the polygeneration of H_2, electricity, heat and captured CO_2. The importance of process integration in the synthesis of efficient decarbonisation processes is revealed. It appears that different process options are in competition when a carbon tax is introduced. The choice of the optimal configuration is defined by the priorities given to the different thermo-environomic criteria.
机译:为了实现减少CO_2的目标并确保可持续的能源供应,必须开发和部署具有成本竞争力的创新性低碳能源技术。为了设计和评估这种复杂的集成式能量转换系统的竞争力,开发了一种系统的热环境优化策略,用于一致地建模,比较和优化燃料脱碳工艺选项。评估了几种碳捕集工艺选择的环境效益以及能源和经济成本。系统地比较了性能,并评估了折衷方案,以支持决策并确定关于H_2,电,热和捕获的CO_2的多联产的最佳工艺配置。揭示了在高效脱碳过程的合成中过程集成的重要性。引入碳税时,似乎有不同的工艺选择在竞争。最佳配置的选择由赋予不同热环境标准的优先级定义。

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