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Analysis of Carbon Policies in the Optimal Integration of Power Plants Involving Chemical Looping Combustion with Algal Cultivation Systems

机译:含有藻类栽培体系的化学环燃烧优化集成碳政策的碳政策分析

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Presently, reducing the CO, emissions produced by electric energy generation is one of the most relevant challenges. This paper aims to address such a problem by means of proposing an integrated system including (i) chemical looping combustion systems, (ii) power generation cycles, and (iii) algae-to-biodiesel subsystems to utilize carbon dioxide. The developed approach consists of a mixed-integer linear programming model that represents the global system at a macroscopic level and allows finding the optimal design for the integrated system that involves the selection of the optimum fuel and technology for power generation (for both the combustion system and the power cycle) as well as for biodiesel production in all stages of the algae cultivation system. In addition, the impact of different values for economic penalizations and compensations associated with carbon dioxide emissions on the optimum configuration is evaluated. The results show important economic benefits and reductions in emissions, especially when considering the carbon bonus. Furthermore, the optimal trade-offs between multiple objectives (economic and environmental) are discussed through different Pareto sets.
机译:目前,减少了由电能产生产生的CO,电力产生的排放是最相关的挑战之一。本文旨在通过提出包括(i)化学循环燃烧系统,(ii)发电循环和(iii)藻类到生物柴油子系统来解决这种问题,以利用二氧化碳的综合系统来解决这种问题。开发方法包括混合整数线性编程模型,该模型代表了宏观级别的全局系统,并允许找到涉及选择最佳燃料和用于发电技术的集成系统的最佳设计(对于燃烧系统和动力循环)以及在藻类栽培系统的所有阶段的生物柴油生产。此外,评估了不同价值的影响和与二氧化碳排放有关的最佳配置的补偿的影响。结果表明,在考虑碳奖励时,排放的重要经济效益和减少。此外,通过不同的帕累托集讨论了多目标(经济和环境)之间的最佳权衡。

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