论文标题
DECO2开源能源系统脱碳计划软件,包括负排放技术
DECO2 An Open-source Energy System Decarbonisation Planning Software Including Negative Emissions Technologies
论文作者
论文摘要
格拉斯哥气候条约强调,到2050年,二氧化碳捕获和存储(CCS)和负排放技术(CCS)和负排放技术(NETS)至关重要。多年来,已经开发了几种能源计划模型来解决碳管理的时间方面。但是,有限的作品已在单个工厂规模上纳入了CCS和网,以进行自下而上的能源计划,这在这项工作中被认为。新颖的配方是在开源能源系统软件中实现的,该软件已在这项工作中开发,用于最佳脱碳计划。脱碳选项优化(DECO2)软件认为具有上部结构模型的多项式能源计划,并在Python中开发了Microsoft Excel中的集成用户界面。该软件应用程序通过两种方案在缓解技术的可用性方面有所不同。结果表明,现有煤炭和天然气发电厂中低碳替代品的燃料取代潜力。此外,一旦网已经成熟并且可以用于商业部署,它们的部署对于协助二氧化碳的删除至关重要。总体而言,新开发的开源软件证明了确定缓解技术最佳部署在满足每个时期气候变化目标时的重要性。
The deployment of CO2 capture and storage (CCS) and negative emissions technologies (NETs) are crucial to meet the net-zero target by year 2050, as emphasised by the Glasgow Climate Pact. Over the years, several energy planning models have been developed to address the temporal aspects of carbon management. However, limited works have incorporated CCS and NETs for bottom-up energy planning at the individual plant scale, which is considered in this work. The novel formulation is implemented in an open-source energy system software that has been developed in this work for optimal decarbonisation planning. The DECarbonation Options Optimisation (DECO2) software considers multiperiod energy planning with a superstructural model and was developed in Python with an integrated user interface in Microsoft Excel. The software application is demonstrated with two scenarios that differ in terms of the availabilities of mitigation technologies. Results demonstrated the potential of fuel substitutions for low-carbon alternatives in existing coal and natural gas power plants. Additionally, once NETs are mature and are available for commercial deployment, their deployment is crucial in aiding CO2 removal in minimal investment costs scenarios. Overall, the newly developed open-source software demonstrates the importance of determining the optimal deployment of mitigation technologies in meeting climate change targets for each period.