营业费用
工艺工程
营业成本
过程集成
盈利能力指数
环境科学
合成气
计算机科学
化石燃料
环境经济学
废物管理
业务
工程类
化学
经济
财务
催化作用
生物化学
作者
E. Portillo,Jesús Gándara-Loe,Tomás Ramı́rez Reina,Laura Pastor‐Pérez
标识
DOI:10.1016/j.scitotenv.2022.159394
摘要
Understanding the viability of the RWGS from a thermodynamic and techno-economic angle opens new horizons within CO2 conversion technologies. Unfortunately, profitability studies of this technology are scarce in literature and mainly focused on overall conversion and selectivity trends with tangential remarks on energy demands and process costs. To address this research gap, herein we present a comprehensive techno-economic study of the RWGS reaction when coupling with Fischer-Tropsch synthesis is envisaged to produced fuels and chemicals using CO2 as building block. We showcase a remarkable impact of operating conditions in the final syngas product and both CAPEX and OPEX. From a capital investment perspective, optimal situations involve RWGS unit running at low temperatures and high pressures as evidenced by our results. However, from the running cost angle, operating at 4 bar is the most favorable alternative within the studied scenarios. Our findings showcase that, no matter the selected temperature the RWGS unit should be preferentially run at intermediate pressures. Ultimately, our work maps out multiple operating scenarios in terms of energy demand and process cost serving as guideline to set optimal reaction conditions to unlock the potential of the RWGS for chemical CO2 recycling.
科研通智能强力驱动
Strongly Powered by AbleSci AI