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Techno-Economic Assessment of Bio-Energy with Carbon Capture and Storage Systems in a Typical Sugarcane Mill in Brazil

机译:在巴西典型甘蔗厂中碳捕获和储存系统的生物能量的技术经济评估

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摘要

For significantly reducing greenhouse gas emissions, those from electricity generation should be negative by the end of the century. In this sense, bio-energy with carbon capture and storage (BECCS) technology in sugarcane mills could be crucial. This paper presents a technical and economic assessment of BECCS systems in a typical Brazilian sugarcane mill, considering the adoption of advanced—although commercial—steam cogeneration systems. The technical results are based on computational simulations, considering CO2 capture both from fermentation (released during ethanol production) and due to biomass combustion. The post combustion capture technology based on amine was considered integrated to the mill and to the cogeneration system. A range of energy requirements and costs were taken from the literature, and different milling capacities and capturing rates were considered. Results show that CO2 capture from both flows is technically feasible. Capturing CO2 from fermentation is the alternative that should be prioritized as energy requirements for capturing from combustion are meaningful, with high impacts on surplus electricity. In the reference case, the cost of avoided CO2 emissions was estimated at 62 €/t CO2, and this can be reduced to 59 €/t CO2 in case of more efficient technologies, or even to 48 €/t CO2 in case of larger plants.
机译:为了大大减少温室气体排放,到电力的人应该在本世纪末消极。从这个意义上讲,甘蔗磨机中具有碳捕获和储存(BECCS)技术的生物能可能是至关重要的。本文介绍了典型的巴西甘蔗厂BECCS系统的技术和经济评估,考虑到采用先进的商用蒸汽热电联产系统。技术结果基于计算模拟,考虑到来自发酵(在乙醇生产过程中释放)和由于生物质燃烧而捕获CO 2。基于胺的后燃烧捕获技术被认为是将研磨机和热电联产系统集成。从文献中取出了一系列能量需求和成本,并考虑了不同的铣削能力和捕获率。结果表明,两种流动的二氧化碳捕获在技术上是可行的。捕获来自发酵的二氧化碳是应优先考虑作为燃烧捕获的能源要求的替代方案,这对剩余电力影响很高。在参考情况下,避免二氧化碳排放的成本估计为62欧元/ t二氧化碳,这可以减少到59€/ t的二氧化碳,以便在更有效的技术,甚至在更大的情况下为48欧元/ t二氧化碳植物。

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