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Techno-economic and environmental assessment of staged oxy-co-firing of biomass-derived syngas and natural gas

机译:生物质衍生合成气和天然气分阶段氧共用的技术经济和环境评估

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The utilisation of biomass is regarded as a promising technology as a negative CO2 resource and is widely under investigation. Although being a developing technology predominantly used as the axillary fuel, the interest in biomass gasification has increased since the last decade due to increased attention in sustainable bioenergy. Therefore, in this study, a novel process of biomass-derived syngas and natural gas oxy-co-firing is being investigated. Aspen Plus (R) is employed to develop the staged oxy-co-firing of biomass-based syngas and the natural gas cycle. The results revealed that the net power efficiencies are in the range of 42.6% and 45.5%. Furthermore, the economic assessment reveals that the LCOE increases with the increment of biomass flowrate with the highest cost of euro79.6/MWh for 7 kg/s biomass mass flow rate. The effect of different biomass prices on LCOE is also investigated. It proved that the implementation of biomass with the price of euro80/tdry results in the competitive LCOE to the state-of-the-art power cycles without carbon capture system (euro62.9/MWh). On the other hand, the environmental analysis reveals that in order to have a negative CO2 emission power cycle, the minimum biomass flowrate should be at 7 kg/s which results in specific negative CO2 emission and total life cycle of CO2 emission of 195.5 and 168.5 kg CO2/MWh, respectively.
机译:生物质的利用被认为是作为负二氧化碳资源的有希望的技术,并且广泛调查。虽然是主要用作腋燃料的开发技术,但由于可持续生物能源的关注增加,因此对生物量气化的兴趣增加了。因此,在本研究中,正在研究生物量衍生的合成气和天然气氧共同的新方法。 AspenPlus用于开发基于生物质的合成气和天然气循环的分级氧共用。结果表明,净功率效率为42.6%和45.5%。此外,经济评估揭示了LCoE随着生物质流量的增量而增加,最高成本为7kg / s生物质质量流量。还调查了不同生物量价格对LCOE的影响。事实证明,在没有碳捕获系统的情况下,将生物量的实施与欧元80欧元/ TDRY的价格导致竞争力的LCOE到最先进的电源周期(EURO62.9 / MWH)。另一方面,环境分析表明,为了具有负二氧化碳排放功率循环,最小生物质流量应为7kg / s,导致特定的负二氧化碳排放和195.5和168.5的二氧化碳排放的总生命周期。分别为kg二氧化碳/兆瓦。

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