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Economic and environmental impact assessments of a stand-alone napier grass-fired combined heat and power generation system in the southeastern US

机译:美国东南部独立的纳皮尔草燃烧式热电联产系统的经济和环境影响评估

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Purpose Napier grass, one of the high yield perennial energy crops can be grown on marginal lands with minimal inputs, but with increased soil carbon sequestration in the southeastern US. The sustainable use of Napier grass for bioenergy applications such as combined heat and power at low cost to mitigate greenhouse gas emissions needs to be investigated. Methods In this study, an integrated life cycle assessment and techno-economic analysis approach were used to estimate the energy use, environmental emissions, and minimum selling price (MSP) of electricity and thermal heat produced from Napier grass and compared with a coal or natural gas-fired combined heat and power generation plant. Results and discussion The use of Napier grass as a feedstock decreased the global warming potential (GWP) of the medium-sized CHP (i.e., 13 MWe) plant by 73-92 % compared to that of a coal and natural gas-fired CHP plants. Other environmental impacts were also reduced by 24-100 %. Eutrophication was the only impact comparable to that of the coal-fired CHP plant. The energy return on investment (EROI) was around 5:1. The minimum selling price of electricity generated from the CHP plant was US$0.05-0.4 MJ(e)(-1) (US$0.13-0.18 kWh(-1)) considering the credits for steam production, renewable electricity production tax credit (PTC), and carbon footprint from the fossil fuel-based electricity generation. Conclusions Although the pelleting of Napier grass for the CHP plant increased the cost and GHG emissions by 38% and 55% over the non-pelleted system, the pelleting process can ensure consistent quality and uninterrupted supply of the feedstock for heat and power generation.
机译:目的纳皮尔草是多年生高产能源作物之一,可以在边际土地上以最少的投入进行种植,但在美国东南部土壤碳固存增加。需要研究纳皮草在生物能源应用中的可持续利用,例如低成本的热电联产,以减轻温室气体的排放。方法在本研究中,使用了综合生命周期评估和技术经济分析方法来估计纳皮尔草产生的电能和热能的能源使用,环境排放和最低销售价格(MSP),并与煤或天然能源进行比较。燃气热电联产电厂。结果与讨论使用纳皮尔草作为原料,与燃煤和天然气热电联产电厂相比,中型热电联产(即13 MWe)电厂的全球变暖潜能(GWP)降低了73-92% 。其他环境影响也减少了24-100%。富营养化是唯一可与燃煤热电联产厂媲美的影响。能源投资回报率(EROI)约为5:1。考虑到蒸汽生产的抵免额,可再生电力生产的税收抵免额(PTC),热电联产电厂产生的最低电价为0.05-0.4兆焦耳(e)(-1)(0.13-0.18千瓦时(-1)美元)。以及基于化石燃料的发电产生的碳足迹。结论尽管制热电厂的纳皮尔草的制粒成本比非制粒系统高38%和55%,但制粒过程仍可确保供热和发电的原料质量稳定且供应不间断。

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