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A life cycle assessment of biomass energy system

机译:生物质能系统的生命周期评估

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摘要

In recent years, biomass resources have been expected to produce energy including electricity with reducing CO{sub}2 emissions. We can evaluate that the net amount of CO{sub}2 emissions is equivalent to zero, if we could realize a sustainable plantation of the biomass resources in long term. In this paper, we investigate the bioenergy power plant in the developing country utilizing Life Cycle Assessment (LCA). Namely, we compare the following three systems; the system including an integrated gasification combined cycle (IGCC), the system including an internally circulating fluidized-bed boiler plant (ICFB) and the system including the coal power plant. Whole processes like establishment, fertilization, scattering pesticides, harvesting and transportation are usually taken into account in the biomass LCA. Further, in this paper, soil erosion and the change of biomass production by the rainfall are included. As results, in the case of ICCC system, the CO{sub}2 intensities (=the net amount of CO{sub}2 emissions [kg-CO{sub}2/electricity [kJ/h] are 38.3 [kg-CO{sub}2/GJ] in the highest and 15.3 [kg-CO{sub}2 /GJ] in the lowest case. In the case of ICFB system, they are 39.8 [kg-CO{sub}2/GJ] in the highest case and 37.0 [kg-CO{sub}2/GJ] in the lowest case. Their systems are superior to the coal system concerning the CO{sub}2 intensity.
机译:近年来,已经期望生物质资源产生包括减少电力的CO {sub} 2排放的能量。如果可以实现长期生物量资源的可持续种植,我们可以估算出CO {sub} 2的净排放量等于零。在本文中,我们使用生命周期评估(LCA)研究了发展中国家的生物能源发电厂。即,我们比较以下三个系统;该系统包括一个整体气化联合循环(IGCC),该系统包括一个内部循环流化床锅炉设备(ICFB),该系统包括燃煤电厂。生物质LCA通常会考虑整个过程,如定植,施肥,撒农药,收获和运输。此外,本文还包括土壤侵蚀和降雨对生物量生产的影响。结果,在ICCC系统中,CO {sub} 2强度(= CO {sub} 2的净排放量[kg-CO {sub} 2 /电[kJ / h])为38.3 [kg-CO {sub} 2 / GJ]最高,最低15.3 [kg-CO {sub} 2 / GJ];对于ICFB系统,它们在39.8 [kg-CO {sub} 2 / GJ]中最高的情况,最低的情况下为37.0 [kg-CO {sub} 2 / GJ],就CO {sub} 2强度而言,它们的系统优于煤炭系统。

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