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Global warming potential factors and warming payback time as climate indicators of forest biomass use

机译:全球变暖的潜在因素和变暖的投资回报时间作为森林生物质利用的气候指标

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摘要

A method is presented for estimating the global warming impact of forest biomass life cycles with respect to their functionally equivalent alternatives based on fossil fuels and non-renewable material sources. In the method, absolute global warming potentials (AGWP) of both the temporary carbon (C) debt of forest biomass stock and the C credit of the biomass use cycle displacing the fossil and non-renewable alternative are estimated as a function of the time frame of climate change mitigation. Dimensionless global warming potential (GWP) factors, GWPbio and GWPbiouse, are derived. As numerical examples, 1) bioenergy from boreal forest harvest residues to displace fossil fuels and 2) the use of wood for material substitution are considered. The GWP-based indicator leads to longer payback times, i.e. the time frame needed for the biomass option to be superior to its fossil-based alternative, than when just the cumulative balance of biogenic and fossil C stocks is considered. The warming payback timeincreases substantially with the residue diameter and low displacement factor (DF) of fossil C emissions. For the 35-cm stumps, the payback time appears to be more than 100 years in the climate conditions of Southern Finland when DF is lower than 0.5 ininstant use and lower than 0.6 in continuous stump use. Wood use for construction appears to be more beneficial because, in addition to displaced emissions due to by-product bioenergy and material substitution, a significant part of round wood is sequestered into wood products for a long period, and even a zero payback time would be attainable with reasonable DFs.
机译:提出了一种方法,相对于基于化石燃料和不可再生材料来源的功能等效替代品,估计森林生物质生命周期对全球变暖的影响。在该方法中,根据时间框架估算了森林生物量种群的临时碳(C)债务和替代化石和不可再生替代物的生物量使用周期的C信用的绝对全球变暖潜能(AGWP)减轻气候变化的影响。得出了无量纲的全球变暖潜能(GWP)因子GWPbio和GWPbiouse。作为数值示例,考虑了1)北方森林采伐残余物产生的生物能源来替代化石燃料,以及2)使用木材替代材料。基于全球升温潜能值的指标导致更长的投资回收期,即与仅考虑生物基因和化石碳储量的累积平衡相比,生物质能选择要优于其基于化石的替代品所需的时间框架。回暖时间随着化石C排放的残留物直径和低位移因子(DF)的增加而大大增加。对于35厘米的树桩,在DF即时使用时低于0.5而连续使用树桩时低于0.6的情况下,在芬兰南部的气候条件下,投资回收期似乎超过100年。建筑用木材似乎更为有益,因为除了由于副产品生物能源和材料替代产生的排放量外,很长一段时间以来,很大一部分原木都被封存为木制品,甚至零回收期也将是零成本。用合理的DF可以达到的。

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