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Climate impact and energy efficiency from electricity generation through anaerobic digestion or direct combustion of short rotation coppice willow

机译:通过短厌食柳树的厌氧消化或直接燃烧发电产生的气候影响和能源效率

摘要

Short rotation coppice willow is an energy crop used in Sweden to produce electricity and heat in combined heat and power plants. Recent laboratory-scale experiments have shown that SRC willow can also be used for biogas production in anaerobic digestion processes.ududHere, life cycle assessment is used to compare the climate impact and energy efficiency of electricity and heat generated by these measures. All energy inputs and greenhouse gas emissions, including soil organic carbon fluxes were included in the life cycle assessment. The climate impact was determined using time-dependent life cycle assessment methodology.ududBoth systems showed a positive net energy balance, but the direct combustion system delivered ninefold more energy than the biogas system. Both systems had a cooling effect on the global mean surface temperature change. The cooling impact per hectare from the biogas system was ninefold higher due to the carbon returned to soil with the digestate.ududCompensating the lower energy production of the biogas system with external energy sources had a large impact on the result, effectively determining whether the biogas scenario had a net warming or cooling contribution to the global mean temperature change per kWh of electricity. In all cases, the contribution to global warming was lowered by the inclusion of willow in the energy system. The use of time-dependent climate impact methodology shows that extended use of short rotation coppice willow can contribute to counteract global warming.
机译:短轮小矮柳是一种能源作物,在瑞典用于在热电厂中发电和供热。最近的实验室规模实验表明,SRC柳树还可以用于厌氧消化过程中的沼气生产。 ud ud在此,使用生命周期评估来比较气候影响以及这些措施产生的电和热的能源效率。生命周期评估中包括了所有能量输入和温室气体排放,包括土壤有机碳通量。使用与时间相关的生命周期评估方法确定了气候影响。 ud ud这两个系统都显示出正的净能量平衡,但是直接燃烧系统提供的能量比沼气系统多九倍。两种系统都对整体平均表面温度变化有冷却作用。沼气系统每公顷产生的冷却影响要高出九倍,这是因为碳随消化物一起返回土壤。 ud ud用外部能源补偿沼气系统较低的能量产生对结果有很大影响,从而有效地确定了沼气情景对每千瓦时电力的全球平均温度变化有净变暖或变冷的影响。在所有情况下,将柳树纳入能源系统都降低了对全球变暖的贡献。时间依赖的气候影响方法的使用表明,短轮伐木柳的长期使用可有助于抵消全球变暖。

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