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Life Cycle Assessment of Waste-to-Energy: Energy Recovery from Wood Waste in Malaysia

机译:废物转化为能源的生命周期评估:马来西亚木材废物的能量回收

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This paper presents life cycle assessment for a biomass-fired power plant that utilizes recycled wood waste as fuel. Life cycle analysis of the wood WtE plant was done using SimaPro software using an Ecoinvent 3.4 database and ReCiPe Midpoint impact assessment method. The main concern was given to climate change factor through the evaluation of GHG emissions of the wood WtE plant. The results showed that 31.9 g CO2 eq of GHG emissions are emitted for every kWh of electricity generated by the wood WtE plant. The emissions value was 96.1% lower than the electricity generated by the national grid, which is 820 g CO2 eq of GHG emissions. In conclusion, WtE emerged as a sustainable approach in disposing of solid waste while reducing GHG emissions and increasing the share of renewable energy in energy mix simultaneously. A scenario was created to show the relationship between the percentage of carbon emissions reduction that is in line with Malaysia's commitment to reduce GHG emissions by up to 45% by 2030, hence making the utilization of biomass and solid waste a reliable source of renewable energy as targeted by SEDA Malaysia.
机译:本文介绍了利用再生木材废料作为燃料的生物质发电厂的生命周期评估。使用SimaPro软件,Ecoinvent 3.4数据库和ReCiPe Midpoint影响评估方法,对木材WtE植物进行生命周期分析。通过评估木材WtE工厂的温室气体排放,主要关注气候变化因素。结果表明,木材WtE电厂每发电1 kWh,就会排放31.9 g CO2当量的温室气体。排放值比国家电网发电的温室气体排放量820 g CO2当量低96.1%。总之,WtE成为一种可持续的方法,可以处理固体废物,同时减少温室气体排放并同时提高可再生能源在能源结构中的份额。创建了一个情景来显示碳排放减少百分比之间的关系,这与马来西亚承诺到2030年将温室气体排放减少多达45%的承诺相一致,因此使生物质和固体废物的利用成为可再生能源的可靠来源。由SEDA Malaysia定位。

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