Energy Technologies Area, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Berkeley, California 94720, United States.
Department of Civil and Environmental Engineering, University of California, Berkeley, Berkeley, California 94720, United States.
Environ Sci Technol. 2020 Aug 4;54(15):9200-9209. doi: 10.1021/acs.est.0c00364. Epub 2020 Jul 21.
Waste-to-energy systems can play an important role in diverting organic waste from landfills. However, real-world waste management can differ from idealized practices, and emissions driven by microbial communities and complex chemical processes are poorly understood. This study presents a comprehensive life-cycle assessment, using reported and measured data, of competing management alternatives for organic municipal solid waste including landfilling, composting, dry anaerobic digestion (AD) for the production of renewable natural gas (RNG), and dry AD with electricity generation. Landfilling is the most greenhouse gas (GHG)-intensive option, emitting nearly 400 kg CO per tonne of organic waste. Composting raw organics resulted in the lowest GHG emissions, at -41 kg CO per tonne of waste, while upgrading biogas to RNG after dry AD resulted in -36 to -2 kg CO per tonne. Monetizing the results based on social costs of carbon and other air pollutant emissions highlights the importance of ground-level NH emissions from composting nitrogen-rich organic waste or post-AD solids. However, better characterization of material-specific NH emissions from landfills and land-application of digestate is essential to fully understand the trade-offs between alternatives.
废物能源化系统可以在将有机废物从垃圾填埋场转移方面发挥重要作用。然而,现实世界的废物管理可能与理想化的实践不同,微生物群落和复杂化学过程驱动的排放仍未被充分了解。本研究使用报告和实测数据,对包括垃圾填埋、堆肥、用于生产可再生天然气 (RNG) 的干法厌氧消化 (AD) 以及带发电功能的干法 AD 在内的有机城市固体废物的竞争管理方案进行了全面的生命周期评估。垃圾填埋是温室气体排放强度最大的方案,每处理 1 吨有机废物会排放近 400 千克二氧化碳。而原始有机物的堆肥会产生最低的温室气体排放,为每处理 1 吨废物 -41 千克二氧化碳,而在干法 AD 后将沼气升级为 RNG 则会产生 -36 至 -2 千克二氧化碳/吨。根据碳的社会成本和其他空气污染物排放对结果进行货币化,突出了堆肥富氮有机废物或 AD 后固体物中地面 NH 排放的重要性。然而,要充分了解替代方案之间的权衡,还需要更好地描述垃圾填埋场和消化物土地应用中特定物质的 NH 排放情况。