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Life cycle assessment of agricultural residues utilization for biogas deployment

机译:农业剩余物用于沼气利用的生命周期评估

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摘要

Production of biogas from energy crops, agricultural residues, and municipal waste is becoming increasingly important in order to reduce greenhouse gas (GHG) emissions and enhance the security of global energy supply. The environmental performance of biogas production from agricultural residues and its utilization as an alternative to fossil natural gas was evaluated and quantified in this study using a life cycle assessment (LCA) approach. The ‘cradle-to-grave’ LCA of a biogas production system was conducted in accordance with the ISO 14044 standards, using GaBi 4 computer software and life cycle inventory (LCI) data from the ecoinvent v2.0 database using the CML2001 method. The functional unit was the anaerobic digestion of 1 ton of agricultural residue mixture to produce biogas with the digestate as a process co-product. The environmental profile was analysed in terms of abiotic depletion potential (ADP), acidification potential (AP), eutrophication potential (EP), global warming potential (GWP), ozone layer depletion potential (ODP), human toxicity potential (HTP), photochemical ozone creation (POCP), freshwater aquatic ecotoxicity potential (FAETP), and terrestrial ecotoxicity potential (TETP). Results showed that using biogas as a replacement for natural gas can directly help in offsetting the environmental impacts associated with the production and use of fossil natural gas – ADP (-44.93 kg Sb-Equiv.); AP (-16.99 kg SO2-Equiv.); EP (-1.93 kg Phosphate-Equiv.); GWP (-10329.4 kg CO2-Equiv.); ODP (-0.0007 kg R11-Equiv.); HTP (-2695.38 kg DCB-Equiv.); POCP (-1.44 kg Ethene-Equiv.); FAETP (-73.0778 kg DCB-Equiv.); and TETP (-55.58 kg DCB-Equiv.). Using biogas obtained through anaerobic digestion of agricultural crops such as corn stover and rice straw can be very beneficial when compared to fossil natural gas derived energy.
机译:为了减少温室气体(GHG)排放并增强全球能源供应的安全性,从能源作物,农业残留物和城市废物中生产沼气变得越来越重要。在这项研究中,使用生命周期评估(LCA)方法对农业残余物生产沼气及其替代化石天然气的利用的环境绩效进行了评估和量化。沼气生产系统的“从摇篮到坟墓” LCA是根据ISO 14044标准进行的,使用GaBi 4计算机软件和使用CML2001方法从ecoinvent v2.0数据库中获得的生命周期清单(LCI)数据进行。功能单元是1吨农业残留物混合物的厌氧消化,以沼气作为消化过程的副产品生产沼气。根据非生物消耗潜能(ADP),酸化潜能(AP),富营养化潜能(EP),全球变暖潜能(GWP),臭氧层消耗潜能(ODP),人体毒性潜能(HTP),光化学潜能分析了环境概况臭氧产生(POCP),淡水水生生态毒性潜能(FAETP)和陆地生态毒性潜能(TETP)。结果表明,用沼气代替天然气可以直接抵消与生产和使用化石天然气ADP(-44.93 kg Sb-Equiv。)相关的环境影响; AP(-16.99公斤二氧化硫当量); EP(-1.93公斤磷酸盐当量);全球升温潜能值(-10329.4千克二氧化碳当量); ODP(-0.0007千克R11-当量); HTP(-2695.38公斤DCB-等效); POCP(-1.44公斤乙烯当量); FAETP(-73.0778千克DCB-等效);和TETP(-55.58 kg DCB-Equiv。)。与化石天然气衍生能源相比,使用通过厌氧消化农作物(例如玉米秸秆和稻草)获得的沼气将非常有益。

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