COMPOST HEAT RECOVERY SYSTEMS: GLOBAL WARMING POTENTIAL IMPACT ESTIMATION AND COMPARISON THROUGH A LIFE CYCLE ASSESSMENT APPROACH

被引:3
|
作者
Malesani, Rachele [1 ]
Schievano, Andrea [2 ]
Di Maria, Francesco [3 ]
Sisani, Federico [3 ]
Pivato, Alberto [1 ]
机构
[1] Univ Padua, Dept Civil Architectural & Environm Engn, DICEA, Via Marzolo 9, I-35131 Padua, Italy
[2] Univ Milan, Dept Environm Sci & Policy, Via Celoria 2, I-20133 Milan, Italy
[3] Univ Perugia, Dept Engn, LAR, Via G Duranti 93, I-06125 Perugia, Italy
来源
DETRITUS | 2022年 / 19卷
关键词
Aerobic digestion; Biomass valorisation; Compost Heat Recovery Systems; Life Cycle Assessment; Renewable energy; Waste to energy; AEROBIC BIOCONVERSION;
D O I
10.31025/2611-4135/2022.15196
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Compost Heat Recovery Systems (CHRS) represent an innovative technology to provide domestic decentralized thermal energy, recovering the heat naturally produced during the aerobic biodegradation of waste biomass, coming from gardening/farming/forestry activities. CHRSs represent an alternative to centralized grid-connected power systems and are usually installed (combined with most traditional systems) to power underfloor heating systems (UHS) or domestic hot water systems (DHWS), lowering impacts and costs of thermal energy production. In this study, the Global Warming Potential (GWP) of CHRSs (measured as kg(CO2)(-eq)/kWh) was investigated using life cycle assessment (LCA) approach, considering the whole life cycle of an average plant. CHRSs showed a negative Net value of GWP impact, equal to -0.268 kg(CO2)(-eq)/kWh, as full balance of positive (0.062 kg(CO2)(-eq)/kWh) and negative (-0.329 kg(CO2)(-eq)/kWh) emissions. Negative emissions are related to avoided primary materials, replacement of natural gas used as traditional thermal energy production and replacement of mineral fertilizers. Considering only the positive emissions (0.062 kg(CO2)(-eq)/kWh), CHRSs emerged to be in line with Solar Hot-Water Systems (0.061 kg(CO2)(-eq)/kWh mean value) and slightly higher than Geothermal Systems (0.019 kg(CO2)(-eq)/kWh mean value). Along with GWP impact, other midpoint and endpoint impact indicators were assessed and all showed a negative Net value: Particulate Matter PM (-2.36E-5 kg(PM2)(.5-eq)/kWh), Fresh Water eutrophication FWE (-6.78E-06 kg(P-eq)/kWh), Fresh Water ecotoxicity FWec (-2.10E-01 CTUe/kWh), Human Toxicity cancer effect HTc (-5.68E-09 CTUh/kWh), Human Toxicity non-cancer effect HTnc (-3.51E-09 CTUh/kWh) and Human Health HH (-5.22E-08 DALY/kWh). These results demonstrate that CHRS is extremely convenient considering both environmental and human health consequences.
引用
收藏
页码:37 / 48
页数:12
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