Lifecycle Greenhouse Gas Analysis of an Anaerobic Codigestion Facility Processing Dairy Manure and Industrial Food Waste

Ebner, JH; Labatut, RA; Rankin, MJ; Pronto, JL; Gooch, CA; Williamson, AA; Trabold, TA

Abstract

Anaerobic codigestion (AcoD) can address food waste disposal and manure management issues while delivering clean, renewable energy. Quantifying greenhouse gas (GHG) emissions due to implementation of AcoD is important to achieve this goal. A lifecycle analysis was performed on the basis of data from an on-farm AcoD in New York, resulting in a 71% reduction in GHG, or net reduction of 37.5 kg CO(2)e/t influent relative to conventional treatment of manure and food waste. Displacement of grid electricity provided the largest reduction, followed by avoidance of alternative food waste disposal options and reduced impacts associated with storage of digestate vs undigested manure. These reductions offset digester emissions and the net increase in emissions associated with land application in the AcoD case relative to the reference case. Sensitivity analysis showed that using feedstock diverted from high impact disposal pathways, control of digester emissions, and managing digestate storage emissions were opportunities to improve the AcoD GHG benefits. Regional and parametrized emissions factors for the storage emissions and land application phases would reduce uncertainty.

Más información

Título según WOS: Lifecycle Greenhouse Gas Analysis of an Anaerobic Codigestion Facility Processing Dairy Manure and Industrial Food Waste
Título de la Revista: ENVIRONMENTAL SCIENCE & TECHNOLOGY
Volumen: 49
Número: 18
Editorial: AMER CHEMICAL SOC
Fecha de publicación: 2015
Página de inicio: 11199
Página final: 11208
Idioma: English
DOI:

10.1021/acs.est.5b01331

Notas: ISI