Evaluating air-blown gasification for energy recovery from wastewater solids: Impact of biological treatment and point of generation on energy recovery

Ramey, Dotti F.; Lumley, Nicholas P. G.; Prieto, Ana L.; Porter, Jason M.; Cath, Tzahi Y.

Abstract

Decentralized water reclamation is emerging as a new paradigm that pairs local wastewater resources with local users; however, one of the challenges that must be addressed to advance its implementation is the low energy efficiency associated with small treatment plants and the lack of available small- scale energy recovery technologies. Gasification is a technology that could be used to convert wastewater solids to energy at small wastewater resource recovery facilities (WRRF). A model developed for air- blown gasification coupled with internal combustion engine for energy production demonstrated that gasification of wastewater solids could produce up to one third of the electrical demand at a small WRRF. Results based on samples collected from local wastewater treatment plants show that the energy embedded in wastewater solids does not vary substantially with treatment processes implemented or point of solids generation, and thus gasification is feasible for a wide variety of WRRF sizes and processes. Further modeling revealed that feedstocks generated by three different processes have similar power output for one metric ton per day of solids gasified (similar to 20 kW), but the net power produced by a 19 ML/d WRRF varies more substantially (110-140 kW) because the mass of solids produced vary with each treatment scheme. (C) 2014 Elsevier Ltd. All rights reserved.

Más información

Título según WOS: ID WOS:000218678800003 Not found in local WOS DB
Título de la Revista: SUSTAINABLE ENERGY TECHNOLOGIES AND ASSESSMENTS
Volumen: 9
Editorial: Elsevier
Fecha de publicación: 2015
Página de inicio: 22
Página final: 29
DOI:

10.1016/j.seta.2014.10.003

Notas: ISI