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Life Cycle Assessment and Net Energy Analysis of an Integrated Hydrothermal Liquefaction-Anaerobic Digestion of Single and Mixed Beverage Waste and Sewage Sludge.
- Source :
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Chemosphere . Sep2024, Vol. 363, pN.PAG-N.PAG. 1p. - Publication Year :
- 2024
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Abstract
- The conversion of biomass to bioenergy is one of the approaches to creating a sustainable society. In this study, the life cycle assessment and the net energy analysis of converting mixed sewage sludge and beverage waste into bioenergy via a combined hydrothermal liquefaction-anaerobic digestion (HTL-AD) system was carried out. Primary sludge (PS), winery rose lees (RL), brewery Trub (BT), the mixture of brewery trub and primary sludge (BTPS) and the mixture of winery rose lees and primary sludge (RLPS) were the feedstocks considered. Efficient energy utilization [in form of net energy ratio (NER)], and environmental emissions were evaluated. The NER of BT (2.07) and RL (1.76) increased when mixed with PS (3.18) to produce BTPS (3.20) and RLPS (2.85). Also, the HTL phase of the combined HTL-AD system produced a greater NER than the AD phase in BT, BTPS, and PS and vice-versa in RL and RLPS. Six environmental impact categories were studied namely global warming, terrestrial acidification, ionizing radiation, terrestrial ecotoxicity, human carcinogenic toxicity, and human non-carcinogenic toxicity. RL produced the greatest environmental impact while BTPS produced the least impact, thus indicating the advantage of feedstock combination. This study shows that the combination of feedstocks for bioenergy production in an HTL-AD system does not only increase the quality and quantity of products but also increases the overall NER as well as reducting the environmental impacts. The study also proved that an integrated HTL-AD system is an energy efficient system with greater resource utilization and less environmental footprint than the constituent systems. [Display omitted] • Mixed winery rose lees/brewery trub and sewage sludge generates bioproducts of higher net energy ratio. • Combined hydrothermal liquefaction and anaerobic digestion (HTL-AD) is an energy efficient and environmentally sustainable system. • In the integrated HTL-AD system, the HTL phase produced a higher net energy ratio than the AD phase. • BT (2.16) + PS (NER 3.53) = BTPS (3.35) and RL (1.38) + PS (3.53) = RLPS (2.09). • Global warming > human non-carcinogenic > terrestrial ecotoxicity > ionizing radiation > human carcinogenic > Terrestrial acidification. [ABSTRACT FROM AUTHOR]
Details
- Language :
- English
- ISSN :
- 00456535
- Volume :
- 363
- Database :
- Academic Search Index
- Journal :
- Chemosphere
- Publication Type :
- Academic Journal
- Accession number :
- 179061609
- Full Text :
- https://doi.org/10.1016/j.chemosphere.2024.142991