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Thermochemical Pretreatment for Improving the Psychrophilic Anaerobic Digestion of Coffee Husks.

Authors :
Yang, Tzyy Shyuan
Flores-Rodriguez, Carla
Torres-Albarracin, Lorena
Silva, Ariovaldo José da
Source :
Methane; Jun2024, Vol. 3 Issue 2, p214-226, 13p
Publication Year :
2024

Abstract

Psychrophilic anaerobic digestion emerges as an appealing integrated solution for the management of agricultural waste, particularly for farmers in regions where the average temperature does not exceed 26 °C, as seen in coffee cultivation. Therefore, this study seeks to assess the biomethane potential of thermochemical-treated coffee husk through psychrophilic anaerobic digestion (C3-20 °C-w/pretreatment). To examine its viability, outcomes were compared with reactors operating at both mesophilic (C1-35 °C) and psychrophilic (C2-20 °C) conditions, albeit without the use of pretreated coffee husk. The C3-20 °C-w/pretreatment test demonstrated a 36.89% increase (150.47 NmL CH<subscript>4</subscript>/g VS; 161.04 NmL CH<subscript>4</subscript>/g COD), while the C1-35 °C test exhibited a 24.03% increase (124.99 NmL CH<subscript>4</subscript>/g VS; 133.77 NmL CH<subscript>4</subscript>/g COD), both in comparison to the C2-20 °C test (94.96 NmL CH<subscript>4</subscript>/g VS; 101.63 NmL CH<subscript>4</subscript>/g COD). Notably, the C3-20 °C-w/pretreatment trial yielded superior outcomes, accompanied by an associated energy output of 3199.25 GWh/year, sufficient to meet the annual energy demands of 494 residences. This marks an increase of 83 and 182 million residences compared to the mesophilic and psychrophilic AD of CH without pretreatment, respectively. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
26740389
Volume :
3
Issue :
2
Database :
Complementary Index
Journal :
Methane
Publication Type :
Academic Journal
Accession number :
178183664
Full Text :
https://doi.org/10.3390/methane3020013