open access publication

Article, 2024

Resilience towards organic load and activated sludge variations in co-fermentation for carboxylic acid production

Bioresource Technology, ISSN 0960-8524, 1873-2976, Volume 406, Page 131034, 10.1016/j.biortech.2024.131034

Contributors

Perez-Esteban, Noemi 0000-0002-6146-0815 [1] Vives-Egea, J [1] Dosta, Joan 0000-0001-7696-4867 [1] Astals, Sergi 0000-0003-4749-0919 (Corresponding author) [1] Peces, Miriam 0000-0003-2522-7490 [1] [2]

Affiliations

  1. [1] University of Barcelona
  2. [NORA names: Spain; Europe, EU; OECD];
  3. [2] Aalborg University
  4. [NORA names: AAU Aalborg University; University; Denmark; Europe, EU; Nordic; OECD]

Abstract

Two perturbations were investigated in acidogenic co-fermentation of waste activated sludge (WAS) and food waste in continuous mesophilic fermenters: increasing the organic loading rate (OLR) and changing the WAS. A control reactor maintained an OLR of 11 gVS/(L·d), while a test reactor had a prolonged OLR change to 18 gVS/(L·d). For each OLR, two WAS were studied. The change in OLR led to differentiated fermentation product profile without compromising the fermentation yields (∼300 mgCOD/gVS). At 11 gVS/(L·d), the product profile was dominated by acetic, butyric, and propionic acids while at 18 gVS/(L·d) it shifted to acetic acid, ethanol, and caproic acid. Reverting the OLR also reverted the fermentation profile. The biomass immigration with the WAS changed the fermentation microbial structure and introduced acetic acid-consuming methanogens, which growth was only delayed by the OLR increase. Microbial monitoring and post-fermentation tests can be used for early detection of acetic acid-consuming events.

Keywords

OLR change, OLR increase, Test Reactor, WAS, acetic acid, acid, acid production, acidogenic co-fermentation, beings, biomass, caproic acid, carboxylic acid products, changes, co-fermentation, control, control reactor, early detection, ethanol, events, fermentation, fermentation product profiles, fermentation profile, fermentation yield, food, food waste, growth, immigrants, increase, load, loading rate, mesophilic fermentation, methanogens, microbial monitoring, microbial structure, monitoring, organic load, organic loading rate, perturbation, production, production profiles, profile, propionic acid, rate, reactor, resilience, sludge, structure, test, variation, waste, yield

Funders

  • Government of Catalonia
  • Ministry of Economy, Industry and Competitiveness
  • European Commission

Data Provider: Digital Science