Carbon, iron, and polymer-based conductive materials for improving methane production in anaerobic wastewater treatment systems: A review on their direct interspecific electron transfer mechanism
Author:
Publisher
Elsevier BV
Subject
Organic Chemistry,Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering
Reference72 articles.
1. Global and regional potential of wastewater as a water, nutrient and energy source;Qadir;Nat Resour Forum,2020
2. Impacts alum DWTPs sludge discharge and changes in flow regime of the Nile River on the quality of surface water and cultivated soils in Fayoum watershed;Hussein;Egypt Sci Total Environ,2021
3. EPA. Wastewater Management Fact Sheet: Energy Conservation. 2006.
4. Enhancing biochemical methane potential and enrichment of specific electroactive communities from nixtamalization wastewater using granular activated carbon as a conductive material;Valero;Energies,2018
5. El-Gnaoui Y, Sounni F, Bakraoui M, et al. Anaerobic co-digestion assessment of olive mill wastewater and food waste: Effect of mixture ratio on methane production and process stability. J Environ Chem Eng 2020; 8:103874. https://doi.org/10.1016/j.jece.2020.103874.
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