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Journal of Environmental Science and Health, Part A
Toxic/Hazardous Substances and Environmental Engineering
Volume 52, 2017 - Issue 9
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Articles

Production of biogas from co-digestion of livestock and agricultural residues: A case study

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Pages 856-861 | Received 24 Oct 2016, Accepted 01 Mar 2017, Published online: 27 Apr 2017

References

  • Aguirre-Villegas, H.A.; Larson, R.; Reinemann, D.J. From waste-to-worth: Energy, emissions, and nutrient implications of manure processing pathways. Biofuels Bioprod. Biorefin. 2014, 8(6), 770–793.
  • Menardo, S.; Balsari, P. An analysis of the energy potential of anaerobic digestion of agricultural by-products and organic waste. Bioenergy Res. 2012, 5(3), 759–767.
  • Liu, Y.; Miller, S.A.; Safferman, S.I. Screening co-digestion of food waste water with manure for biogas production. Biofuels Bioprod. Biorefin. 2009, 3(1), 11–19.
  • Abatzoglou, N.; Boivin, S. A review of biogas purification processes. Biofuels Bioprod. Biorefin. 2009, 3(1), 42–71.
  • Tambone, F.; Scaglia, B.; D'Imporzano, G.; Schievano, A.; Orzi, V.; Salati, S.; Adani, F. Assessing amendment and fertilizing properties of digestates from anaerobic digestion through a comparative study with digested sludge and compost. Chemosphere 2010, 81(5), 577–583.
  • Vavilin, V.A.; Rytov, S.V.; Lokshina, L.Y. A balance between hydrolysis and methanogenesis during the anaerobic digestion of organic matter. Microbiology 1997, 66(6), 712–717.
  • Mata-Alvarez, J.; Mace, S.; Llabres, P. Anaerobic digestion of organic solid wastes. An overview of research achievements and perspectives. Bioresour. Technol. 2000, 74(1), 3–16.
  • Serrano, A.; Siles, J.A.; Gutiérrez, M.C.; Martín, M.A. Improvement of the biomethanization of sewage sludge by thermal pre-treatment and co-digestion with strawberry extrudate. J. Clean. Prod. 2015, 90, 25–33.
  • Shehu, M.S.; Abdul Manan, Z.; Wan Alwi, S.R. Optimization of thermo-alkaline disintegration of sewage sludge for enhanced biogas yield. Bioresour. Technol. 2012, 114, 69–74.
  • Bouallagui, H.; Touhami, Y.; Cheikh, R.B.; Hamdi, M. Bioreactor performance in anaerobic digestion of fruit and vegetable wastes. Process Biochem. 2005, 40(3–4), 989–995.
  • Mata-Alvarez, J.; Cecchi, F.; Llabres, P.; Pavan, P. Anaerobic-digestion of the Barcelona central food market organic wastes – Plant-design and feasibility study. Bioresour. Technol. 1992, 42(1), 33–42.
  • Garcia-Peña, E.I.; Parameswaran, P.; Kang, D.W.; Canul-Chan, M.; Krajmalnik-Brown, R. Anaerobic digestion and co-digestion processes of vegetable and fruit residues: Process and microbial ecology. Bioresour. Technol. 2011, 102(20), 9447–9455.
  • Gomez-Lahoz, C.; Fernández-Giménez, B.; Garcia-Herruzo, F.; Rodriguez-Maroto, J.M.; Vereda-Alonso, C. Biomethanization of mixtures of fruits and vegetables solid wastes and sludge from a municipal wastewater treatment plant. J. Environ. Sci. Health – Part Toxic Hazard. Subst. Environ. Eng. 2007, 42(4), 481–487.
  • Ganesh, R.; Torrijos, M.; Sousbie, P.; Lugardon, A.; Steyer, J.P.; Delgenes, J.P. Single-phase and two-phase anaerobic digestion of fruit and vegetable waste: Comparison of start-up, reactor stability and process performance. Waste Manag. 2014, 34(5), 875–885.
  • Wang, L.; Shen, F.; Yuan, H.; Zou, D.; Liu, Y.; Zhu, B.; Li, X. Anaerobic co-digestion of kitchen waste and fruit/vegetable waste: Lab-scale and pilot-scale studies. Waste Manag. 2014, 34(12), 2627–2633.
  • Scano, E.A.; Asquer, C.; Pistis, A.; Ortu, L.; Demontis, V.; Cocco, D. Biogas from anaerobic digestion of fruit and vegetable wastes: Experimental results on pilot-scale and preliminary performance evaluation of a full-scale power plant. Energy Convers. Manag. 2014, 77, 22–30.
  • Ward, A.J.; Hobbs, P.J.; Holliman, P.J.; Jones, J.M. Optimisation of the anaerobic digestion of agricultural resources. Bioresour. Technol. 2008, 99, 7928–7940.
  • Alvarez, R.; Liden, G. Semi-continuous co-digestion of solid slaughterhouse waste, manure, and fruit and vegetable waste. Renew. Energy 2008, 33(4), 726–734.
  • Beltrán, C.; Jeison, D.; Fermoso, F.G.; Borja, R. Batch anaerobic co-digestion of waste activated sludge and microalgae (Chlorella sorokiniana) at mesophilic temperature. J. Environ. Sci. Health Part A 2016, 51(10), 847–850.
  • Lindorfer, H.; Corcoba, A.; Vasilieva, V.; Braun, R.; Kirchmayr, R. Doubling the organic loading rate in the co-digestion of energy crops and manure – A full scale case study. Bioresour. Technol. 2008, 99(5), 1148–1156.
  • Duan, N.; Dong, B.; Wu, B.; Dai, X. High-solid anaerobic digestion of sewage sludge under mesophilic conditions: Feasibility study. Bioresour. Technol. 2012, 104, 150–156.
  • Guo, J.; Wang, W.; Liu, X.; Lian, S.; Zheng, L. Effects of thermal pre-treatment on anaerobic co-digestion of municipal biowastes at high organic loading rate. Chemosphere 2014, 101, 66–70.
  • Siqueira, L.M.; Damiano, E.S.G.; Silva, E.L. Influence of organic loading rate on the anaerobic treatment of sugarcane vinasse and biogás production in fluidized bed reactor. J. Environ. Sci. Health Part A 2013, 48(13), 1707–1716.
  • Fierro, J.; Gómez, X.; Murphy, J.D. What is the resource of second generation gaseous transport biofuels based on pig slurries in Spain? Appl. Energy 2014, 114, 783–789.
  • Chen, C.; Zheng, D.; Liu, G.; Deng, L.; Long, Y.; Fan, Z. Continuous dry fermentation of swine manure for biogas production. Waste Manag. 2015, 38, 436–442.
  • Callaghan, F.J.; Wase, D.A.J.; Thayanithy, K.; Forster, C.F. Continuous co-digestion of cattle slurry with fruit and vegetable wastes and chicken manure. Biomass Bioenergy 2002, 22(1), 71–77.
  • Murto, M.; Bjornsson, L.; Mattiasson, B. Impact of food industrial waste on anaerobic co-digestion of sewage sludge and pig manure. J. Environ. Manage. 2004, 70(2), 101–107.
  • Kafle, G.K.; Kim, S.H. Anaerobic treatment of apple waste with swine manure for biogas production: Batch and continuous operation. Appl. Energy 2013, 103, 61–72.
  • Hidalgo, D.; Gomez, M.; Martin-Marroquin, J.M.; Aguado, A.; Sastre, E. Two-phase anaerobic co-digestion of used vegetable oils' wastes and pig manure. Int. J. Environ. Sci. Technol. 2015, 12(5), 1727–1736.
  • Molinuevo-Salces, B.; Gonzalez-Fernandez, C.; Gomez, X.; Cruz Garcia-Gonzalez, M.; Moran, A. Vegetable processing wastes addition to improve swine manure anaerobic digestion: Evaluation in terms of methane yield and SEM characterization. Appl. Energy 2012, 91(1), 36–42.
  • Jiménez, J.; Guardia-Puebla, Y.; Cisneros-Ortiz, M.E.; Morgan-Sagastume, J.M.; Guerra, G.; Noyola, A. Optimization of the specific methanogenic activity during the anaerobic co-digestion of pig manure and rice straw, using industrial clay residues as inorganic additive. Chem. Eng. J. 2015, 259, 703–714.
  • Siles, J.A.; Serrano, A.; Martin, A.; Martin, M.A. Biomethanization of waste derived from strawberry processing: Advantages of pretreatment. J. Clean. Prod. 2013, 42, 190–197.
  • Serrano, A.; Siles, J.A.; Chica, A.F.; Angeles Martin, M. Agri-food waste valorization through anaerobic co-digestion: Fish and strawberry residues. J. Clean. Prod. 2013, 54, 125–132.
  • APHA, AWWA. WEF Standard Methods for the Examination of Water and Wastewater. American Public Health Association: Washington, DC, 1999.
  • Mata-Alvarez, J.; Cecchi, F.; Pavan, P.; Llabres, P. The performances of digesters treating the organic fraction of municipal solid-wastes differently sorted. Biol. Wastes 1990, 33(3), 181–199.
  • Gerardi, M.H. The Microbiology of Anaerobic Digesters. John Wiley & Sons, Inc.: Hoboken, NJ; 2003.
  • Blanc, F.; Molof, A. Electrode potential monitoring and electrolytic control in anaerobic digestion. J. Water Pollut. Control Fed. 1973, 45(4), 655–667.
  • Bouallagui, H.; Lahdheb, H.; Ben Romdan, E.; Rachdi, B.; Hamdi, M. Improvement of fruit and vegetable waste anaerobic digestion performance and stability with co-substrates addition. J. Environ. Manage. 2009, 90(5), 1844–1849.
  • Yadvika, S.; Sreekrishnan, T.R.; Kohli, S.; Rana, V. Enhancement of biogas production from solid substrates using different techniques – A review. Bioresour. Technol. 2004, 95(1), 1–10.
  • Lin, J.; Zuo, J.; Gan, L.; Li, P.; Liu, F.; Wang, K.; Chen, L.; Gan, H. Effects of mixture ratio on anaerobic co-digestion with fruit and vegetable waste and food waste o of China. J. Environ. Sci. China 2011, 23(8), 1403–1408.

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