Reyna-Gómez, L.M.; Molina-Guerrero, C.E.; Alfaro, J.M.; Suárez Vázquez, S.I.; Robledo-Olivo, A.; Cruz-López, A.
Effect of Carbon/Nitrogen Ratio, Temperature, and Inoculum Source on Hydrogen Production from Dark Codigestion of Fruit Peels and Sewage Sludge. Sustainability 2019, 11, 2139.
https://doi.org/10.3390/su11072139
AMA Style
Reyna-Gómez LM, Molina-Guerrero CE, Alfaro JM, Suárez Vázquez SI, Robledo-Olivo A, Cruz-López A.
Effect of Carbon/Nitrogen Ratio, Temperature, and Inoculum Source on Hydrogen Production from Dark Codigestion of Fruit Peels and Sewage Sludge. Sustainability. 2019; 11(7):2139.
https://doi.org/10.3390/su11072139
Chicago/Turabian Style
Reyna-GĂłmez, Lirio MarĂa, Carlos Eduardo Molina-Guerrero, Juan Manuel Alfaro, Santiago Iván Suárez Vázquez, Armando Robledo-Olivo, and ArquĂmedes Cruz-LĂłpez.
2019. "Effect of Carbon/Nitrogen Ratio, Temperature, and Inoculum Source on Hydrogen Production from Dark Codigestion of Fruit Peels and Sewage Sludge" Sustainability 11, no. 7: 2139.
https://doi.org/10.3390/su11072139
APA Style
Reyna-Gómez, L. M., Molina-Guerrero, C. E., Alfaro, J. M., Suárez Vázquez, S. I., Robledo-Olivo, A., & Cruz-López, A.
(2019). Effect of Carbon/Nitrogen Ratio, Temperature, and Inoculum Source on Hydrogen Production from Dark Codigestion of Fruit Peels and Sewage Sludge. Sustainability, 11(7), 2139.
https://doi.org/10.3390/su11072139