TY - JOUR
T1 - Using lime (Citrus × aurantiifolia), orange (citrus × sinensis), and tangerine (citrus reticulata) waste as a substrate for generating bioelectricity
AU - Rojas-Flores, S.
AU - De La Cruz-Noriega, M.
AU - Cabanillas-Chirinos, L.
AU - Benites, Santiago M.
AU - Silva-Palacios, F.
AU - Rosa, Altamirano León
AU - Zoilita, Altamirano León
AU - Luis, Angelats Silva
N1 - Publisher Copyright:
© 2020, Kaunas University of Technology. All rights reserved.
PY - 2020/1/1
Y1 - 2020/1/1
N2 - This paper focuses on using lime, orange, and tangerine waste as fuel for the generation of bioelectricity. The tangerine microbial fuel cell evidenced a maximum voltage peak of 1.1 V on day 13, while displaying abrupt voltage losses on the following days and throughout the remaining period of substrate monitoring. On the other hand, orange-based fuel denotes lower current generation during these 28 days with values close to 1.6 mA and 0.25 mA on the first and last day, respectively. Still, orange generated 3.5 mA on the first day with values sharply declining in the following days until reaching 0.91 mA on the last day. In general, substrate volumes in the microbial fuel cells diminished over time, which is consistent with the voltage and current values reported. In addition, pH values increased from day 1 for all substrates, reaching acidic pH values on the last day of meas-urement due to the consumption of carbon sources. Tangerine reported the highest current density (CD) at 72 mW/cm2 and a maximum voltage of 1.06 volts, while orange generated a CD of 62.5 mW/cm2 and 0.94 volts.
AB - This paper focuses on using lime, orange, and tangerine waste as fuel for the generation of bioelectricity. The tangerine microbial fuel cell evidenced a maximum voltage peak of 1.1 V on day 13, while displaying abrupt voltage losses on the following days and throughout the remaining period of substrate monitoring. On the other hand, orange-based fuel denotes lower current generation during these 28 days with values close to 1.6 mA and 0.25 mA on the first and last day, respectively. Still, orange generated 3.5 mA on the first day with values sharply declining in the following days until reaching 0.91 mA on the last day. In general, substrate volumes in the microbial fuel cells diminished over time, which is consistent with the voltage and current values reported. In addition, pH values increased from day 1 for all substrates, reaching acidic pH values on the last day of meas-urement due to the consumption of carbon sources. Tangerine reported the highest current density (CD) at 72 mW/cm2 and a maximum voltage of 1.06 volts, while orange generated a CD of 62.5 mW/cm2 and 0.94 volts.
KW - Acids
KW - Current
KW - Microbial fuel cells
KW - Organic waste and bioelectricity
KW - Voltage
UR - https://www.scopus.com/pages/publications/85092093478
U2 - 10.5755/j01.erem.76.3.24785
DO - 10.5755/j01.erem.76.3.24785
M3 - Article
AN - SCOPUS:85092093478
SN - 1392-1649
VL - 76
SP - 24
EP - 34
JO - Environmental Research, Engineering and Management
JF - Environmental Research, Engineering and Management
IS - 3
ER -