Abbas SZ, Rafatullah M (2021) Recent advances in soil microbial fuel cells for soil contaminants remediation. Chemosphere 272:129691
Abrevaya XC, Sacco NJ, Bonetto MC, Hilding-Ohlsson A, Cortón E (2015) Analytical applications of microbial fuel cells. Part I: biochemical oxygen demand. Biosens Bioelectron 63:580–590
Abu-Reesh IM, Kunju A, Sevda S (2022) Performance of microbial fuel cells in treating petroleum refinery wastewater. J Water Process Eng 49:103029
Adekunle A (2018) Development of an autonomous biobattery/biosensor system for remote applications. McGill University (Canada)
Adekunle A, Raghavan V, Tartakovsky B (2019) A comparison of microbial fuel cell and microbial electrolysis cell biosensors for real-time environmental monitoring. Bioelectrochemistry 126:105–112
Adelaja O, Keshavarz T, Kyazze G (2014) Enhanced biodegradation of phenanthrene using different inoculum types in a microbial fuel cell. Eng Life Sci 14(2):218–228
Adlan NA, Sabri S, Masomian M, Ali MSM, Rahman RNZRA (2020) Microbial biodegradation of paraffin wax in Malaysian crude oil mediated by degradative enzymes. Front Microbiol 11:565608
Ahad JM, Macdonald RW, Parrott JL, Yang Z, Zhang Y, Siddique T, Kuznetsova A, Rauert C, Galarneau E, Studabaker WB, Evans M (2020) Polycyclic aromatic compounds (PACs) in the Canadian environment: a review of sampling techniques, strategies and instrumentation. Environ Pollut 266:114988
Ahmad A, Al Senaidi AS, Vishnu DS, Khanam SZ, Alrahbi AS, Fettah N, Sharma I (2024) Bio-electrolysis of petroleum wastewater using microbial fuel cell for energy production. Biomass Convers Biorefinery pp.1–12.
Aiken DC, Curtis TP, Heidrich ES (2019) Avenues to the financial viability of microbial electrolysis cells [MEC] for domestic wastewater treatment and hydrogen production. Int J Hydrogen Energy 44(5):2426–2434
Alazaiza MY, Albahnasawi A, Ali GA, Bashir MJ, Copty NK, Amr SSA, Abushammala MF, Al Maskari T (2021) Recent advances of nanoremediation technologies for soil and groundwater remediation: a review. Water 13(16):2186
Alfonta L (2010) Genetically engineered microbial fuel cells. Electroanalysis: Int J Devoted Fund Pract Aspects Electroanal 22(78):822–831
An J, Lee HS (2014) Occurrence and implications of voltage reversal in stacked microbial fuel cells. Chemsuschem 7(6):1689–1695
Anselmo AM, Mateus M, Cabral JMS, Novais JM (1985) Degradation of phenol by immobilized cells of Fusarium flocciferum. Biotech Lett 7:889–894
Atoche AC, García NC, Estrada-López JJ, Vázquez-Castillo J, Heredia-Lozano J, Burgos-Reyes M, Datta A, Castillo-Atoche A (2023) A study on the renewable power generation capacity of microalgae microbial fuel cells for powering GIoT sensor nodes. J Power Sources 580:233185
Ayilara MS, Adeleke BS, Adebajo MT, Akinola SA, Fayose CA, Adeyemi UT, Gbadegesin LA, Omole RK, Johnson RM, Edhemuino M, Ogundolie FA (2023) Remediation by enhanced natural attenuation; an environment-friendly remediation approach. Front Environ Sci 11:1182586
Ayyaru S, Dharmalingam S (2014) Enhanced response of microbial fuel cell using sulfonated poly ether ether ketone membrane as a biochemical oxygen demand sensor. Anal Chim Acta 818:15–22
Balali-Mood M, Naseri K, Tahergorabi Z, Khazdair MR, Sadeghi M (2021) Toxic mechanisms of five heavy metals: mercury, lead, chromium, cadmium, and arsenic. Front Pharmacol 12:643972
Beunink J, Rehm HJ (1990) Coupled reductive and oxidative degradation of 4-chloro-2-nitrophenol by a co-immobilized mixed culture system. Appl Microbiol Biotechnol 34:108–115
Bhatnagar A, Masih J, Kumar R (2024) Biosensor: application in environmental management. Harnessing microbial potential for multifarious applications. Singapore, Springer Nature Singapore, pp 455–488
Bian B, Shi D, Cai X, Hu M, Guo Q, Zhang C, Yang J (2018) 3D printed porous carbon anode for enhanced power generation in microbial fuel cell. Nano Energy 44:174–180
Bianco F, Race M, Papirio S, Esposito G (2020) Removal of polycyclic aromatic hydrocarbons during anaerobic biostimulation of marine sediments. Sci Total Environ 709:136141
Birry L, Mehta P, Jaouen F, Dodelet JP, Guiot SR, Tartakovsky B (2011) Application of iron-based cathode catalysts in a microbial fuel cell. Electrochim Acta 56(3):1505–1511
Biswas JK, Mondal M, Kumar V, Bhatnagar A, Biswas S, Vithanage M (2022) Nature-inspired ecotechnological approaches toward recycling and recovery of resources from wastewater. Integrated environmental technologies for wastewater treatment and sustainable development. Elsevier, pp 101–145
Bond DR, Lovley DR (2003) Electricity production by Geobacter sulfurreducens attached to electrodes. Appl Environ Microbiol 69(3):1548–1555
Boregowda N, Jogigowda SC, Bhavya G, Sunilkumar CR, Geetha N, Udikeri SS, Chowdappa S, Govarthanan M, Jogaiah S (2022) Recent advances in nanoremediation: carving sustainable solution to clean-up polluted agriculture soils. Environ Pollut 297:118728
Borgmann S, Schulte A, Neugebauer S, Schuhmann W (2012) Bioelectrochemistry: fundamentals, applications and recent developments. Amperometric Biosens 13:1–83
Bünemann EK, Bongiorno G, Bai Z, Creamer RE, De Deyn G, De Goede R, Fleskens L, Geissen V, Kuyper TW, Mäder P, Pulleman M (2018) Soil quality–a critical review. Soil Biol Biochem 120:105–125
Busalmen JP, Esteve Núñez A, Berná Galiano A, Miguel Feliu J (2008) C-type cytochromes wire electricity-producing bacteria to electrodes
Cai W, Lesnik KL, Wade MJ, Heidrich ES, Wang Y, Liu H (2019) Incorporating microbial community data with machine learning techniques to predict feed substrates in microbial fuel cells. Biosens Bioelectron 133:64–71
Cao L, Ma Y, Deng D, Jiang H, Wang J, Liu Y (2020) Electricity production of microbial fuel cells by degrading cellulose coupling with Cr (VI) removal. J Hazard Mater 391:122184
Cardeña R, Cercado B, Buitrón G (2019) Microbial electrolysis cell for biohydrogen production. biohydrogen. Elsevier, pp 159–185
Catal T, Yavaser S, Enisoglu-Atalay V, Bermek H, Ozilhan S (2018) Monitoring of neomycin sulfate antibiotic in microbial fuel cells. Biores Technol 268:116–120
Catal T, Kul A, Atalay VE, Bermek H, Ozilhan S, Tarhan N (2019) Efficacy of microbial fuel cells for sensing of cocaine metabolites in urine-based wastewater. J Power Sources 414:1–7
Ceballos-Escalera A, Pous N, Bañeras L, Balaguer MD, Puig S (2024) Advancing towards electro-bioremediation scaling-up: on-site pilot plant for successful nitrate-contaminated groundwater treatment. Water Res 256:121618
Cecchin I, Reddy KR, Thomé A, Tessaro EF, Schnaid F (2017) Nanobioremediation: Integration of nanoparticles and bioremediation for sustainable remediation of chlorinated organic contaminants in soils. Int Biodeterior Biodegradation 119:419–428
Cerqueira F, Matamoros V, Bayona JM, Berendonk TU, Elsinga G, Hornstra LM, Piña B (2019) Antibiotic resistance gene distribution in agricultural fields and crops. A Soil-to-Food Anal Environ Res 177:108608
Chang IS, Jang JK, Gil GC, Kim M, Kim HJ, Cho BW, Kim BH (2004) Continuous determination of biochemical oxygen demand using microbial fuel cell type biosensor. Biosens Bioelectron 19(6):607–613
Chen Z, Niu Y, Zhao S, Khan A, Ling Z, Chen Y, Liu P, Li X (2016) A novel biosensor for p-nitrophenol based on an aerobic anode microbial fuel cell. Biosens Bioelectron 85:860–868
Chen S, Patil SA, Brown RK, Schröder U (2019) Strategies for optimizing the power output of microbial fuel cells: transitioning from fundamental studies to practical implementation. Appl Energy 233:15–28
Cheng KY, Ho G, Cord-Ruwisch R (2010) Anodophilic biofilm catalyzes cathodic oxygen reduction. Environ Sci Technol 44(1):518–525
Comments (0)