Publicaciones

• Mosquera Romero, Suanny; Ntagia, Eleftheria; Rousseau, Diederik P.L.; Esteve-Núñez, Abraham; Prévoteau, Antonin (2023)

Water treatment and reclamation by implementing electrochemical systems with constructed wetlands. (ISSN: 2666-4984). Environmental Science and Ecotechnology. Vol 16 p. 100265

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• Manchón vallegas, Carlos;  Asensio, Yeray; Muniesa Merino, Fernando; Llorente Remartínez, María; Pun García, Álvaro; Esteve-Núñez, Abraham (2023)

Fluid-like cathode enhances valuable biomass production from brewery wastewater in purple phototrophic bacteria. Frontiers in Microbiology vol 14

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• Manchón, Carlos; Muniesa-Merino, Fernando; Serna, Daniel; Asensio, Yeray; Wardman, Colin; Esteve-Nuñez, Abraham (2023)

Fluid-like electrodes and Purple Phototrophic Bacteria: bridging the gap in wastewater biorefineries. Chemical Engineering Journal, 453, Part 2

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• Y Law, Cindy Ka; Kundu, Kankana; Bonin, Luiza; Peñacoba-Antona, Lorena; Bolea-Fernandez , Eduardo; Vanhaecke, Frank; Rabaey, Korneel; Esteve-Núñez, Abraham; De Gusseme, Bart; Boon, Nico (2022)

Electrochemically assisted production of biogenic palladium nanoparticles for the catalytic removal of micropollutants in wastewater treatment plants effluent (ISSN: 1001-0742) Journal of Environmental Sciences

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• Jingmiao, Fu; Zao, Yaqian; Yao, Qi; Addo-Bankas, Olivia; Ji, Bin; Yuan, Yujie; Wei, Ting; Esteve-Núñez, Abraham (2022)

A review on antibiotics removal: Leveraging the combination of grey and green techniques. STOTEN. vol 838

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• Peñacoba-Antona, Lorena; Ramírez-Vargas, Carlos A.; Wardman, Colin; Carmona, Alessandro; Esteve-Núñez, Abraham; Paredes, Diego; Brix, Hans; Arias, Carlos (2022)

Microbial electrochemical assisted treatment wetlands (METland): current flow density as a performance indicator in real-scale systems under Mediterranean and Northeuropean locations. Frontiers in Microbiology. vol 13

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• Prado de Nicolás, Amanda; Berenguer, Raúl; Esteve-Núñez, Abraham (2022)

Evaluating bioelectrochemically-assisted constructed wetland (METland®) for treating wastewater: analysis of materials, performance and electroactive communities (ISSN: 1385-8947). Chemical Engineering Journal. vol 440

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• Asensio Ramírez, Y.; Llorente, M.; Sánchez-Gómez, A.; Manchón, C.; Boltes, K.; Esteve-Núñez, A. (2021)

Microbial Electrochemical Fluidized Bed Reactor: A Promising Solution for Removing Pollutants From Pharmaceutical Industrial Wastewater. Frontiers in Microbiology, 12. ISSN 1664-302X

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• Ewusi-Mensah, D.; Huang, J.; Chaparro, L.K.; Rodenas, P.; Ramirez-Moreno, M.; Ortiz, J.M.; Esteve-Núñez, A. (2021)

Algae-Assisted Microbial Desalination Cell: Analysis of Cathode Performance and Desalination Efficiency. Processes DOI: 10.3390/PR9112011

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• Ramírez-Moreno M-; Esteve-Núñez, A.; Ortiz, J.M. (2021)

Desalination of brackish water using a microbial desalination cell: Analysis of the electrochemical behaviour. Electrochimica Acta Volume 388. p. 138570. (ISSN 0013-4686)

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• Asensio, Y.; Llorente, M.; Tejedor-Sanz, S.; Fernandez-Labrador, P.; Manchon, C.; Ortiz, J. M.; Ciriza, J. F.; Monsalvo, V; Rogalla, F.; Esteve-Núñez, A. (2021)

Microbial electrochemical fluidized bed reactor (ME-FBR): An energy-efficient advanced solution for treating real brewery wastewater with different initial organic loading. Journal of Environmental Chemical Engineering DOI: 10.1016/J.JECE.2021.106619

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• Peñacoba Antona, L.; Gómez Delgado, M.; Esteve Núñez, A. (2021)

Multi-criteria evaluation and sensitivity analysis for the optimal location of constructed wetlands (METland) at oceanic and Mediterranean locations. (ISSN: 1661-7827). IJERPH vol 18, issue 10

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• Ramírez Moreno, M.; Esteve Núñez, A.; Ortiz, J.M. (2021)

Desalination of brackish water using a microbial desalination cell: Analysis of the electrochemical behaviour (ISSN: 0013-4686). Electrochimica Acta. vol 388

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• Peñacoba Antona, L.; Senan Salinas, J.; Letón García, P.; Aguirre Sierra, A.; Salas J.J.; García Calvo, E.; Esteve Núñez, A. (2021)

Assessing METland® design and performance through LCA: techno-environmental study with multifunctional unit perspective. Frontiers in Microbiology. vol 12

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• Sergio G. Salinas-Rodríguez; Juan Arévalo; Juan Manuel Ortiz; Eduard Borràs-Camps;Víctor Monsalvo-Garcia; Maria D. Kennedy; Abraham Esteve-Núñez (Ed.) (2021)

Microbial Desalination Cells for Low Energy Drinking Water. IWA Publishing. London, United Kingdom. ISBN: 9781789062113 (Paperback) ISBN: 9781789062120 (eBook)

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• Ramírez Moreno, M.; Rodenas Motos, P.; Aliaguilla, M.; Bosch Jiménez, P.; Zamora, P.; Monsalvo , V.; Rogalla, F.; Ortiz , J.M.; Esteve Núñez, A. (2021)

"Chapter 2: Microbial desalination cell design & bioengineering assays: Main concepts". Microbial Desalination Cells for Low Energy Drinking Water (ISBN: 9781789062120 ). London (UK)

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• Ortiz, J.M.; Salinas, S.; Bossa, N.; Borràs, E.; Arévalo, J.; Esteve-Núñez, Abraham (2021)

"Chapter 8: New Frontiers and Outlook". Microbial Desalination Cells for Low Energy Drinking Water (ISBN: 9781789062120 ). London (UK)

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• Tucci, M.; Cruz-Viggi, C.; Esteve Núñez, A.; Schievano, A.; Rabaey, K.; Aulenta, F. (2021)

Empowering electroactive microorganisms for soil remediation: challenges in the bioelectrochemical removal of petroleum hydrocarbons. (ISSN: 1385-8947). Chemical Engineering Journal

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• Gupta, P.; Noori, Md T.; Esteve Núñez, A.; Verma, N. (2021)

An insight into the bioelectrochemical photoreduction of CO2 to value-added chemicals. iScience.  Vol 24, 4

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• Ji, Bin; Zao, Yaqian; Esteve-Núñez, Abraham; Liu, Rabin; Yang, Yang; Ange, Nzihou; Tai, Yiping; Wei, Ting; Shen, Cheng; Yang, Yan; Ren, Baimimng; Wang, Xingxing; Wang, Yae' (2020)

Where do we stand to oversee the coronaviruses in aqueous and aerosol environment? Characteristics of transmission and possible curb strategies. (ISSN: 1385-8947). Chemical Engineering Journal. vol 406

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• Asensio Ramírez, Yeray; Llorente Remartínez, María; Fernández Labrador, Patricia; Tejedor Sanz, Sara; Ortiz, Juan Manuel; Ciriza, Juan Francisco; Monsalvo, Víctor; Rogalla, Frank; Esteve-Núñez, Abraham (2020)

Upgrading fluidized bed bioelectrochemical reactors for treating brewery wastewater by using a fluid-like electrode. (ISSN:1385-8947). Chemical Engineering Journal vol 406

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• Prado De Nicolás, Amanda; Berenguer, Raul; Berná Galiano, Antonio; Esteve-Núñez, Abraham (2020)

Simultaneous characterization of porous and non-porous electrodes in microbial electrochemical systems. (ISSN: 2215-0161). MethodsX vol 7

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• Sara Tejedor-Sanz, Patricia Fernández-Labrador, Carlos Manchón, Abraham Esteve-Núñez (2020)

Fluidized bed cathodes as suitable electron donors for bacteria to remove nitrogen and produce biohydrogen. Electrochemistry Communications, 116

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• Amanda Prado, Carlos A. Ramírez-Vargas, Carlos Arias, Abraham Esteve-Núñez (2020)

Novel bioelectrochemical strategies for domesticating the electron flow in constructed wetlands. Science of the Total Environment, 735, 139522. 

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• F. Dargam, E. Perz, S. Bergmann, E. Rodionova, P. Sousa, F. A. Andrade de Souza, T. Matias, J.M. Ortiz, A. Esteve-Núñez, P. Rodenas, P. Zamora (2020)

Supporting Operational Decisions on Desalination Plants from Process Modelling and Simulation to Monitoring and Automated Control with Machine Learning. In: “Decision Support Systems X - Cognitive Decision Support System and Technologies”. Lecture Notes in Business Information Processing (LNBIP_DSS) (384). Springer International Publishing, Switzerland. ISBN 978-3-030-46223-9

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• Arantxa Aguirre-Sierra; Tristano Bacchetti de Gregoris; Juan José Salas; Andrés de Deus Villagra; Abraham Esteve-Núñez (2020)

A new concept in constructed wetlands: assessment of aerobic electroconductive biofilters. Environ. Sci.: Water Res. Technol., ,6, 1312-1323. 

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• Xiaofei Wang; Federico Aulenta; Sebastià Puig Broch; Abraham Esteve-Núñez; Yujie He; Yang Mu; Korneel Rabaey (2020)

Microbial electrochemistry for bioremediation Environmental Science and Ecotechnology. Vol 1

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• Marina Ramírez Moreno; Juan Manuel Ortíz; Abraham Esteve-Núñez; Pau Ródenas Motos; Martí Aliaguill; Eduard Borrás; Pau Bosch Jiménez; Patricia Zamora; Víctor Monsalvo; Frank Rogalla (2019)

Comparative Performance of Microbial Desalination Cells Using Air Diffusion and Liquid Cathode Reactions: Study of the Salt Removal and Desalination Efficiency. Frontiers in Energy Research. 7, 135 

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• Andrea Schievano; Raul Berenguer; Andrea Goglio; Stefano Bocchi; Stefania Marzorati; Laura Rago; Ricardo O. Louro; Catarina M. Paquete; Abraham Esteve Núñez (2019)

Electroactive Biochar for Large-Scale Environmental Applications of Microbial Electrochemistry. ACS Sustainable Chem. Eng. 7, 22, 18198-18212

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• Alvaro Pun; Karina Boltes; Pedro Letón; Abraham Esteve-Núñez (2019)

Detoxification of wastewater containing pharmaceuticals using horizontal flow bioelectrochemical filter. Bioresource Technology Reports. 7

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• Pau Rodenas Motos; Colin Wardman; Abraham Esteve-Núñez (2019)

‘Chapter 13 - Metals recovery from wastewater by microbial electrochemical technologies’. Wastewater Treatment Residues as Resources for Biorefinery Products and Biofuels pp. 281 - 307 Elsevier.

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• Sara Tejedor-Sanz; Abraham Esteve-Núñez (2019)

‘Chapter 18. Fluidized Bed Electrodes in Microbial Electrochemistry’. Microbial Electrochemical Tecnhnologies.  CRC Press. Boca Ratón, FL. pp. 276 - 287.

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• Raul Berenguer; Stefania Marzorati; Laura Rago; Pierangela Cristiani; Alberto Pivato; Abraham Esteve-Núñez; Andrea Schievano (2019)

'Chapter 24. Electroactive Biochar: Sustainable and Scalable Environmental Applications of Microbial Electrochemical Technologies'. Microbial Electrochemical Tecnhnologies. CRC Press. Boca Ratón, FL. pp. 360 - 375

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• Amanda Prado de Nicolás; Raúl Berenguer; Abraham Esteve-Núñez (2019)

Electroactive biochar outperforms highly conductive carbon materials for biodegrading pollutants by enhancing microbial extracellular electron transfer. Carbon. 146, 597-609

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• José Fernando Rodrigo Quejigo; Sara Tejedor; Reiner Schroll; Abraham Esteve-Núñez (2019)

Electrodes boost microbial metabolism to mineralize antibiotics in manure (ISSN:1567-5394). Bioelectrochemistry. 2019, vol 128, p.283-290

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• Jose Rodrigo Quejigo; Sara Tejedor-Sanz; Abraham Esteve-Núñez; Harnisch, Falk (2019)

Bed electrodes in microbial electrochemistry: setup, operation and characterization. ChemTexts. 5 (4)

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• Carlos A. Ramírez-Vargas; Carlos Arias; Pedro N. Carvalho; Liang Zhang; Abraham Esteve-Núñez; Hans Brix (2019)

Electroactive biofilm-based constructed wetland (EABB-CW): A mesocosm-scale test of an innovative setup for wastewater treatment. Science of the Total Environment. 659

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• Michael Peter Füeg; Zulema Borjas; Marta Estévez-Canales; Abraham Esteve-Núñez; KUZUME, Akiyoshi; I.V. Pobelov; P. Broekmann (2018)

Interfacial electron transfer between Geobacter sulfurreducens and gold electrodes via carboxylate-alkanethiol linkers: "Effects of the linker length". Bioelectrochemistry. 126, 130-136

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• Ainara Domínguez-Garay; Jose Rodrigo Quejigo; Ulrike Dörfler; Reiner Schroll and Abraham Esteve-Núñez (2018)

Bioelectroventing: an electrochemical-assisted bioremediation strategy for cleaning-up atrazine polluted soils (ISSN:1751-7915). Microb Biotechnol 11 (1), 50-62

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• Marta Estévez-Canales; David Pinto; Thibaud Coradin; Christel Laberty-Robert and Abraham Esteve-Núñez (2018)

Silica-immobilization of Geobacter sulfurreducens for constructing ready-to-use artificial bioelectrodes. Microb Biotechnol 11 (1), 39-49

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• Sara Tejedor-Sanz; Patricia Fernández Labrador; Steven Hart; César Torres; Abraham Esteve-Núñez (2018)

Geobacter dominates the inner layers of a stratified biofilm on a fluidized anode during brewery wastewater treatment. Frontiers in Microbiology. Vol 9, p. 378-

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• Ainara Domínguez Garay; Abraham Esteve Núñez (2018)

Designing strategies for operating Microbial Electrochemical Systems to clean up polluted soils under non-flooded conditions Bioelectrochemistry. 124, 142-148


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• Carlos A. Ramírez-Vargas; Lorena Peñacoba Antona; Abraham Esteve-Núñez; Carlos Arias; Hans Brix (2018)

Electric potential and correlation with treatment performance of electroactive constructed wetland Water Sci Techno

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• Carlos A. Ramírez-Vargas; Amanda Prado de Nicolás; Carlos Arias; Pedro N. Carvalho; Abraham Esteve-Núñez; Hans Brix (2018)

Microbial Electrochemical Technologies for Wastewater Treatment: Principles and Evolution from Microbial Fuel Cells to Bioelectrochemical-Based Constructed Wetlands (ISSN:2073-4441). water. 2018, 10 (9)


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• Ionana Vasiliadou; Antonio Berná Galiano; Carlos Manchón Vállegas; Fernando Martínez Castillejo; Abraham Esteve-Núñez; Daniel Puyol (2018)

Biological and Bioelectrochemical Systems for Hydrogen Production and Carbon Fixation Using Purple Phototrophic Bacteria. Front. Energy Res. Vol 6

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• Jose Rodrigo Quejigo; Abraham Esteve-Núñez (2018)

Anodic shifting of the microbial community profile to enhance oxidative metabolism in soil. Soil Biol Biochem. 116, 131-138


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• Sara Tejedor; José Rodrigo Quejigo; Antonio Berná; Abraham Esteve-Núñez (2017)

The planktonic relationship between fluid-like electrodes and bacteria: wiring in motion. ChemSusChem 10 (4) 693–700


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• Sara Tejedor-Sanz; Juan Manuel Ortiz; Abraham Esteve-Núñez. (2017)

Merging microbial electrochemical systems with electrocoagulation pretreatment for achieving a complete treatment of brewery wastewater Chem Eng J. 330, 1068-1074


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• Zulema Borjas; Abraham Esteve-Núñez and Juan Manuel Ortiz (2017)

Strategies for merging Microbial Fuel Cell Technologies in Water Desalination processes: start-up protocol and desalination efficiency assessment J Power Sources 356, 519-528

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• Arantxa Aguirre; Tristano Bacchetti de Gregoris; Antonio Berná; Juan José Salas; Carlos Aragón and Abraham Esteve-Núñez (2016)

Microbial Electrochemical Systems outperform fixed-bed biofilters for cleaning-up urban wastewater. Environ. Sci.: Water Res. Technol. 2, 984

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• Ainara Domínguez Garay; Karina Boltes and Abraham Esteve-Núñez (2016)

Cleaning-up atrazine-polluted soil by using Microbial Electroremediating Cells. Chemosphere. 161, 365-371

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• Jose Rodrigo Quejigo; Ulrike Dörfler; Rainer Schroll and Abraham Esteve-Núñez (2016)

Stimulating soil microorganisms for mineralizing the herbicide isoproturon by means of microbial electroremediating cells. Microb Biotechnol. 9 (3) 369-380

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• Sara Tejedor-Sanz; Tristano Bacchetti de Gregoris; Juan José Salas; Laura Pastor and Abraham Esteve-Núñez (2016)

Integrating a Microbial Electrochemical System in a classical wastewater treatment configuration for removing nitrogen from low COD effluents Environ. Sci.: Water Res. Technol. 2, 884-893

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• Javier Pascual; Zulema Udaondo; Lázaro Molina; Ana Segura; Abraham Esteve-Núñez; Antonio Caballero; Estrella Duque; Juan Luis Ramos; Pieter van Dillewijna (2015)

Draft Genome Sequence of Pseudomonas putida JLR11, a Facultative Anaerobic 2,4,6-Trinitrotoluene Biotransforming Bacterium. Genome Announcements 3 (5)

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• Marta Estévez-Canales; Antonio Berná; Zulema Borjas and Abraham Esteve-Núñez (2015)

Screen-printed electrodes: new tools for developing microbial electrochemistry at microscale level. Energies 8 (11), 13211-13221

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• Zulema Borjas; Juan Manuel Ortiz; Antonio Aldaz; Juan Feliu and Abraham Esteve-Núñez (2015)

Strategies for Reducing the Start-up Operation of Microbial Electrochemical Treatments of Urban Wastewater. Energies 8 (12), 14064-14077

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• Marta Estévez-Canales; Akiyoshi Kuzume; Zulema Borjas; Michael Füeg; Derek Lovley; Thomas Wandlowski and Abraham Esteve-Núñez (2015)

A severe reduction in the Cytochrome C content of Geobacter sulfurreducens eliminates its capacity for extracellular electron transfer. Environ Microbiol Rep. 2 (7), 219-226. Epub 2014 Dec 17.

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• Akiyoshi Kuzume; Ulmas Zhumaev; Jianfeng Li; Yongchun Fu; Michael Füeg; Marta Estévez-Canales; Zulema Borjas; Thomas Wandlowski and Abraham Esteve-Núñez (2014)

An in situ surface electrochemistry approach towards whole-cell studies: the structure and reactivity of a Geobacter sulfurreducens submonolayer on electrified metal/electrolyte interfaces. Phys. Chem. Chem. Phys. 16, 22229-2223

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• Jose Rodrigo; Ana Karina Boltes and Abraham Esteve-Núñez (2014)

Microbial-electrochemical bioremediation and detoxification of dibenzothiophene-polluted soil. Chemosphere 101, 61-65

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• Akiyoshi Kuzume; Ulmas Zhumaev; Jianfeng Li; Yongchun Fu; Michael Füeg; Abraham Esteve-Núñez and Thomas Wandlowski (2013)

An in-situ Surface Electrochemistry Approach toward Whole-cell Studies: Charge transfer between Geobacter sulfurreducens and Electrified Metal/Electrolyte Interfaces through Linker Molecules.Electrochimica Acta.112: 933-942

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• A. Domínguez-Garay; A. Berná; I. Ortiz-Bernad and A. Esteve-Núñez (2013)

Silica Colloid Formation Enhances Performance of Sediment Microbial Fuel Cells in a Low Conductivity Soil Environ. Sci. Technol. 47 (4), 2117–2122

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• G. D. Schrott; P. S. Bonanni; L. Robuschi; A. Esteve-Núñez and J.P. Busalmen (2011)

Electrochemical insight into the mechanism of electron transport in biofilms of Geobacter sulfurreducens. Electrochimica Acta 56, 10791-10795

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• A. Esteve-Núñez; J. P. Busalmen; A. Berná; C. Gutiérrez Garrán and J.M. Feliu (2011)

Opportunities behind the unusual ability of Geobacter sulfurreducens for exocellular respiration and electricity production. Energy Environ. Sci. 4, 2066

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• J.P. Busalmen; A. Esteve-Núñez. and J.M. Feliú (2010)

"Approach to Microbial Fuel Cells and Their Applications". Fuel Cell Science. Chapter 8, 257-281. John Wiley & Sons

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• J.P. Busalmen; A. Esteve-Núñez; A. Berná and J.M. Feliu (2010)

ATR-SEIRAS characterization of surface redox processes in G. sulfurreducens. Bioelectrochemistry 78:1, 25-29

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• A. Esteve-Nuñez; A. Reija; F. Moreno-Garzón; B. Barroeta; A. Aguilera; J.P. Busalmen; J. Martín; I. Ortiz-Bernad (2009)

Harvesting bioelectricity from natural environments: microbial fuel cell fuelled by rice plants. New Biotechnology Volume 25, pp S280

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• A. Berná; A. Esteve-Nuñez; F. D. A. Moreno-Garzón; J. P. Busalmen; J. M. Feliu (2009)

Structural analysis of the bioelectrochemical interface between Geobacter sulfurreducens and gold single crystal electrodes. New Biotechnology Volume 25, pp S97

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• J.P. Busalmen; A. Esteve-Núñez; A. Berná and J. M. Feliu (2008)

C-type cytochromes wire electricity-producing bacteria to electrodes. Angew Chem Int Ed Engl 47, 4874-7

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• J. P. Busalmen; A. Esteve-Núñez and J. M. Feliu (2008)

Whole cell electrochemistry of electricity-producing microorganisms evidence an adaptation for optimal exocellular electron transport. Environ Sci Technol 42, 2445-50

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• Jesús Martínez-Frías; Esther Lázaro and Abraham Esteve-Núñez (2008)

"Biogeomarkers and mineralizing hydrothermal settings: selected Earth analogs, microbiological ecosystems and astrobiological potential". Kumar, S. (Ed.), Geomicrobiology: Biodiversity and Biotechnology, Blackwell.

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• A. Esteve-Núñez; J. Sosnik; P. Visconti and D. R. Lovley (2008)

Fluorescent properties of c-type cytochromes reveal their potential role as an extracytoplasmic electron sink in Geobacter sulfurreducens. Environ Microbiol 10, 497-505

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• R. Mahadevan; A. Esteve-Núñez; D. R Bond; J. E. Butler; M. V. Coppi and D. R. Lovley (2007)

"Constraint-based in silico modelling of the Fe(III)-reducing bacteria Geobacter sulfurreducens: insights into the subsurface microbial activity". Cánovas, M., Iborra, J. L. y Manjón, A. (Eds.) Understanding and Exploiting Systems Biology in Biomedicine and Bioprocesses. Fundación Caja Murcia, Spain

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• J. Martínez-Frías; J. E. Lázaro and A. Esteve-Núñez (2007)

Geomarkers versus biomarkers: paleoenvironmental and astrobiological significance. Ambio 36, 425-6

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• B. F. Smets; H. Yin and A. Esteve-Núñez (2007)

TNT biotransformation: when chemistry confronts mineralization. Appl Microbiol Biotechnol, 76, 267-77

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• B. Yan; C. Núñez; T. Ueki; A. Esteve-Núñez; M. Puljic; R. M. Adkins; B. A. Methé; D. R. Lovley and J. Krushka (2006)

Computational prediction of RpoS and RpoD regulatory sites in Geobacter sulfurreducens using sequence and gene expression information. Gene, 384, 73-95

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• Y-H.R.Ding; K.K. Hixson; C.S. Giometti; A. Stanley; A. Esteve-Núñez; T. Khare; S.L. Tollaksen; W. Zhu; J.N. Adkins; M.S. Lipton; R.D. Smith; T. Mester and D.R. Lovley (2006)

The proteome of dissimilatory metal-reducing microorganism Geobacter sulfurreducens under various growth conditions. Biochim Biophys Acta 1764, 1198-206

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• J. E. Butler; R. H. Glaven; A. Esteve-Núñez; C. Núñez; E. S. Shelobolina; D. R. Bond and D. R. Lovley (2006)

Genetic characterization of a single bifunctional enzyme for fumarate reduction and succinate oxidation in Geobacter sulfurreducens and engineering of fumarate reduction in Geobacter metallireducens. J Bacteriol 188, 450-5

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• C. Núñez; A. Esteve-Núñez; C. Giometti; S. Tollaksen; T. Khare; W. Lin; D. R. Lovley and B. A. Methe (2006)

DNA microarray and proteomic analyses of the RpoS regulon in Geobacter sulfurreducens. J Bacteriol 188, 2792-800

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• R. Mahadevan; D.R. Bond; J.E. Butler; A. Esteve-Núñez; M.V. Coppi; B.O. Palsson; C.H. Schilling and D.R. Lovley (2006)

Characterization of metabolism in the Fe(III)-reducing organism Geobacter sulfurreducens by constraint-based modeling. Appl Environ Microbiol. 72, 1558-68

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• A. Esteve-Núñez; M. Rothermich; M. Sharma and D. Lovley (2005)

Growth of Geobacter sulfurreducens under nutrient-limiting conditions in continuous culture. Environ Microbiol 7, 641-8

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• T. Khare; A. Esteve-Núñez; K. P. Nevin; W. Zhu; J. R. Yates III; D. Lovley and C. S. Giometti (2005)

Differential protein expression in the metal-reducing bacterium Geobacter sulfurreducens strain PCA grown with fumarate or ferric citrate. Proteomics 6, 632-640

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• A. Caballero; J.J. Lázaro; J.L. Ramos and A. Esteve-Núñez (2005)

PnrA, a new nitroreductase-family enzyme in the TNT-degrading strain Pseudomonas putida JLR11. Environ Microbiol, 7, 1211-9

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• A. Caballero; A. Esteve-Núñez; G. J. Zylstra and J. L. Ramos (2005)

Assimilation of nitrogen from nitrite and trinitrotoluene in Pseudomonas putida JLR11. J Bacteriol 187, 396-9

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• K.J. Chin; A. Esteve-Núñez; C. Leang and D.R. Lovley (2004)

Direct correlation between rates of anaerobic respiration and levels of of mRNA for key respiratory genes in Geobacter sulfurreducens. App Enviromen Microbiol 70: 5183-89

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• A. Esteve-Núñez; C. Núñez and D.R. Lovley (2004)

Novel Fe(III)-specific regulation of fumarate respiration in the Fe(III)-reducing microorganism Geobacter sulfurreducens. J Bacteriol 18: 2897-2899

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• J.L. Ramos; A. Caballero; D. Duque; P. van Dillewijn; M.M. González-Pérez and A. Esteve-Núñez (2004)

"Physiological evidence for respiration of TNT by Pseudomonas sp. JLR11". Pseudomonas, Vol. III, Chapter 8, pp. 229-240. Kluwer Academic/Plenum Publishers, London

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• E. Duque; A. Esteve-Núñez; C. Michán; M.A. Abril; M.C. Ronchel; M. Manzanera; M.I. Ramos González and J.L. Ramos (2002)

"Genetically engineered microorganism for biodegradation of recalcitrant compounds". Encyclopedie of Environmental Microbiology, vol. 3: 1420-1429. John Wiley & Sons, London

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• A. Esteve-Núñez; A. Caballero and J. L. Ramos (2001)

Biological degradation of 2,4,6-trinitrotoluene. Microbiol Mol Biol Rev, 65, 335-52

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• A. Esteve-Núñez; G. Luchessi; B. Philipps; B. Schink and J.L. Ramos (2000)

Respiration of 2,4,6-trinitrotoluene by Pseudomonas sp. strain JLR11. J Bacteriol, 182: 1352-1355

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• J. Campos-Garcia; A. Esteve-Núñez; R. Vázquez-Duhalt; J.L. Ramos and G. Soberon-Chávez (1999)

The branched-chain dodecylbenzene sulfonate degradation pathway of Pseudomonas aeruginosa W51D involves a novel route for degradation of the surfactant lateral alkyl chain. Appl Environ Microbiol 65, 3730-4

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• A. Esteve-Núñez and J.L. Ramos (1998)

Metabolism of 2,4,6-trinitrotoluene by Pseudomonas sp. JLR11. Environ Sci Technol 32: 3802-3808

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