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Teresa Vicent

Info

  • ResearcherID: D-3447-2009
  • ORCID: 0000-0002-6547-7358
  • Email: Teresa.Vicent@uab.cat

Bio

M’he especialitzat en l’àmbit de l’enginyeria ambiental investigant temes relacionats amb el desenvolupament de processos biològics de depuració de contaminants d’origen industrial. Vaig realitzar els estudis de Química i la Tesina de Llicenciatura a la Universitat de València. Posteriorment realitzo la Tesi Doctoral a la UAB i obtinc el títol de Doctora en Ciències el 1984 amb el treball “Estudi de l’eficàcia del Procés de Contacte Anaerobi aplicat a la depuració d’un efluent d’una indústria agroalimentària” dirigit pel Prof. Juan Manuel Lema Rodicio. A partir d’aquest moment desenvolupo totalment la investigació al Col·legi Universitari de Girona, on m’incorporo en tasques docents al curs 83-84. Dirigeixo primer el Màster i després la Tesi Doctoral dels meus primers estudiants de doctorat la investigació dels quals també es desenvolupa en la línia de tractament anaerobi d’efluents industrials. L’any 1987 accedeixo a la plaça de Professora Titular a l’àrea d’Enginyeria Química, i el curs 1989-90 accedeixo a una plaça de Professor TU en Enginyeria Química a la UAB. Des d’aquest moment fins a l’actualitat, he desenvolupat les meves tasques docents i investigadores a l’actual Departament d’Enginyeria Química, Biològica i Ambiental de la UAB. El moment en què em reincorporo a la UAB és un moment d’expansió i de canvis al Departament motivats per l’inici de noves línies de recerca i de personal. Al cap de poc temps em responsabilitzo d’una nova línia de recerca, en la que continuant amb la degradació de contaminants industrials, es busca la utilització d’altres microorganismes diferents dels bacteris, com són els fongs, que poden ser més eficients. En els darrers 10 anys, també he dirigit la meva tasca investigadora en la bioremediació de sòls contaminats, especialment a la biodegradació de compostos orgànics clorats en aigües subterrànies.

Des de l’any 1991 he estat Investigadora Principal ininterrompudament fins a l’actualitat de 10 projectes del Pla Nacional i tots es poden emmarcar en la que considero que és la meva especialitat en recerca: l’estudi de processos de degradació biològica de contaminants xenobiòtics. També cal destacar que alguns d’aquests projectes són coordinats perquè crec que la complementarietat entre els especialistes enforteix els projectes i permet obtenir millors resultats. En tots ells he estat la coordinadora responsable. Des de l’any 2009 fins al 2020 he estat responsable del grup de recerca BioremUAB sobre “Biodegradació de contaminants industrials i valorització de residus” reconegut per la Generalitat de Catalunya com a grup de recerca consolidat. Als projectes anteriors també cal sumar els finançats pel Pla Nacional de Medi Ambient (2005-2010), dels quals també he estat IP. He publicat més de 100 articles en revistes científiques indexades (índex h 42, maig 2023) . He dirigit 20 Tesis Doctorals. He col·laborat en la redacció de capítols de llibres i he publicat un llibre com a coeditora (Emerging Organic Contaminants in Sludges: Anàlisi, Fate i Biological Treatment. T. Vicent et al Eds. Hdb Env Chem, DOI 10.1007/698_2012_159. Verlag 2012). Alhora he promogut la transferència de resultats a través de projectes i contractes amb empreses, i he assessorat l’Administració Autonòmica (Agència de Residus de Catalunya) en la presa de decisions i treballs prelegislatius en matèria de residus.

Des del setembre de l’any 2022 estic jubilada i continuo col·laborant amb el grup de recerca.

Publications (since 2012)

  • Soder-Walz JM, Salom D, Granados-Rigol E, Fernández-Verdejo D, Vicent T, Marco-Urrea E (*), Blanquez P (2025). Enhanced aerobic bioremediation of an aquifer heavily contaminated with a mixture of chlorobenzenes and hexachlorocyclohexanes at the Sardas landfill (Spain). J. Hazard. Mater. 484, 136717 DOI: https://doi.org/10.1016/j.jhazmat.2024.136717. .
  • Soder-Walz JM, Deobald D, Vicent T, E. Marco-Urrea (*), Adrian L (2024). MecE, MecB, and MecC proteins orchestrate methyl group transfer during dichloromethane fermentation. Appl. Environ. Microbiol. 25:e0097824. doi: 10.1128/aem.00978-24 DOI: https://doi.org/10.1128/aem.00978-24. .
  • Soder-Walz JM, Wasmund K, Deobald D, Vicent T, Adrian L (*), Marco-Urrea E (2023). Respiratory protein interactions in Dehalobacter sp. strain 8M revealed through genomic and native proteomic analyses. Environ. Microbiol. 1-17 DOI: https://doi.org/10.1111/1462-2920.16464. .
  • Wasmund E, Trueba-Santiso A, Vicent T, Adrian L, Vuilleumier S, Marco-Urrea E (*) (2023). Proteogenomics of the novel Dehalobacterium formicoaceticum strain EZ94 highlights a key role of methyltransferases during anaerobic dichloromethane degradation. Environ. Sci. Poll. Res. DOI: https://doi.org/10.1007/s11356-023-28144-1. .
  • Avila R, Justo A, Carrero E, Crivillés E, Vicent T, Blánquez P (*) (2022). Water resource recovery coupling microalgae wastewater treatment and sludge co-digestion for bio-wastes valorisation at industrial pilot-scale. Bioresour. Technol. 343, 26080. DOI: http://10.1016/j.biortech.2021.126080. .
  • Avila R, García-Vara M, López-García E, Postigo C, López de Alda M (*), Vicent T, Blánquez P (*). (2022). Evaluation of an outdoor pilot-scale tubular photobioreactor for removal of selected pesticides from water. Sci. Total Environ. 804, 150040. DOI: http://10.1016/j.scitotenv.2021.150040. .
  • Hom-Diaz A, Jaén-Gil A, Rodríguez-Mozaz S, Barceló D, Vicent T, Blánquez P (*) (2022). Insights into removal of antibiotics by selected microalgae (Chlamydomonas reinhardtii, Chlorella sorokiniana, Dunaliella tertiolecta and Pseudokirchneriella subcapitata). Algal Res. 61, 102560. DOI: http://0.1016/j.algal.2021.102560. .
  • Soder-Walz JM, Torrentó C, Algora C, Wasmund K, Cortés P, Soler A, Vicent T, Rosell M (*), Marco-Urrea E (2022). Trichloromethane dechlorination by a novel Dehalobacter sp. strain 8M reveals a third contrasting C and Cl isotope fractionation pattern within this genus. Sci. Total Environ. 813, 152659. DOI: http://10.1016/j.scitotenv.2021.152659. Repository.
  • Trueba-Santiso A, Palau J, Soder-Walz JM, Vicent T, Marco-Urrea E (*) (2022). Assessment of aerobic biodegradation of lower-chlorinated benzenes in contaminated ground water using field-derived microcosms and compound-specific carbon isotope fractionation. J.Environ. Sci.118, 204–213. DOI: http://10.1016/j.jes.2021.12.025. Repository.
  • Avila R, Carrero E, Vicent T, Blánquez P (*) (2021). Integration of enzymatic pretreatment and sludge co-digestion in biogasproduction from microalgae. Waste Manage. 124, 254-263. DOI: http://10.1016/j.wasman.2021.01.042. Repository.
  • Avila R, Peris A, Eljarrat E, Vicent T, Blánquez P (*) (2021). Biodegradation of hydrophobic pesticides by microalgae: Transformation products and impact on algae biochemical methane potential. Sci. Total Environ. 754,142114 DOI: http://10.1016/j.scitotenv.2020.142114. .
  • Avila R, Carrero E, Crivillés E, Mercader M, Vicent T, Blánquez P(*) (2020). Effects of low temperature thermal pretreatments in solubility and co-digestion of waste activated sludge and microalgae mixtures. Algal Res. 50,101965. DOI: http://10.1016/j.algal.2020.101965. .
  • Trueba-Santiso A, Fernández-Verdejo D, Marco-Rius I, Soder-Walz JM, Casabella O, Vicent T, Marco-Urrea E (*) (2020). Interspecies interaction and effect of co-contaminants in an anaerobic dichloromethane-degrading culture. Chemosphere 240, 124877. DOI: http://0.1016/j.chemosphere.2019.124877. Repository.
  • Abad V, Avila R, Vicent T, Xavier Font(*) (2019). Promoting circular economy in the surroundings of an organic fraction of municipal solid waste anaerobic digestion treatment plant: Biogas production impact and economic factors. Bioresour. Technol. 283, 10-17 DOI: http://10.1016/j.biortech.2019.03.064. .
  • Blázquez-Pallí N, Rosell M, Varias J, Bosch M, Soler A, Vicent T, Marco-Urrea E (*) (2019). Multi-method assessment of the intrinsic biodegradation potential of an aquifer contaminated with chlorinated ethenes at an industrial area in Barcelona (Spain). Environ. Pollut. 244, 165-173. DOI: http://10.1016/j.envpol.2018.10.013. .
  • Blázquez-Palli N, Rosell M, Varias J, Bosch M, Soler A, Vicent T, Marco-Urrea E (*) (2019). Integrative isotopic and molecular approach for the diagnosis and implementation of an efficient in-situ enhanced reductive dechlorination ethenes. Water Res. 267, 11106. DOI: http://10.1016/j.watres.2019.115106. Repository.
  • Blázquez-Pallí N, Shouakar-Stash O, Palau J, Trueba-Santiso A, Varias J, Bosch M, Soler A, Vicent T, Marco-Urrea E(*), Rosell M (2019). Use of dual element isotope analysis and microcosm studies to determine the origin and potential anaerobic biodegradation of dichloromethane in two multi-contaminated aquifers. Science of the Total Environment 696 , 134066. DOI: http://10.1016/j.scitotenv.2019.134066. .
  • Jaén-Gil A, Hom-Diaz A, Llorca M, Vicent T, Blánquez P, Barceló D, Rodríguez-Mozaz S (*) (2018). An automated on-line turbulent flow liquid-chromatography technology coupled to a high resolution mass spectrometer LTQ-Orbitrap for suspect screening of antibiotic transformation products during microalgae wastewater treatment. J. Chromatography A,1568, 57–68. DOI: http://0.1016/j.chroma.2018.06.027. .
  • Liu J, Morales-Narzaez E, Orozco J, Vicent T, Zhou G-H (*), Merkoci A (*) (2017) Bioluminiscent nanopaper for the fast screening of toxic substances. Nano Res. 11(1), 114-125 DOI: http://10.1007/s12274-017-1610-7. .
  • Lucas D, Castellet-Rovira F, Villagrasa M, Badia-Fabregat M, Barceló D, Vicent T, Caminal G, Sarrà M, Rodríguez-Mozaz S (*) (2018). The role of sorption processes in the removal of pharmaceuticals by fungal treatment of wastewater. Sci. Total Environ. 610–611, 1147–1153. DOI: http://10.1016/j.scitotenv.2017.08.118. .
  • Parladé O, Hom-Diaz A, Blánquez P (*), Martínez-Alonso M, Vicent T, Gaju N (2018). Effect of cultivation conditions on β-estradiol removal in laboratory and pilot-plant photobioreactors by an algal-bacterial consortium treating urban wastewater. Water Res. 137, 86-96. DOI: http://10.1016/j.watres.2018.02.060. Repository.
  • Badia-Fabregat M, Lucas D, Tuomivirta T, Fritzec H, Pennanen T, Rodríguez-Mozaz S, Barceló D, Caminal G (*), Vicent T (2017). Study of the effect of the bacterial and fungal communities present in realwastewater effluents on the performance of fungal treatments. Sci. Total Environ. 579, 366–377. DOI: http://10.1016/j.scitotenv.2016.11.088. Repository.
  • España-Gamboa E, Vicent T, Font X, Dominguez-Maldonado J, Canto-Canché B, Alzate-Gaviria L (*) (2017). Pretreatment of vinasse from the sugar refinery industry under non-sterile conditions by in a fluidized bed bioreactor and its effect when coupled to an UASB reactor. J. Biol Eng. 11:6. DOI: http://10.1186/s13036-016-0042-3. .
  • Hom-Diaz A, Jaén-Gil A, Bello-Laserna I, Rodríguez-Mozaz S, Vicent T, Barceló D, Blánquez P (*) (2017). Performance of a microalgal photobioreactor treating toilet wastewater: Pharmaceutically active compound removal and biomass harvesting. Sci. Total Environ. 592, 1–11. DOI: http://10.1016/j.scitotenv.2017.02.224. .
  • Hom-Diaz A, Norvill ZN, Blánquez P, Vicent T, Guieysse B (*) (2017). Ciprofloxacin removal during secondary domestic wastewater treatment in high rate algal ponds. Chemosphere 180, 33-41. DOI: http://0.1016/j.chemosphere.2017.03.125. .
  • Llorca M, Badia-Fabregat M, Rodríguez-Mozaz(*), Caminal G, Vicent T, Barceló D (2017). Fungal treatment for the removal of endocrine disrupting compoundsfrom reverse osmosis concentrate: Identification and monitoring oftransformation products of benzotriazoles. Chemosphere 184, 1054-1070. DOI: http://10.1016/j.chemosphere.2017.06.053. .
  • Mortan SH, Martín-González L, Vicent T, Caminal G, Nijenhuis I, Adrian L, Marco-Urrea E (*) (2017). Detoxification of 1,1,2-trichloroethane to ethene in a bioreactor co-culture of Dehalogenimonas and Dehalococcoides mccartyi strains. J. Hazard. Mater. 331, 218–225. DOI: http://10.1016/j.jhazmat.2017.02.043. .
  • Trueba-Santiso A, Parladé E, Rosell M, Lliros M, Mortan SH, Martínez-Alonso M, Gaju N, Martín-González L, Vicent T, Marco-Urrea E (*) (2017). Molecular and carbon isotopic characterization of an anaerobic stableenrichment culture containing Dehalobacterium sp. during dichloromethane fermentation. Sci.Total Environ. 581–582, 640–648. DOI: http://10.1016/j.scitotenv.2016.12.174. .
  • Abraham J, Gea T (*), Vicent T (2016). Impact of biostimulation and bioaugmentation as biorremediation systems on diesel contaminated soils. Environ. Eng. Manag. J. 15,8, 1743-1753. DOI: http://10.30638/eemj.2016.187. .
  • Badia-Fabregat M, Lucas D, Pereira MA, Alves M, Pennanen T, Fritze H, Rodríguez-Mozaz S, Barceló D, Vicent T, Caminal G(*) (2016).Continuous fungal treatment of non-sterile veterinary hospital effluent: pharmaceuticals removal and microbialcommunity assessment. Appl Microbiol Biotechnol 100, 2401–2415. DOI: http://10.1007/s00253-015-7105-0. .
  • Castro-Gutiérrez V, Masís-Mora M, Caminal G, Vicent T, Carazo-Rojas E, Mora-López M, Rodríguez-Rodríguez CE (*) (2016). A microbial consortium from a biomixture swiftly degrades high concentrations of carbofuran in fluidized-bed reactors. Process Biochem. 51, 1585–1593. DOI: http://10.1016/j.procbio.2016.07.003. .
  • Hom-Diaz A (*), Baldi F, Blánquez P, Lombardi L, Martín-González L, Vicent T (2016). Exhausted fungal biomass as a feedstock for increasing methane production during the anaerobic digestion of organic wastes. Waste Biomass Valor, 7, 307–315. DOI: http://10.1007/s12649-015-9450-8. .
  • Hom-Diaz A, Passos F, Ferrer I, Vicent T, Blánquez P(*) (2016). Enzymatic pretreatment of microalgae using fungal broth from Trametes versicolor and commercial laccase for improved biogas production. Algal Res. 19, 184–188. DOI: http://10.1016/j.algal.2016.08.006. .
  • Lucas D, Badia-Fabregat M, Vicent T, Caminal G, Rodríguez-Mozaz S(*), Balcázar JL, Barceló D (2016). Fungal treatment for the removal of antibiotics and antibiotic resistance genes in veterinary hospital wastewater. Chemosphere 152, 301-308. DOI: http://10.1016/j.chemosphere.2016.02.113. .
  • Passos F, Hom-Diaz A, Blánquez P, Vicent T, Ferrer I (*) (2016). Improving biogas production from microalgae by enzymatic pretreatment. Bioresour Technol. 199, 347–351. DOI: http://10.1016/j.biortech.2015.08.084. .
  • Badia-Fabregat M, Lucas D, Gros M, Rodríguez-Mozaz S, Barceló D, Caminal G (*),Vicent T (2015). Identification of some factors affecting pharmaceutical active compounds (PhACs) removal in real wastewater. Case study of fungal treatment of reverse osmosis concentrate.J.Hazard. Mater. 283, 663–671. DOI: http://10.1016/j.jhazmat.2014.10.007. .
  • España-Gamboa E, Vicent T, Font X, Mijangos-Cortés J,Canto-Canché B, Alzate-Gaviria L(*) (2015). Phenol and color removal in hydrous ethanol vinasse in an air-pulsed bioreactor using Trametes versicolor. J. Biochem. Tech. 6(3), 982-986. . .
  • Ferrando-Climent L, Cruz-Morató C, Marco-Urrea E, Vicent T, Sarrà M, Rodriguez-Mozaz S (*), Barceló D (2015). Non conventional biological treatment based on Trametes versicolor for the elimination of recalcitrant anticancer drugs in hospital wastewater. Chemosphere 136, 9–19. DOI: http://10.1016/j.chemosphere.2015.03.051. .
  • Fragkhou MC (*), Vicent T, Gabarrell X (2015). An ecosystemic approach for assessing the urban water self-sufficiency potential: lessons from the Mediterranean. Urban Water J. 13:7, 663-675 DOI: http://10.1080/1573062X.2015.1024686. .
  • Hom-Diaz A, Llorca M, Rodríguez-Mozaz S, Vicent T, Barceló D, Blánquez P(*) (2015). Microalgae cultivation on wastewater digestate:b-estradiol and 17a-ethynylestradiol degradation and transformation products identification. J. Environ. Manage. 155, 106-113. DOI: http://10.1016/j.jenvman.2015.03.003. .
  • Badia-Fabregat M, Rosell M, Caminal G, Vicent T, Marco-Urrea E (*) (2014). Use of stable isotope probing to assess the fate of emerging contaminants degraded by white-rot fungus. Chemosphere 103, 336–342. DOI: http://10.1016/j.chemosphere.2013.12.029. .
  • Cruz-Morató C, Lucas D, Llorca M, Rodriguez-Mozaz S, Gorga M, Petrovic M, Barceló D, Vicent T, Sarrà M, Marco-Urrea E (*) (2014). Hospital wastewater treatment by fungal bioreactor: removal efficiency for pharmaceuticals and endocrine disruptors compounds. Sci Total Environ. 493, 365-376. DOI: http://10.1016/j.scitotenv.2014.05.117. .
  • Gros M, Cruz-Morato C, Marco-Urrea E, Longrée Ph, Singer H, Sarrà M, Hollender J, Vicent T, Rodriguez-Mozaz S (*), Barceló D (2014). Biodegradation of the X-ray contrast agentiopromide and the fluoroquinolone antibiotic ofloxacin by the white rot fungusTrametes versicolor in hospital wastewaters and identification of degradation products. Water Res. 60, 228-241. DOI: http://10.1016/j.watres.2014.04.042. .
  • Mir-Tutusaus JA, Masís-Mora M, Corcellas C, Eljarrat E, Barceló D, Sarrà M, Caminal G, Vicent T, Rodríguez-Rodríguez CE (*) (2014). Degradation of selected agrochemicals by the white rot fungusTrametes versicolor. Sci.Total Environ. 500–501, 235–242. DOI: http://10.1016/j.scitotenv.2014.08.116. Repository.
  • Rodríguez-Rodríguez CE (*), Lucas D, Barón E, Gago-Ferrero P, Molins-Delgado D, Rodríguez-Mozaz S, Eljarrat E, Díaz-Cruz MS, Barceló D, Caminal G, Vicent T (2014). Re-inoculation strategies enhance the degradation of emerging pollutants in fungal bioaugmentation of sewage sludge. Bioresour. Technol. 168, 180–189. DOI: http://10.1016/j.biortech.2014.01.124. .
  • Casas N , Blánquez P (*), Vicent T, Sarrà M (2013). Laccase production by Trametes versicolor under limited-growth conditions using dyes as inducers. Environ. Technol. 34:1, 113-119 DOI: http://10.1080/09593330.2012.683820. .
  • Casas N, Blánquez P (*), Vicent T, Sarrà M (2013). Mathematical model for dye decoloration and laccase production by Trametes versicolor in fluidized bioreactor. Biochem. Eng. J. 80, 45–52 DOI: http://10.1016/j.bej.2013.09.010. .
  • Cruz-Morató C, Ferrando Climent L, Rodriguez-Mozaz S, Barceló D, Marco-Urrea E, Vicent T, Sarrà M (*) (2013). Degradation of pharmaceuticals in non-sterile urban wastewater by Trametes versicolor in a fluidized bioreactor. Wat Res 47, 3200-5210. DOI: http://10.1016/j.watres.2013.06.007. .
  • Cruz-Morató C, Jelíc A, Perez S, Petrovic M, Barceló D, Marco-Urrea E, Sarrà M (*), Vicent T (2013). Continuous treatment of clofibric acid by Trametes versicolor in a fluidized bed bioreactor: Identification of transformation products and toxicity assessment. Biochem. Eng. J. 75, 79–85. DOI: http://10.1016/j.bej.2013.03.020. .
  • Folch A (*), Vilaplana M, Amado L, Vicent T, Caminal G (2013). Fungal permeable reactive barrier to remediate groundwater in an artificial aquifer. J. Hazard. Mater. 262, 554-560. DOI: http://10.1016/j.jhazmat.2013.09.004. .
  • Martín-González L , Font X, Vicent T (*) (2013). Alkalinity ratios to identify process imbalances in anaerobic digesters treating source-sorted organic fraction of municipal wastes. Biochem. Eng. J. 76, 1–5. DOI: http://10.1016/j.bej.2013.03.016. .
  • Badia-Fabregat M, Rodríguez-Rodríguez CE, Gago-Ferrero P, Olivares A, Piña B, Díaz-Cruz MS, Vicent T, Barceló D, Caminal G (*) (2012). Degradation of UV filters in sewage sludge and 4-MBC in liquid medium by the ligninolytic fungusTrametes versicolor. J. Environ. Manage. 104, 114-120. DOI: http://10.1016/j.jenvman.2012.03.039. .
  • Gabarrell X (*), Font M, Vicent T, Caminal G, Sarrà M, Blánquez P (2012). A comparative life cycle assessment of two treatment technologies for the Grey Lanaset G textile dye: biodegradation by Trametes versicolor and granular activated carbon adsorption. Int J Life Cycle Assess 17, 613-624 DOI: http://10.1007/s11367-012-0385-z. .
  • Gago-Ferrero P, Badia-Fabregat M, Olivares M, Piña B, Blánquez P, Vicent T, Caminal G, Díaz-Cruz MS (*), Barceló D (2012). Evaluation of fungal- and photo-degradation as potential treatments for the removalof sunscreens BP3 and BP1. Sci. Total Environ. 427–428, 355–363. DOI: http://10.1016/j.scitotenv.2012.03.089. .
  • Jelic A, Cruz-Morato C, Marco-Urrea E, Sarrà M, Perez S (*), Vicent T, Petrovic M, Barceló (2012). Degradation of carbamazepine by Trametes versicolor in an air pulsed fluidized bed bioreactor and identification of intermediates. Water Res. 46, 955-964. DOI: http://10.1016/j.watres.2011.11.063. .
  • Rodriguez-Escales P, Sayara T, Vicent T, Folch A (2012). Influence of soil granulometry on pyrene desorption in groundwater using surfactants. Water Air Soil Pollut 223, 125–133. DOI: http://10.1007/s11270-011-0844-3. .
  • Rodríguez-Rodríguez CE (*), García-Galán MJ, Blánquez P, Díaz-Cruz MS, Barceló D, Caminal G, Vicent T (2012). Continuous degradation of a mixture of sulfonamides by Trametes versicolor and identification of metabolites from sulfapyridine and sulfathiazole. J. Hazard. Mater. 213–214, 347–354. DOI: http://10.1016/j.jhazmat.2012.02.008. .
  • Rodríguez-Rodríguez CE (*),Jelić A, Pereira MA , Sousa DZ, Petrović M, Alves MM, Barceló D, Caminal G, Vicent T (2012). Bioaugmentation of sewage sludge with Trametes versicolor in solid-phase biopiles produces degradation of pharmaceuticals and affects microbial communities. Environ. Sci. Technol. 46, 12012−12020. DOI: http://10.1021/es301788n. .
  • Rodríguez-Rodríguez CE, Barón E, Gago-Ferrero P, Jelic A, Llorca M, Farré M, Díaz-Cruz MS, Eljarrat E, Petrovic M, Caminal G (*), Barceló D, Vicent T (2012). Removal of pharmaceuticals, polybrominated flame retardants and UV-filters from sludge by the fungusTrametes versicolor in bioslurry reactor. J. Hazard. Mater. 233–234, 235–243. DOI: http://10.1016/j.jhazmat.2012.07.024. .

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