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Solid-state fermentation of paper sludge to obtain spores of the fungus Trichoderma asperellum


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Martínez Y, Rivero C. Efecto del uso de lodo papelero sobre el contenido de N, P, K en dos suelos de importancia en la Cuenca del Lago de Valencia. Rev Tec Fac Ing Univ 2007; 30: 63-70.MartínezYRiveroCEfecto del uso de lodo papelero sobre el contenido de N, P, K en dos suelos de importancia en la Cuenca del Lago de ValenciaRev Tec Fac Ing Univ2007306370Search in Google Scholar

Ochoa J. Feasibility of recycling pulp and paper mill sludge in the paper and board industries. Resour Conserv Recy 2008; 52(7): 965-972.OchoaJFeasibility of recycling pulp and paper mill sludge in the paper and board industriesResour Conserv Recy200852796597210.1016/j.resconrec.2008.02.005Search in Google Scholar

Shin C, Lee J, Lee J, Park S. Enzyme production of Trichoderma reesei Rut C-30 on various lignocellulosic substrates. Appl Biochem Micro 2000; 84-86: 237-245.ShinCLeeJLeeJParkSEnzyme production of Trichoderma reesei Rut C-30 on various lignocellulosic substratesAppl Biochem Micro200084-8623724510.1007/978-1-4612-1392-5_17Search in Google Scholar

Lee S, Koo Y, Lin J. Production of lactic acid from paper sludge by simultaneous saccharification and fermentation. Adv Biochem Eng Biot 2004; 87: 173-194.LeeSKooYLinJProduction of lactic acid from paper sludge by simultaneous saccharification and fermentationAdv Biochem Eng Biot20048717319410.1007/b94365Search in Google Scholar

Quinchia A, Valencia M, Giraldo G. Uso de lodos provenientes de la industria papelera en la elaboración de paneles prefabricados para la construcción. Revista EIA 2007; 8: 9-19.QuinchiaAValenciaMGiraldoGUso de lodos provenientes de la industria papelera en la elaboración de paneles prefabricados para la construcciónRevista EIA20078919Search in Google Scholar

Garg V, Gupta. Stabilization of primary of sewage sludge during vermicomposting. J Hazard Mater 2008; 153: 1023-1038.GargV GuptaStabilization of primary of sewage sludge during vermicompostingJ Hazard Mater20081531023103810.1016/j.jhazmat.2007.09.055Search in Google Scholar

Hara K, Mino T. Environmental assessment of sewage sludge recycling options and treatment processes in Tokio. Waste Manage 2008; 28: 2645-2652.HaraKMinoTEnvironmental assessment of sewage sludge recycling options and treatment processes in TokioWaste Manage2008282645265210.1016/j.wasman.2008.02.020Search in Google Scholar

Afridi H, Arain M, Jalbani N, Jamali M, Kazi T, Memon A, Shan A. Use of sewage sludge after liming as fertilizer maize growth. Pedosphere 2008; 18: 203-213.AfridiHArainMJalbaniNJamaliMKaziTMemonAShanAUse of sewage sludge after liming as fertilizer maize growthPedosphere20081820321310.1016/S1002-0160(08)60008-9Search in Google Scholar

Wang W, Kang L, Lee Y. Production of cellulase from kraft paper mill sludge by Trichoderma reesei rut C-30. Appl Biochem Biotech 2010; 161(1-8): 382-94.WangWKangLLeeYProduction of cellulase from kraft paper mill sludge by Trichoderma reesei rut C-30Appl Biochem Biotech20101611-83829410.1007/s12010-009-8863-x19997787Search in Google Scholar

García A, Rivero C. Efecto de la aplicación de lodos papeleros sobre los contenidos de carbono microbiano y la actividad de deshidrogenasa en suelos agrícolas. Venesuelos 2011; 18: 29-35.GarcíaARiveroCEfecto de la aplicación de lodos papeleros sobre los contenidos de carbono microbiano y la actividad de deshidrogenasa en suelos agrícolasVenesuelos2011182935Search in Google Scholar

Shen J, Agblevor F. Ethanol production of semi-simultaneous saccharification and fermentation from mixture of cotton gin waste and recycled paper sludge. Bioproc Biosyst Eng 2011; 34(1): 33-43.ShenJAgblevorFEthanol production of semi-simultaneous saccharification and fermentation from mixture of cotton gin waste and recycled paper sludgeBioproc Biosyst Eng2011341334310.1007/s00449-010-0444-4301518720559849Search in Google Scholar

Chen H, Han Q, Daniel K, Venditti R, Jameel H. Conversion of industrial paper sludge to ethanol: fractionation of sludge and its impact. Appl Biochem Biotech 2014; 174(6): 2096-2113.ChenHHanQDanielKVendittiRJameelHConversion of industrial paper sludge to ethanol: fractionation of sludge and its impactAppl Biochem Biotech201417462096211310.1007/s12010-014-1083-z25163879Search in Google Scholar

Gottumukkala L, Haigh K, Collard F, Van Rensburg E, Görgens J. Opportunities and prospects of biorefinery-based valorisation of pulp and paper sludge. Bioresource Technol 2016; 215: 37-49.GottumukkalaLHaighKCollardFVanRensburg EGörgensJOpportunities and prospects of biorefinery-based valorisation of pulp and paper sludgeBioresource Technol2016215374910.1016/j.biortech.2016.04.01527080100Search in Google Scholar

Donmez A, Yelb H, Boranc S, Pesmand E. Cement type composite panels manufactured using paper mill sludge as filler. Constr Build Mater 2017; 142: 410–416.DonmezAYelbHBorancSPesmandECement type composite panels manufactured using paper mill sludge as fillerConstr Build Mater201714241041610.1016/j.conbuildmat.2017.03.099Search in Google Scholar

Lai T, Pham T, Adjallé K, Montplaisir D, Brouillette F, Barnabé S. Production of Trichoderma reesei RUT C-30 lignocellulolytic enzymes using paper sludge as fermentation substrate: An approach for on-site manufacturing of enzymes for biorefineries. Waste Biomass Valori 2017; 8 (4): 1081–1088.LaiTPhamTAdjalléKMontplaisirDBrouilletteFBarnabéSProduction of Trichoderma reesei RUT C-30 lignocellulolytic enzymes using paper sludge as fermentation substrate: An approach for on-site manufacturing of enzymes for biorefineriesWaste Biomass Valori2017841081108810.1007/s12649-016-9686-ySearch in Google Scholar

Korhonen J, Honkasalo A, Seppälä J. Circular Economy: The Concept and its Limitations. Ecol Econ 2018; 143: 37–46.KorhonenJHonkasaloASeppäläJCircular Economy: The Concept and its LimitationsEcol Econ2018143374610.1016/j.ecolecon.2017.06.041Search in Google Scholar

Buchert J, Pere J, Ranua M, Siika-aho M, Viikari J. Trichoderma reesei cellulases in bleaching of kraft pulp. Appl Microbiol Biot 1994; 40: 941-945.BuchertJPereJRanuaMSiika-ahoMViikariJ.Trichoderma reesei cellulases in bleaching of kraft pulpAppl Microbiol Biot19944094194510.1007/BF00174003Search in Google Scholar

Argüello H, Castellanos D, Cruz N. Degradación de celulosa y xilano por microorganismos aislados de dos tipos de compost de residuos agrícolas en la sabana de Bogotá. Revista Colombiana de Ciencias Hortícolas 2009; 3 (2): 237-249.ArgüelloHCastellanosDCruzNDegradación de celulosa y xilano por microorganismos aislados de dos tipos de compost de residuos agrícolas en la sabana de BogotáRevista Colombiana de Ciencias Hortícolas20093223724910.17584/rcch.2009v3i2.1215Search in Google Scholar

Bischof R, Ramoni J, Seiboth B. Cellulases and beyond: the first 70 years of the enzyme producer Trichoderma reesei. Microb Cell Fact 2016; 15(1): 106.BischofRRamoniJSeibothBCellulases and beyond: the first 70 years of the enzyme producer Trichoderma reeseiMicrob Cell Fact201615110610.1186/s12934-016-0507-6490290027287427Search in Google Scholar

Harman G. Myths and dogmas of biocontrol: Changes in perceptions derived from research on Trichoderma harzianum T-22. Plant Dis 2000; 84: 377-393.HarmanGMyths and dogmas of biocontrol: Changes in perceptions derived from research on Trichoderma harzianum T-22Plant Dis20008437739310.1094/PDIS.2000.84.4.37730841158Search in Google Scholar

Benítez T, Delgado J, Rey M, Rincón A, Limón M. Mejora de cepas de Trichoderma para su empleo como biofungicidas. Rev Iberoam Micol 2000; 17: 31-36.BenítezTDelgadoJReyMRincónALimónMMejora de cepas de Trichoderma para su empleo como biofungicidasRev Iberoam Micol2000173136Search in Google Scholar

Vos C, De Cremer K, Cammue B, De Coninck B. The toolbox of Trichoderma spp. in the biocontrol of Botrytis cinerea disease. Mol Plant Pathol 2015; 16(4): 400-412.VosCDeCremer KCammueBDeConinck BThe toolbox of Trichoderma sppin the biocontrol of Botrytis cinerea disease. Mol Plant Pathol201516440041210.1111/mpp.12189663853825171761Search in Google Scholar

Centeno R, Pavone D. Producción de enzimas celulasas y biomasa del hongo Trichoderma reesei utilizando lodo papelero como fuente de carbono. Revista de la Sociedad Venezolana de Microbiología 2015; 35: 40-46.CentenoRPavoneDProducción de enzimas celulasas y biomasa del hongo Trichoderma reesei utilizando lodo papelero como fuente de carbonoRevista de la Sociedad Venezolana de Microbiología2015354046Search in Google Scholar

Pavone D, Dorta B. Diversidad del hongo Trichoderma spp. en plantaciones de maíz de Venezuela. Interciencia 2015; 40(1): 23-31.PavoneDDortaBDiversidad del hongo Trichoderma sppen plantaciones de maíz de Venezuela. Interciencia20154012331Search in Google Scholar

Dorta B, Bosch A, Arcas J, Ertola R. High level of sporulation of Metarhizium anisopliae in a medium containing by-products. Appl Microbiol Biot 1990; 33: 712-715.DortaBBoschAArcasJErtolaRHigh level of sporulation of Metarhizium anisopliae in a medium containing by-productsAppl Microbiol Biot19903371271510.1007/BF00604944Search in Google Scholar

Fink S, Schubert M, Schwarse F. In vitro screening of an antaginisc Trichoderma strain against wood decay fungi. Arboricultural Journal 2008; 31: 227-248.FinkSSchubertMSchwarseFIn vitro screening of an antaginisc Trichoderma strain against wood decay fungiArboricultural Journal20083122724810.1080/03071375.2008.9747541Search in Google Scholar

Chinn M, Nokes S, Strobel H. Influence of process conditions on end product formation from Clostridium thermocellum 27405 in solid substrate cultivation on paper pulp sludge. Bioresource Technol 2007; 98: 2184–2193.ChinnMNokesSStrobelHInfluence of process conditions on end product formation from Clostridium thermocellum 27405 in solid substrate cultivation on paper pulp sludgeBioresource Technol2007982184219310.1016/j.biortech.2006.08.033Search in Google Scholar

Barzegar M, Hamidi Z, Latifian M (2007) Evaluation of culture conditions for cellulase production by two Trichoderma reesei mutants under solid-state fermentation conditions. Bioresource Technol 2007; 98: 3634-3637.BarzegarMHamidiZLatifianM2007Evaluation of culture conditions for cellulase production by two Trichoderma reesei mutants under solid-state fermentation conditionsBioresource Technol2007983634363710.1016/j.biortech.2006.11.019Search in Google Scholar

Gervais P, Molin P. The role of water in solid-state fermentation. Biochem Eng J 2003; 13(2-3):85-101.GervaisPMolinPThe role of water in solid-state fermentationBiochem Eng J2003132-38510110.1016/S1369-703X(02)00122-5Search in Google Scholar

Aceh D. Spore production of biocontrol agent Trichoderma harzianum Effect of C/N ratio and glucose concentration. Journal Rekayasa Kimia dan Lingkubga 2007; 6: 35-40.AcehDSpore production of biocontrol agent Trichoderma harzianum Effect of C/N ratio and glucose concentrationJournal Rekayasa Kimia dan Lingkubga200763540Search in Google Scholar

Agosin E, Crawford A, Martin R, Mun G, Volpe D. Effect of culture conditions on spore shelf life of the biocontrol agent Trichoderma harzianum. World J Microb Biot 1997; 13: 225-232.AgosinECrawfordAMartinRMunGVolpeDEffect of culture conditions on spore shelf life of the biocontrol agent Trichoderma harzianumWorld J Microb Biot19971322523210.1023/A:1018502217083Search in Google Scholar

Gao L, Liu X. A novel two-stage cultivation method to optimize carbon concentration and carbon-to-nitrogen ratio for sporulation of biocontrol fungi. Folia Microbiol 2009; 54(2):142-6.GaoLLiuXA novel two-stage cultivation method to optimize carbon concentration and carbon-to-nitrogen ratio for sporulation of biocontrol fungiFolia Microbiol2009542142610.1007/s12223-009-0021-x19418252Search in Google Scholar

Castro B, Valencia J. Estudios de algunos aspectos biológicos de Trichoderma sp. antagónicos a Rosellinia bunodes. Cenicafé 2004; 55 (1): 16-28.CastroBValenciaJEstudios de algunos aspectos biológicos de Trichoderma spantagónicos a Rosellinia bunodes Cenicafé20045511628Search in Google Scholar

Singh V, Sanmukh R, Kumar B, Baha H. Trichoderma asperellum spore dose depended modulation of plant growth in vegetable crops. Microbiol Res 2016; 193: 74-86.SinghVSanmukhRKumarBBahaH.Trichoderma asperellum spore dose depended modulation of plant growth in vegetable cropsMicrobiol Res2016193748610.1016/j.micres.2016.09.00227825488Search in Google Scholar

Herrera-Parra E, Cristóbal-Alejo J, Ramos-Zapata J. Trichoderma strains as growth promoters in Capsicum annuum and as biocontrol agents in Meloidogyne incognita. Chil J Agr Res 2017; 77(4) http://dx.doi.org/10.4067/S0718-58392017000400318Herrera-ParraECristóbal-AlejoJRamos-ZapataJ.Trichoderma strains as growth promoters in Capsicum annuum and as biocontrol agents in Meloidogyne incognitaChil J Agr Res2017774http://dx.doi.org/10.4067/S0718-5839201700040031810.4067/S0718-58392017000400318Search in Google Scholar

González P, Guigón C. Selección de cepas nativas de Trichoderma spp. con actividad antagónica sobre Phytophthora capsici Leonian y promotoras de crecimiento en el cultivo de chile Capsicum annuum L.). Revista Mexicana de Fitopatología 2004; 22: (1) 117 – 124.GonzálezPGuigónCSelección de cepas nativas de Trichoderma sppcon actividad antagónica sobre Phytophthora capsici Leonian y promotoras de crecimiento en el cultivo de chile Capsicum annuum L.). Revista Mexicana de Fitopatología2004221117124Search in Google Scholar

Björkman T, Harman G, Mastouri F. Seed treatment with Trichoderma harzianum alleviates biotic, abiotic, and physiological stresses in germinating seeds and seedlings. Phytopathology 2010; 100 (11): 1213 – 1221.BjörkmanTHarmanGMastouriFSeed treatment with Trichoderma harzianum alleviates biotic, abiotic, and physiological stresses in germinating seeds and seedlingsPhytopathology2010100111213122110.1094/PHYTO-03-10-009120649416Search in Google Scholar

Crowley D, Yang C. Rhizosphere microbial community structure in relation to root location and plant iron nutritional status. Appl Environ Microb 2000; 66: 365 – 369.CrowleyDYangCRhizosphere microbial community structure in relation to root location and plant iron nutritional statusAppl Environ Microb200066365369Search in Google Scholar

Marín-Guirao J, Rodríguez-Romera P, Lupión-Rodríguez B, Camacho-Ferre F, Tello-Marquina J. Effect of Trichoderma on horticultural seedlings’ growth promotion depending on inoculum and substrate type. J Appl Microbiol 2016; 121(4):1095-10Marín-GuiraoJRodríguez-RomeraPLupión-RodríguezBCamacho-FerreFTello-MarquinaJEffect of Trichoderma on horticultural seedlings’ growth promotion depending on inoculum and substrate typeJ Appl Microbiol2016121410951010.1111/jam.1324527455199Search in Google Scholar

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