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Energies 2020, 13, 420 85 of 96 506. Loutzenhiser,P.G.;Muroyama,A.P.Areviewofthestate-of-the-artinsolar-drivengasificationprocesses with carbonaceous materials. Sol. Energy 2017, 156, 93–100. [CrossRef] 507. Barrio,M.;Gbel,B.;Rimes,H.;Henriksen,U.;Hustad,J.E.;Srensen,L.H.Steamgasificationofwoodcharand the effect of hydrogen inhibition on the chemical kinetics. In Progress in Thermochemical Biomass Conversion; Blackwell Science Ltd.: Oxford, UK, 2008; pp. 32–46. 508. Mckendry,P.Energyproductionfrombiomass(part3):Gasificationtechnologies.Bioresour.Technol.2002, 83, 55–63. [CrossRef] 509. Kumar,A.;Jones,D.D.;Hanna,M.A.Thermochemicalbiomassgasification:Areviewofthecurrentstatusof the technology. Energies 2009, 2, 556–581. [CrossRef] 510. Piatkowski, N.; Wieckert, C.; Weimer, A.W.; Steinfeld, A. Solar-driven gasification of carbonaceous feedstock—A review. Energy Environ. Sci. 2011, 4, 73–82. [CrossRef] 511. Sansaniwal,S.K.;Pal,K.;Rosen,M.A.;Tyagi,S.K.Recentadvancesinthedevelopmentofbiomassgasification technology: A comprehensive review. Renew. Sustain Energy Rev. 2017, 72, 363–384. [CrossRef] 512. Ruiz, J.A.; Juárez, M.C.; Morales, M.P.; Muñoz, P.; Mendívil, M.A. Biomass gasification for electricity generation: Review of current technology barriers. Renew. Sustain. Energy Rev. 2013, 18, 174–183. [CrossRef] 513. Villarini, M.; Marcantonio, V.; Colantoni, A.; Bocci, E. Sensitivity analysis of different parameters on the performance of a CHP internal combustion engine system fed by a biomass waste gasifier. Energies 2019, 12, 688. [CrossRef] 514. Guo,F.;Dong,Y.;Dong,L.;Guo,C.Effectofdesignandoperatingparametersonthegasificationprocess of biomass in a downdraft fixed bed: An experimental study. Int. J. Hydrog. Energy 2014, 39, 5625–5633. [CrossRef] 515. Ghassemi,H.;Shahsavan-markadeh,R.Effectsofvariousoperationalparametersonbiomassgasification process; a modified equilibrium model. Energy Convers. Manag. 2014, 79, 18–24. [CrossRef] 516. Kirsanovs,V.;Žandeckis,A.;Blumberga,D.;Veidenbergs,I.Theinfluenceofprocesstemperature,equivalence ratio and fuel moisture content on gasification process: A review. In Proceedings of the 27th International Conference on Efficiency, Cost, Optimization, Simulation and Environmental Impact of Energy Systems, ECOS 2014, Turku, Finland, 15–19 June 2014. 517. Parthasarathy,P.;Narayanan,K.S.Hydrogenproductionfromsteamgasificationofbiomass:Influenceof process parameters on hydrogen yield-A review. Renew. Energy 2014, 66, 570–579. [CrossRef] 518. Hernández, J.J.; Ballesteros, R.; Aranda, G. Characterisation of tars from biomass gasification: Effect of the operating conditions. Energy 2013, 50, 333–342. [CrossRef] 519. Beenackers,A.A.C.M.Biomassgasificationinmovingbeds,areviewofEuropeantechnologies.Renew.Energy 1999, 16, 1180–1186. [CrossRef] 520. Martínez,D.J.;Mahkamov,K.;Andrade,R.V.;Lora,E.E.S.Syngasproductionindowndraftbiomassgasifi ers and its application using internal combustion engines. Renew. Energy 2012, 38, 1–9. [CrossRef] 521. Warnecke,R.Gasificationofbiomass:Comparisonoffixedbedandfluidizedbedgasifier.BiomassBioenergy 2000, 18, 489–497. [CrossRef] 522. Basu,P.Chapter8—DesignofBiomassGasifiers.InBiomassGasification,PyrolysisandTorrefaction,2nded.; Elsevier: Amsterdam, The Netherlands, 2013; pp. 249–313. 523. Njikam, F.; Shahbazi, A.; Shirley, V.; Lee, C.; Serre, S.; Lemieux, P. Optimizing Synthesis Gas Yield from the Cross Draft Gasification of Woody Biomass. In Proceedings of the Air and Waste Management Association’s Annual Conference and Exhibition, AWMA, New Orleans, LA, USA, 20–23 June 2006. 524. Rüdisüli, M.; Schildhauer, T.J.; Biollaz, S.M.A.; Van Ommen, J.R. Scale-up of bubbling fluidized bed reactors—A review. Powder Technol. 2012, 217, 21–38. [CrossRef] 525. Kunii,D.;Levenspiel,O.Circulatingfluidized-bedreactors.Chem.Eng.Sci.1997,52,2471–2482.[CrossRef] 526. Couto,N.;Rouboa,A.;Silva,V.;Monteiro,E.;Bouziane,K.Influenceofthebiomassgasificationprocesseson the final composition of syngas. Energy Procedia 2013, 36, 596–606. [CrossRef] 527. Corella,J.;Toledo,J.M.;Molina,G.Areviewondualfluidized-bedbiomassgasifiers.Ind.Eng.Chem.Res. 2007, 46, 6831–6839. [CrossRef] 528. Zhou, J.; Chen, Q.; Zhao, H.; Cao, X.; Mei, Q.; Luo, Z.; Cen, K. Biomass—oxygen gasification in a high-temperature entrained-flow gasifier. Biotechnol. Adv. 2009, 27, 606–611. [CrossRef] [PubMed] 529. Kolb,T.;Krebs,L.;Santo,U.;Seifert,H.;Kuhn,D.;Wiemer,H.-J.;Pantouflas,E.;Zarzalis,N.Conversionof biomass based slurry in an entrained flow gasifier. Chem. Eng. Technol. 2007, 30, 967–969.PDF Image | Green Synthetic Fuels
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