00789nam0 2200241 450 00002476720090320132842.020090320d1976----km-y0itay50------baitaITy-------001yyAnalisi della varianza e piano degli esperimentiFelice VianPadovaCleupstampa 1976285 p.24 cmAnalisi della varianza e piano degli esperimenti44035Varianza <statistica>51920Probabilità e matematica applicataVian,Felice103823ITUNIPARTHENOPE20090319RICAUNIMARC000024767211.5/104494NAVA22009Analisi della varianza e piano degli esperimenti44035UNIPARTHENOPE03945nam 22006495 450 991074114790332120230821181950.09789819945108981994510010.1007/978-981-99-4510-8(MiAaPQ)EBC30717197(Au-PeEL)EBL30717197(DE-He213)978-981-99-4510-8(PPN)272262994(CKB)28011015900041(OCoLC)1395183346(EXLCZ)992801101590004120230821d2023 u| 0engurcnu||||||||txtrdacontentcrdamediacrrdacarrierInvestigations into the Combustion Kinetics of Several Novel Oxygenated Fuels /by Wenyu Sun1st ed. 2023.Singapore :Springer Nature Singapore :Imprint: Springer,2023.1 online resource (178 pages)Springer Theses, Recognizing Outstanding Ph.D. Research,2190-5061Print version: Sun, Wenyu Investigations into the Combustion Kinetics of Several Novel Oxygenated Fuels Singapore : Springer,c2023 9789819945092 Introduction -- Experimental and kinetic modeling methods -- High-temperature kinetics of carbonate and ketone fuels -- Low-temperature oxidation kinetics of polyether fuels -- Addition effects of oxygenated fuels on hydrocarbon premixed flames -- Conclusions and perspective.In this thesis, attention was paid to several novel oxygenated fuels—carbonates, polyethers and ketones. Combustion kinetic investigations were performed for typical representative compounds, including dimethyl carbonate, diethyl carbonate, cyclopentanone, 3-pentanone, 1,2-dimethoxyethane and dimethoxymethane. For experiments, suitable diagnostic techniques were used to measure the detailed speciation information of the target fuels under different conditions. For kinetic modeling, rate coefficients for crucial elementary reactions were obtained through high-level theoretical calculations. Based on that, validated kinetic models with good predictive performances were developed. On the basis of experimental measurements and model interpretations, this work highlighted two important combustion characteristics regarding the practical use: the pollutant formation and the ignition performance. Besides, the correlation between oxygen-containing functional groups and the aforementioned combustion characteristics was revealed. To reveal the potential interactions between the reaction networks of oxygenated additives and the hydrocarbon base fuels during combustion. Chemical structures of laminar premixed flames fueled by binary fuels were measured, and by changing the initial fuel compositions, the addition effects of the oxygenates on the fuel consumption and pollutant formation behaviors were explored. It was found that complicated chemical interactions do not exist in the reaction networks under the investigated conditions.Springer Theses, Recognizing Outstanding Ph.D. Research,2190-5061MaterialsCatalysisForce and energyMass spectrometryChemical kineticsMaterials for Energy and CatalysisMass SpectrometryReaction KineticsMaterials.Catalysis.Force and energy.Mass spectrometry.Chemical kinetics.Materials for Energy and Catalysis.Mass Spectrometry.Reaction Kinetics.620.1Sun Wenyu1424482MiAaPQMiAaPQMiAaPQBOOK9910741147903321Investigations into the Combustion Kinetics of Several Novel Oxygenated Fuels3553664UNINA