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Seite - 212 - in Advanced Chemical Kinetics

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[8] GalvanD,Orives JR,CoppoRL, SilvaET,AngilelliKG,BorsatoD.Determinationof the kinetics and thermodynamics parameters of biodiesel oxidation reaction obtained from an optimizedmixture of vegetable oil and animal fat. Energy Fuels. 2013;27(11):6866- 6871.DOI:https://doi.org/10.1021/ef401927x [9] Vicente G, Martínez M, Aracil J, Esteban A. Kinetics of sunflower oil methanolysis. Industrial & Engineering Chemistry Research. 2005;44(15):5447-5454. DOI: https://doi. org/10.1021/ie040208j [10] StamenkovicOS,TodorovicZB,LazicLM,VeljkovicVB,SkalaDU.Kineticsof sunflower oil methanolysis at low temperatures. Bioresource Technology. 2008;99(5):1131-1140. DOI:https://doi.org/10.1016/j.biortech.2007.02.028 [11] ClarkWM,MedeirosNJ, BoydDJ, Snell JR. Biodiesel transesterification kineticsmoni- tored by pHmeasurement. Bioresource Technology. 2013;136:771-774. DOI: https://doi. org/10.1016/j.biortech.2013.03.089 [12] Tapanes NCO, Aranda DAG, Carneiro JWM, Antunes OAC. Transesterification of Jatrophacurcasoilglycerides:Theoretical andexperimental studiesofbiodiesel reaction. Fuel. 2008;87(10-11):2286-2295.DOI:https://doi.org/10.1016/j.fuel.2007.12.006 [13] EUROPEANCOMMITTEE FOR STANDARDIZATION. CSN EN 14103 – Fat and oil derivatives – Fatty AcidMethyl Esters (FAME) –Determination of ester and linolenic acidmethyl ester contents.Brussels:CEN.2011 [14] GelbardG, BrèsO, Vargas RM,Vielfaure F, SchuchardtUF. 1Hnuclearmagnetic reso- nancedeterminationof theyieldof the transesterificationof rapeseedoilwithmethanol. Journal of theAmericanOil Chemists’ Society. 1995;72:1239-1241. DOI: https://doi.org/ 10.1007/BF02540998 [15] Nehdi IA,SbihiHM,Al-ResayesS.I.RhazyastrictaDecneseedoil asanalternative,non- conventionalfeedstock for biodiesel production. Energy Conversion andManagement. 2014;81:400-406.DOI:http://dx.doi.org/10.1016/j.enconman.2014.02.038 [16] Kumar R, Bansal V, Patel VMB, Sarpal AS. 1H Nuclear magnetic resonance (NMR) determination of the iodine value in biodiesel produced from algal and vegetable oils. EnergyFuels. 2012;26:7005-7008.DOI:https://doi.org/10.1021/ef300991n [17] KouameS-DB, Perez J, Eser S, BenesiA. 1H-NMRmonitoring of the transesterification process of Jatropha oil. Fuel Processing Technology. 2012;97:60-64. DOI: https://doi.org/ 10.1016/j.fuproc.2012.01.006 [18] FarobieO,MatsumuraY.Acomparative studyof biodiesel productionusingmethanol, ethanol, and tert-butylmethyl ether (MTBE) under supercritical conditions. Bioresource Technology.2015;191:306-311.DOI:https://doi.org/10.1016/j.biortech.2015.04.102 [19] KillnerMHM,Rohwedder JJR, PasquiniC.APLS regressionmodelusingNIRspectros- copyforon-linemonitoringof thebiodieselproductionreaction.Fuel. 2011;90:3268-3273. DOI:https://doi.org/10.1016/j.fuel.2011.06.025 Advanced Chemical Kinetics212
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Advanced Chemical Kinetics
Titel
Advanced Chemical Kinetics
Autor
Muhammad Akhyar Farrukh
Herausgeber
InTech
Ort
Rijeka
Datum
2018
Sprache
englisch
Lizenz
CC BY 4.0
ISBN
978-953-51-3816-7
Abmessungen
18.0 x 26.0 cm
Seiten
226
Schlagwörter
Engineering and Technology, Chemistry, Physical Chemistry, Chemical Kinetics
Kategorien
Naturwissenschaften Chemie
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Advanced Chemical Kinetics