Analytické sledování průběhu ethanolýzy triglyceridů

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Analytické sledování průběhu ethanolýzy triglyceridů

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dc.contributor.advisor Pecha, Jiří
dc.contributor.author Jumaah, Taha
dc.date.accessioned 2023-12-20T13:25:09Z
dc.date.available 2023-12-20T13:25:09Z
dc.date.issued 2022-12-31
dc.identifier Elektronický archiv Knihovny UTB
dc.identifier.uri http://hdl.handle.net/10563/53849
dc.description.abstract The current world energy crisis had led to the need for alternative energy source, one of these sources is the use of oil for the production of biodiesel using the transesterification process. This in turn requires the full process understanding in order to efficiently and easily monitor and control the transesterification reaction. In this work Transesterification reaction, using rapeseed oil and ethanol as an esterifying agent with Sodium Hydroxide as a catalyst, was monitored using Fourier Transform Infrared Spectroscopy (FTIR). This method was implemented as the analysis method in an on-line manner.2-Dimensional Correlation Spectroscopy was used on samples taken directly from the reaction mixture, in order to find regions of interest that directly correlate to the concentration or percentage of parameters of interest including : Triglycerides, Monoglycerides, Diglycerides, Fatty Acid Ethyl Esters, and Conversion. It was found that 2-Dimensional Correlation Spectroscopy can be easily implemented and leads to promising results, and Fourier Transform Infrared Spectroscopy was found to be reliable, with results within 5% error of the reference method used (Gas Chromatography). Fourier Transform Infrared (FT-IR) Spectroscopy with 2D-COS analysis was found to be quick, with the possibility of automation and would provide a jump forward for large-scale process control in the Ethanolysis On-Line monitoring when compared to classical Off-Line method.
dc.format 56 P. (68 593 characters)
dc.language.iso en
dc.publisher Univerzita Tomáše Bati ve Zlíně
dc.rights Bez omezení
dc.subject Transesterification cs
dc.subject Fourier Transform Infrared Spectroscopy cs
dc.subject 2D-COS cs
dc.subject FTIR cs
dc.subject Ethanolysis cs
dc.subject Fatty Acid Ethyl Esters cs
dc.subject Transesterification en
dc.subject Fourier Transform Infrared Spectroscopy en
dc.subject 2D-COS en
dc.subject FTIR en
dc.subject Ethanolysis en
dc.subject Fatty Acid Ethyl Esters en
dc.title Analytické sledování průběhu ethanolýzy triglyceridů
dc.title.alternative Analytical monitoring of triglyceride ethanolysis reaction
dc.type diplomová práce cs
dc.contributor.referee Zámostný, Petr
dc.date.accepted 2023-06-08
dc.description.abstract-translated The current world energy crisis had led to the need for alternative energy source, one of these sources is the use of oil for the production of biodiesel using the transesterification process. This in turn requires the full process understanding in order to efficiently and easily monitor and control the transesterification reaction. In this work Transesterification reaction, using rapeseed oil and ethanol as an esterifying agent with Sodium Hydroxide as a catalyst, was monitored using Fourier Transform Infrared Spectroscopy (FTIR). This method was implemented as the analysis method in an on-line manner.2-Dimensional Correlation Spectroscopy was used on samples taken directly from the reaction mixture, in order to find regions of interest that directly correlate to the concentration or percentage of parameters of interest including : Triglycerides, Monoglycerides, Diglycerides, Fatty Acid Ethyl Esters, and Conversion. It was found that 2-Dimensional Correlation Spectroscopy can be easily implemented and leads to promising results, and Fourier Transform Infrared Spectroscopy was found to be reliable, with results within 5% error of the reference method used (Gas Chromatography). Fourier Transform Infrared (FT-IR) Spectroscopy with 2D-COS analysis was found to be quick, with the possibility of automation and would provide a jump forward for large-scale process control in the Ethanolysis On-Line monitoring when compared to classical Off-Line method.
dc.description.department Ústav inženýrství ochrany životního prostředí
dc.thesis.degree-discipline - cs
dc.thesis.degree-grantor Univerzita Tomáše Bati ve Zlíně. Fakulta technologická cs
dc.thesis.degree-grantor Tomas Bata University in Zlín. Faculty of Technology en
dc.thesis.degree-name Ing.
dc.thesis.degree-program Environmental Engineering cs
dc.thesis.degree-program Environmental Engineering en
dc.identifier.stag 64947
dc.date.submitted 2023-05-12


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