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Optimization of Formaldehyde Production From Methanol

BROWSE_DETAIL_CREATION_DATE: 28-06-2018

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BROWSE_DETAIL_TYPE: Thesis

BROWSE_DETAIL_SUB_TYPE: Masters

BROWSE_DETAIL_PUBLISH_STATE: Unpublished

BROWSE_DETAIL_FORMAT: PDF Document

BROWSE_DETAIL_LANG: English

BROWSE_DETAIL_SUBJECTS: Chemical technology, Chemical engineering,

BROWSE_DETAIL_CREATORS: Idres, Ruwida Ab. M. (Author),

BROWSE_DETAIL_CONTRIBUTERS: Güler, Enver (Advisor),

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Formaldehyde, methanol, plug flow reactor, catalyst, Aspen Plus.


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Formaldehyde is one of the chemicals that is regarded as very important in many chemical industries for the production of building materials and in polymeric resins like phenol formaldehyde.The main purpose of this project is to investigate the process of formaldehyde production from methanol, from the viewpoint of chemical engineering, by studying the integrated design of the reactor which produces formaldehyde within a specific capacity and under certain operating conditions. In this project, formaldehyde is produced at a rate of 120000 tons/year and a production level of at least 99.1 wt% of formaldehyde and 99.1 wt% of nitrogen. The metal oxide process is developed in the production.In this project, the process was simulated and optimized by the software Aspen Plus V9. The main focus is on the design and improvement of the reactor in the production process by studying the effect of temperature, pressure, number of tubes, diameter, and length of the reactor was also examined. In this project, formaldehyde is to be produced through a catalytic vapor-phase oxidation reaction.


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