2020Chemical Engineering Journal AdvancesOpen access

Kinetics of phenol alkylation with tert-butyl alcohol using supported ionic liquid catalyst

Pandian Elavarasan, Selvanarayanan Rengadurai, Sreedevi Upadhyayula

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Abstract

Sulphonic acid functional ionic liquid was prepared by covalently bonded with mesoporous silica material (SBA-15). The physical structure, composition and functional groups were characterised. The prepared catalyst activity was investicated in tert-butylation of phenol with tert-butyl alcohol (TBA) was using a batch autoclave reactor. The different parameters like reaction time, reaction temperature, catalyst amount and reactant mole ratio on the conversion of phenol and selectivity towards 2‑tert-butyl phenol (4-TBP), 4‑tert‑butyl phenol (2-TBP) and 2,4-di‑tert‑butyl phenol (2,4-DTBP) was studied. Maximum phenol conversion of 72% was obtained at Lower tert‑butanol to phenol mole ratios and lower catalyst loading. The activation energy was found to be 4.2 kcal/mol with second order rate equation from the experimental data.

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Sulphonic acid functional ionic liquid was prepared by covalently bonded with mesoporous silica material (SBA-15). The physical structure, composition and functional groups were characterised. The prepared catalyst activity was investicated in tert-butylation of phenol with tert-butyl alcohol (TBA) was using a batch autoclave reactor. The different parameters like reaction time, reaction temperature, catalyst amount and reactant mole ratio on the conversion of phenol and selectivity towards 2‑tert-butyl phenol (4-TBP), 4‑tert‑butyl phenol (2-TBP) and 2,4-di‑tert‑butyl phenol (2,4-DTBP) was studied. Maximum phenol conversion of 72% was obtained at Lower tert‑butanol to phenol mole ratios and lower catalyst loading. The activation energy was found to be 4.2 kcal/mol with second order rate equation from the experimental data.

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Available abstract

Sulphonic acid functional ionic liquid was prepared by covalently bonded with mesoporous silica material (SBA-15). The physical structure, composition and functional groups were characterised. The prepared catalyst activity was investicated in tert-butylation of phenol with tert-butyl alcohol (TBA) was using a batch autoclave reactor. The different parameters like reaction time, reaction temperature, catalyst amount and reactant mole ratio on the conversion of phenol and selectivity towards 2‑tert-butyl phenol (4-TBP), 4‑tert‑butyl phenol (2-TBP) and 2,4-di‑tert‑butyl phenol (2,4-DTBP) was studied. Maximum phenol conversion of 72% was obtained at Lower tert‑butanol to phenol mole ratios and lower catalyst loading. The activation energy was found to be 4.2 kcal/mol with second order rate equation from the experimental data.

Key concepts: Phenol, Catalysis, Chemistry, tert-Butyl alcohol, Alcohol, Alkylation, Autoclave, Selectivity

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