Azis, Muhammad Mufti and Qani'A, Farahfestura Rio and Pratiwi, Suci Indah and Kristanto, Jonas and Purwono, Suryo and Indarto, Antonius (2020) Kinetic studies of turpentine isomerization using hydrochloric acid and acetic acid as catalysts. In: International Seminar on Chemical Engineering Soehadi Reksowardojo, STKSR 2019 Kupang, Nusa Tenggara Timur 7 October 2019.
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Azis_2020_IOP_Conf._Ser.__Mater._Sci._Eng._823_012042.pdf
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Abstract
Turpentine is a non-wood forest product derived from pine trees. Turpentine oil can be produced from the distillation of pine tree sap (family Pinaceae). The main component of turpentine is α-pinene, and turpentine isomerization may produce various derivative products. The objective of the present study was to investigate the isomerization products of turpentine oil with two acid catalysts: hydrochloric and acetic acid. Here, the influence of acid concentration was investigated by using various concentrations of hydrochloric and acetic acid concentrations between 0.4 to 1 M. Further, the combination of acetic acid and hydrochloric acid as catalyst was also investigated by varying the molar ratio of HCl:Acetic Acid=1 : 0.5 and 1:1. The experiments were carried out in a batch reactor equipped with heater, condenser, and stirrer. The reaction temperatures were maintained at 150°C and reaction time of 6 h. The resulting products from turpentine isomerization were analyzed using GC-MS. The results showed that the largest isomerization product obtained with HCl and combination of HCl:H.Acetic was trans sabinene hydrate. Additional products that could be detected varied among α-terpinolene, α-terpineol, α-terpinene, γ-terpinene and δ-carene. The experimental data showed that α-pinene conversion as high as 62, 63 and 57 were obtained by using HCl concentrations of 0.4, 0.7 and 1 M, respectively. In addition, the use of HCl:H.Acetic=1 :0.5 and 1:1 gave final conversion of 63 and 61. The modeling results showed the kinetic model for pinene conversion for both catalysts was IMG ALIGN=MIDDLE ALT=ȓacdXdt=0.5222⋅ (1-X)2.5210C-\mathrmHCl-0.2233⋅ (1-X)4.5300C-\mathrmHAc SRC=MSE-823-1-012042-ieqn1.gif/ © Published under licence by IOP Publishing Ltd.
Item Type: | Conference or Workshop Item (Paper) |
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Additional Information: | Cited by: 1; Conference name: 2019 International Seminar on Chemical Engineering Soehadi Reksowardojo, STKSR 2019; Conference date: 7 October 2019 through 9 October 2019; Conference code: 160662; All Open Access, Bronze Open Access |
Subjects: | T Technology > TP Chemical technology > Chemical engineering |
Divisions: | Faculty of Engineering > Chemistry Engineering Department |
Depositing User: | Sri JUNANDI |
Date Deposited: | 11 Jun 2025 06:51 |
Last Modified: | 11 Jun 2025 06:51 |
URI: | https://ir.lib.ugm.ac.id/id/eprint/16833 |