Purification of crude turpentine oil through acid degumming using phosphoric acid

The production of bio-based materials is one of the accomplishments of the Sustainable Development Goals (SDGs), especially responsible consumption and production (SDG 12). One way to produce raw materials for the pharmaceutical industry is by utilizing waste from turpentine condensate. This study f...

Full description

Saved in:
Bibliographic Details
Main Authors: Sisdikarini Dana, Sulistiawati Endah, Hakika Dhias Cahya, Sulistyo Hary
Format: Article
Language:English
Published: EDP Sciences 2024-01-01
Series:BIO Web of Conferences
Online Access:https://www.bio-conferences.org/articles/bioconf/pdf/2024/67/bioconf_icobeaf2024_01002.pdf
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1841526758566789120
author Sisdikarini Dana
Sulistiawati Endah
Hakika Dhias Cahya
Sulistyo Hary
author_facet Sisdikarini Dana
Sulistiawati Endah
Hakika Dhias Cahya
Sulistyo Hary
author_sort Sisdikarini Dana
collection DOAJ
description The production of bio-based materials is one of the accomplishments of the Sustainable Development Goals (SDGs), especially responsible consumption and production (SDG 12). One way to produce raw materials for the pharmaceutical industry is by utilizing waste from turpentine condensate. This study focused on turpentine waste derived from pine resin in the Trenggalek pine plantation area of East Java, Indonesia. Degumming is one of the preliminary treatments generally applied for oil refining, while acid degumming is a method of degumming. This research studied mass transfer and chemical reactions on the degumming of turpentine with phosphoric acid solutions. An amount of 100 mL of turpentine and 10 mL of 50% phosphoric acid solution was placed in a three-necked flask and stirred. The batch process was carried out at a temperature range of 40-80°C and stirred at 200 rpm for 30-120 minutes. Every 30 minutes, a 2 mL sample was taken from a three-neck flask to measure the refractive index and determine the gum concentration in the turpentine oil. Stirring the substance for two hours at 80°C resulted in the best gum removal at 44.9%.
format Article
id doaj-art-bc7289dc530b4aff989b0c1925676372
institution Kabale University
issn 2117-4458
language English
publishDate 2024-01-01
publisher EDP Sciences
record_format Article
series BIO Web of Conferences
spelling doaj-art-bc7289dc530b4aff989b0c19256763722025-01-16T11:19:45ZengEDP SciencesBIO Web of Conferences2117-44582024-01-011480100210.1051/bioconf/202414801002bioconf_icobeaf2024_01002Purification of crude turpentine oil through acid degumming using phosphoric acidSisdikarini Dana0Sulistiawati Endah1Hakika Dhias Cahya2Sulistyo Hary3Department of Chemical Engineering, Universitas Ahmad DahlanDepartment of Chemical Engineering, Universitas Ahmad DahlanDepartment of Chemical Engineering, Universitas Ahmad DahlanDepartment of Chemical Engineering, Universitas Gadjah Mada, YogyakartaThe production of bio-based materials is one of the accomplishments of the Sustainable Development Goals (SDGs), especially responsible consumption and production (SDG 12). One way to produce raw materials for the pharmaceutical industry is by utilizing waste from turpentine condensate. This study focused on turpentine waste derived from pine resin in the Trenggalek pine plantation area of East Java, Indonesia. Degumming is one of the preliminary treatments generally applied for oil refining, while acid degumming is a method of degumming. This research studied mass transfer and chemical reactions on the degumming of turpentine with phosphoric acid solutions. An amount of 100 mL of turpentine and 10 mL of 50% phosphoric acid solution was placed in a three-necked flask and stirred. The batch process was carried out at a temperature range of 40-80°C and stirred at 200 rpm for 30-120 minutes. Every 30 minutes, a 2 mL sample was taken from a three-neck flask to measure the refractive index and determine the gum concentration in the turpentine oil. Stirring the substance for two hours at 80°C resulted in the best gum removal at 44.9%.https://www.bio-conferences.org/articles/bioconf/pdf/2024/67/bioconf_icobeaf2024_01002.pdf
spellingShingle Sisdikarini Dana
Sulistiawati Endah
Hakika Dhias Cahya
Sulistyo Hary
Purification of crude turpentine oil through acid degumming using phosphoric acid
BIO Web of Conferences
title Purification of crude turpentine oil through acid degumming using phosphoric acid
title_full Purification of crude turpentine oil through acid degumming using phosphoric acid
title_fullStr Purification of crude turpentine oil through acid degumming using phosphoric acid
title_full_unstemmed Purification of crude turpentine oil through acid degumming using phosphoric acid
title_short Purification of crude turpentine oil through acid degumming using phosphoric acid
title_sort purification of crude turpentine oil through acid degumming using phosphoric acid
url https://www.bio-conferences.org/articles/bioconf/pdf/2024/67/bioconf_icobeaf2024_01002.pdf
work_keys_str_mv AT sisdikarinidana purificationofcrudeturpentineoilthroughaciddegummingusingphosphoricacid
AT sulistiawatiendah purificationofcrudeturpentineoilthroughaciddegummingusingphosphoricacid
AT hakikadhiascahya purificationofcrudeturpentineoilthroughaciddegummingusingphosphoricacid
AT sulistyohary purificationofcrudeturpentineoilthroughaciddegummingusingphosphoricacid