STUDY OF THE EQUILIBRIUM OF RESIN EXTRACTION FROM CALOPHYLLUM INOPHYLLUM SEED OIL WITH BINARY SOLVENTS: METHANOL-N-HEXANE

Nyamplung (Calophyllum inophyllum L.) is a species of plant which is widely spread in Indonesia. Nyamplung plant has high productivity, reaching 20 tonne/ha/year. Research about Nyamplung plant usually focused on Nyamplung seed oil as biofuel, even though resin in Nyamplung seed has many potentia...

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Main Author: Wulandari, Sabrinna
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/50953
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:50953
spelling id-itb.:509532020-09-25T20:41:56ZSTUDY OF THE EQUILIBRIUM OF RESIN EXTRACTION FROM CALOPHYLLUM INOPHYLLUM SEED OIL WITH BINARY SOLVENTS: METHANOL-N-HEXANE Wulandari, Sabrinna Indonesia Final Project Calophyllum inophyllum, equilibrium, extraction, Nyamplung, resin. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/50953 Nyamplung (Calophyllum inophyllum L.) is a species of plant which is widely spread in Indonesia. Nyamplung plant has high productivity, reaching 20 tonne/ha/year. Research about Nyamplung plant usually focused on Nyamplung seed oil as biofuel, even though resin in Nyamplung seed has many potentials. Nyamplung seed oil contain resin up to 10-20%. Resin from Nyamplung seed oil can be used for other purposes, for example resin as cosmetic active ingredient or as medicine in pharmaceutical field. Separation method of resin and oil from Nyamplung seed used in this research is extraction with two type of solvents. Resin extraction from Nyamplung seed modelling is needed to determine the solvent ratio which gives the optimum gain of resin and oil. The purposes of this research are to study Nyamplung seed extraction equilibrium and to determine the best solvent ratio which gives the optimum gain of resin and oil. In this research, Nyamplung seed extraction is modelled using Aspen Plus and Microsoft Excel. This research used data from Kartika et al. in 2018; Afifah, N in 2019; and Mandiri, R & Saputri, D in 2019. In the equilibrium calculation, resin is represented with abietic acid and oil is represented with oleic acid. This research modelled the equilibrium of the components in the room temperature. The best oil yield (99%) is obtained when the solvent (n-hexane : methanol) ratio is 3:1. While the best resin yield obtained at solvent ratio 1:2. Optimum resin and oil yield obtained at solvent ratio 3:2, which gives resin gain in metanol phase of 73% and oil gain in hexane phase of 89%. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Nyamplung (Calophyllum inophyllum L.) is a species of plant which is widely spread in Indonesia. Nyamplung plant has high productivity, reaching 20 tonne/ha/year. Research about Nyamplung plant usually focused on Nyamplung seed oil as biofuel, even though resin in Nyamplung seed has many potentials. Nyamplung seed oil contain resin up to 10-20%. Resin from Nyamplung seed oil can be used for other purposes, for example resin as cosmetic active ingredient or as medicine in pharmaceutical field. Separation method of resin and oil from Nyamplung seed used in this research is extraction with two type of solvents. Resin extraction from Nyamplung seed modelling is needed to determine the solvent ratio which gives the optimum gain of resin and oil. The purposes of this research are to study Nyamplung seed extraction equilibrium and to determine the best solvent ratio which gives the optimum gain of resin and oil. In this research, Nyamplung seed extraction is modelled using Aspen Plus and Microsoft Excel. This research used data from Kartika et al. in 2018; Afifah, N in 2019; and Mandiri, R & Saputri, D in 2019. In the equilibrium calculation, resin is represented with abietic acid and oil is represented with oleic acid. This research modelled the equilibrium of the components in the room temperature. The best oil yield (99%) is obtained when the solvent (n-hexane : methanol) ratio is 3:1. While the best resin yield obtained at solvent ratio 1:2. Optimum resin and oil yield obtained at solvent ratio 3:2, which gives resin gain in metanol phase of 73% and oil gain in hexane phase of 89%.
format Final Project
author Wulandari, Sabrinna
spellingShingle Wulandari, Sabrinna
STUDY OF THE EQUILIBRIUM OF RESIN EXTRACTION FROM CALOPHYLLUM INOPHYLLUM SEED OIL WITH BINARY SOLVENTS: METHANOL-N-HEXANE
author_facet Wulandari, Sabrinna
author_sort Wulandari, Sabrinna
title STUDY OF THE EQUILIBRIUM OF RESIN EXTRACTION FROM CALOPHYLLUM INOPHYLLUM SEED OIL WITH BINARY SOLVENTS: METHANOL-N-HEXANE
title_short STUDY OF THE EQUILIBRIUM OF RESIN EXTRACTION FROM CALOPHYLLUM INOPHYLLUM SEED OIL WITH BINARY SOLVENTS: METHANOL-N-HEXANE
title_full STUDY OF THE EQUILIBRIUM OF RESIN EXTRACTION FROM CALOPHYLLUM INOPHYLLUM SEED OIL WITH BINARY SOLVENTS: METHANOL-N-HEXANE
title_fullStr STUDY OF THE EQUILIBRIUM OF RESIN EXTRACTION FROM CALOPHYLLUM INOPHYLLUM SEED OIL WITH BINARY SOLVENTS: METHANOL-N-HEXANE
title_full_unstemmed STUDY OF THE EQUILIBRIUM OF RESIN EXTRACTION FROM CALOPHYLLUM INOPHYLLUM SEED OIL WITH BINARY SOLVENTS: METHANOL-N-HEXANE
title_sort study of the equilibrium of resin extraction from calophyllum inophyllum seed oil with binary solvents: methanol-n-hexane
url https://digilib.itb.ac.id/gdl/view/50953
_version_ 1822000813501841408