EFFECTS OF PREPARATIVE SOLVENTS ON LIPOLYTIC ACTIVITY OF RICE BRAN LIPASE POWDER
The research proposed here is intended to contribute in the development of fatty acid production technology through lipolysis triglycerides using plant-derived lipases. Rice bran is a plant-based lipase source alternative that can be easily found in Indonesia. Before use, lipase from plants needs...
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Format: | Final Project |
Language: | Indonesia |
Online Access: | https://digilib.itb.ac.id/gdl/view/48437 |
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Institution: | Institut Teknologi Bandung |
Language: | Indonesia |
Summary: | The research proposed here is intended to contribute in the development of fatty acid
production technology through lipolysis triglycerides using plant-derived lipases. Rice
bran is a plant-based lipase source alternative that can be easily found in Indonesia. Before
use, lipase from plants needs to be prepared first to remove water and oil while
maintaining lipase in an immobilized state in a dense portion of oil-free grains without
losing its lipolysis activity and even, if possible, increasing it. Lipase powder preparation
is done by soaking rice bran in organic solvent. The solvent is expected to be able to
dissolve oil in the seeds, keep enzymes from denaturation, and increase the stability and
activity of enzymes.
This study is aimed to obtain a procedure for preparing rice bran lipase powder which
provides the best activity and can be used repeatedly to hydrolyze oil. Variants of the
solvents used in this study were acetone, cyclohexane, a mixture of acetone and diethyl
ether, a saturated solution of glycerol and calcium formate in acetone, a mixture of 1 : 2
v/v cyclohexane-acetone, and a mixture of 1 : 2 v/v cyclohexane-saturated solution of
glycerol and calcium formate in acetone. Lipase powder activity test was carried out by
lipolysis reaction for 5 hours. Lipase powder activity was calculated from the acid number
of lipolysis products. Based on the results, the most suitable procedure to prepare rice
bran lipase powder is to use only acetone as the solvent because it produced the highest
activity (0.56%) compared to other solvent variations. |
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