IDENTIFICATION STUDY OF KAPOK FIBER (CEIBA PENTANDRA (L.) GAERTN) PERFORMANCE AS AN ADSORBEN FOR OIL SPILL REMOVAL IN SALINE ENVIRONMENTS
Oil is energy needed in life. However, from processing to distribution, this industry is vulnerable to environmental pollution, especially at sea. There are many methods of handling oil spills, sorbents are one of them. The use of sorbents is still limited to synthetic materials. This research wa...
Saved in:
Main Author: | |
---|---|
Format: | Final Project |
Language: | Indonesia |
Subjects: | |
Online Access: | https://digilib.itb.ac.id/gdl/view/69354 |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
Institution: | Institut Teknologi Bandung |
Language: | Indonesia |
id |
id-itb.:69354 |
---|---|
spelling |
id-itb.:693542022-09-21T15:38:21ZIDENTIFICATION STUDY OF KAPOK FIBER (CEIBA PENTANDRA (L.) GAERTN) PERFORMANCE AS AN ADSORBEN FOR OIL SPILL REMOVAL IN SALINE ENVIRONMENTS Fahri Gunawan Husaini, Muhammad Teknik saniter dan perkotaan; teknik perlindungan lingkungan Indonesia Final Project adsorption, biodegradable, bioremediation, kapok fiber, oil removal, oil spill, reusability INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/69354 Oil is energy needed in life. However, from processing to distribution, this industry is vulnerable to environmental pollution, especially at sea. There are many methods of handling oil spills, sorbents are one of them. The use of sorbents is still limited to synthetic materials. This research was conducted to find the ability of natural and biodegradable sorbent materials, kapok fiber (ceiba pentandra (L.) Gaertn). This research is focused on oil adsorption by simple batch method with modification, contact time, initial concentration, and temperature variations. Results show that adsorption capacity of artificial seawater is 0.109-1.95 g/g, this is proof that kapok has water-repellent properties. Adsorption capacity of oil by physically modified kapok in form of fiber and powder has 47.40 g/g and 28.32 g/g adsorption capacity respectively. Chemical modification with PDMS-SiO2 addition to fiber and powder has 46.99 g/g and 22.64 g/g adsorption capacity respectively. Powder with PDMS-SiO2 and clay addition has 24.50 g/g capacity. Adsorption process model is the temkin isotherm and pseudosecond-order kinetics, Adsorption process is chemisorption and physiosorption. Adsorption thermodynamics show that sorption of kapuk to oil are spontaneously and endothermic. Reusability study found kapok can be use up to the 6th cycle an only decreased <50% capacity. 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 |
topic |
Teknik saniter dan perkotaan; teknik perlindungan lingkungan |
spellingShingle |
Teknik saniter dan perkotaan; teknik perlindungan lingkungan Fahri Gunawan Husaini, Muhammad IDENTIFICATION STUDY OF KAPOK FIBER (CEIBA PENTANDRA (L.) GAERTN) PERFORMANCE AS AN ADSORBEN FOR OIL SPILL REMOVAL IN SALINE ENVIRONMENTS |
description |
Oil is energy needed in life. However, from processing to distribution, this industry is
vulnerable to environmental pollution, especially at sea. There are many methods of handling
oil spills, sorbents are one of them. The use of sorbents is still limited to synthetic materials.
This research was conducted to find the ability of natural and biodegradable sorbent materials,
kapok fiber (ceiba pentandra (L.) Gaertn). This research is focused on oil adsorption by simple
batch method with modification, contact time, initial concentration, and temperature
variations. Results show that adsorption capacity of artificial seawater is 0.109-1.95 g/g, this
is proof that kapok has water-repellent properties. Adsorption capacity of oil by physically
modified kapok in form of fiber and powder has 47.40 g/g and 28.32 g/g adsorption capacity
respectively. Chemical modification with PDMS-SiO2 addition to fiber and powder has 46.99
g/g and 22.64 g/g adsorption capacity respectively. Powder with PDMS-SiO2 and clay
addition has 24.50 g/g capacity. Adsorption process model is the temkin isotherm and pseudosecond-order kinetics, Adsorption process is chemisorption and physiosorption. Adsorption
thermodynamics show that sorption of kapuk to oil are spontaneously and endothermic.
Reusability study found kapok can be use up to the 6th cycle an only decreased <50% capacity. |
format |
Final Project |
author |
Fahri Gunawan Husaini, Muhammad |
author_facet |
Fahri Gunawan Husaini, Muhammad |
author_sort |
Fahri Gunawan Husaini, Muhammad |
title |
IDENTIFICATION STUDY OF KAPOK FIBER (CEIBA PENTANDRA (L.) GAERTN) PERFORMANCE AS AN ADSORBEN FOR OIL SPILL REMOVAL IN SALINE ENVIRONMENTS |
title_short |
IDENTIFICATION STUDY OF KAPOK FIBER (CEIBA PENTANDRA (L.) GAERTN) PERFORMANCE AS AN ADSORBEN FOR OIL SPILL REMOVAL IN SALINE ENVIRONMENTS |
title_full |
IDENTIFICATION STUDY OF KAPOK FIBER (CEIBA PENTANDRA (L.) GAERTN) PERFORMANCE AS AN ADSORBEN FOR OIL SPILL REMOVAL IN SALINE ENVIRONMENTS |
title_fullStr |
IDENTIFICATION STUDY OF KAPOK FIBER (CEIBA PENTANDRA (L.) GAERTN) PERFORMANCE AS AN ADSORBEN FOR OIL SPILL REMOVAL IN SALINE ENVIRONMENTS |
title_full_unstemmed |
IDENTIFICATION STUDY OF KAPOK FIBER (CEIBA PENTANDRA (L.) GAERTN) PERFORMANCE AS AN ADSORBEN FOR OIL SPILL REMOVAL IN SALINE ENVIRONMENTS |
title_sort |
identification study of kapok fiber (ceiba pentandra (l.) gaertn) performance as an adsorben for oil spill removal in saline environments |
url |
https://digilib.itb.ac.id/gdl/view/69354 |
_version_ |
1823650192247750656 |