GRAFT COPOLYMERIZATION OF CHITOSAN AND ACRYLAMIDE USING MICROWAVE FOR ENHANCED OIL RECOVERY APPLICATIONS

EOR (Enhanced Oil Recovery) can be used to improve the petroleum productivity. One of the methods used for EOR is polymer injection. In this research, the polymer was <br /> <br /> <br /> <br /> <br /> <br /> <br /> synthesized by utilizing shrimp...

Full description

Saved in:
Bibliographic Details
Main Author: FITRIANI (NIM : 10508023); Pembimbing : Prof. Dr. Ing. Cynthia L. Radiman, ULFAH
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/17481
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:17481
spelling id-itb.:174812017-09-27T11:42:32ZGRAFT COPOLYMERIZATION OF CHITOSAN AND ACRYLAMIDE USING MICROWAVE FOR ENHANCED OIL RECOVERY APPLICATIONS FITRIANI (NIM : 10508023); Pembimbing : Prof. Dr. Ing. Cynthia L. Radiman, ULFAH Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/17481 EOR (Enhanced Oil Recovery) can be used to improve the petroleum productivity. One of the methods used for EOR is polymer injection. In this research, the polymer was <br /> <br /> <br /> <br /> <br /> <br /> <br /> synthesized by utilizing shrimp shell waste. It contains chitin that can be obtained by deproteinization and demineralization process. Chitosan can be synthesized from chitin by deacetylation process. In this work, the degree of deacetylation of 79% was found using FTIR spectrum. Chitosan’s average molecular mass obtained from viscometry method was 9.86&#1093;105 g/mol. Chitosan was then copolymerized with acrylamide using microwaveinitiated-grafting method without the use of any free radical initiator. The exposure time for this microwave initiated copolymerization was 1.5 minutes, while the microwave power used was 800 W. The functional groups of chitosan-graft-acrylamide (Ch-g-AM) were analyzed by FTIR. Furthermore, the intrinsic viscosity and dynamic viscosity were measured. It was found that the most optimum acrylamide’s concentration giving the highest % grafting and intrinsic viscosity was 2.0 M. The value of % grafting and intrinsic viscosity were 809.34% and 2370 mL/g, respectively. The rheological properties of Ch-g-AM were measured by viscometer Fann VG. It showed that the Ch-g-AM had a higher resistance to temperature and salinity than the commercial polymer called HYBO. However, it took higher concentration to achieve the same viscosity value as HYBO. 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 EOR (Enhanced Oil Recovery) can be used to improve the petroleum productivity. One of the methods used for EOR is polymer injection. In this research, the polymer was <br /> <br /> <br /> <br /> <br /> <br /> <br /> synthesized by utilizing shrimp shell waste. It contains chitin that can be obtained by deproteinization and demineralization process. Chitosan can be synthesized from chitin by deacetylation process. In this work, the degree of deacetylation of 79% was found using FTIR spectrum. Chitosan’s average molecular mass obtained from viscometry method was 9.86&#1093;105 g/mol. Chitosan was then copolymerized with acrylamide using microwaveinitiated-grafting method without the use of any free radical initiator. The exposure time for this microwave initiated copolymerization was 1.5 minutes, while the microwave power used was 800 W. The functional groups of chitosan-graft-acrylamide (Ch-g-AM) were analyzed by FTIR. Furthermore, the intrinsic viscosity and dynamic viscosity were measured. It was found that the most optimum acrylamide’s concentration giving the highest % grafting and intrinsic viscosity was 2.0 M. The value of % grafting and intrinsic viscosity were 809.34% and 2370 mL/g, respectively. The rheological properties of Ch-g-AM were measured by viscometer Fann VG. It showed that the Ch-g-AM had a higher resistance to temperature and salinity than the commercial polymer called HYBO. However, it took higher concentration to achieve the same viscosity value as HYBO.
format Final Project
author FITRIANI (NIM : 10508023); Pembimbing : Prof. Dr. Ing. Cynthia L. Radiman, ULFAH
spellingShingle FITRIANI (NIM : 10508023); Pembimbing : Prof. Dr. Ing. Cynthia L. Radiman, ULFAH
GRAFT COPOLYMERIZATION OF CHITOSAN AND ACRYLAMIDE USING MICROWAVE FOR ENHANCED OIL RECOVERY APPLICATIONS
author_facet FITRIANI (NIM : 10508023); Pembimbing : Prof. Dr. Ing. Cynthia L. Radiman, ULFAH
author_sort FITRIANI (NIM : 10508023); Pembimbing : Prof. Dr. Ing. Cynthia L. Radiman, ULFAH
title GRAFT COPOLYMERIZATION OF CHITOSAN AND ACRYLAMIDE USING MICROWAVE FOR ENHANCED OIL RECOVERY APPLICATIONS
title_short GRAFT COPOLYMERIZATION OF CHITOSAN AND ACRYLAMIDE USING MICROWAVE FOR ENHANCED OIL RECOVERY APPLICATIONS
title_full GRAFT COPOLYMERIZATION OF CHITOSAN AND ACRYLAMIDE USING MICROWAVE FOR ENHANCED OIL RECOVERY APPLICATIONS
title_fullStr GRAFT COPOLYMERIZATION OF CHITOSAN AND ACRYLAMIDE USING MICROWAVE FOR ENHANCED OIL RECOVERY APPLICATIONS
title_full_unstemmed GRAFT COPOLYMERIZATION OF CHITOSAN AND ACRYLAMIDE USING MICROWAVE FOR ENHANCED OIL RECOVERY APPLICATIONS
title_sort graft copolymerization of chitosan and acrylamide using microwave for enhanced oil recovery applications
url https://digilib.itb.ac.id/gdl/view/17481
_version_ 1820745614321778688