Temperature Coagulant Tub Variation Effect on the Characteristic of Hollow Fiber Dialyser from Cellulose Acetate Composite D-Glucose Monohydrate

Polysulfone is synthetic polymer widely used as basic material for dialyzer membrane. Cellulose acetate is non-synthetic, hydrophilic polymer which has low tendency of fouling and has good thermal stability and permeability so it is considered as alternative material for hollow fiber dialyzer. A pro...

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Main Authors: Rizki Firsta Wahyuliswari, Siswanto, Prihartini Widiyanti
Format: Article PeerReviewed
Language:English
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English
Published: Trans Tech Publications, Switzerland 2017
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Online Access:http://repository.unair.ac.id/101114/1/C24%20Fulltext_JBBBE.31.53%20%20Membran%20Dialyzer%2030%20Maret%202017.pdf
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https://doi.org/10.4028/www.scientific.net/JBBBE.31.53
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spelling id-langga.1011142021-03-14T14:30:58Z http://repository.unair.ac.id/101114/ Temperature Coagulant Tub Variation Effect on the Characteristic of Hollow Fiber Dialyser from Cellulose Acetate Composite D-Glucose Monohydrate Rizki Firsta Wahyuliswari Siswanto Prihartini Widiyanti QC1-999 Physics Polysulfone is synthetic polymer widely used as basic material for dialyzer membrane. Cellulose acetate is non-synthetic, hydrophilic polymer which has low tendency of fouling and has good thermal stability and permeability so it is considered as alternative material for hollow fiber dialyzer. A proper hollow fiber can be achieved by setting a proper temperature of coagulation bath along the spinning process. This research aims to understand the effect of coagulation bath temperature variations on the physical characteristic such as pore size, tensile strength, swelling rate and creatinine clearance of cellulose acetate – D-glucose monohydrate hollow fibers. Hollow fibers were fabricated using spinneret at temperature variations 5oC, 10oC, 15oC dan 20oC. Physical characteristics were estimated by doing morphology test using SEM, tensile test, swelling test towards Simulated Body Fluid (SBF) and filtration test towards creatinine. Result revealed that the hollow fibers from 5oC coagulation bath temperature gives the best characteristic and performance with tensile strength 27,421 N mm-2 , pore size 0,0295–0,0858 nm, swelling rate 4,18%, elongation rate 4,4 %, flux rate 1,6032–1,7956 mL cm -2 min-1 and creatinine clearance rate 40,14–48,30%. It is potential to be applied as dialyzer membrane. Trans Tech Publications, Switzerland 2017-03-30 Article PeerReviewed text en http://repository.unair.ac.id/101114/1/C24%20Fulltext_JBBBE.31.53%20%20Membran%20Dialyzer%2030%20Maret%202017.pdf text en http://repository.unair.ac.id/101114/2/C24%20Reviewer%20dan%20validasi.pdf text en http://repository.unair.ac.id/101114/3/C24%20Similarity.pdf Rizki Firsta Wahyuliswari and Siswanto and Prihartini Widiyanti (2017) Temperature Coagulant Tub Variation Effect on the Characteristic of Hollow Fiber Dialyser from Cellulose Acetate Composite D-Glucose Monohydrate. Journal of Biomimetics, Biomaterials and Biomedical Engineering, 31. pp. 53-60. ISSN 2296-9845 https://doi.org/10.4028/www.scientific.net/JBBBE.31.53
institution Universitas Airlangga
building Universitas Airlangga Library
continent Asia
country Indonesia
Indonesia
content_provider Universitas Airlangga Library
collection UNAIR Repository
language English
English
English
topic QC1-999 Physics
spellingShingle QC1-999 Physics
Rizki Firsta Wahyuliswari
Siswanto
Prihartini Widiyanti
Temperature Coagulant Tub Variation Effect on the Characteristic of Hollow Fiber Dialyser from Cellulose Acetate Composite D-Glucose Monohydrate
description Polysulfone is synthetic polymer widely used as basic material for dialyzer membrane. Cellulose acetate is non-synthetic, hydrophilic polymer which has low tendency of fouling and has good thermal stability and permeability so it is considered as alternative material for hollow fiber dialyzer. A proper hollow fiber can be achieved by setting a proper temperature of coagulation bath along the spinning process. This research aims to understand the effect of coagulation bath temperature variations on the physical characteristic such as pore size, tensile strength, swelling rate and creatinine clearance of cellulose acetate – D-glucose monohydrate hollow fibers. Hollow fibers were fabricated using spinneret at temperature variations 5oC, 10oC, 15oC dan 20oC. Physical characteristics were estimated by doing morphology test using SEM, tensile test, swelling test towards Simulated Body Fluid (SBF) and filtration test towards creatinine. Result revealed that the hollow fibers from 5oC coagulation bath temperature gives the best characteristic and performance with tensile strength 27,421 N mm-2 , pore size 0,0295–0,0858 nm, swelling rate 4,18%, elongation rate 4,4 %, flux rate 1,6032–1,7956 mL cm -2 min-1 and creatinine clearance rate 40,14–48,30%. It is potential to be applied as dialyzer membrane.
format Article
PeerReviewed
author Rizki Firsta Wahyuliswari
Siswanto
Prihartini Widiyanti
author_facet Rizki Firsta Wahyuliswari
Siswanto
Prihartini Widiyanti
author_sort Rizki Firsta Wahyuliswari
title Temperature Coagulant Tub Variation Effect on the Characteristic of Hollow Fiber Dialyser from Cellulose Acetate Composite D-Glucose Monohydrate
title_short Temperature Coagulant Tub Variation Effect on the Characteristic of Hollow Fiber Dialyser from Cellulose Acetate Composite D-Glucose Monohydrate
title_full Temperature Coagulant Tub Variation Effect on the Characteristic of Hollow Fiber Dialyser from Cellulose Acetate Composite D-Glucose Monohydrate
title_fullStr Temperature Coagulant Tub Variation Effect on the Characteristic of Hollow Fiber Dialyser from Cellulose Acetate Composite D-Glucose Monohydrate
title_full_unstemmed Temperature Coagulant Tub Variation Effect on the Characteristic of Hollow Fiber Dialyser from Cellulose Acetate Composite D-Glucose Monohydrate
title_sort temperature coagulant tub variation effect on the characteristic of hollow fiber dialyser from cellulose acetate composite d-glucose monohydrate
publisher Trans Tech Publications, Switzerland
publishDate 2017
url http://repository.unair.ac.id/101114/1/C24%20Fulltext_JBBBE.31.53%20%20Membran%20Dialyzer%2030%20Maret%202017.pdf
http://repository.unair.ac.id/101114/2/C24%20Reviewer%20dan%20validasi.pdf
http://repository.unair.ac.id/101114/3/C24%20Similarity.pdf
http://repository.unair.ac.id/101114/
https://doi.org/10.4028/www.scientific.net/JBBBE.31.53
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