Biodegradation of Linear Alkyl Benzene Sulfonate by bacterial consortium

Surface active agents (surfactants) are chemical compounds which are massively used as raw material in detergent production. Synthetic type surfactants are often used because they perform better and are more economical compared to natural detergents. Linear Alkyl Benzene Sulfonate (LAS) is one of th...

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Main Authors: K. Wulan, Praswasti P. D., Gozan, Misri, W., Anondho, Dianursanti, Dianursanti, S., Mahmud
Format: Conference or Workshop Item
Language:English
Published: 2006
Subjects:
Online Access:http://eprints.utm.my/id/eprint/176/1/PraswastiPDKWulan2006_Biodegradationoflinearalkylbenzene.pdf
http://eprints.utm.my/id/eprint/176/
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spelling my.utm.1762017-08-24T03:00:24Z http://eprints.utm.my/id/eprint/176/ Biodegradation of Linear Alkyl Benzene Sulfonate by bacterial consortium K. Wulan, Praswasti P. D. Gozan, Misri W., Anondho Dianursanti, Dianursanti S., Mahmud TP Chemical technology Surface active agents (surfactants) are chemical compounds which are massively used as raw material in detergent production. Synthetic type surfactants are often used because they perform better and are more economical compared to natural detergents. Linear Alkyl Benzene Sulfonate (LAS) is one of the synthetic surfactants that is widely used. Although LAS is biodegradable, its introduction to the environment in big amounts harms water bodies. Research on biodegradation of LAS with 100 ppm, 400 ppm, 700 ppm, 1000 ppm and 1500 ppm concentrations was conducted by using consortium of bacteria comprising of Pseudomonas aeroginosa, Bacillus subtilis, Bacillus aglomerans, Bacillus cereus, Bacillus alvae. Experiments were carried out for twelve days, at 29oC with initial total inoculum of bacteria at 1,59 x 108 CFU/mL. Results showed that this type of bacterial consortium could tolerate 1500 ppm in LAS environment. However, significant growth rate did not occurr, 0.039 – 0.042 hour -1 and not too efficiently reduce Chemical Oxygen Demand (COD) for those systems. Surface tension in several variated concentration of LAS: 0 ppm >100 ppm >400 ppm >700 ppm, LAS 700 ppm = 1000 ppm = 1500 ppm. 2006-07 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/176/1/PraswastiPDKWulan2006_Biodegradationoflinearalkylbenzene.pdf K. Wulan, Praswasti P. D. and Gozan, Misri and W., Anondho and Dianursanti, Dianursanti and S., Mahmud (2006) Biodegradation of Linear Alkyl Benzene Sulfonate by bacterial consortium. In: 1st International Conference on Natural Resources Engineering & Technology 2006, 24-25th July 2006, Putrajaya, Malaysia.
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
K. Wulan, Praswasti P. D.
Gozan, Misri
W., Anondho
Dianursanti, Dianursanti
S., Mahmud
Biodegradation of Linear Alkyl Benzene Sulfonate by bacterial consortium
description Surface active agents (surfactants) are chemical compounds which are massively used as raw material in detergent production. Synthetic type surfactants are often used because they perform better and are more economical compared to natural detergents. Linear Alkyl Benzene Sulfonate (LAS) is one of the synthetic surfactants that is widely used. Although LAS is biodegradable, its introduction to the environment in big amounts harms water bodies. Research on biodegradation of LAS with 100 ppm, 400 ppm, 700 ppm, 1000 ppm and 1500 ppm concentrations was conducted by using consortium of bacteria comprising of Pseudomonas aeroginosa, Bacillus subtilis, Bacillus aglomerans, Bacillus cereus, Bacillus alvae. Experiments were carried out for twelve days, at 29oC with initial total inoculum of bacteria at 1,59 x 108 CFU/mL. Results showed that this type of bacterial consortium could tolerate 1500 ppm in LAS environment. However, significant growth rate did not occurr, 0.039 – 0.042 hour -1 and not too efficiently reduce Chemical Oxygen Demand (COD) for those systems. Surface tension in several variated concentration of LAS: 0 ppm >100 ppm >400 ppm >700 ppm, LAS 700 ppm = 1000 ppm = 1500 ppm.
format Conference or Workshop Item
author K. Wulan, Praswasti P. D.
Gozan, Misri
W., Anondho
Dianursanti, Dianursanti
S., Mahmud
author_facet K. Wulan, Praswasti P. D.
Gozan, Misri
W., Anondho
Dianursanti, Dianursanti
S., Mahmud
author_sort K. Wulan, Praswasti P. D.
title Biodegradation of Linear Alkyl Benzene Sulfonate by bacterial consortium
title_short Biodegradation of Linear Alkyl Benzene Sulfonate by bacterial consortium
title_full Biodegradation of Linear Alkyl Benzene Sulfonate by bacterial consortium
title_fullStr Biodegradation of Linear Alkyl Benzene Sulfonate by bacterial consortium
title_full_unstemmed Biodegradation of Linear Alkyl Benzene Sulfonate by bacterial consortium
title_sort biodegradation of linear alkyl benzene sulfonate by bacterial consortium
publishDate 2006
url http://eprints.utm.my/id/eprint/176/1/PraswastiPDKWulan2006_Biodegradationoflinearalkylbenzene.pdf
http://eprints.utm.my/id/eprint/176/
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score 13.18916