Optimization Kerosene Bio-degradation by a Local Soil Bacterium Isolate Klebsiella pneumoniae Sp. pneumonia
Isolated Bacteria from the roots of barley were studied; two stages of processes Isolated and screening were applied in order to find the best bacteria to remove kerosene from soil. The active bacteria are isolated for kerosene degradation process. It has been found that Klebsiella pneumoniae sp....
Main Authors: | , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Journal of Pure and Applied Microbiology
2018-12-01
|
Series: | Journal of Pure and Applied Microbiology |
Subjects: | |
Online Access: | https://microbiologyjournal.org/optimization-kerosene-bio-degradation-by-a-local-soil-bacterium-isolate-klebsiella-pneumoniae-sp-pneumonia/ |
_version_ | 1828930428083372032 |
---|---|
author | Mona Faiq Ali Mohanad J. M-Ridha Ahmed Hussein Taly |
author_facet | Mona Faiq Ali Mohanad J. M-Ridha Ahmed Hussein Taly |
author_sort | Mona Faiq Ali |
collection | DOAJ |
description | Isolated Bacteria from the roots of barley were studied; two stages of processes Isolated and screening
were applied in order to find the best bacteria to remove kerosene from soil. The active bacteria are
isolated for kerosene degradation process. It has been found that Klebsiella pneumoniae sp. have the
highest kerosene degradation which is 88.5%. The optimum conditions of kerosene degradation by
Klebsiella pneumonia sp. are pH5, 48hr incubation period, 35°C temperature and 10000ppm the best
kerosene concentration. The results 10000ppm showed that the maximum kerosene degradation can
reach 99.58% after 48 h of incubation. Higher Kerosene degradation which was 99.83% was obtained
at pH5. Kerosene degradation was found to be maximum at 35°C with 98.63%, where 10000ppm
kerosene showed the highest degradation at 99.527%. The results indicate that the isolated Klebsiella
pneumonia sp. is extremely efficient in degrading kerosene hydrocarbons. |
first_indexed | 2024-12-14T00:32:44Z |
format | Article |
id | doaj.art-3f2b730e380b42bb9bc96eca14ee01ee |
institution | Directory Open Access Journal |
issn | 0973-7510 2581-690X |
language | English |
last_indexed | 2024-12-14T00:32:44Z |
publishDate | 2018-12-01 |
publisher | Journal of Pure and Applied Microbiology |
record_format | Article |
series | Journal of Pure and Applied Microbiology |
spelling | doaj.art-3f2b730e380b42bb9bc96eca14ee01ee2022-12-21T23:24:47ZengJournal of Pure and Applied MicrobiologyJournal of Pure and Applied Microbiology0973-75102581-690X2018-12-011242049205710.22207/JPAM.12.4.41Optimization Kerosene Bio-degradation by a Local Soil Bacterium Isolate Klebsiella pneumoniae Sp. pneumoniaMona Faiq Ali0Mohanad J. M-Ridha1Ahmed Hussein Taly2Environmental Engineering college, University of Baghdad, Baghdad, Iraq. Environmental Engineering college, University of Baghdad, Baghdad, Iraq. College of Agriculture, University of Baghdad, Baghdad, Iraq.Isolated Bacteria from the roots of barley were studied; two stages of processes Isolated and screening were applied in order to find the best bacteria to remove kerosene from soil. The active bacteria are isolated for kerosene degradation process. It has been found that Klebsiella pneumoniae sp. have the highest kerosene degradation which is 88.5%. The optimum conditions of kerosene degradation by Klebsiella pneumonia sp. are pH5, 48hr incubation period, 35°C temperature and 10000ppm the best kerosene concentration. The results 10000ppm showed that the maximum kerosene degradation can reach 99.58% after 48 h of incubation. Higher Kerosene degradation which was 99.83% was obtained at pH5. Kerosene degradation was found to be maximum at 35°C with 98.63%, where 10000ppm kerosene showed the highest degradation at 99.527%. The results indicate that the isolated Klebsiella pneumonia sp. is extremely efficient in degrading kerosene hydrocarbons.https://microbiologyjournal.org/optimization-kerosene-bio-degradation-by-a-local-soil-bacterium-isolate-klebsiella-pneumoniae-sp-pneumonia/klebsiella pneumoniae sp.kerosene hydrocarbons degradationoptimum conditionsrhizodegradation |
spellingShingle | Mona Faiq Ali Mohanad J. M-Ridha Ahmed Hussein Taly Optimization Kerosene Bio-degradation by a Local Soil Bacterium Isolate Klebsiella pneumoniae Sp. pneumonia Journal of Pure and Applied Microbiology klebsiella pneumoniae sp. kerosene hydrocarbons degradation optimum conditions rhizodegradation |
title | Optimization Kerosene Bio-degradation by a Local Soil Bacterium Isolate Klebsiella pneumoniae Sp. pneumonia |
title_full | Optimization Kerosene Bio-degradation by a Local Soil Bacterium Isolate Klebsiella pneumoniae Sp. pneumonia |
title_fullStr | Optimization Kerosene Bio-degradation by a Local Soil Bacterium Isolate Klebsiella pneumoniae Sp. pneumonia |
title_full_unstemmed | Optimization Kerosene Bio-degradation by a Local Soil Bacterium Isolate Klebsiella pneumoniae Sp. pneumonia |
title_short | Optimization Kerosene Bio-degradation by a Local Soil Bacterium Isolate Klebsiella pneumoniae Sp. pneumonia |
title_sort | optimization kerosene bio degradation by a local soil bacterium isolate klebsiella pneumoniae sp pneumonia |
topic | klebsiella pneumoniae sp. kerosene hydrocarbons degradation optimum conditions rhizodegradation |
url | https://microbiologyjournal.org/optimization-kerosene-bio-degradation-by-a-local-soil-bacterium-isolate-klebsiella-pneumoniae-sp-pneumonia/ |
work_keys_str_mv | AT monafaiqali optimizationkerosenebiodegradationbyalocalsoilbacteriumisolateklebsiellapneumoniaesppneumonia AT mohanadjmridha optimizationkerosenebiodegradationbyalocalsoilbacteriumisolateklebsiellapneumoniaesppneumonia AT ahmedhusseintaly optimizationkerosenebiodegradationbyalocalsoilbacteriumisolateklebsiellapneumoniaesppneumonia |