Surfactant-enhanced bioremediation of n-hexadecane-contaminated soil using halo-tolerant bacteria Paenibacillus glucanolyticus sp. strain T7-AHV isolated from marine environment

A halo-tolerant bacterial strain Paenibacillus glucanolyticus sp. strain T7-AHV isolated from marine environment was used for bioremediation of n-hexadecane-contaminated soil. Soil/water ratio, initial inoculums volume, surfactant addition, n-hexadecane concentration, and salinity were investigated....

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Permalink: http://skupni.nsk.hr/Record/nsk.NSK01001068902/Details
Matična publikacija: Chemical & biochemical engineering quarterly (Online)
33 (2019), 1 ; str. 111-123
Glavni autori: Ghafari, Shokouh (Author), Baboli, Zeynab, Neisi, A., Mirzaee, S. A., Soltani, Reza Darvishi Cheshmeh, Saeedi, Reza, Abtahi, Mehrnoosh, Jorfi, Sahand
Vrsta građe: e-članak
Jezik: eng
Predmet:
Online pristup: https://doi.org/10.15255/CABEQ.2018.1465
Chemical & biochemical engineering quarterly (Online)
Hrčak
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080 1 |a 66  |2 2011 
100 1 |a Ghafari, Shokouh  |4 aut  |9 HR-ZaNSK 
245 1 0 |a Surfactant-enhanced bioremediation of n-hexadecane-contaminated soil using halo-tolerant bacteria Paenibacillus glucanolyticus sp. strain T7-AHV isolated from marine environment  |h [Elektronička građa] /  |c Shokouh Ghafari, Zeynab Baboli, A. Neisi, S. A. Mirzaee, Reza Darvishi Cheshmeh Soltani, Reza Saeedi, Mehrnoosh Abtahi, Sahand Jorfi. 
300 |b Ilustr. 
504 |a Bibliografija: 58 jed. 
504 |a Summary. 
520 |a A halo-tolerant bacterial strain Paenibacillus glucanolyticus sp. strain T7-AHV isolated from marine environment was used for bioremediation of n-hexadecane-contaminated soil. Soil/water ratio, initial inoculums volume, surfactant addition, n-hexadecane concentration, and salinity were investigated. The possibility of biosurfactant production by isolated strain was also studied, and the results demonstrated that it was not a biosurfactant producer, based on measurement of the surface tension of culture broth. Both tween 80 and rhamnolipid enhanced the biodegradation of n-hexadecane significantly up to 44 and 46 %, respectively. A biodegradation rate of 39.7 % was observed at salinity level of up to 2 %, and the biodegradation efficiency decreased significantly at higher salinity concentrations. A natural hydrocarbon-contaminated soil sample with total petroleum hydrocarbon (TPH) concentration of 1437 mg kg–1 was subjected to bioremediation using the selected conditions of operational parameters, and a biodegradation rate of 22.1 % was obtained. 
653 0 |a Ugljikovodici  |a Alkani  |a Biorazgradnja  |a Onečišćenje tla  |a Bakterije  |a Paenibacillus glucanolyticus  |a Bioremedijacija  |a Surfaktanti 
700 1 |a Baboli, Zeynab  |4 aut  |9 HR-ZaNSK 
700 1 |a Neisi, A.  |4 aut  |9 HR-ZaNSK 
700 1 |a Mirzaee, S. A.  |4 aut  |9 HR-ZaNSK 
700 1 |a Soltani, Reza Darvishi Cheshmeh  |4 aut 
700 1 |a Saeedi, Reza  |4 aut  |9 HR-ZaNSK 
700 1 |a Abtahi, Mehrnoosh  |4 aut  |9 HR-ZaNSK 
700 1 |a Jorfi, Sahand  |4 aut 
773 0 |t Chemical & biochemical engineering quarterly (Online)  |x 1846-5153  |g 33 (2019), 1 ; str. 111-123  |w nsk.(HR-ZaNSK)000622963 
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856 4 0 |u https://doi.org/10.15255/CABEQ.2018.1465 
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856 4 1 |y Digitalna.nsk.hr 
856 4 0 |u https://hrcak.srce.hr/218888  |y Hrčak