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About:
Optimization of biosurfactant production by Bacillus brevis using response surface methodology.
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scientific article published on 08 January 2016
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rdf:type
Item
description
videnskabelig artikel
(da)
article científic
(ca)
articolo scientifico
(it)
artigo científico
(pt)
bilimsel makale
(tr)
vedecký článok
(sk)
vetenskaplig artikel
(sv)
vědecký článek
(cs)
wetenschappelijk artikel
(nl)
wissenschaftlicher Artikel
(de)
научни чланак
(sr)
article scientifique
(fr)
artículu científicu espublizáu en 2016
(ast)
наукова стаття, опублікована в січні 2016
(uk)
مقالة علمية نشرت في 08 يناير 2016
(ar)
scientific article published on 08 January 2016
(en)
publication date
wds:Q37714727-3DEC2641-2B84-484C-84F1-E13373437DBA
publication date
2016-01-08 00:00:00Z
(
xsd:dateTime
)
cites work
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cites work
Physicochemical and functional characterization of a biosurfactant produced by Lactococcus lactis 53
Inhibition of Paenibacillus larvae and Ascosphaera apis by Bacillus subtilis isolated from honeybee gut and honey samples.
Comparison of methods to detect biosurfactant production by diverse microorganisms
Biosurfactant-enhanced removal of total petroleum hydrocarbons from contaminated soil
Isolation, characterization, and investigation of surface and hemolytic activities of a lipopeptide biosurfactant produced by Bacillus subtilis ATCC 6633
An efficient biosurfactant-producing bacterium Pseudomonas aeruginosa MR01, isolated from oil excavation areas in south of Iran
Comparison of synthetic surfactants and biosurfactants in enhancing biodegradation of polycyclic aromatic hydrocarbons
Biotechnological opportunities in biosurfactant production
Bioconversion of agro-industrial by-products in rhamnolipids toward applications in enhanced oil recovery and bioremediation
Production of biosurfactant and antifungal compound by fermented food isolate Bacillus subtilis 20B.
Molasses as a whole medium for biosurfactants production by Bacillus strains and their application
Biosurfactant production by Bacillus subtilis using corn steep liquor as culture medium.
Optimization of Nutrient Requirements and Culture Conditions for the Production of Rhamnolipid from Pseudomonas aeruginosa (MTCC 7815) using Mesua ferrea Seed Oil.
Solid lipid nanoparticles as potential tools for gene therapy: in vivo protein expression after intravenous administration.
author name string
wds:Q37714727-B960E9DA-2646-458B-B72B-6EC65592C693
author name string
Foukia E Mouafi
rdfs:label
Optimization of biosurfactant production by Bacillus brevis using response surface methodology.
(en)
Optimization of biosurfactant production by Bacillus brevis using response surface methodology.
(nl)
Optimization of biosurfactant production by Bacillus brevis using response surface methodology.
(ast)
skos:prefLabel
Optimization of biosurfactant production by Bacillus brevis using response surface methodology.
(en)
Optimization of biosurfactant production by Bacillus brevis using response surface methodology.
(nl)
Optimization of biosurfactant production by Bacillus brevis using response surface methodology.
(ast)
name
Optimization of biosurfactant production by Bacillus brevis using response surface methodology.
(en)
Optimization of biosurfactant production by Bacillus brevis using response surface methodology.
(nl)
Optimization of biosurfactant production by Bacillus brevis using response surface methodology.
(ast)
author
wds:Q37714727-0D0C7BBA-9107-48C8-94DD-08614B968E93
wds:Q37714727-DE9EDB03-311B-4C20-A9CA-D7D2A2E6D4A4
author
Maysa Moharam
Mostafa M Abo Elsoud
title
wds:Q37714727-DD70139C-C119-4C91-9993-7CECBB721422
title
Optimization of biosurfactant production by Bacillus brevis using response surface methodology
(en)
page(s)
wds:Q37714727-DDF422F6-8530-4AA6-8F62-5AFB560A564A
page(s)
31-37
instance of
wds:Q37714727-9D53FE09-E230-45D5-9973-866C65C24AE9
instance of
scholarly article
main subject
wds:Q37714727-0BE660E9-2C1F-42CB-A72D-6E5F8CDDEF7E
wds:Q37714727-CFAB8AE6-E3AA-475C-8123-F32EFCAE7D76
main subject
Bacillus brevis
biosurfactant
PubMed ID
wds:Q37714727-14EAB9DF-125F-4436-AF8B-5BF2E2233EBB
PubMed ID
http://rdf.ncbi.nlm.nih.gov/pubchem/reference/28352589
PubMed ID
28352589
published in
wds:Q37714727-087F46B6-C3F4-4DB3-A26D-6A18B6B6F02F
published in
Biotechnology reports (Amsterdam, Netherlands)
volume
wds:Q37714727-CA7FFD32-19EA-45D5-81B4-A5854BAFC92C
volume
9
DOI
wds:Q37714727-E94D69AD-5289-4E71-BE2F-3388B9DBEF4A
DOI
http://dx.doi.org/10.1016/J.BTRE.2015.12.003
DOI
10.1016/J.BTRE.2015.12.003
ResearchGate publication ID
wds:Q37714727-78D5E0B0-C292-4E69-A9CF-D10D2F7F6820
ResearchGate publication ID
290026330
describes a project that uses
wds:Q37714727-5987C0F0-B00E-4438-8330-6057E99E13B5
describes a project that uses
response surface methodology
PMCID
wds:Q37714727-F1BCD6C2-0AD2-4C04-96ED-4DC0615DC344
PMCID
5360978
is
about
of
https://www.wikidata.org/wiki/Special:EntityData/Q37714727
is
cites work
of
Optimization of rhamnolipid production from Pseudomonas aeruginosa PBS towards application for microbial enhanced oil recovery.
First report of the production of a potent biosurfactant with α,β-trehalose by Fusarium fujikuroi under optimized conditions of submerged fermentation
Production of mycophenolic acid by Penicillium brevicompactum-A comparison of two methods of optimization
Revealing the Efficacy of Thermostable Biosurfactant in Heavy Metal Bioremediation and Surface Treatment in Vegetables
is
cites work
of
wds:Q51769977-4C4CF5C8-1A85-4323-9AF6-9490309D1E1E
wds:Q88573349-ADFC0B32-49E4-46A9-AC46-B4A4165F5161
wds:Q37296578-381A924A-C136-4C21-A4F6-D01926C8B1AD
wds:Q90639248-F5068B90-72FF-41AA-8D6C-D3B99B030D5A
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