Abstract
The purified extracellular emulsifying factor produced by Arthrobacter RAG-1 (EF-RAG) emulsified light petroleum oil, diesel oil, and a variety of crude oils and gas oils. Although kerosine and gasoline were emulsified poorly by EF-RAG, they were converted into good substrates for emulsification by addition of aromatic compounds, such as 2-methylnaphthalene. Neither aromatic nor aliphatic fractions of crude oil were emulsified by EF-RAG; however, mixtures containing both fractions were emulsified. Pure aliphatic or aromatic hydrocarbons were emulsified poorly by EF-RAG. Binary mixtures containing an aliphatic and an aromatic hydrocarbon, however, were excellent substrates for EF-RAG-induced emulsification. Of a variety of alkylcyclohexane and alkylbenzene derivatives tested, only hexyl- or heptylbenzene and octyl- or decylcyclohexane were effectively emulsified by EF-RAG. These data indicate that for EF-RAG to induce emulsification of hydrocarbons in water, the hydrocarbon substrate must contain both aliphatic and cyclic components. With binary mixtures of methylnaphthalene and hexadecane, maximum emulsion was obtained with 25% hexadecane.
MeSH Terms
Arthrobacter/metabolism
Emulsions
Fuel Oils
Hydrocarbons/metabolism
Lipopolysaccharides/metabolism
Petroleum
Substrate Specificity
Surface-Active Agents/metabolism
Chemicals
EF-RAG
Emulsions
Fuel Oils
Hydrocarbons
Lipopolysaccharides
Petroleum
Surface-Active Agents
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Rosenberg E
Perry A
Gibson D T
Gutnick D L
References (12)
12 references, click to expand
-
Emulsifier of Arthrobacter RAG-1: isolation and emulsifying properties.
Appl Environ Microbiol. 1979 Mar;37(3):402-8
PMID: 36840
-
Properties and biodegradation of a bioemulsifier from Corynebacterium hydrocarboclastus.
Biotechnol Bioeng. 1977 Sep;19(9):1303-20
PMID: 19111
-
Oil tankers and pollution: a microbiological approach.
Annu Rev Microbiol. 1977;31:379-96
PMID: 334042
-
Emulsifying and surface active agents from Corynebacterium hydrocarboclastus.
Biotechnol Bioeng. 1977 Sep;19(9):1285-301
PMID: 890082
-
Characteristics of hydrocarbon uptake in cultures with two liquid phases.
Biotechnol Bioeng. 1977 Jan;19(1):9-25
PMID: 843616
-
Bio-emulsifiers.
CRC Crit Rev Microbiol. 1976 Nov;5(1):39-66
PMID: 793775
-
Microbial utilization of crude oil.
Appl Microbiol. 1972 Jun;23(6):1082-9
PMID: 4557559
-
Microbial assimilation of hydrocarbons. I. The fine-structure of a hydrocarbon oxidizing Acinetobacter sp.
Arch Microbiol. 1975;102(2):75-83
PMID: 163624
-
Polycyclic aromatic hydrocarbons in the environment: isolation and characterization by chromatography, visible, ultraviolet, and mass spectrometry.
Anal Chem. 1974 Oct;46(12):1663-71
PMID: 4415113
-
Influence of interfacial area and nonutilizable hydrocarbons on growth kinetics of Candida sp. in hydrocarbon fermentations.
Biotechnol Bioeng Symp. 1973;0(4-1):485-505
PMID: 4802505
-
Sequential growth of bacteria on crude oil.
Appl Microbiol. 1975 Jul;30(1):10-9
PMID: 1096820
-
The mode of interaction between the substrate and cell surface of the hydrocarbon-utilizing yeast Candida tropicalis.
Biotechnol Bioeng. 1976 Jul;18(7):967-74
PMID: 953164