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production of surfactin in foam overflowing fed-batch culture with industrial fermentation. Rev
Argent Microbiol 47:344–349
Zhang X, Guo Q, Hu Y, Lin H (2013) Effects of monorhamnolipid and dirhamnolipid on sorption
and desorption of triclosan in sediment-water system. Chemosphere 90:581–587
Zhao F, Zhou J-D, Ma F, Shi R-J, Han S-Q, Zhang J, Zhang Y (2016) Simultaneous inhibition of
sulfate-reducing bacteria, removal of H 2 S and production of rhamnolipid by recombinant
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Zhao F, Li P, Guo C, Shi R-J, Zhang Y (2018) Bioaugmentation of oil reservoir indigenous
Pseudomonas aeruginosa to enhance oil recovery through in-situ biosurfactant production
without air injection. Bioresour Technol 251:295–302
28
K. Mulugeta et al.
production of surfactin in foam overflowing fed-batch culture with industrial fermentation. Rev
Argent Microbiol 47:344–349
Zhang X, Guo Q, Hu Y, Lin H (2013) Effects of monorhamnolipid and dirhamnolipid on sorption
and desorption of triclosan in sediment-water system. Chemosphere 90:581–587
Zhao F, Zhou J-D, Ma F, Shi R-J, Han S-Q, Zhang J, Zhang Y (2016) Simultaneous inhibition of
sulfate-reducing bacteria, removal of H 2 S and production of rhamnolipid by recombinant
Pseudomonas stutzeri Rhl: applications for microbial enhanced oil recovery. Bioresour Technol
207:24–30
Zhao F, Li P, Guo C, Shi R-J, Zhang Y (2018) Bioaugmentation of oil reservoir indigenous
Pseudomonas aeruginosa to enhance oil recovery through in-situ biosurfactant production
without air injection. Bioresour Technol 251:295–302
28
K. Mulugeta et al.
