Ibrahim WM, Hassan AF, Azab YA (2016) Biosorption of toxic heavy metals from aqueous
solution by Ulva lactuca activated carbon. Egypt J Basic Appl Sci 3(3):241–249. https://doi.
org/10.1016/j.ejbas.2016.07.005
Ivshina I, Kostina L, Krivoruchko A, Kuyukina M, Peshkur T, Anderson P, Cunningham C (2016)
Removal of polycyclic aromatic hydrocarbons in soil spiked with model mixtures of petroleum
hydrocarbons and heterocycles using biosurfactants from Rhodococcus ruber IEGM 231. J
Hazard Mater 312:8–17
Jadhav M, Kalme S, Tamboli D, Govindwar S (2011) Rhamnolipid from Pseudomonas
desmolyticum NCIM-2112 and its role in the degradation of Brown 3REL. J Basic Microbiol
51:1–12
Jian XX, Liao LW, Zhu WM, Zhang WM, Jiang JX (2011) Synergism and foaming properties in
binary mixtures of a biosurfactant derived from Camellia oleifera Abel and synthetic surfactants. J Colloid Interface Sci 359:487–492. https://doi.org/10.1016/j.jcis.2011.04.038
Jimenez-Penalver T, Gea A, Sanchez A, Font X (2016) Production of sophorolipids from winterization oil cake by solid-state fermentation: optimization, monitoring and effect of mixing.
Biochem Eng J 115:93–100
Jimoh AA, Lin J (2019a) Enhancement of Paenibacillus sp. D9 lipopeptide biosurfactant production through the optimization of medium composition and its application for biodegradation of
hydrophobic pollutants. Appl Biochem Biotechnol 187:724–743
Jimoh AA, Lin J (2019b) Production and characterization of lipopeptide biosurfactant producing
Paenibacillus sp. D9 and its biodegradation of diesel fuel. Int J Environ Sci Technol
16:4143–4158
Joice PA, Parthasarathi R (2014) Optimization of biosurfactant production from Pseudomonas
aeruginosa PBSC1. Int J Curr Microbiol Appl Sci 3:140–151
Joshi S, Bharucha C, Jha S, Yadav S, Nerurkar A, Desai AJ (2008) Biosurfactant production using
molasses and whey under thermophilic conditions. Bioresour Technol 99:195–199
Kanna R, Gummadi SN, Kumar GS (2014) Production and characterization of biosurfactant by
Pseudomonas putida MTCC 2467. J Biol Sci 14:436–445
Kim SY, Oh DK, Lee KH, Kim JH (1997) Effect of soybean oil and glucose on sophorose lipid
fermentation by Torulopsis bombicola in continuous culture. Appl Microbiol Biotechnol
48:23–26
Kim LH, Jung Y, Yu H-W, Chae K-J, Kim S (2015) Physicochemical interactions between
rhamnolipids and Pseudomonas aeruginosa biofilm layers. Environ Sci Technol 49
(6):3718–3726
Kosaric N (2001) Biosurfactants and their application for soil bioremediation. Food Technol
Biotechnol 39:295–304
Kugler JH, Le Roes-Hill M, Syldatk C, Hausmann R (2015) Surfactants tailored by the class
Actinobacteria. Front Microbiol 6:212
Kumar M, Leon V, De Sisto Materano A, Ilzins OA (2006) Enhancement of oil degradation by
co-culture of hydrocarbon degrading and biosurfactant producing bacteria. Pol J Microbiol
55:139–146
Lai CC, Huang YC, Wei WH, Chang JS (2009) Biosurfactant-enhanced removal of total petroleum
hydrocarbons from contaminated soil. J Hazard Mater 167:609–614
Lee SM, Lee JY, Yu HP, Lim JC (2017) Synthesis of environment friendly biosurfactants and
characterization of interfacial properties for cosmetic and household products formulations.
Colloids Surf A Physicochem Eng Asp 536:224–233
Lee DW, Lee H, Kwon BO, Khim JS, Yim UH, Kim BS, Kim JJ (2018) Biosurfactant-assisted
bioremediation of crude oil by indigenous bacteria isolated from Taean beach sediment. Environ
Pollut 241:254–264
Li X, Qian P (2017) Identification of an exposure risk to heavy metals from pharmaceutical-grade
rubber stoppers. Food Drug Anal 25(3):723–730
Lin Z, Zhang R, Huang S, Wang K (2017) Impact of chemical leaching on permeability and
cadmium removal from fine-grained soils. Environ Sci Pollut Res 24:18229–18239. https://doi.
org/10.1007/s11356-017-9523-2
24
K. Mulugeta et al.
solution by Ulva lactuca activated carbon. Egypt J Basic Appl Sci 3(3):241–249. https://doi.
org/10.1016/j.ejbas.2016.07.005
Ivshina I, Kostina L, Krivoruchko A, Kuyukina M, Peshkur T, Anderson P, Cunningham C (2016)
Removal of polycyclic aromatic hydrocarbons in soil spiked with model mixtures of petroleum
hydrocarbons and heterocycles using biosurfactants from Rhodococcus ruber IEGM 231. J
Hazard Mater 312:8–17
Jadhav M, Kalme S, Tamboli D, Govindwar S (2011) Rhamnolipid from Pseudomonas
desmolyticum NCIM-2112 and its role in the degradation of Brown 3REL. J Basic Microbiol
51:1–12
Jian XX, Liao LW, Zhu WM, Zhang WM, Jiang JX (2011) Synergism and foaming properties in
binary mixtures of a biosurfactant derived from Camellia oleifera Abel and synthetic surfactants. J Colloid Interface Sci 359:487–492. https://doi.org/10.1016/j.jcis.2011.04.038
Jimenez-Penalver T, Gea A, Sanchez A, Font X (2016) Production of sophorolipids from winterization oil cake by solid-state fermentation: optimization, monitoring and effect of mixing.
Biochem Eng J 115:93–100
Jimoh AA, Lin J (2019a) Enhancement of Paenibacillus sp. D9 lipopeptide biosurfactant production through the optimization of medium composition and its application for biodegradation of
hydrophobic pollutants. Appl Biochem Biotechnol 187:724–743
Jimoh AA, Lin J (2019b) Production and characterization of lipopeptide biosurfactant producing
Paenibacillus sp. D9 and its biodegradation of diesel fuel. Int J Environ Sci Technol
16:4143–4158
Joice PA, Parthasarathi R (2014) Optimization of biosurfactant production from Pseudomonas
aeruginosa PBSC1. Int J Curr Microbiol Appl Sci 3:140–151
Joshi S, Bharucha C, Jha S, Yadav S, Nerurkar A, Desai AJ (2008) Biosurfactant production using
molasses and whey under thermophilic conditions. Bioresour Technol 99:195–199
Kanna R, Gummadi SN, Kumar GS (2014) Production and characterization of biosurfactant by
Pseudomonas putida MTCC 2467. J Biol Sci 14:436–445
Kim SY, Oh DK, Lee KH, Kim JH (1997) Effect of soybean oil and glucose on sophorose lipid
fermentation by Torulopsis bombicola in continuous culture. Appl Microbiol Biotechnol
48:23–26
Kim LH, Jung Y, Yu H-W, Chae K-J, Kim S (2015) Physicochemical interactions between
rhamnolipids and Pseudomonas aeruginosa biofilm layers. Environ Sci Technol 49
(6):3718–3726
Kosaric N (2001) Biosurfactants and their application for soil bioremediation. Food Technol
Biotechnol 39:295–304
Kugler JH, Le Roes-Hill M, Syldatk C, Hausmann R (2015) Surfactants tailored by the class
Actinobacteria. Front Microbiol 6:212
Kumar M, Leon V, De Sisto Materano A, Ilzins OA (2006) Enhancement of oil degradation by
co-culture of hydrocarbon degrading and biosurfactant producing bacteria. Pol J Microbiol
55:139–146
Lai CC, Huang YC, Wei WH, Chang JS (2009) Biosurfactant-enhanced removal of total petroleum
hydrocarbons from contaminated soil. J Hazard Mater 167:609–614
Lee SM, Lee JY, Yu HP, Lim JC (2017) Synthesis of environment friendly biosurfactants and
characterization of interfacial properties for cosmetic and household products formulations.
Colloids Surf A Physicochem Eng Asp 536:224–233
Lee DW, Lee H, Kwon BO, Khim JS, Yim UH, Kim BS, Kim JJ (2018) Biosurfactant-assisted
bioremediation of crude oil by indigenous bacteria isolated from Taean beach sediment. Environ
Pollut 241:254–264
Li X, Qian P (2017) Identification of an exposure risk to heavy metals from pharmaceutical-grade
rubber stoppers. Food Drug Anal 25(3):723–730
Lin Z, Zhang R, Huang S, Wang K (2017) Impact of chemical leaching on permeability and
cadmium removal from fine-grained soils. Environ Sci Pollut Res 24:18229–18239. https://doi.
org/10.1007/s11356-017-9523-2
24
K. Mulugeta et al.
