Biomedical Engineering Reference
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Harvey, S., Elashi, I., Valdes, J.J., Kamely, D., and Chakrabarty, A.M. 1990. Enhanced
removal of Exxon Valdez spilled oil from Alaskan gravel by a microbial surfactant.
Bio/Technology 8: 228-230.
Hazra, C., Kundu, D., Ghosh, P., Joshi, S., Dandi, N., and Chaudhar, A. 2011. Screening
and identification of Pseudomonas aeruginosa AB4 for improved production, charac-
terization and application of a glycolipid biosurfactant using low-cost agro-based raw
materials. Journal of Chemical Technology and Biotechnology 86: 185-198.
Herman, D.C., Artiola, J.F., and Miller, R.M. 1995. Removal of cadmium, lead and zinc
from soil by a rhamnolipid biosurfactant. Environmental Science and Technology
29: 2280-2285.
Hester, A. 2001. IB market forecast. Industrial Bioprocessing 23(5): 3.
Holakoo, L. and Mulligan, C.N. 2002. On the capability of rhamnolipids for oil spill control of
surface water. Proceedings of the Annual Conference of the Canadian Society for Civil
Engineering , Montreal, Quebec, Canada, June 5-8, 2002.
Holden, T. 1989. How to Select Hazardous Waste Treatment Technologies for Soils and Sludges ,
Pollution Technology Review, No. 163, Noyes Data Corporation, Park Ridge, NJ.
Hong, J.-J., Yang, S.-M., Lee, C.-H., Choi, Y.-K., and Kajiuchi, T. 1998. Ultrafiltration of diva-
lent metal cations from aqueous solutions using polycarboxylic acid type biosurfactant.
Journal of Colloid and Interfacial Science 202: 63-73.
Hong, K.-J., Tokunaga, S., and Kajiuchi, T. 2002. Evaluation of remediation process with
plant-derived biosurfactant for recovery of heavy metals from contaminated soils.
Chemosphere 49(4): 379-387.
Ilori, M.O., Adebuseye, S.A., and Ojo, A. 2008. Isolation and characterization of hydrocarbon-
degrading and biosurfactant-producing yeast strains obtained from a polluted lagoon
water. World Journal of Microbiology and Biotechnology 24: 2539-2545.
Jalali, F. and Mulligan, C.N. 2007. Effect of biosurfactant production by indigenous soil
microorganisms on bioremediation of a co-contaminated soil in batch experiments, 60th
Canadian Geotechnical Conference , Ottawa, Ontario, Canada, October 21-24, 2007.
Jennings, E.M. and Tanner, R.S. 2000. Biosurfactant-producing bacteria found in contami-
nated and uncontaminated soils. Proceedings of the 2000 Conference on Hazardous
Waste Research , Denver, pp. 299-306.
Juwarkar, A.A. Nair, A., Dubey, K.V., Singh, S.K., and Devotta, S. 2007. Biosurfactant technology
for remediation of cadmium and lead contaminated soils. Chemosphere 68: 1996-2002.
KiliƧ, E., Font, J., Puig, R., Colak, S., and Celik, D. 2011. Chromium recovery from tannery sludge
with saponin and oxidative remediation. Journal of Hazardous Materials 185(1): 456-462.
Kim, J. and Vipulanandan, C. 2006. Removal of lead from contaminated water and clay soil
using a biosurfactant. Journal of Environmental Engineering 132(7): 777-786.
Lafrance, P. and Lapointe, M. 1998. Mobilization and co-transport of pyrene in the presence
of Pseudomonas aeruginosa UG2 biosurfactants in sandy soil columns. Ground Water
Monitoring and Remediation 18(4): 139-147.
LaGrega, M.D., Buckingham, P.L., and Evans, J.C. 2001. Hazardous Waste Management ,
McGraw Hill, Boston, MA.
Lai, C.-C., Huang, Y.-C., Wei, Y.-W., and Chang, J.-S. 2009. Biosurfactant-enhanced removal
of total petroleum hydrocarbons from contaminated soil. Journal of Hazardous
Materials 167: 609-614.
Lang, S. and Wagner, F. 1987. Structure and properties of biosurfactants. In Biosurfactants
and Biotechnology , Kosaric, N., Cairns, W.L., and Gray, N.C.C. (eds.) Marcel Dekker,
New York, pp. 21-45.
Li, Y-Y., Zheng, X-L., and Li, B. 2006. Influence of biosurfactant on the diesel oil remediation
in soil-water system. Journal of Environmental Science 18: 587-590.
Lima, T.M.S., Procopio, L.C., Brandao, F.D., Carvalho, A.M.X., Totola, M.R., and Borges,
A.C. 2011. Biodegradability of bacterial surfactants. Biodegradation 22: 585-592.
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