Environmental Engineering Reference
In-Depth Information
Hommel, R.K., Stuwer, O., Stuber, W., Hafersburg, D., and Kleber, H.P. 1987. Produc-
tion of water-soluble surface-active exolipids by Torulopsis apicola . Appl. En-
viron. Microbiol . 26: 199-205.
Hunt, W.P., Robinson, K.G., and Ghosh, M.M. 1994. The role of biosurfactants in
biotic degradation of hydrophobic organic compounds. In Hydrocarbon Biore-
mediation , R.E. Hinchee, B.C. Alleman, R.E. Hoeppel, and R.N. Miller, Eds.
Lewis Publishers, Boca Raton, FL, pp. 318-322.
Jimenez, I. and Bartha, R. 1996. Solvent-augmented mineralization of pyrene by a
Mycobacterium sp. Appl. Environ. Microbiol . 62: 2311-2316.
Jixin, T., Carroquino, M.J., Robertson, B.K., and Alexander, M. 1998. Combined effect
of sequestration and bioremediation in reducing the bioavailability of poly-
cyclic aromatic hydrocarbons in soil . Environ. Sci. Technol. 32: 3586-3590.
Johnson, J.H., Jr. 1998. Composting of hPAH . SERDP.
Kastner, M., Breuer-Jammali, M., and Mahro, B. 1994. Enumeration and character-
ization of the soil microflora from hydrocarbon-contaminated soil sites able
to mineralize polycyclic aromatic hydrocarbons (PAH). Appl. Microbiol. Bio-
technol . 41: 267-273.
Kastner, M., Breuer-Jammal, M., and Mahro, B. 1998. Impact of inoculation protocols,
salinity and pH on the degradation of polycyclic aromatic hydrocarbons
(PAHs) and survival of PAH-degrading bacteria introduced into soil. Appl.
Environ. Microbiol . 64: 359-362.
Kastner, M. and Mahro, B.M. 1996. Microbial degradation of polycyclic aromatic
hydrocarbons in soils affected by the organic matrix of compost. Appl. Micro-
biol. Biotechnol . 44: 668-675.
Kelsey, J.W., Kottler, B.D., and Alexander, M. 1997. Selective chemical extractants to
predict bioavailability of soil-aged organic chemicals. Environ. Sci. Technol . 31:
214-217.
Kim, E., Aversano, P., Romine, M., Schneider, R., and Zylstra, G. 1996. Homology
between genes for the aromatic hydrocarbon degradation in surface and
deep-subsurface Sphingomonas strains. Appl. Environ. Microbiol. 62: 1467-1470.
Kiyohara, H., Nagao, K., and Yana, K. 1982. Rapid screen for bacteria degrading
water insoluble, solid hydrocarbons on agar plates. Appl. Environ. Microbiol .
43: 454-457.
Kretschmer, A., Bock, H., and Wagner, F. 1982. Chemical and physical characterization
of interfacial-active lipids from Rhodococcus erythropolis grown on n-alkane.
Appl. Environ. Microbiol . 44: 864-870.
Lang, S. and Wagner, F. 1987. Structure and properties of biosurfactants. In Biosur-
factants and Biotechnology , N. Kosaric, W.L. Cairns, and N.C.C. Gray, Eds.
Marcel Dekker, New York, pp. 21-47.
Lang, S. and Wagner, F. 1993. Biological activities of biosurfactants. In Biosurfactants ,
Surfactant Science Series, Vol. 48, N. Kosaric, Ed. Marcel Dekker, New York,
pp. 251-268.
Lang, S. and Wullbrandt, D. 1999. Rhamnose lipids: biosynthesis, microbial produc-
tion and application potential. Appl. Microbiol. Biotechnol . 51: 22-32.
Laurie, A. and Lloyd-Jones, G. 2000. Quantification of phnAc and nahAc in contam-
inated New Zealand soils by competitive PCR. Appl. Environ. Microbiol . 66:
1814-1817.
Leblond, J.D., Schultz, T.W., and Sayler, G.S. 2001. Observations on the preferential
biodegradation of selected components of polyaromatic hydrocarbon mix-
tures. Chemosphere 42: 333-343.
Search WWH ::




Custom Search