Publications- Macromolecules, Molecular Size Distributions

B.E. Logan  (updated 13-July-02)  


Books: Logan, B.E. 2002. Environmental Transport Processes, Wiley, N.Y.  See Chapter 3.

Journals:   <Click on text in blue to download these papers as pdf files>

2000

Logan, B.E. and G. Wagenseller. 2000. Molecular size distribution of organic matter in wastewater transformed by treatment in a full scale trickling filter. Water Environ. Res.  72(3):277-281. 
 

1998

Confer, D.R. and B.E. Logan. 1998. A conceptual model describing macromolecule degradation by suspended cultures and biofilms Water Sci. Technol. 37 (4-5):231-234. 

Confer, D.R., and B.E. Logan. 1998. Location of protein and polysaccharide hydrolytic activity in suspended and biofilm wastewater cultures. Wat. Res., 32(1):31-38. 
 

1997

Confer, D.R. and B.E. Logan. 1997. Molecular Weight Distribution of Hydrolysis Products during Biodegradation of Model Macromolecules in Suspended and Biofilm Cultures I: Bovine Serum Albumin. Wat. Res., 31(9):2127-2136.

Confer, D.R. and B.E. Logan. 1997. Molecular Weight Distribution of Hydrolysis Products during Biodegradation of Model Macromolecules in Suspended and Biofilm Cultures II: Dextran and Dextrin. Wat. Res., 31(9):2127-2145.

 

1995

Confer, D.R., B.E. Logan, B.S. Aiken, and D.L. Kirchman. 1995. Measurement of dissolved free and combined amino acids in unconcentrated wastewaters using HPLC. Wat. Environ. Res. 67(1)118-125.

 

1994

Haldane, G.M., and B.E. Logan. 1994. Molecular size distributions of a macromolecular polysaccharide (dextran) during its biodegradation in batch and continuous cultures. Wat. Res. 28(9):1873-1878.

 

1993 Logan, B.E. and R.C. Fleury. 1993. Multiphasic kinetics can be an artifact of the assumption of saturable kinetics for microorganisms. Mar. Ecol. Prog. Ser. 102:115-124.

 

1991

Logan, B.E. and D.K. Kirchman. 1991. Increased uptake of dissolved organics by marine bacteria as a function of fluid motion. Mar. Biol., 111(1):175-181.

Confer, D.R. and B.E. Logan. 1991. Increased bacterial uptake of macromolecular substrates with fluid shear. Appl. Environ. Microbiol., 57(11)3093-3100.

 

1990 Logan, B.E. and Q. Jiang. 1990. A Model for determining molecular size distributions of DOM. J. Envir. Engin. Div., ASCE, 116(6):1046-1062.

Logan, B.E. and J.W. Dettmer. 1990. Increased mass transfer to microorganisms with fluid motion. Biotechnol. Bioengin., 35(11):1135 -1144.

 

1989 Logan, B.E. and A.L. Alldredge. 1989. The increased potential for nutrient uptake by flocculating diatoms. Mar. Biol. 101(4):443-450.

 

1988 Logan, B.E. and J.R. Hunt. 1988. Bioflocculation as a microbial response to substrate limitations. Biotechnol. Bioeng., 31:91-101.

 

1987

Logan, B.E. and J.R. Hunt. 1987. Advantages of microbial growth in permeable aggregates in marine systems. Limnol. Oceanogr., 32(5):1034-1048.