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Environment lagoonal

In another study, a mathematical model was constructed that incorporated experimentally determined glutaraldehyde persistence, rates of water production, and other factors. The model was used to calculate the levels of glutaraldehyde in a specified environment (lagoons) as a function of time, based on the amount of glutaraldehyde applied down hole [476]. [Pg.69]

A number of studies have dealt with various aspects of the Lagoon environment. A literature review was carried out in 1985 by the Magistrate alle Acqiie and more publications have appeared subsequently. A thorough inspection of all this literature found substantial differences in the analytical procedures used in various studies. It is therefore very difficult to reconstruct the progressive degradation of sediment and water quality by... [Pg.290]

Carvalho FP, Montenegro-Guillen S, Villeneuve J-P, et al. 1999. Chlorinated hydrocarbons in coastal lagoons of the Pacific Coast of Nicaragua. Arch Environ Contam Toxicol 36 132-139. [Pg.279]

Hutchins SR, White MV, Hudson FM, Fine DD (2007) Analysis of lagoon samples from different concentrated animal feeding operations for estrogens and estrogen conjugates. Environ Sci Technol 41 738-744... [Pg.108]

Yu ZT, Mohn WW (2001) Bacterial diversity and community structure in an aerated lagoon revealed by ribosomal intergenic spacer analyses and 16S ribosomal DNA sequencing. Appl Environ Microbiol 67 1565-1574... [Pg.29]

Carvalho FP, Villeneuve JP, Cattini C, Tolosa I, Montenegro-Guillen S, Lacayo M, Cruz A (2002) Ecological risk assessment of pesticide residues in coastal lagoons of Nicaragua. J Environ Monit 4(5) 778-787... [Pg.161]

Degetto S, Schintu M, Contu A, Sbrignadello G (1997) Santa Gilla lagoon (Italy) a mercury sediment pollution case study. Contamination assessment and restoration of the site. Sci Total Environ 204 49-56... [Pg.255]

Pereira P, de Pablo H, Vale C et al (2009) Metal and nutrient dynamics in a eutrophic coastal lagoon (Obidos, Portugal) the importance of observations at different time scales. Environ Monit Assess 149 150-161... [Pg.423]

Favero, N., F. Cattalini, D. Bertaggia, and V. Albergoni. 1996. Metal accumulation in a biological indicator (Ulva rigida) from the lagoon of Venice (Italy). Arch. Environ. Contam. Toxicol. 31 9-18. [Pg.71]

Coppellotti, O. 1998. Sensitivity to copper in a ciliate as a possible component of biological monitoring in the Lagoon of Venice. Arch. Environ. Contam. Toxicol. 35 417-425. [Pg.218]

Rosales, M.T.L., A.V. Botello, H. Bravo, and E.F. Mandelli. 1979. PCB s and organochlorine insecticides in oysters from coastal lagoons of the Gulf of Mexico, Mexico. Bull. Environ. Contam. Toxicol. 21 652-656. [Pg.884]

Sherman, J.C., Nevin, T.A., and Easater, J.A. Hydrogen sulfide production from ethion by bacteria in lagoonal sediments. Bull. Environ. Contam. Toxicol, 12(3) 359-365, 1974. [Pg.1723]

Peak N, Knapp CW, Yang RK et al (2007) Abundance of six tetracycline resistance genes in waste water lagoons at cattle feedlots with different antibiotic use strategies. Environ Microbiol 9(1) 143-151... [Pg.206]

Pei R, Cha J, Carlson KH et al (2007) Response of antibiotic resistance genes (ARG) to biological treatment in dairy lagoon water. Environ Sci Technol 41(14) 5108-5113... [Pg.208]

Fig. 15.4 The position of Fe oxides in a sequence of Fe minerals deposited in a lagoon environment (Reprinted with permission of Economic Ceology.v. 78 8, p. 1670, Fig. 9,Torrez-Ruiz, J., 1983). Fig. 15.4 The position of Fe oxides in a sequence of Fe minerals deposited in a lagoon environment (Reprinted with permission of Economic Ceology.v. 78 8, p. 1670, Fig. 9,Torrez-Ruiz, J., 1983).
FRE1DMAN (G.M.) and GAVISH (E.), 1970. Chemical changes in intersticial waters from sediments of lagoonal, deltaic, river,estuarine and salt water marsh and cove environments. Journ. Sed. Petr. 40, 930-53. [Pg.194]

Morrison, R.J., Gangaiya, P Naqasima, M.R. and Naidu, R. (1997) Trace metal studies in the great astrolabe lagoon, Fiji, a pristine marine environment. Marine Pollution Bulletin, 34(5), 353-56. [Pg.220]

Our ability to predict changes in the biogeochemistry of estuaries and lagoons, as well as other shallow water organic-rich environments, is tied to our ability to quantitatively model the dynamics of microbially-mediated energetic changes closely associated with degradation processes and their chemical end products. [Pg.171]

Davis-Carter, J.G. and B. Burgoa (1993). Atrazine runoff and leaching losses from soil in tilted beds as influenced by three rates of lagoon effluent. J. Environ. Sci. Health B, 28 1-18. [Pg.376]

Menone, M.L., Moreno, J.E.A.D., Moreno, V.J., Lanfranchi, A.L., Metcalfe, T.L., Metcalfe, C.D., 2001. Organochlorine pesticides and PCBs in a Southern Atlantic coastal lagoon watershed, Argentina. Arch. Environ. Contam. Toxicol. 40, 355-362. [Pg.369]

Marcomini, A. 2000. Behavior of anionic and nonionic surfactants and their persistent metabolites in the Venice lagoon, Italy. Environ. Toxicol. Chem. 19 2000-2007. [Pg.173]


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See also in sourсe #XX -- [ Pg.105 , Pg.109 , Pg.114 , Pg.138 ]




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