Login

Join for Free!
61711 members
table of contents table of contents

The main goal of this research was to survey information about the …


');

Biology Articles » Anatomy & Physiology » Physiology, Animal » Uptake rates of nitrogen and phosphorus in the water by Eichhornia crassipes and Salvinia auriculata » References

References
- Uptake rates of nitrogen and phosphorus in the water by Eichhornia crassipes and Salvinia auriculata

BASTIAN, R. K. & HAMMER, D. A., 1993, The use of constructed wetlands for wastewater treatment and recycling, pp. 59-68. In: G. A. Moshiri (ed.), Constructed Wetlands for Water Quality Improvement. Lewis Publishers, 632p.  

BRANCO, C. W. C., ATTAYDE, J. L. & KOSLOWSKY-SUSUKI, B., 1998, Zooplankton community of a coastal lagoon subjected to anthropogenic influences (Lagoa Imboassica, Macaé, RJ, Brazil). Verh. Internat. Verein. Limnol., 26(3): 1426-1429.

BRIX, H., 1993, Wastewater treatment in constructed: system design, removal processes, and treatment performance, pp. 9-22. In: G. A. Moshiri (ed.),Constructed Wetlands for Water Quality Improvement. Lewis Publishers, 632p.

CALLISTO, M., SERPA-FILHO, A., OLIVEIRA, S. J. & ESTEVES, F. A., 1996, Chironomids on leaves of Typha domingensis in a lagoon of Rio de Janeiro State (Brazil). Stud. Neotrop. Fauna & Environ., 31: 51-53.

CARY, P. R. & WEERTS, P. G. J., 1983a, Growth of Salvinia molesta as affected by water temperature and nutrition. I. Effects of nitrogen level and nitrogen compounds. Aquat. Bot., 16: 163-172.

CARY, P. R. & WEERTS, P. G. J., 1983b, Growth of Salvinia molesta as affected by water temperature and nutrition. II. Effects of phosphorus level. Aquat. Bot., 17: 61-70. 

CARY, P. R. & WEERTS, P. G. J., 1984, Growth of Salvinia molesta as affected by water temperature and nutrition. III. Nitrogen-phosphorus interactions and effect of pH. Aquat. Bot., 19: 171-182.

DEBUSK, T. A. & REDDY, K. R., 1987, Density requirements to maximise the productivity of water hyacinth (Eichhornia crassipes [Mart] Solms), pp. 673-680. In: K. R. Reddy & W. H. Smith (eds.), Aquatic Plants for Water Treatment and Resource Recovery. Magnolia Publishing Inc., 1032p.

FISHER, M. M. & REDDY, K. R., 1987, Waster hyacinth (Eichhornia crassipes [Mart] Solms) for improving eutrophic lake water: water quality and mass balance, pp. 969-976. In: K. R. Reddy & W. H. Smith (eds.), Aquatic Plants for Water Treatment and Resource Recovery. Magnolia Publishing Inc., 1032p.

FURTADO, A. L. S., 1994, Contribuição das macrófitas aquáticas Typha domingensis Pers. (Typhaceae) e Eleocharis cf. fistulosa (Poir.) Link (Cyperaceae) para o estoque de nutrientes e energia da lagoa Imboacica (Macaé, RJ). Dissertação de Mestrado, UFRJ, 104p.

FURTADO, A. L. S., PETRUCIO, M. M. & ESTEVES, F. A., 1997, C, N, P and pheopigments in the sediment of a brazilian coastal lagoon (Macaé, Rio de Janeiro). Rev. Brasil. Biol., 57(1): 127-134.

GOLTERMAN, H. L., CLYMI, R. S. & OHMSTAD, A. M., 1978, Methods for Physical and Chemical Analysis of Fresh Water. Blackwell Scientific Publ. Oxford, 214p.

GRASSHOFF, K., 1976, Methods of Seawater Analysis. Verlag Chemie. Weinheim, New York, 317p.

KNIGHT, R. L., RUBLE, R. W., KADLEC, R. H. & REED, S., 1993, Wetlands for wastewater treatment: performance database, pp. 35-58. In: G. A. Moshiri (ed.),Constructed Wetlands for Water Quality Improvement. Lewis Publishers, 632p.

LOPES-FERREIRA, C. M., 1995, O Papel de uma Região Colonizada por Macrófitas Aquáticas na Depuração de Efluentes Domésticos na Lagoa Imboacica (Macaé, RJ). Dissertação de Mestrado, UFRJ, 85p.

MACKERETH, F. J. H., HERON, J. & TALLING, J. F., 1978, Water Analysis: Some Revised Methods for Limnologists. (scientific publication n. 36) Freshwater Biological Association, Cumbria and Dorset, England.

NUSCH, E. A. & PALME, G., 1975, Biologische methoden für die praxis der gewässeruntersuchung. GWF-Wasser/Abwasser, 116: 562-565.

REDDY, K. R. & TUCKER, W. F., 1983, Productivity and nutrient uptake of water hyacinth, Eichhornia crassipes: I-Effect of nitrogen source. Econ. Bot., 37: 237-247.

REDDY, K. R. & DEBUSK, T. A., 1987, Plant Nutrient Storage Capabilities, pp. 337-358. In: K. R. Reddy & W. H. Smith (eds.), Aquatic Plants for Water Treatment and Resource Recovery. Magnolia Publishing Inc., 1032p.

REDDY, K. R. & D'ANGELO, 1997, Biogeochemical indicators to evaluate pollutant removal efficiency in constructed wetlands. Wat. Sci. Tech., vol. 35, n. 5, pp. 1-10.

REDDY, K. R., AGAMI, M. & TUCKER, J. C., 1989, Influence of nitrogen supply rates on growth and nutrient storage by water hyacinth (Eichhornia crassipes (Mart.) Solms) plants. Aquat. Bot., 36: 33-43.

REDDY, K. R., AGAMI, M. & TUCKER, J. C., 1990, Influence of phosphorus on growth and nutrient storage by water hyacinth (Eichhornia crassipes (Mart.) Solms) plants. Aquat. Bot., 37: 355-365.

ROOM, P. M., 1986, Equations relating growth and uptake of nitrogen by Salvinia molesta to temperature and the availability of nitrogen. Aquat. Bot., 24: 43-59.

SATO, H. & KONDO, T., 1981. Biomass production of water hyacinth and it's ability to remove inorganic minerals from water. I- Effect of the concentration of culture solution on the rates of plant growth and nutrient uptake. Jap. J. Ecol., 31: 257-267.

SHARMA, B. M. & OSHODI, O. O., 1991, Effect of nutrients on the biomass of water hyacinth (Eichhornia crassipes (Mart.) Solms.). Pol. Arch. Hidrobiol., 38(3-4): 401-408.

TRIPATHI, B. D., SRIVASTAVA, J. & MISRA, K., 1991, Nitrogen and phosphorus removal-capacity of four chosen aquatic macrophytes in tropical freshwater Ponds. Environ. Conserv., 18(2): 143-147.

ZAKOVA, Z., PALAT, M., KOCKOVA, E. & TOUFAR, J., 1994, Is it realistic to use water hyacinth for wastewater treatment and nutrient removal in Central Europe? Wat. Sci. Tech., 30(8): 303-311.


rating: 0.00 from 0 votes | updated on: 6 Nov 2007 | views: 4241 |

Rate article:







excellent!bad…