109
Lorenzen CJ (1967) Determination of chlorophyll and phaeo-pigments:
spectrophotometric equations. Limnol Oceanogr 12:343–346
Melack JM, Kilham P (1974) Photosynthetic rates of phytoplankton in
East African alkaline, saline lakes. Limnol Oceanogr 19:743–755
Morin A, Lamoureux W, Busnarda J et al (1999) Empirical models
predicting primary productivity from chlorophyll a and water temperature for stream periphyton and lake and ocean phytoplankton. J
North Americ Benthol Soc 18:299–307
Nõges T (2009) Relationships between morphometry, geographic location and water quality parameters of European lakes. Hydrobiologia
633:33–43
Nürnberg GK, Shaw M (1999) Productivity of clear and humic lakes:
nutrients, phytoplankton, bacteria. Hydrobiologia 382:97–112
OECD (1982) Eutrophication of waters. Monitoring assessment and
control. OECD, Paris
Ohle W (1958) Typologische Kennzeichnung der Gewässer auf Grund
ihrer Bioaktivität, Verhandlungen der internationalen Verh internat
Ver Limnol 13:196–211
Pace ML, Prairie YT (2005) Respiration in lakes. In: del Giorgio PA,
Williams PJLB (eds) Respiration in aquatic ecosystems. Oxford
University Press, pp 103–122
Randerson JT, Chapin FS, Harden JW, Neff JC, Harmon ME et al
(2002) Net ecosystem production: a comprehensive measure of net
carbon accumulation by ecosystems. Ecol Appl 12:937–947
Rast W, Thornton JA (2005) The phosphorus loading concept and
the OECD Eutrophication program: Origin, application and capabilities. In: Sullivan PO, Reynolds CS (eds) The lakes handbook.
Blackwell, Oxford 2:345–385
Robarts R (1984) Factors controlling primary production in a hypertrophic lake (Hartbeespoorts Dam, South Africa). J Plankton Res
6:91–105
Rodhe W (1958) Primärproduktion und Seetypen. Verh Internat Ver
Limnol 13:121–141
Rodhe W (1965) Standard correlations and the relationship between
primary production and community structure. Mem Ist Ital Idrobiol
18:365–382
Schindler DW (1978) Factors regulating phytoplankton production
and standing crop in the world’s freshwaters. Limnol Oceanogr
23:478–486
Schönborn W (2003) Lehrbuch der Limnologie. Schweizerbart Verlag,
Stuttgart, p 588
Smith VH (2007) Using primary productivity as an index of coastal
eutrophication: the units of measurement matter. J Plankton Res
29:1–6
Steemann-Nielsen E (1951) Measurement of the production of organic
matter in the sea by means of carbon-14. Nature 167:846–685
Talling JF (1957) The Phytoplankton population as a compound photosynthetic system. New Phytol 56:133–149
Talling JF (1970) Generalized and specialised features of phytoplankton as s form of photosynthetic cover. Prediction and measurements of photosynthetic productivity. Proc IBP/PP Meeting Trebon,
Wageningen, pp 431–445
Talling JF (1982) Utilization of solar radiation by phytoplankton. In:
Helene C, Charlier M, Montenay-Garestier T, Laustriat G (eds)
Trends in photobiology. Plenum, New York, pp 619–631
Talling JF, Lemoalle J (1998) Ecological dynamics of tropical inland
waters. Cambridge University Press, Cambridge, pp 441
Uhlmann D (1978) The upper limit of phytoplankton production as a
function of nutrient load, temperature, retention time of the water,
and euphotic zone depth. Int Rev Ges Hydrobiol. 63:353–363
Vollenweider RA (1965a) Calculation models of photosynthesis-depth
curves and some implications regarding day rate estimates in primary production measurements. In: Goldman CR (ed) Primary
production in aquatic environments. University California Press,
Berkeley, pp 425–457
Vollenweider RA (1965b) Calculation models of photosynthesis-depth
curves and some implications regarding day rate estimates in primary production measurements. Mem Ist Ital Idrobiol 18:425–457
Vollenweider RA (1968) Scientific fundamentals of the eutrophication
of lakes and flowing waters, with particular reference to nitrogen
and phosphorus as factors in eutrophication. Water Management
Research, OECD, Paris, pp 159
Vollenweider RA (1970) Models for calculating integral photosynthesis
and some implications regarding structural properties of the community metabolism of aquatic systems. Prediction and measurements of photosynthetic productivity. Proc IBP/PP Meeting Trebon,
Wageningen, pp 455–472
Vollenweider RA, Kerekes J (1980) The loading concept as basis for
controlling eutrophication philosophy and preliminary results of the
OECD programme on Eutrophication. Prog Wat Tech 17:5–38
Watson S, McCauley E, Downing JA et al (1992) Sigmoid relationship
between phosphorus, algal biomass, and algal community structure.
Can J Fish Aquat Sci 49:2605–2610
Watson SB, McCauley E, Downing JA et al (1997) Patterns in phytoplankton taxonomic composition across temperate lakes of differing
nutrient status. Limnol Oceanogr 42:487–495
Wetzel RG (1990) Land-water interfaces: metabolic and limnological
regulators. Verh Internat Verein Limnol 24:6–28
Wetzel RG (2001) Limnology. Lake and river ecosystems, 3rd edn.
Academic, San Diego, pp 1006
Wetzel RG, Likens GE (1991) Limnological analysis, 2nd edn.
Springer, New York, pp 391
Winberg GG (1960) Primary production of water bodies. Minsk (in
Russian)
9 Photoautotrophic Productivity in Eutrophic Ecosystems
Lorenzen CJ (1967) Determination of chlorophyll and phaeo-pigments:
spectrophotometric equations. Limnol Oceanogr 12:343–346
Melack JM, Kilham P (1974) Photosynthetic rates of phytoplankton in
East African alkaline, saline lakes. Limnol Oceanogr 19:743–755
Morin A, Lamoureux W, Busnarda J et al (1999) Empirical models
predicting primary productivity from chlorophyll a and water temperature for stream periphyton and lake and ocean phytoplankton. J
North Americ Benthol Soc 18:299–307
Nõges T (2009) Relationships between morphometry, geographic location and water quality parameters of European lakes. Hydrobiologia
633:33–43
Nürnberg GK, Shaw M (1999) Productivity of clear and humic lakes:
nutrients, phytoplankton, bacteria. Hydrobiologia 382:97–112
OECD (1982) Eutrophication of waters. Monitoring assessment and
control. OECD, Paris
Ohle W (1958) Typologische Kennzeichnung der Gewässer auf Grund
ihrer Bioaktivität, Verhandlungen der internationalen Verh internat
Ver Limnol 13:196–211
Pace ML, Prairie YT (2005) Respiration in lakes. In: del Giorgio PA,
Williams PJLB (eds) Respiration in aquatic ecosystems. Oxford
University Press, pp 103–122
Randerson JT, Chapin FS, Harden JW, Neff JC, Harmon ME et al
(2002) Net ecosystem production: a comprehensive measure of net
carbon accumulation by ecosystems. Ecol Appl 12:937–947
Rast W, Thornton JA (2005) The phosphorus loading concept and
the OECD Eutrophication program: Origin, application and capabilities. In: Sullivan PO, Reynolds CS (eds) The lakes handbook.
Blackwell, Oxford 2:345–385
Robarts R (1984) Factors controlling primary production in a hypertrophic lake (Hartbeespoorts Dam, South Africa). J Plankton Res
6:91–105
Rodhe W (1958) Primärproduktion und Seetypen. Verh Internat Ver
Limnol 13:121–141
Rodhe W (1965) Standard correlations and the relationship between
primary production and community structure. Mem Ist Ital Idrobiol
18:365–382
Schindler DW (1978) Factors regulating phytoplankton production
and standing crop in the world’s freshwaters. Limnol Oceanogr
23:478–486
Schönborn W (2003) Lehrbuch der Limnologie. Schweizerbart Verlag,
Stuttgart, p 588
Smith VH (2007) Using primary productivity as an index of coastal
eutrophication: the units of measurement matter. J Plankton Res
29:1–6
Steemann-Nielsen E (1951) Measurement of the production of organic
matter in the sea by means of carbon-14. Nature 167:846–685
Talling JF (1957) The Phytoplankton population as a compound photosynthetic system. New Phytol 56:133–149
Talling JF (1970) Generalized and specialised features of phytoplankton as s form of photosynthetic cover. Prediction and measurements of photosynthetic productivity. Proc IBP/PP Meeting Trebon,
Wageningen, pp 431–445
Talling JF (1982) Utilization of solar radiation by phytoplankton. In:
Helene C, Charlier M, Montenay-Garestier T, Laustriat G (eds)
Trends in photobiology. Plenum, New York, pp 619–631
Talling JF, Lemoalle J (1998) Ecological dynamics of tropical inland
waters. Cambridge University Press, Cambridge, pp 441
Uhlmann D (1978) The upper limit of phytoplankton production as a
function of nutrient load, temperature, retention time of the water,
and euphotic zone depth. Int Rev Ges Hydrobiol. 63:353–363
Vollenweider RA (1965a) Calculation models of photosynthesis-depth
curves and some implications regarding day rate estimates in primary production measurements. In: Goldman CR (ed) Primary
production in aquatic environments. University California Press,
Berkeley, pp 425–457
Vollenweider RA (1965b) Calculation models of photosynthesis-depth
curves and some implications regarding day rate estimates in primary production measurements. Mem Ist Ital Idrobiol 18:425–457
Vollenweider RA (1968) Scientific fundamentals of the eutrophication
of lakes and flowing waters, with particular reference to nitrogen
and phosphorus as factors in eutrophication. Water Management
Research, OECD, Paris, pp 159
Vollenweider RA (1970) Models for calculating integral photosynthesis
and some implications regarding structural properties of the community metabolism of aquatic systems. Prediction and measurements of photosynthetic productivity. Proc IBP/PP Meeting Trebon,
Wageningen, pp 455–472
Vollenweider RA, Kerekes J (1980) The loading concept as basis for
controlling eutrophication philosophy and preliminary results of the
OECD programme on Eutrophication. Prog Wat Tech 17:5–38
Watson S, McCauley E, Downing JA et al (1992) Sigmoid relationship
between phosphorus, algal biomass, and algal community structure.
Can J Fish Aquat Sci 49:2605–2610
Watson SB, McCauley E, Downing JA et al (1997) Patterns in phytoplankton taxonomic composition across temperate lakes of differing
nutrient status. Limnol Oceanogr 42:487–495
Wetzel RG (1990) Land-water interfaces: metabolic and limnological
regulators. Verh Internat Verein Limnol 24:6–28
Wetzel RG (2001) Limnology. Lake and river ecosystems, 3rd edn.
Academic, San Diego, pp 1006
Wetzel RG, Likens GE (1991) Limnological analysis, 2nd edn.
Springer, New York, pp 391
Winberg GG (1960) Primary production of water bodies. Minsk (in
Russian)
9 Photoautotrophic Productivity in Eutrophic Ecosystems
