108
M. T. Dokulil
Bannister TT (1974) Production equations in terms of chlorophyll concentration, quantum yield, and upper limit to production. Limnol
Oceanogr 19:1–12
Bateman IJ, Georgiou S (2010) The socioeconomic consequences of
climate change for the management of water resources. In: George
G (ed) The impact of climate change on European lakes. Springer,
Dordrecht, pp 437–452
Bot PVM, Colijn F (1996) A method for estimating primary production
from chlorophyll concentrations with results showing trends in the
Irish Sea and the Dutch coastal zone. ICES J Mar Sci 53:945–950
Boulion VV (2003) Dependence of the annual phytoplankton production on latitude. Dokl Biol Sci 389:130–133
Brylinsky M (1980) Estimating the productivity of lakes and reservoirs. In: LeCren ED, Lowe-McConnell RH (eds) The functioning
of freshwater ecosystems. Cambridge University Press, London,
pp 411–453
Brylinsky M, Mann KH (1973) An analysis of factors governing productivity in lakes and reservoirs. Limnol Oceanogr 18:1–14
Burroughs WJ (2001) Climate change. A multidisciplinary approach.
Cambridge Univ Press, Cambridge, pp 298
Clasen J, Bernhardt H (1980) OECD programme for monitoring inland
waters (eutrophication control). Regional project shallow lakes and
reservoirs. Final Report, Medmenham, England
Dokulil MT (2003) Algae as ecological bio-indicators. In: Markert B,
Breure AM, Zechmeister HG (eds) Bioindicators and biomonitors.
Elsevier, Amsterdam, pp 285–327
Dokulil MT (2005) European alpine lakes. In: Sullivan PO, Reynolds
CS (eds) The lakes handbook, Vol 2. Blackwell, Oxford, pp 159–178
Dokulil MT (2009) Comparative primary production. In: Likens
GE (ed) Encyclopedia of inland waters, Vol 1. Elsevier, Oxford,
pp 130–137. http://www.sciencedirect.com/science/article/pii/
B9780123706263001435. Accessed 3 Feb 2012
Dokulil MT (2012) Potamoplankton primary productivity in large rivers of the world: the river Danube. Hydrobiologia, in press
Dokulil MT, Kaiblinger C (2009) Phytoplankton productivity. In: Likens GE (ed) Encyclopedia of inland waters, Vol 1. Elsevier, Oxford,
pp 210–218. http://www.sciencedirect.com/science/article/pii/
B978012370626300140X. Accessed 3 Feb 2012
Dokulil MT, Teubner K (2011) Eutrophication and climate change:
present situation and future scenarios. In: Ansari AA, Gill SS, Lanza
GR, Rast W (eds) Eutrophication: causes, consequences and control. Springer, Doordrecht, pp 1–16
Dokulil MT, Teubner K, Kaiblinger C et al (2005) Produktivität
aquatischer Systeme. Primärproduktion (autotrophe Produktion). In: Steinberg C, Calmano W, Klapper H, Wilken RD (eds),
Handbuch angewandte Limnologie, IV-9.2, 1-30, 21. Erg. Lfg, 4/05,
ecomed, Landsberg. ISBN-10:3-527-32131-4. http://www.wileyvch.de/publish/dt/books/ISBN978-3-527-32131-5/?sID=ne5dh6adi
2age7kducafc4peg1. Accessed 3 Feb 2012
Downing JA (2010) Emerging global role of small lakes and ponds:
little things mean a lot. Limnetica 29:9–24
Downing JA, Prairie JT, Cole JJ, Duarte CM, Tranvik LJ, Striegl RG,
McDowell WH, Kortelainen P, Caraco NF, Melack JM, Middelburg
JJ et al (2006) The global abundance and size distribution of lakes,
ponds, and impoundments. Limnol Oceanogr 51:2388–2397
Elster HJ (1954) Einige Gedanken zur Systematik, Tcrminologie und
Zielsetzung der dynamischen Limnologie. Arch Hydrobiol Suppl
20:487–523
Elster HJ (1958). Lake classification, production and consumption,
Verh internat Ver Limnol 13:101–120
Faithfull CL, Bergström AK, Vrede T (2011) Effects of nutrient and
physical lake characteristics on bacterial and phytoplankton production: a meta-analysis. Limnol Oceanogr 56:1703–1713
Fee EJ (1979) A relation between lake morphometry and primary productivity and its use in interpreting whole—lake eutrophication
experiments. Limnol Oceanogr 24:401–416
Fee EJ (1980) Important factors for estimating annual phytoplankton
production in the experimental lakes area. Canad J Fish Aqua Sci
37:513–522
Felföldy L (1987) A biólogai vizminosités. (biological water quality
evaluation). Vizügyi Hidrobiológia 16 VGL Budapest
Findenegg I (1964) Types of planktic primary production in lakes of
the eastern alps as found by the radioactive carbon method. Verh
Internat Ver Limnol 15:532–539
Flynn KJ (1988). The concept of “primary production” in aquatic ecology. Limnol Oceanogr 33:1215–1216
Fricker HJ (1980) OECD Eutrophication programme— Reginal Project
Alpine lakes. EAWAG, Dübendorf
Fricker HJ (1981) Critical evaluation of the application of statistical
phosphorus loading models to Alpine Lakes. Diss. ETH Nr. 6883,
Zürich
Frisk T, George G (2010) Climate change and the water framework
directive. In: George G (ed) The impact of climate change on European lakes. Springer, Dordrecht, pp 453–468
Geider RJ, DeLucia EH, Falkowski PG et al. (2001) Primary productivity of planet earth: biological determinants and physical constraints
in terrestrial and aquatic habitats. Global Change Biol 7:849–882
Håkanson L, Boulion VV (2001) Rgeulerities in primary production,
secchi depth and fish yield and a new system to define trophic and
humic state indices for lake ecosystems. Internat Rev Hydrobiol
86:23–62
Håkanson L, Jansson M (1983) Principles of lake sedimentology.
Springer, Berlin, pp 316
Håkanson L, Peters R (1995) Predictive limnology. Methods for predictive modelling. SPB Acad, Amsterdam, pp 464
Harper D (1992) Eutrophication of fresh waters. Principles, problems
and restoration. Chapman & Hall, London, pp 327
Henderson-Sellers B, Markland HR (1987) Decying lakes. The origin
and control of cultural eutrophication. Wiley, Chichester, pp 254
Huot YH, Babin B, Bruyant F, Grob C, Twardowski MS, Claustre H
et al (2007) Does chlorophyll a provide the best index of phytoplankton biomass for primary productivity studies? Biogeosci Dissc
4:707–745
ISO10260, International Standard (1992) Water quality Measurement
of biochemical parameters – spectrophotometric determination of
the chlorophyll-a concentration.
Janus LL (2010) Climate change impacts from a water supply perspective. In: George G (ed) The impact of climate change on European
lakes. Springer, Dordrecht, pp 437–454
Jeppesen E, Søndergaard M, Jensen JP, Havens KE, Anneville O, Carvalho L, Coveney MF, Deneke R, Dokulil MT et al (2005) Lake
response to reduced nutrient loading—an analysis of contemporary
lon-term data from 35 case studies. Freshwat Biol 50:1747–1771
Jónasson PM, Lastein E, Rebsdorf A et al (1974) Production, insolation,
and nutrient budget of eutrophic Lake Esrom. Oikos 25:255–277
Kabas W (2004) Die Veränderungen der Primärproduktion in der Alten
Donau in den Jahren 1995–2002. Mit einem Methodenvergleich.
Diss. Univ. Wien, pp 86
Kaiblinger C, Dokulil MT (2006) Application of Fast Repetition Rate
Fluorometry to phytoplankton photosynthetic parameters in freshwaters. Photosyn Res 88:19–30
Kimmel BL, Lind OT, Paulson LJ et al (1990) Reservoir Primary Production. In: Thornton KW, Kimmel BL, Payne FE (eds) Reservoir
limnology: ecologic perspect. Wiley, New York, pp 133–183
Klapper H (1992) Eutrophierung und Gewässerschutz. Fischer, Jena
Knoll LP, Vanni MJ, Renwick WH et al (2003) Phytoplankton primary
production and photosynthetic parameters in reservoirs along a gradient of watershed land use. Limnol Oceanogr 48:608–617
Lewis WM Jr (2011) Global primary production of lakes: 19th Baldi
Memorial Lecture. Inland Waters 1:1–28
Lind OT, Doyle R, Vodopich DS, Trotter BG, Limón JG, Dávalos- Lind
L et al (1992) Clay turbidity: regulation of phytoplankton production
in a large, nutrient-rich tropical lake. Limnol Oceanogr 37:549–565
M. T. Dokulil
Bannister TT (1974) Production equations in terms of chlorophyll concentration, quantum yield, and upper limit to production. Limnol
Oceanogr 19:1–12
Bateman IJ, Georgiou S (2010) The socioeconomic consequences of
climate change for the management of water resources. In: George
G (ed) The impact of climate change on European lakes. Springer,
Dordrecht, pp 437–452
Bot PVM, Colijn F (1996) A method for estimating primary production
from chlorophyll concentrations with results showing trends in the
Irish Sea and the Dutch coastal zone. ICES J Mar Sci 53:945–950
Boulion VV (2003) Dependence of the annual phytoplankton production on latitude. Dokl Biol Sci 389:130–133
Brylinsky M (1980) Estimating the productivity of lakes and reservoirs. In: LeCren ED, Lowe-McConnell RH (eds) The functioning
of freshwater ecosystems. Cambridge University Press, London,
pp 411–453
Brylinsky M, Mann KH (1973) An analysis of factors governing productivity in lakes and reservoirs. Limnol Oceanogr 18:1–14
Burroughs WJ (2001) Climate change. A multidisciplinary approach.
Cambridge Univ Press, Cambridge, pp 298
Clasen J, Bernhardt H (1980) OECD programme for monitoring inland
waters (eutrophication control). Regional project shallow lakes and
reservoirs. Final Report, Medmenham, England
Dokulil MT (2003) Algae as ecological bio-indicators. In: Markert B,
Breure AM, Zechmeister HG (eds) Bioindicators and biomonitors.
Elsevier, Amsterdam, pp 285–327
Dokulil MT (2005) European alpine lakes. In: Sullivan PO, Reynolds
CS (eds) The lakes handbook, Vol 2. Blackwell, Oxford, pp 159–178
Dokulil MT (2009) Comparative primary production. In: Likens
GE (ed) Encyclopedia of inland waters, Vol 1. Elsevier, Oxford,
pp 130–137. http://www.sciencedirect.com/science/article/pii/
B9780123706263001435. Accessed 3 Feb 2012
Dokulil MT (2012) Potamoplankton primary productivity in large rivers of the world: the river Danube. Hydrobiologia, in press
Dokulil MT, Kaiblinger C (2009) Phytoplankton productivity. In: Likens GE (ed) Encyclopedia of inland waters, Vol 1. Elsevier, Oxford,
pp 210–218. http://www.sciencedirect.com/science/article/pii/
B978012370626300140X. Accessed 3 Feb 2012
Dokulil MT, Teubner K (2011) Eutrophication and climate change:
present situation and future scenarios. In: Ansari AA, Gill SS, Lanza
GR, Rast W (eds) Eutrophication: causes, consequences and control. Springer, Doordrecht, pp 1–16
Dokulil MT, Teubner K, Kaiblinger C et al (2005) Produktivität
aquatischer Systeme. Primärproduktion (autotrophe Produktion). In: Steinberg C, Calmano W, Klapper H, Wilken RD (eds),
Handbuch angewandte Limnologie, IV-9.2, 1-30, 21. Erg. Lfg, 4/05,
ecomed, Landsberg. ISBN-10:3-527-32131-4. http://www.wileyvch.de/publish/dt/books/ISBN978-3-527-32131-5/?sID=ne5dh6adi
2age7kducafc4peg1. Accessed 3 Feb 2012
Downing JA (2010) Emerging global role of small lakes and ponds:
little things mean a lot. Limnetica 29:9–24
Downing JA, Prairie JT, Cole JJ, Duarte CM, Tranvik LJ, Striegl RG,
McDowell WH, Kortelainen P, Caraco NF, Melack JM, Middelburg
JJ et al (2006) The global abundance and size distribution of lakes,
ponds, and impoundments. Limnol Oceanogr 51:2388–2397
Elster HJ (1954) Einige Gedanken zur Systematik, Tcrminologie und
Zielsetzung der dynamischen Limnologie. Arch Hydrobiol Suppl
20:487–523
Elster HJ (1958). Lake classification, production and consumption,
Verh internat Ver Limnol 13:101–120
Faithfull CL, Bergström AK, Vrede T (2011) Effects of nutrient and
physical lake characteristics on bacterial and phytoplankton production: a meta-analysis. Limnol Oceanogr 56:1703–1713
Fee EJ (1979) A relation between lake morphometry and primary productivity and its use in interpreting whole—lake eutrophication
experiments. Limnol Oceanogr 24:401–416
Fee EJ (1980) Important factors for estimating annual phytoplankton
production in the experimental lakes area. Canad J Fish Aqua Sci
37:513–522
Felföldy L (1987) A biólogai vizminosités. (biological water quality
evaluation). Vizügyi Hidrobiológia 16 VGL Budapest
Findenegg I (1964) Types of planktic primary production in lakes of
the eastern alps as found by the radioactive carbon method. Verh
Internat Ver Limnol 15:532–539
Flynn KJ (1988). The concept of “primary production” in aquatic ecology. Limnol Oceanogr 33:1215–1216
Fricker HJ (1980) OECD Eutrophication programme— Reginal Project
Alpine lakes. EAWAG, Dübendorf
Fricker HJ (1981) Critical evaluation of the application of statistical
phosphorus loading models to Alpine Lakes. Diss. ETH Nr. 6883,
Zürich
Frisk T, George G (2010) Climate change and the water framework
directive. In: George G (ed) The impact of climate change on European lakes. Springer, Dordrecht, pp 453–468
Geider RJ, DeLucia EH, Falkowski PG et al. (2001) Primary productivity of planet earth: biological determinants and physical constraints
in terrestrial and aquatic habitats. Global Change Biol 7:849–882
Håkanson L, Boulion VV (2001) Rgeulerities in primary production,
secchi depth and fish yield and a new system to define trophic and
humic state indices for lake ecosystems. Internat Rev Hydrobiol
86:23–62
Håkanson L, Jansson M (1983) Principles of lake sedimentology.
Springer, Berlin, pp 316
Håkanson L, Peters R (1995) Predictive limnology. Methods for predictive modelling. SPB Acad, Amsterdam, pp 464
Harper D (1992) Eutrophication of fresh waters. Principles, problems
and restoration. Chapman & Hall, London, pp 327
Henderson-Sellers B, Markland HR (1987) Decying lakes. The origin
and control of cultural eutrophication. Wiley, Chichester, pp 254
Huot YH, Babin B, Bruyant F, Grob C, Twardowski MS, Claustre H
et al (2007) Does chlorophyll a provide the best index of phytoplankton biomass for primary productivity studies? Biogeosci Dissc
4:707–745
ISO10260, International Standard (1992) Water quality Measurement
of biochemical parameters – spectrophotometric determination of
the chlorophyll-a concentration.
Janus LL (2010) Climate change impacts from a water supply perspective. In: George G (ed) The impact of climate change on European
lakes. Springer, Dordrecht, pp 437–454
Jeppesen E, Søndergaard M, Jensen JP, Havens KE, Anneville O, Carvalho L, Coveney MF, Deneke R, Dokulil MT et al (2005) Lake
response to reduced nutrient loading—an analysis of contemporary
lon-term data from 35 case studies. Freshwat Biol 50:1747–1771
Jónasson PM, Lastein E, Rebsdorf A et al (1974) Production, insolation,
and nutrient budget of eutrophic Lake Esrom. Oikos 25:255–277
Kabas W (2004) Die Veränderungen der Primärproduktion in der Alten
Donau in den Jahren 1995–2002. Mit einem Methodenvergleich.
Diss. Univ. Wien, pp 86
Kaiblinger C, Dokulil MT (2006) Application of Fast Repetition Rate
Fluorometry to phytoplankton photosynthetic parameters in freshwaters. Photosyn Res 88:19–30
Kimmel BL, Lind OT, Paulson LJ et al (1990) Reservoir Primary Production. In: Thornton KW, Kimmel BL, Payne FE (eds) Reservoir
limnology: ecologic perspect. Wiley, New York, pp 133–183
Klapper H (1992) Eutrophierung und Gewässerschutz. Fischer, Jena
Knoll LP, Vanni MJ, Renwick WH et al (2003) Phytoplankton primary
production and photosynthetic parameters in reservoirs along a gradient of watershed land use. Limnol Oceanogr 48:608–617
Lewis WM Jr (2011) Global primary production of lakes: 19th Baldi
Memorial Lecture. Inland Waters 1:1–28
Lind OT, Doyle R, Vodopich DS, Trotter BG, Limón JG, Dávalos- Lind
L et al (1992) Clay turbidity: regulation of phytoplankton production
in a large, nutrient-rich tropical lake. Limnol Oceanogr 37:549–565
