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1. Adams J B, Bate G C 1999 Growth and photosynthetic performance of Phragmites australis in estuarine waters: a field and experimental evaluation. Aquatic Botany 64: 359-367 2. Afreen F, Zobayed S M A, Armstrong J, Armstrong W 2007 Pressure gradients along whole culms and leaf sheaths, and other aspects of humidity-induced gas transport in Phragmites australis. Journal of Experimental Botany 58: 1651-1662 3. Ágoston-Szabó E 2004 Influence of reed belt on the chemical characteristics of sediment interstitial water. Ecohydrology and Hydrobiology 4: 67-76 4. Ágoston-Szabó E, Dinka M, Némedi L, Horváth G 2006 Decomposition of Phragmites australis rhizome in a shallow lake. Aquatic Botany 85: 309-316 5. Ailstock M S, Norman C M, Bushmann P J 2001 Common reed Phragmites australis: control and effects upon biodiversity in freshwater nontidal wetlands. Restoration Ecology 9: 49-59 6. Ait Ali N, Bernal M.P, Ater M 2002 Tolerance and bioaccumulation of copper in Phragmites australis and Zea mays. Plant and Soil 239: 103-111 7. Ait Ali N, Bernal M P, Ater M 2004 Tolerance and bioaccumulation of cadmium by Phragmites australis grown in the presence of elevated concentrations of cadmium, copper, and zinc. Aquatic Botany 80: 163-176 8. AkkermanR 1975 Untersuchungen zur Ökologie und Populationsdynamik des Bisams (Ondatra zibethicus L.) II. Nahrung und Nahrungsaufnahme. Zeitschrift für angewandte Zoologie 62: 173-218 9. Akkerman S S, Fiselier J L, Hosper S H 1990 Moerassystemen voor waterzuivering en natuurontwikkeling; ontwerpstudies voor de Veluwerandmeren. H2O 23: 60-65 10. Al-Saadi H A, Al-Mousawi A H 1988 Some notes on the ecology of aquatic plants in the Al-Hammar Marsh, Iraq. Vegetatio 75: 131-133 11. Albay M, Akcaalan R 2003 Comparative study of periphyton colonisation on common reed (Phragmites australis) and artificial substrate in a shallow lake, Manyas, Turkey. Hydrobiologia 506/509: 531-540 12. Alemanno S, Mancinelli G, Basset A 2007 Effects of invertebrate patch use behaviour and detritus quality on reed leaf decomposition in aquatic systems: A modelling approach. Ecological Modelling 205: 492-506 13. Allen H L, Ocevski B T 1981 Comparative primary productivity of algal epiphytes on three species of macrophyte in the littoral zone of Lake Ohrid, Yugoslavia. Ecography 4: 155-160 14. Allen Jr L H 1997 Mechanisms and rates of O2 transfer to and through submerged rhizomes and roots via aerenchyma. Annual Proceedings Soil and Crop Science Society of Florida 56: 41-54 15. Allen S E, Pearsall W H 1963 Leaf analysis and shoot production in Phragmites. Oikos 14: 176-189 16. Allirand J-M, Gosse G 1995 An above-ground biomass production model for a common reed (Phragmites communis Trin.) stand. Biomass and Bioenergy 9: 441-448 17. Alvarez M G, Tron F, Mauchamp A 2005 Sexual versus asexual colonization by Phragmites australis: 25-year reed dynamics in a Mediterranean marsh, southern France. Wetlands 25: 639-647 18. Alvarez-Cobelas M, Cirujano S, Sánchez-Carrillo S 2001 Hydrological and botanical man-made changes in the Spanish wetland of Las Tablas de Daimiel. Biological Conservation 97: 89-98 19. Alvarez-Cobelas M, Sánchez-Carrillo S, Cirujano S, Angeler D G 2008 Long-term changes in spatial patterns of emergent vegetation in a Mediterranean floodplain: natural versus anthropogenic constraints. Plant Ecology 194: 257-271 20. Amat J A 1995 Effects of Wintering Greylag Geese Anser anser on Their Scirpus Food Plants. Ecography 18: 155-163 21. Amsberry L, Baker M A, Ewanchuk P J, Bertness M D 2000 Clonal integration and the expansion of Phragmites australis. Ecological Applications 10: 1110-1118 22. Andersen F Ø 1976 Primary Production in a shallow water lake with special reference to a reed swamp. Oikos 27: 243-250 23. Andersen F Ø 1981 Oxygen and nitrate respiration in a reed swamp sediment from a eutrophic lake. Ecography 4: 66-72 24. Andersen F Ø, Hansen J I 1982 Nitrogen cycling and microbial decomposition in sediments with Phragmites australis (Poaceae). Hydrobiological Bulletin 16: 11-19 25. Andersson B 1990 Identification and inventory of aquatic plant communities using remote sensing. Folia Geobotanica & Phytotaxonomica 25: 227-233 26. Andersson B 2001 Macrophyte development and habitat characteristics in Sweden's large lakes. Ambio 30: 503-513 27. Anesio A M, Tranvik L J, Granéli W 1999 Production of inorganic carbon from aquatic macrophytes by solar radiation. Ecology 80: 1852-1859 Literatuurlijst Riet en helofyten juni 2011

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Page 1: Literatuurlijst Riet en helofytenscirpus.weebly.com/uploads/3/5/9/1/3591124/reed...28. Anthony P A 1999 The macrofungi and decay of roofs thatched with water reed, Phragmites australis

1. Adams J B, Bate G C 1999 Growth and photosynthetic performance of Phragmites australis in estuarine waters: a field and experimental evaluation. Aquatic Botany 64: 359-367

2. Afreen F, Zobayed S M A, Armstrong J, Armstrong W 2007 Pressure gradients along whole culms and leaf sheaths, and other aspects of humidity-induced gas transport in Phragmites australis. Journal of Experimental Botany 58: 1651-1662

3. Ágoston-Szabó E 2004 Influence of reed belt on the chemical characteristics of sediment interstitial water. Ecohydrology and Hydrobiology 4: 67-76

4. Ágoston-Szabó E, Dinka M, Némedi L, Horváth G 2006 Decomposition of Phragmites australis rhizome in a shallow lake. Aquatic Botany 85: 309-316

5. Ailstock M S, Norman C M, Bushmann P J 2001 Common reed Phragmites australis: control and effects upon biodiversity in freshwater nontidal wetlands. Restoration Ecology 9: 49-59

6. Ait Ali N, Bernal M.P, Ater M 2002 Tolerance and bioaccumulation of copper in Phragmites australis and Zea mays. Plant and Soil 239: 103-111

7. Ait Ali N, Bernal M P, Ater M 2004 Tolerance and bioaccumulation of cadmium by Phragmites australis grown in the presence of elevated concentrations of cadmium, copper, and zinc. Aquatic Botany 80: 163-176

8. AkkermanR 1975 Untersuchungen zur Ökologie und Populationsdynamik des Bisams (Ondatra zibethicus L.) II. Nahrung und Nahrungsaufnahme. Zeitschrift für angewandte Zoologie 62: 173-218�

9. Akkerman S S, Fiselier J L, Hosper S H 1990 Moerassystemen voor waterzuivering en natuurontwikkeling; ontwerpstudies voor de Veluwerandmeren. H2O 23: 60-65

10. Al-Saadi H A, Al-Mousawi A H 1988 Some notes on the ecology of aquatic plants in the Al-Hammar Marsh, Iraq. Vegetatio 75: 131-133

11. Albay M, Akcaalan R 2003 Comparative study of periphyton colonisation on common reed (Phragmites australis) and artificial substrate in a shallow lake, Manyas, Turkey. Hydrobiologia 506/509: 531-540

12. Alemanno S, Mancinelli G, Basset A 2007 Effects of invertebrate patch use behaviour and detritus quality on reed leaf decomposition in aquatic systems: A modelling approach. Ecological Modelling 205: 492-506

13. Allen H L, Ocevski B T 1981 Comparative primary productivity of algal epiphytes on three species of macrophyte in the littoral zone of Lake Ohrid, Yugoslavia. Ecography 4: 155-160

14. Allen Jr L H 1997 Mechanisms and rates of O2 transfer to and through submerged rhizomes and roots via aerenchyma. Annual Proceedings Soil and Crop Science Society of Florida 56: 41-54

15. Allen S E, Pearsall W H 1963 Leaf analysis and shoot production in Phragmites. Oikos 14: 176-18916. Allirand J-M, Gosse G 1995 An above-ground biomass production model for a common reed (Phragmites

communis Trin.) stand. Biomass and Bioenergy 9: 441-44817. Alvarez M G, Tron F, Mauchamp A 2005 Sexual versus asexual colonization by Phragmites australis: 25-year

reed dynamics in a Mediterranean marsh, southern France. Wetlands 25: 639-64718. Alvarez-Cobelas M, Cirujano S, Sánchez-Carrillo S 2001 Hydrological and botanical man-made changes in

the Spanish wetland of Las Tablas de Daimiel. Biological Conservation 97: 89-9819. Alvarez-Cobelas M, Sánchez-Carrillo S, Cirujano S, Angeler D G 2008 Long-term changes in spatial

patterns of emergent vegetation in a Mediterranean floodplain: natural versus anthropogenic constraints. Plant Ecology 194: 257-271

20. Amat J A 1995 Effects of Wintering Greylag Geese Anser anser on Their Scirpus Food Plants. Ecography 18: 155-163

21. Amsberry L, Baker M A, Ewanchuk P J, Bertness M D 2000 Clonal integration and the expansion of Phragmites australis. Ecological Applications 10: 1110-1118

22. Andersen F Ø 1976 Primary Production in a shallow water lake with special reference to a reed swamp. Oikos 27: 243-250

23. Andersen F Ø 1981 Oxygen and nitrate respiration in a reed swamp sediment from a eutrophic lake. Ecography 4: 66-72

24. Andersen F Ø, Hansen J I 1982 Nitrogen cycling and microbial decomposition in sediments with Phragmites australis (Poaceae). Hydrobiological Bulletin 16: 11-19

25. Andersson B 1990 Identification and inventory of aquatic plant communities using remote sensing. Folia Geobotanica & Phytotaxonomica 25: 227-233

26. Andersson B 2001 Macrophyte development and habitat characteristics in Sweden's large lakes. Ambio 30: 503-513

27. Anesio A M, Tranvik L J, Granéli W 1999 Production of inorganic carbon from aquatic macrophytes by solar radiation. Ecology 80: 1852-1859

Literatuurlijst Riet en helofytenjuni 2011

Page 2: Literatuurlijst Riet en helofytenscirpus.weebly.com/uploads/3/5/9/1/3591124/reed...28. Anthony P A 1999 The macrofungi and decay of roofs thatched with water reed, Phragmites australis

28. Anthony P A 1999 The macrofungi and decay of roofs thatched with water reed, Phragmites australis. Mycological Research 103: 1346-1352

29. Antonielli M, Pasqualini S, Batini P, Ederli L, Massacci A, Loreto F 2002 Physiological and anatomical characterisation of Phragmites australis leaves. Aquatic Botany 72: 55-66

30. Arkebauer T J, Chanton J P, Verma S B, Kim J 2001 Field measurements of internal pressurization in Phragmites australis (Poaceae) and implications for regulation of methane emissions in a midlatitude prairie wetland. American Journal of Botany 88: 653-658

31. Armstrong J, Afreen-Zobayed F, Armstrong W 1996 Phragmites die-back: sulphide- and acetic acid-induced bud and root death, lignifications, and blockages within aeration and vascular systems. New Phytologist 134: 601-614

32. Armstrong J, Afreen-Zobayed F, Blyth S, Armstrong W 1999 Phragmites australis: effects of shoot submergence on seedling growth and survival and radial oxygen loss from roots. Aquatic Botany 64: 275-289

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38. Armstrong J, Armstrong W 2001 An overview of the effects of phytotoxins on Phragmites australis in relation to die-back. Aquatic Botany 69: 251-268

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