Effects of sediment mixing and benthic algal production on fossil pigment stratigraphies
暂无分享,去创建一个
[1] P. Leavitt,et al. Effects of grazing by Daphnia on algal carotenoids: Implications for paleolimnology , 1988 .
[2] R. Tippett. AN INVESTIGATION INTO THE NATURE OF THE LAYERING OF DEEP-WATER SEDIMENTS IN TWO EASTERN ONTARIO LAKES , 1964 .
[3] J. E. Sanger. Fossil pigments in paleoecology and paleolimnology , 1988 .
[4] J. C. Hill,et al. PHOTOPERIOD CONTROL OF WINTER DIAPAUSE IN THE FRESH-WATER CRUSTACEAN, DAPHNIA , 1968 .
[5] R. B. Davis. Stratigraphic effects of tubificids in profundal lake sediments1 , 1974 .
[6] S. Carpenter,et al. Chlorophyll production, degradation, and sedimentation: Implications for paleolimnology1 , 1986 .
[7] P. Huttunen,et al. Varve-dated eutrophication history of a small lake: With 3 figures in the text , 1984 .
[8] Stephen R. Carpenter,et al. Whole‐lake experiments: The annual record of fossil pigments and zooplankton , 1989 .
[9] David C Miller,et al. A Study of the Vertical Distribution of Larval Hadddock , 1963 .
[10] E. Haworth. Comparison of continuous phytoplankton records with the diatom stratigraphy in the recent sediments of Blelham Tarn , 1980 .
[11] J. Banks,et al. A fine-resolution palaeoecology and palaeoclimatology from south-eastern Australia , 1988 .
[12] U. Uehlinger,et al. Horizontal sedimentation differences in a eutrophic Swiss lake , 1986 .
[13] Analysis of multiple depth profiles in sediment cores: an application to pollen and diatom data from lakes sensitive to acidification , 1986, Hydrobiologia.
[14] J. Kitchell,et al. Size‐selective predation, light transmission, and oxygen stratification: Evidence from the recent sediments of manipulated lakes1 , 1980 .
[15] T. Goodwin,et al. Studies in carotenogenesis. 24. The changes in carotenoid and chlorophyll pigments in the leaves of deciduous trees during autumn necrosis. , 1958, The Biochemical journal.
[16] T. Goodwin. Chemistry and biochemistry of plant pigments , 1976 .
[17] J. Hilton,et al. The dominant processes of sediment distribution and focusing in a small, eutrophic, monomictic lake , 1986 .
[18] T. Parkin,et al. Photosynthetic bacterial production in lakes: The effects of light intensity1 , 1980 .
[19] M. Davis,et al. Sediment focusing in Mirror Lake, New Hampshire1 , 1982 .
[20] C. Llewellyn,et al. The rapid determination of algal chlorophyll and carotenoid pigments and their breakdown products in natural waters by reverse-phase high-performance liquid chromatography , 1983 .
[21] Stephen R. Carpenter,et al. Aphotic pigment degradation in the hypolimnion: Implications for sedimentation studies and paleolimnology , 1990 .
[22] S. R. Brown. Absorption Coefficients of Chlorophyll Derivatives , 1968 .
[23] M. Heit,et al. A time resolution methodology for assessing the quality of lake sediment cores that are dated by 137Cs , 1986 .
[24] P. Leavitt. Experimental determination of carotenoid degradation , 1988 .
[25] J. T. Lehman. Reconstructing the Rate of Accumulation of Lake Sediment: The Effect of Sediment Focusing , 1975, Quaternary Research.
[26] J. Smol,et al. Recent paleolimnology of a meromictic lake: Fossil pigments of photosynthetic bacteria: With 1 figure in the text , 1984 .
[27] J. Downing,et al. Spatial patchiness in the lacustrine sedimentary environment1 , 1988 .
[28] S. Wright,et al. Rapid extraction and high-performance liquid chromatography of chlorophylls and carotenoids from marine phytoplankton , 1984 .
[29] Walter E. Dean,et al. Determination of carbonate and organic matter in calcareous sediments and sedimentary rocks by loss on ignition; comparison with other methods , 1974 .
[30] S. Carpenter,et al. Regulation of Lake Primary Productivity by Food Web Structure. , 1987, Ecology.
[31] M. Griffiths. Specific blue‐green algal carotenoids in sediments of Esthwaite Water , 1978 .
[32] C. Kelly,et al. Methanogenesis: A measure of chemoorganotrophic (heterotrophic) activity in anaerobic lake sediments , 1979 .
[33] D. Lean,et al. The origin of a metalimnetic chrysophyte peak , 1984 .
[34] E. Swain. Measurement and interpretation of sedimentary pigments , 1985 .
[35] F. H. Foppen. Tables for the identification of carotenoid pigments. , 1971, Chromatographic reviews.
[36] J. Hilton. A conceptual framework for predicting the occurrence of sediment focusing and sediment redistribution in small lakes , 1985 .
[37] A. Gasith,et al. Airborne litterfall as a source of organic matter in lakes1 , 1976 .
[38] A. Hasler,et al. Rainbow Trout Production in Dystrophic Lakes , 1954 .
[39] P. O'sullivan. Annually-laminated lake sediments and the study of Quaternary environmental changes — a review , 1983 .
[40] R. Hesslein,et al. Determining Sediment Accumulation and Mixing Rates Using 210Pb, 137Cs, and Other Tracers: Problems Due to Postdepositional Mobility or Coring Artifacts , 1987 .
[41] E. Gorham,et al. FOSSIL PIGMENTS IN THE SURFACE SEDIMENTS OF A MEROMICTIC LAKE , 1972 .
[42] J. E. Sanger,et al. Quantitative Investigations of Leaf Pigments From Their Inception in Buds Through Autumn Coloration to Decomposition in Falling Leaves , 1971 .
[43] A. M. Swain. A History of Fire and Vegetation in Northeastern Minnesota as Recorded in Lake Sediments , 1973, Quaternary Research.
[44] M. Brenner,et al. Relationships Between Concentrations of Sedimentary Variables and Trophic State in Florida Lakes , 1988 .
[45] S. Carpenter,et al. Paul and Peter Lakes: A Liming Experiment Revisited , 1986 .
[46] S. Carpenter,et al. Chlorophyll budgets: response to food web manipulation , 1988 .
[47] Stephen R. Carpenter,et al. Replication and Treatment Strength in Whole‐Lake Experiments , 1989 .
[48] J. E. Potzger. Pollen Spectra from Four Bogs on the Gillen Nature Reserve, Along the Michigan-Wisconsin State Line , 1942 .