By William M. Last, John P. Smol
Conception Instrumentation NIR research of sediment samples makes use of of NIRS in palaeolimnology destiny views precis References Fly-ash debris. Neil Rose 319 12. advent a short heritage tools of extraction and enumeration Temporal distribution Spatial distribution resource apportionment the longer term precis Acknowledgements References half III: sturdy Isotope innovations thirteen. software of strong isotope suggestions to inorganic and biogenic carbonates. Emi Ito 351 advent Nomenclature and systematics of lake-water Mg/Ca and Sr/Ca ratios of lake-water of dissolved inorganic carbon (DIC) Carbonates in lake-sediments Mollusks Ostracodes Charaphytes Isotope research education of carbonate samples for isotope research Conclusions precis Acknowledgments References 14. Carbon and oxygen isotope research of lake sediment cellulose: tools and purposes. Brent B. Wolfe, Thomas W. D. Edwards, Richard J. Elgood & Kristina R. M. Beuning 373 xi creation good isotope tracers in lake ancient improvement tools Key standards for paleohydrologic reconstruction purposes destiny examine instructions precis Acknowledgements References Nitrogen isotopes in palaeolimnology. Michael R. Talbot 15. 401 advent Nitrogen in lakes: kinds and distribution Nitrogen isotopes Nitrogen isotope stories in palaeolimnology: sampling and dimension a few examples ultimate comments precis Acknowledgments References thesaurus, acronyms and abbreviations 441 Index 493 xiii PREFACE The explosive progress of paleolimnology over the last 20 years has supplied impetus for the ebook of this sequence of monographs detailing the varied advances and new recommendations being utilized to the translation of lake histories. this is often the second one quantity within the sequence and offers more often than not with actual and geochemical analytical concepts.
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Extra info for Tracking Environmental Change Using Lake Sediments - Volume 2: Physical and Geochemical Methods (Developments in Paleoenvironmental Research)
Geol. Mag. 120: 109–114. Lamoureux, S. , 1994. Embedding unfrozen lake sediments for thin section preparation. J. Paleolim. 10: 141–146. , 2001. Varve chronology techniques. In Last, W. M. & J. P. ) Tracking Environmental Change Using Lake Sediments. Volume 1: Basin Analysis, Coring, and Chronological Techniques. Kluwer Academic Publishers, Dordrecht, The Netherlands: 247–260. Macquaker, J. H. S. & R. L. Gawthorpe, 1993. Mudstone lithofacies in the Kimmeridge Clay Formation, Wessex Basin, southern England: implications for the origin and controls of the distribution of mudstones.
Tracking Environmental Change Using Lake Sediments. Volume 4: Zoological Indicators. Kluwer Academic Publishers, Dordrecht, The Netherlands. Tucker, M. E. ). 1988. Techniques in Sedimentology. , Osney Mead, Oxford, UK, 394 pp. Warner, B. G. ), 1990. Methods in Quaternary Ecology. Geoscicnce Canada Reprint Series 5, St. , 170pp. This page intentionally left blank 2. RECOGNITION AND ANALYSIS OF BEDDING AND SEDIMENT FABRIC FEATURES ALAN E. S. uk) JEAN DEAN AND RICHARD B. O. Box 914 Cardiff CF10 3YE UK Keywords: laminated sediments, scanning electron microscopy, sediment fabric, resin embedding Introduction The first step in any investigation of a lacustrine paleo-archive is the detailed visual description of the core or outcrop section.
Y, 1996. Seasonal sedimentation: a framework for reconstructing climate and environmental change. In Kemp, A. E. S. ) Palaeoclimatology and Palaeooceanography from Laminated Sediments. Geological Society Special Publication, London 116: 1–15. Bonardi, M. & L. Tosi, 1995. Image analysis: A tool for sedimentological investigations. European Microscopy and Analysis, May: 17–19. , W. Broecker, R. Lotti & J. McManus, 1992. Abrupt color changes in isotope stage 5 in North Atlantic deep sea cores: implications for rapid change of climate-driven events.