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  • 1
    Book
    Book
    Princeton : Princeton University Press
    Keywords: Marine sediments ; Geochemistry ; Lehrbuch ; Geochemie ; Meeressediment ; Geochemie ; Meeressediment ; Biogeochemie ; Hydrogeochemie ; Isotopengeochemie ; Organische Geochemie ; Meeresgeologie
    Type of Medium: Book
    Pages: xviii, 609 Seiten , Diagramme
    ISBN: 069109506X , 9780691095066
    DDC: 551.4686
    RVK:
    RVK:
    Language: English
    Note: Literaturverzeichnis: Seiten 521-592
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  • 2
    Online Resource
    Online Resource
    Princeton, NJ : Princeton University Press
    Keywords: Geochemistry ; Marine sediments ; SCIENCE / Earth Sciences / Oceanography
    Description / Table of Contents: Frontmatter -- Contents -- Preface -- Common Abbreviations and Symbols -- CHAPTER ONE Introduction -- CHAPTER TWO The Components of Marine Sediments -- CHAPTER THREE Isotope Geochemistry -- CHAPTER FOUR Physical Properties of Sediments -- CHAPTER FIVE An Introduction to Transport Processes in Sediments -- CHAPTER SIX Models of Sediment Diagenesis -- CHAPTER SEVEN Biogeochemical Processes in Sediments -- CHAPTER EIGHT Quantifying Carbon and Nutrient Remineralization in Sediments -- CHAPTER NINE An Introduction to the Organic Geochemistry of Marine Sediments -- CHAPTER TEN Dissolved Organic Matter in Marine Sediments -- CHAPTER ELEVEN Linking Sediment Organic Geochemistry and Sediment Diagenesis -- CHAPTER TWELVE Processes at the Sediment-Water Interface -- CHAPTER THIRTEEN Biogeochemical Processes in Pelagic (Deep-Sea) Sediments -- CHAPTER FOURTEEN Nonsteady-State Processes in Marine Sediments -- CHAPTER FIFTEEN The Controls on Organic Carbon Preservation in Marine Sediments -- CHAPTER SIXTEEN Biogeochemical Processes in Continental Margin Sediments -- CHAPTER SEVENTEEN Biogeochemical Processes in Continental Margin Sediments -- CHAPTER EIGHTEEN Linking Sediment Processes to Global Elemental Cycles: Authigenic Clay Mineral Formation and Reverse Weathering -- Appendix Some of the Field Sites Discussed in the Text -- References -- Index
    Type of Medium: Online Resource
    Pages: 1 Online-Ressource (624 p) , 33 halftones. 75 line illus. 33 tables
    Edition: 1. Auflage
    ISBN: 9780691216096
    Language: English
    Note: Mode of access: Internet via World Wide Web. , In English
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  • 3
    ISSN: 1573-515X
    Keywords: amino acids ; ammonium production ; coastal marine sediments ; anoxic ; sulfate reduction
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Geosciences
    Notes: Abstract In sediment slurry experiments with anoxic marine sediments collected in Cape Lookout Bight, NC, and a site in mid-Chesapeake Bay, the rates of sulfate reduction and ammonium production decrease with increasing dilution of sediment with oxygen-free sea-water. The effect of sediment dilution on the rates of these processes can be described by a simple mathematical relationship, and when these rates are corrected for sediment dilution they yield values which agree well with direct measurements of these processes. In sediment slurry studies of amino acid utilization in Cape Lookout Bight sediments, the fermentative decarboxylation of glutamic acid (to γ-aminobutyric acid) or aspartic acid (to alanine or β-alanine) did not occur when either of these amino acids were added to Cape Lookout Bight slurries. The addition of glutamic acid did however lead to a small (∼1) transient build-up of β-aminoglutaric acid. Measured rates of glutamic acid uptake in these slurries also decreased with increasing sediment dilution. Molybdate inhibition experiments demonstrated that dissolved free amino acids represent 1–3% of the carbon sources/electron donors used for sulfate reduction in Cape Lookout Bight sediments. The direct oxidation of amino acids by sulfate reducing bacteria also accounts for 13–20% of the total ammonium produced. Glutamic acid, alanine, β-aminoglutaric acid, aspartic acid and asparagine are the major amino acids oxidized by sulfate reducing bacteria in Cape Lookout Bight sediments.
    Type of Medium: Electronic Resource
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