Sedimentary Processes: Quantification Using Radionuclides: Quantification Using Radionuclides

Carroll, J.; Lerche, I.

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Table of contents
  • Contentsv
  • Prefacevii
  • Chapter 1. Introduction1
  • 1. Non-radioactive dating methods2
  • 2. Stable nuclides and other indicators of relative age3
  • 3. Radiometric dating4
  • 4. Applications of radiometric dating6
  • Chapter 2. Radiometric methods9
  • 1. Basic procedure9
  • 2. Advanced procedures11
  • 3. Synthetic tests of the SIT method17
  • 4. Method comparison24
  • Appendix A. Technical development of SIT method for unmixed sediments26
  • Chapter 3. Single site studies37
  • 1. Lake sediments and 210Pb geochronology37
  • 2. Marine sediments and multi-radionuclide geochronology41
  • 3. Creel Bay and Main Bay, Devil’s Lake, North Dakota49
  • 4. Discussion and conclusions56
  • Appendix A. Resolution and uncertainty for disentanglement procedures57
  • Chapter 4. Multiple site studies63
  • 1. Amazon Delta test case63
  • 2. 87Sr/86Sr sediment ages in stratigraphy studies72
  • 3. Eastern Arabian Sea76
  • Appendix A79
  • Chapter 5. Sediment mixing81
  • 1. Introduction81
  • 2. Basic model82
  • 3. Organism-specific models84
  • 4. Physical turbation84
  • 5. A sedimentation model with bioturbation87
  • 6. Applications and limitations92
  • Chapter 6. Biological mixing coefficients97
  • 1. Simple linear adsorption97
  • 2. Diffusion105
  • 3. Microscale diffusion105
  • 4. Bulk diffusion106
  • 5. Near surficial rapid mixing109
  • 6. Partition coefficient effects112
  • Chapter 7. Marine contaminant studies115
  • 1. Sources of polyaromatic hydrocarbons in the White Sea115
  • 2. Burial history of radioactive waste in the Kara Sea118
  • 3. Incorporation of uranium mill tailings into North Pond. Colorado124
  • 4. Organic carbon preservation in Lake Baikal sediments. Russia127
  • Chapter 8. Concerning error estimates in age dating of stage boundaries143
  • 1. Introduction143
  • 2. Minimum error interpolation144
  • 3. Combined absolute and stratigraphic radiometric errors146
  • 4. General age/stage interpolations147
  • 5. A corollary151
  • Chapter 9. Epilogue157
  • Appendix A. Sediment Isotope Tomography software. general requirements and operation159
  • Introduction159
  • 1. Applications and general limitations159
  • 2. Model design160
  • 3. SIT model usage168
  • 4. Example simulations170
  • Sediment Isotope Tomography Code187
  • References263
  • Subject Index271
Book details
  • Vendor Elsevier S & T
  • SKU 9780080443003
  • ISBN-13 9780080540849
  • Author Carroll, J.; Lerche, I.
  • Category Science
  • Subject Environmental Science

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The advent of radionuclide methods in geochronology has revolutionized our understanding of modern sedimentary processes in aquatic systems. This book examines the principles of the method and its use as a quantitative tool in marine geology, with emphasis on the Pb-210 method. The assumptions and consequences of models and their behaviour are described providing the necessary background to assess the advantages and trade-offs involved when choosing a particular model for application. One of the purposes of this volume is to disentangle the influences of complicating factors, such as sediment flux variations, post-depositional diffusion of radionuclides, and bio-irrigation of sediments, to arrive at sediment ages and to properly assess the attendant data uncertainty. Environmental impacts of chemical, nuclear, or other waste material are of concern in a variety of areas around the world today. A number of relevant examples are included, demonstrating how dating models are useful for determining sources of contaminants and interpreting their influence on the environment.



The book is set at a level so that an able student or professional should have no difficulty in following the procedures and methods developed. Each chapter includes case histories showing the strengths and weaknesses of a given procedure with respect to a data example. Included with this volume is the computer source code of a new generation of modelling tools based on inverse numerical analysis techniques. This first generation of the modelling tool is included, along with detailed instructions and examples for its use, in an appendix.