Author | : Ivano W. Aiello |
Publisher | : Geological Society of America |
Total Pages | : 330 |
Release | : 2022-09-27 |
Genre | : Science |
ISBN | : 0813725569 |
Author | : Ivano W. Aiello |
Publisher | : Geological Society of America |
Total Pages | : 330 |
Release | : 2022-09-27 |
Genre | : Science |
ISBN | : 0813725569 |
Author | : Caroline M. Isaacs |
Publisher | : Columbia University Press |
Total Pages | : 592 |
Release | : 2001 |
Genre | : Geology |
ISBN | : 9780231105859 |
Provides an extraordinary case study of a classic marine petroleum system in the prolific oil basins of California. Based on results from the Cooperative Monterey Organic Chemistry Study, the volume examines paleoenvironmental conditions, organic-matter deposition, source-rock characteristics, thermal maturation, and oil generation in the Monterey Formation.
Author | : Ronald C. Blakey |
Publisher | : Springer |
Total Pages | : 234 |
Release | : 2017-10-03 |
Genre | : Science |
ISBN | : 3319596365 |
Allow yourself to be taken back into deep geologic time when strange creatures roamed the Earth and Western North America looked completely unlike the modern landscape. Volcanic islands stretched from Mexico to Alaska, most of the Pacific Rim didn’t exist yet, at least not as widespread dry land; terranes drifted from across the Pacific to dock on Western Americas’ shores creating mountains and more volcanic activity. Landscapes were transposed north or south by thousands of kilometers along huge fault systems. Follow these events through paleogeographic maps that look like satellite views of ancient Earth. Accompanying text takes the reader into the science behind these maps and the geologic history that they portray. The maps and text unfold the complex geologic history of the region as never seen before. Winner of the 2021 John D. Haun Landmark Publication Award, AAPG-Rocky Mountain Section
Author | : James R. Hein |
Publisher | : Springer Science & Business Media |
Total Pages | : 246 |
Release | : 2012-12-06 |
Genre | : Science |
ISBN | : 1461234948 |
Because of the biological origin of many siliceous deposits, their geochemical transformation in the marine environment, and their occurrence in many formations around the world, oceanographers, paleontologists, geologists, geochemists, and sedimentologists are working closely together to trace the evolution of such deposits. In this book, leading experts from all of these disciplines present new data on fine-grained deposits such as chert, primarily of the Tethys region but also of the Pacific. Much of the information presented here was gathered recently in coordinated international research projects and is made available in English for the first time.
Author | : Raymond Sullivan |
Publisher | : Geological Society of America |
Total Pages | : |
Release | : 2021 |
Genre | : Science |
ISBN | : 0813712173 |
"Mount Diablo and the geology of the Central California Coast Ranges are the subject of a volume celebrating the Northern California Geological Society's 75th anniversary. The breadth of research illustrates the complex Mesozoic to Cenozoic tectonic evolution of the plate boundary"--
Author | : Ocean Drilling Program |
Publisher | : |
Total Pages | : 720 |
Release | : 1992 |
Genre | : Borings |
ISBN | : |
Author | : Catherine A. Rigsby |
Publisher | : |
Total Pages | : 64 |
Release | : 1998 |
Genre | : Electronic journals |
ISBN | : |
Author | : Nicholas Bennett Harris |
Publisher | : SEPM Soc for Sed Geology |
Total Pages | : 296 |
Release | : 2005 |
Genre | : Nature |
ISBN | : |
Depositional models for organic-carbon-rich sediments have been the subjects of both great interest and great controversy for many years. These sediments serve as the ultimate source of virtually all oil and gas. They also represent the interface between biological and geological processes and provide critical evidence for the state of the atmosphere and oceans. Yet despite their importance and decades of research, the origin of these sediments remains the source of vigorous disagreement. The twelve papers in this volume represent the cutting edge of research in this topic. They explore the origin of organic-carbon-rich sediments through a variety of techniques, including sedimentology, geochemistry, paleontology and computer modeling. All papers take multidisciplinary approaches to the topic, and together, they demonstrate the complex interconnected processes that trigger the deposition of organic carbon. This book will appeal to geoscientists in many disciplines, including explorers for petroleum who need models for source rock deposition, organic and inorganic geochemists who study processes in water and sediment, sedimentologists who interpret ancient deposition environments, and climatologists and oceanographers who reconstruct the behavior of the ancient atmosphere and oceans.
Author | : J.L. Smellie |
Publisher | : Geological Society of London |
Total Pages | : 802 |
Release | : 2021-06-09 |
Genre | : Science |
ISBN | : 178620536X |
This memoir is the first to review all of Antarctica’s volcanism between 200 million years ago and the Present. The region is still volcanically active. The volume is an amalgamation of in-depth syntheses, which are presented within distinctly different tectonic settings. Each is described in terms of (1) the volcanology and eruptive palaeoenvironments; (2) petrology and origin of magma; and (3) active volcanism, including tephrochronology. Important volcanic episodes include: astonishingly voluminous mafic and felsic volcanic deposits associated with the Jurassic break-up of Gondwana; the construction and progressive demise of a major Jurassic to Present continental arc, including back-arc alkaline basalts and volcanism in a young ensialic marginal basin; Miocene to Pleistocene mafic volcanism associated with post-subduction slab-window formation; numerous Neogene alkaline volcanoes, including the massive Erebus volcano and its persistent phonolitic lava lake, that are widely distributed within and adjacent to one of the world’s major zones of lithospheric extension (the West Antarctic Rift System); and very young ultrapotassic volcanism erupted subglacially and forming a world-wide type example (Gaussberg).