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Multicomponent chemical equilibrium modeling of the fluids and U-TH geochrnology of authigenic mineralization in geothermal systems

Klamath Waters Digital Library

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Title Multicomponent chemical equilibrium modeling of the fluids and U-TH geochrnology of authigenic mineralization in geothermal systems
Creator Hull, Carter Dean
Date 1990 2009-04-17 2009-05-11
Subject Geochemical surveys -- California -- San Bernardino Mountains; Geothermal resources -- California -- San Bernardino Mountains; Geothermal resources -- Oregon -- Crater Lake; Geological time; Loma Linda (California); Winema National Forest (Oregon); Mazama, Mount (Oregon);
Description ill., maps; Typescript (photocopy); Presented to the Department of Geological Sciences and the Graduate School of the University of Oregon in partial fulfillment of the requirements for the degree of Doctor of Philosophy; Thesis (Ph. D.)--University of Oregon, 1990; Includes bibliographical references (leaves 157-164) iv An Abstract of the Dissertation of Carter Dean Hull for the degree of Doctor of Philosophy in the Department of Geological Sciences to be taken June 1990 Title: MULTICOMPONENT CHEMICAL EQUILIBRIUM MODELING OF FLUIDS AND U-TH GEOCHRONOLOGY OF AUTHIGENIC MINERALIZATION IN GEOTHERMAL SYSTEMS Approved: Geothermal waters are ascending from the fractured, crystalline basement complex in the range front of San Bernardino Mountains of southern California. Waters of... xiii TABLE OF CONTENTS Chapter Page I. GENERAL INTRODUCTION 1 II. CHEMICAL GEOTHERMOMETRY AND NUMERICAL UNMIXING OF THE DILUTED GEOTHERMAL WATERS OF THE SAN BERNARDINO REGION OF SOUTHERN CALIFORNIA 5 Introduction 5 Geochemical Techinques and Results 11 Chemical Geothermometry 11 SOLVEQ 12 Ternary Molality Plots 43 Discussion and Interpretations 51 Chemical Geothermometry 51 SOLVEQ 53 Ternary Molality Plots 57 Summary and Conclusions 59 Relationship to the Following...
Source Originally published as: Multicomponent chemical equilibrium modeling of the fluids and U-TH geochrnology of authigenic mineralization in geothermal systems; (1990); xx, 164 leaves, bound; 29 cm.
Contributor Thesis (Ph. D.)--University of Oregon, 1990. Department of Geology (University of Oregon)
Publisher Oregon Institute of Technology. Library
Relation Digital reproduction of: http://www.worldcat.org/oclc/320565489 Mode of access: Adobe Acrobat Reader
Type text
Format application/pdf; PDF file size: 19,632,128 bytes Master file format: image/tiff; master file size: 5,889,060,864 bytes; bit depth: 24; color mode: color; resolution: 600 dpi; capture hardware: Plustek OpticBook 3600; optimization software: Adobe Photoshop CS3
Language eng;
Rights Digital image copyright 2008. Oregon Institute of Technology. All rights reserved. http://digitallib.oit.edu/cdm/copyright/collection/craterlake
Identifier UOOL-27-Mar-2009-135 http://digitallib.oit.edu/cdm/ref/collection/craterlake/id/144

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