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Comprehensive Analysis of Global Mid...
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Hetti Pathirannehelage, Diluni Ayeshika Wimalaratne.
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Comprehensive Analysis of Global Mid Ocean Ridge and Mariana Convergent Margin Hydrothermal Systems Tectonics, Fluid Chemistry and Vent Biota.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Comprehensive Analysis of Global Mid Ocean Ridge and Mariana Convergent Margin Hydrothermal Systems Tectonics, Fluid Chemistry and Vent Biota./
作者:
Hetti Pathirannehelage, Diluni Ayeshika Wimalaratne.
出版者:
Ann Arbor : ProQuest Dissertations & Theses, : 2020,
面頁冊數:
113 p.
附註:
Source: Dissertations Abstracts International, Volume: 82-07, Section: B.
Contained By:
Dissertations Abstracts International82-07B.
標題:
Geochemistry. -
電子資源:
https://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=28216213
ISBN:
9798678187116
Comprehensive Analysis of Global Mid Ocean Ridge and Mariana Convergent Margin Hydrothermal Systems Tectonics, Fluid Chemistry and Vent Biota.
Hetti Pathirannehelage, Diluni Ayeshika Wimalaratne.
Comprehensive Analysis of Global Mid Ocean Ridge and Mariana Convergent Margin Hydrothermal Systems Tectonics, Fluid Chemistry and Vent Biota.
- Ann Arbor : ProQuest Dissertations & Theses, 2020 - 113 p.
Source: Dissertations Abstracts International, Volume: 82-07, Section: B.
Thesis (Ph.D.)--The University of Texas at Dallas, 2020.
This item must not be sold to any third party vendors.
This study is a multidisciplinary data integration and metadata analysis for mid-ocean ridge (MOR) and Mariana intra oceanic convergent margin hydrothermal vents including fluids and biota. We compiled separate databases for MOR and Mariana hydrothermal vent parameters and their vent biota using published and on-line information managed by government agencies and other research institutes. The vent parameter databases are compiled under the categories of setting, vent field name, vent field number, name, latitude, longitude, alias, vent sites, smoker type and chimney composition, host rocks, full spreading rate, depth, temperature, pH, total Fe, (3He/4He)/Ra, CO2, CH4, H2, H2S, SO42- ions, chlorinity, operations and references. MOR database for vent parameters includes 449 individual hydrothermal vents grouped into 73 vent fields at global divergent margins. The vent organism database of MOR vents includes 672 species belong to 72 individual vents. Mariana vent summary database includes 47 individual hydrothermal vents belong to four different tectonic settings: the forearc (FAR), arc (ARC), backarc (BAB) and the southern Mariana trough (SMT). Database for Mariana biota include vent animals for 31 vents of the above settings. We considered vent depth, fluid temperature, pH, total Fe, Mn, helium isotopic ratio ((3He/4He)/Ra), fluid gases (CO2, CH4, H2, H2S), SO4 2- ions and chlorinity of the fluids for statistical analysis. In addition to these parameters, for MOR vents full spreading rate was also considered for statistical analysis. To overcome non-linear data distributions and small number of observations for some vent parameters, we used purely nonparametric statistical procedures. We assessed vent fluid parameters first for correlations with key parameters spreading rate (for MOR only), summit depth, fluid temperature and fluid chlorinity. Second, we compared different segments (MOR segments and Mariana tectonic settings) based on vent parameters. Similarities between the vent organisms in different tectonic segments were assessed using Sorensen similarity indices; for MOR vents at both genera and species levels; and for Mariana only for genus level. Our results for MORs show that even if MOR hydrothermal systems are associated with simple divergent margin tectonism, they are remarkably similar despite having differences in both fluid chemistry and biota distribution regardless of the ocean and the rate of spreading. Vent fluid temperature, pH, Fe, Mn, CO2, H2, SO42- ion and chlorinity are independent of the spreading rate. Fluid temperature does control pH, Fe and H2S. Brine separation might influence gases such as helium isotopic ratio and CO2 in venting fluids. Highest similarities of the macro organisms are seen in the Indian Ocean ridges and the greatest differences are observed in the Pacific Ocean ridges. Integration of tectonics, fluid chemistry and vent biota of Mariana convergent margin vents demonstrate that Mariana vent groups are more diverse than global mid-ocean ridge vents and that the southernmost Marianas most resembles mid-ocean ridge (MOR) type venting, the other tectonic groups are quite different than MOR vents.
ISBN: 9798678187116Subjects--Topical Terms:
539092
Geochemistry.
Subjects--Index Terms:
Hydrothermal vents
Comprehensive Analysis of Global Mid Ocean Ridge and Mariana Convergent Margin Hydrothermal Systems Tectonics, Fluid Chemistry and Vent Biota.
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This study is a multidisciplinary data integration and metadata analysis for mid-ocean ridge (MOR) and Mariana intra oceanic convergent margin hydrothermal vents including fluids and biota. We compiled separate databases for MOR and Mariana hydrothermal vent parameters and their vent biota using published and on-line information managed by government agencies and other research institutes. The vent parameter databases are compiled under the categories of setting, vent field name, vent field number, name, latitude, longitude, alias, vent sites, smoker type and chimney composition, host rocks, full spreading rate, depth, temperature, pH, total Fe, (3He/4He)/Ra, CO2, CH4, H2, H2S, SO42- ions, chlorinity, operations and references. MOR database for vent parameters includes 449 individual hydrothermal vents grouped into 73 vent fields at global divergent margins. The vent organism database of MOR vents includes 672 species belong to 72 individual vents. Mariana vent summary database includes 47 individual hydrothermal vents belong to four different tectonic settings: the forearc (FAR), arc (ARC), backarc (BAB) and the southern Mariana trough (SMT). Database for Mariana biota include vent animals for 31 vents of the above settings. We considered vent depth, fluid temperature, pH, total Fe, Mn, helium isotopic ratio ((3He/4He)/Ra), fluid gases (CO2, CH4, H2, H2S), SO4 2- ions and chlorinity of the fluids for statistical analysis. In addition to these parameters, for MOR vents full spreading rate was also considered for statistical analysis. To overcome non-linear data distributions and small number of observations for some vent parameters, we used purely nonparametric statistical procedures. We assessed vent fluid parameters first for correlations with key parameters spreading rate (for MOR only), summit depth, fluid temperature and fluid chlorinity. Second, we compared different segments (MOR segments and Mariana tectonic settings) based on vent parameters. Similarities between the vent organisms in different tectonic segments were assessed using Sorensen similarity indices; for MOR vents at both genera and species levels; and for Mariana only for genus level. Our results for MORs show that even if MOR hydrothermal systems are associated with simple divergent margin tectonism, they are remarkably similar despite having differences in both fluid chemistry and biota distribution regardless of the ocean and the rate of spreading. Vent fluid temperature, pH, Fe, Mn, CO2, H2, SO42- ion and chlorinity are independent of the spreading rate. Fluid temperature does control pH, Fe and H2S. Brine separation might influence gases such as helium isotopic ratio and CO2 in venting fluids. Highest similarities of the macro organisms are seen in the Indian Ocean ridges and the greatest differences are observed in the Pacific Ocean ridges. Integration of tectonics, fluid chemistry and vent biota of Mariana convergent margin vents demonstrate that Mariana vent groups are more diverse than global mid-ocean ridge vents and that the southernmost Marianas most resembles mid-ocean ridge (MOR) type venting, the other tectonic groups are quite different than MOR vents.
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