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  • 1
    Call number: 10.1144/SP520
    In: Special publications / the Geological Society, London, Volume 520
    Description / Table of Contents: This book brings together research, review and methodological papers that provide an updated view on the sedimentary record of volcanism, spanning diverse processes and environments. It aims to bridge the gap between volcanological and sedimentological approaches to the investigation of processes governing the generation, dispersion and accumulation of volcaniclastic deposits.
    Type of Medium: 12
    Pages: 1 Online-Ressource (VI, 673 Seiten) , Illustrationen, Diagramme, Karten
    ISBN: 9781786205667 , 978-1-78620-566-7 , 1786205661
    Series Statement: Special publications / the Geological Society, London 520
    Language: English
    Note: About this title - Volcanic Processes in the Sedimentary Record: When Volcanoes Meet the Environment Full Access12 April 2023 A. Di Capua, R. De Rosa, G. Kereszturi, E. Le Pera, M. Rosi, and S. F. L. Watt https://doi.org/10.1144/SP520 Introduction Full Access3 February 2023 From volcanoes to sedimentary systems Andrea Di Capua, Rosanna De Rosa, Gabor Kereszturi, Emilia Le Pera, Mauro Rosi, and Sebastian F. L. Watt https://doi.org/10.1144/SP520-2022-303 Particle generation and transport in volcanically influenced sedimentary systems Volcanically-derived deposits and sequences: a unified terminological scheme for application in modern and ancient environments Full Access11 October 2022 Andrea Di Capua, Rosanna De Rosa, Gabor Kereszturi, Emilia Le Pera, Mauro Rosi, and Sebastian F. L. Watt https://doi.org/10.1144/SP520-2021-201 Subaerial volcaniclastic deposits – influences of initiation mechanisms and transport behaviour on characteristics and distributions Open Access12 July 2022 Jon J. Major https://doi.org/10.1144/SP520-2021-142 Magma–rock interactions: a review of their influence on magma rising processes with emphasis on short-timescale assimilation of carbonate rocks Full Access31 May 2022 M. Knuever, R. Sulpizio, D. Mele, and A. Costa https://doi.org/10.1144/SP520-2021-177 Sedimentation associated with glaciovolcanism: a review Full Access1 March 2022 John Laidlaw Smellie https://doi.org/10.1144/SP520-2021-135 Volcano-sedimentary processes at Las Derrumbadas rhyolitic twin domes, Serdán-Oriental Basin, Eastern Trans-Mexican Volcanic Belt Full Access31 January 2022 Marie-Noëlle Guilbaud, Corentin Chédeville, Ángel Nahir Molina-Guadarrama, Julio Cesar Pineda-Serrano, and Claus Siebe https://doi.org/10.1144/SP520-2021-144 A channelized debris-avalanche deposit from Pirongia basaltic stratovolcano, New Zealand Full Access17 September 2021 Oliver Emerson McLeod and Adrian Pittari https://doi.org/10.1144/SP520-2020-222 The influence of volcanic supply on the composition of modern river sands: the case study of the Ofanto River, southern Italy Full Access22 November 2021 Mariano Tenuta, Paola Donato, Rocco Dominici, and Rosanna De Rosa https://doi.org/10.1144/SP520-2021-89 Provenance controls on volcaniclastic beach sand: example from the Aeolian archipelago, Mediterranean Sea Full Access18 November 2021 Consuele Morrone, Emilia Le Pera, Kathleen M. Marsaglia, and Rosanna De Rosa https://doi.org/10.1144/SP520-2021-91 Weathering on volcanic edifices under semiarid climates: insights from a regional assessment of the composition of Fogo Island regoliths (Cape Verde) Full Access23 September 2021 Marina Cabral Pinto, Pedro A. Dinis, Denise Pitta Groz, Rosa Marques, Maria Isabel Prudêncio, Rui Moura, Fernando Tavares Rocha, and Eduardo Ferreira da Silva https://doi.org/10.1144/SP520-2021-61 Processes controlling volcanic and epiclastic reservoir formation in a buried polygenetic stratocone Full Access14 December 2021 Alan Bischoff, Jessica Fensom, Huafeng Tang, Marcos Rossetti, and Andrew Nicol https://doi.org/10.1144/SP520-2021-137 Geodynamics and progradation of volcaniclastic sequences through sedimentary systems Temporal and spatial significance of volcanic particles in sand(stone): implications for provenance and palaeotectonic reconstructions Full Access30 August 2022 Salvatore Critelli, Sara Criniti, Raymond V. Ingersoll, and William Cavazza https://doi.org/10.1144/SP520-2022-99 Igneous and sedimentary ‘limestones’: the puzzling challenge of a converging classification Open Access25 November 2021 Francesco Stoppa, Simonetta Cirilli, Andrea Sorci, Sam Broom-Fendley, Claudia Principe, Maria Grazia Perna, and Gianluigi Rosatelli https://doi.org/10.1144/SP520-2021-120 Non-marine environments Controls on sediment distribution in a volcanically-affected basin: insights from the Ethiopian Flood Basalt Province Full Access8 October 2021 Simon R. Passey, Charlotte Elizabeth McLean, and Dereje Ayalew https://doi.org/10.1144/SP520-2021-70 Volcaniclastic sedimentation in a closed, marginal rift basin: the case of the Melka Kunture area (upper Awash, Ethiopia) Full Access23 January 2023 L. Pioli, R. T. Melis, and M. Mussi https://doi.org/10.1144/SP520-2022-158 From ‘source to sink’ to ‘sink to source’: a review of volcanic fluvial and lacustrine successions in Japan Full Access9 January 2023 Kyoko S. Kataoka https://doi.org/10.1144/SP520-2022-171 Assessing woody vegetation recovery in the Rayas River following the eruption of the Chaitén Volcano in 2008 Full Access14 February 2022 Héctor Ulloa, Bruno Mazzorana, Andrés Iroumé, and Susana Paula https://doi.org/10.1144/SP520-2020-261 Volcaniclastic lacustrine sedimentation in the Pleistocene Guayllabamba intermontane basin in the Ecuadorian Andes Full Access11 January 2022 German Martin-Merino, Matteo Roverato, and Rafael Almeida https://doi.org/10.1144/SP520-2021-66 Evidence of the Early Holocene eruptive activity of Volcán de Colima and the 8.2 kyr global climatic event in lacustrine sediments from a debris avalanche-dammed lake Full Access8 October 2021 Lucia Capra, Matteo Roverato, Juan Pablo Bernal, and Abel Cortés https://doi.org/10.1144/SP520-2021-63 Physical and chemical depositional processes when volcanoes meet lacustrine environments: the Cretaceous Imjado Volcanics, Jeungdo, southwestern Korea Full Access23 September 2021 Yong Sik Gihm https://doi.org/10.1144/SP520-2021-65 Marine environments Volcano–air–sea interactions in a coastal tuff ring, Jeju Island, Korea Open Access15 September 2021 Young Kwan Sohn, Chanwoo Sohn, Woo Seok Yoon, Jong Ok Jeong, Seok-Hoon Yoon, and Hyeongseong Cho https://doi.org/10.1144/SP520-2021-52 Volcaniclastic deposits and sedimentation processes around volcanic ocean islands: the central Azores Full Access4 November 2021 Yu-Chun Chang, Neil C. Mitchell, Thor H. Hansteen, Julie C. Schindlbeck-Belo, and Armin Freundt https://doi.org/10.1144/SP520-2021-62 Marine carbonate sedimentation in volcanic settings Full Access30 November 2021 Stephen W. Lokier https://doi.org/10.1144/SP520-2020-251 Tephra layers in the marine environment: a review of properties and emplacement processes Open Access6 December 2021 Armin Freundt, Julie C. Schindlbeck-Belo, Steffen Kutterolf, and Jenni L. Hopkins https://doi.org/10.1144/SP520-2021-50 Environmental responses to eruptions: eruptions, climate and sedimentation Rapid changes from arid to humid conditions during the onset of the Paraná–Etendeka Igneous Province: can volcanic gas emissions from continental flood basalts affect the precipitation regime? Full Access24 September 2021 Vinicius Godoi Pereira da Cruz, Evandro Fernandes de Lima, Lucas de Magalhaes May Rossetti, and Natalia Gauer Pasqualon https://doi.org/10.1144/SP520-2020-176
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  • 2
    Call number: 9/M 07.0421(520)
    In: Special publications / the Geological Society, London, Volume 520
    Description / Table of Contents: This book brings together research, review and methodological papers that provide an updated view on the sedimentary record of volcanism, spanning diverse processes and environments. It aims to bridge the gap between volcanological and sedimentological approaches to the investigation of processes governing the generation, dispersion and accumulation of volcaniclastic deposits.
    Type of Medium: Monograph available for loan
    Pages: VI, 673 Seiten , Illustrationen, Diagramme, Karten
    ISBN: 9781786205667 , 978-1-78620-566-7 , 1786205661
    Series Statement: Special publications / the Geological Society, London 520
    Language: English
    Note: About this title - Volcanic Processes in the Sedimentary Record: When Volcanoes Meet the Environment Full Access12 April 2023 A. Di Capua, R. De Rosa, G. Kereszturi, E. Le Pera, M. Rosi, and S. F. L. Watt https://doi.org/10.1144/SP520 Introduction Full Access3 February 2023 From volcanoes to sedimentary systems Andrea Di Capua, Rosanna De Rosa, Gabor Kereszturi, Emilia Le Pera, Mauro Rosi, and Sebastian F. L. Watt https://doi.org/10.1144/SP520-2022-303 Particle generation and transport in volcanically influenced sedimentary systems Volcanically-derived deposits and sequences: a unified terminological scheme for application in modern and ancient environments Full Access11 October 2022 Andrea Di Capua, Rosanna De Rosa, Gabor Kereszturi, Emilia Le Pera, Mauro Rosi, and Sebastian F. L. Watt https://doi.org/10.1144/SP520-2021-201 Subaerial volcaniclastic deposits – influences of initiation mechanisms and transport behaviour on characteristics and distributions Open Access12 July 2022 Jon J. Major https://doi.org/10.1144/SP520-2021-142 Magma–rock interactions: a review of their influence on magma rising processes with emphasis on short-timescale assimilation of carbonate rocks Full Access31 May 2022 M. Knuever, R. Sulpizio, D. Mele, and A. Costa https://doi.org/10.1144/SP520-2021-177 Sedimentation associated with glaciovolcanism: a review Full Access1 March 2022 John Laidlaw Smellie https://doi.org/10.1144/SP520-2021-135 Volcano-sedimentary processes at Las Derrumbadas rhyolitic twin domes, Serdán-Oriental Basin, Eastern Trans-Mexican Volcanic Belt Full Access31 January 2022 Marie-Noëlle Guilbaud, Corentin Chédeville, Ángel Nahir Molina-Guadarrama, Julio Cesar Pineda-Serrano, and Claus Siebe https://doi.org/10.1144/SP520-2021-144 A channelized debris-avalanche deposit from Pirongia basaltic stratovolcano, New Zealand Full Access17 September 2021 Oliver Emerson McLeod and Adrian Pittari https://doi.org/10.1144/SP520-2020-222 The influence of volcanic supply on the composition of modern river sands: the case study of the Ofanto River, southern Italy Full Access22 November 2021 Mariano Tenuta, Paola Donato, Rocco Dominici, and Rosanna De Rosa https://doi.org/10.1144/SP520-2021-89 Provenance controls on volcaniclastic beach sand: example from the Aeolian archipelago, Mediterranean Sea Full Access18 November 2021 Consuele Morrone, Emilia Le Pera, Kathleen M. Marsaglia, and Rosanna De Rosa https://doi.org/10.1144/SP520-2021-91 Weathering on volcanic edifices under semiarid climates: insights from a regional assessment of the composition of Fogo Island regoliths (Cape Verde) Full Access23 September 2021 Marina Cabral Pinto, Pedro A. Dinis, Denise Pitta Groz, Rosa Marques, Maria Isabel Prudêncio, Rui Moura, Fernando Tavares Rocha, and Eduardo Ferreira da Silva https://doi.org/10.1144/SP520-2021-61 Processes controlling volcanic and epiclastic reservoir formation in a buried polygenetic stratocone Full Access14 December 2021 Alan Bischoff, Jessica Fensom, Huafeng Tang, Marcos Rossetti, and Andrew Nicol https://doi.org/10.1144/SP520-2021-137 Geodynamics and progradation of volcaniclastic sequences through sedimentary systems Temporal and spatial significance of volcanic particles in sand(stone): implications for provenance and palaeotectonic reconstructions Full Access30 August 2022 Salvatore Critelli, Sara Criniti, Raymond V. Ingersoll, and William Cavazza https://doi.org/10.1144/SP520-2022-99 Igneous and sedimentary ‘limestones’: the puzzling challenge of a converging classification Open Access25 November 2021 Francesco Stoppa, Simonetta Cirilli, Andrea Sorci, Sam Broom-Fendley, Claudia Principe, Maria Grazia Perna, and Gianluigi Rosatelli https://doi.org/10.1144/SP520-2021-120 Non-marine environments Controls on sediment distribution in a volcanically-affected basin: insights from the Ethiopian Flood Basalt Province Full Access8 October 2021 Simon R. Passey, Charlotte Elizabeth McLean, and Dereje Ayalew https://doi.org/10.1144/SP520-2021-70 Volcaniclastic sedimentation in a closed, marginal rift basin: the case of the Melka Kunture area (upper Awash, Ethiopia) Full Access23 January 2023 L. Pioli, R. T. Melis, and M. Mussi https://doi.org/10.1144/SP520-2022-158 From ‘source to sink’ to ‘sink to source’: a review of volcanic fluvial and lacustrine successions in Japan Full Access9 January 2023 Kyoko S. Kataoka https://doi.org/10.1144/SP520-2022-171 Assessing woody vegetation recovery in the Rayas River following the eruption of the Chaitén Volcano in 2008 Full Access14 February 2022 Héctor Ulloa, Bruno Mazzorana, Andrés Iroumé, and Susana Paula https://doi.org/10.1144/SP520-2020-261 Volcaniclastic lacustrine sedimentation in the Pleistocene Guayllabamba intermontane basin in the Ecuadorian Andes Full Access11 January 2022 German Martin-Merino, Matteo Roverato, and Rafael Almeida https://doi.org/10.1144/SP520-2021-66 Evidence of the Early Holocene eruptive activity of Volcán de Colima and the 8.2 kyr global climatic event in lacustrine sediments from a debris avalanche-dammed lake Full Access8 October 2021 Lucia Capra, Matteo Roverato, Juan Pablo Bernal, and Abel Cortés https://doi.org/10.1144/SP520-2021-63 Physical and chemical depositional processes when volcanoes meet lacustrine environments: the Cretaceous Imjado Volcanics, Jeungdo, southwestern Korea Full Access23 September 2021 Yong Sik Gihm https://doi.org/10.1144/SP520-2021-65 Marine environments Volcano–air–sea interactions in a coastal tuff ring, Jeju Island, Korea Open Access15 September 2021 Young Kwan Sohn, Chanwoo Sohn, Woo Seok Yoon, Jong Ok Jeong, Seok-Hoon Yoon, and Hyeongseong Cho https://doi.org/10.1144/SP520-2021-52 Volcaniclastic deposits and sedimentation processes around volcanic ocean islands: the central Azores Full Access4 November 2021 Yu-Chun Chang, Neil C. Mitchell, Thor H. Hansteen, Julie C. Schindlbeck-Belo, and Armin Freundt https://doi.org/10.1144/SP520-2021-62 Marine carbonate sedimentation in volcanic settings Full Access30 November 2021 Stephen W. Lokier https://doi.org/10.1144/SP520-2020-251 Tephra layers in the marine environment: a review of properties and emplacement processes Open Access6 December 2021 Armin Freundt, Julie C. Schindlbeck-Belo, Steffen Kutterolf, and Jenni L. Hopkins https://doi.org/10.1144/SP520-2021-50 Environmental responses to eruptions: eruptions, climate and sedimentation Rapid changes from arid to humid conditions during the onset of the Paraná–Etendeka Igneous Province: can volcanic gas emissions from continental flood basalts affect the precipitation regime? Full Access24 September 2021 Vinicius Godoi Pereira da Cruz, Evandro Fernandes de Lima, Lucas de Magalhaes May Rossetti, and Natalia Gauer Pasqualon https://doi.org/10.1144/SP520-2020-176
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  • 3
    Publication Date: 2012-05-01
    Description: The Tufiti di Tusa Formation, a siliciclastic turbidite system of lower Miocene age in southern Italy, is mainly composed of volcaniclastic and quartzolithic sandstones interbedded with mudrocks. Sandstones are subdivided into four distinctive petrofacies, evolving from quartzolithic to volcaniclastic lithofeldspathic and feldspatholithic, reflecting detrital evolution from growing orogen (quartzolithic petrofacies) to active volcanism (volcaniclastic petrofacies). The mineralogical composition of the associated mudrocks is predominantly characterized by phyllosilicates, mainly illite/smectite mixed layers (I/S R1 associated with minor amounts of I/S R0 in the lower part of the succession, and I/S R3 in its upper part), together with illite, detrital micas and chlorite, and minor amounts of chlorite/smectite mixed layers and kaolinite, in addition to quartz, calcite and feldspars. The most abundant phyllosilicates are I/S mixed layers, 10-Å minerals (illite and micas) and chlorite, while kaolinite and chlorite–smectite mixed layers are present as a few per cent or in trace amounts. X-ray diffraction patterns show the occurrence of the ordered I/S R1 mixed layers in most samples but, at the top of the succession, some samples are characterized by I/S R3 mixed layers, whilst in the lower part of the succession I/S R1 is associated with a lower amount of I/S R0. These features suggest that the Tufiti di Tusa Formation experienced a medium diagenetic grade, and the occurrence of I/S R3 could be explained by K-availability in samples in the upper part of the succession. The lithic fragments in sandstones are metasedimentary rocks of Palaeozoic age, and andesite to dacite volcanic rocks of early Miocene age. The associated mudrocks also contain trace element ratios (Cr/V, Y/Ni, La/Sc, Th/Sc, Th/Co, Th/Cr, Cr/Th and Eu/Eu*) consistent with a provenance containing intermediate to silicic sources with scarce or absent basic rocks. The chemical index of alteration (63.2 to 71.6) suggests a moderate degree of weathering in the source. Furthermore, the K/Cs ratios of sediments confirm likely moderate rather than intense weathering. The index of compositional variability (ICV) values (from 1.2 to 2.5) are high enough to suggest the mudrocks are first-cycle sediments with little recycling. The Al–Ti–Zr diagram and the Th/Sc v. Zr/Sc plot indicate poor sorting and rapid deposition of the sediments. Detrital and sedimentary evolution of the Tufiti di Tusa Formation provides constraints, in terms of relations between a growing orogenic system and active volcanism in the Central Mediterranean, to contribute to geodynamic and palaeogeographic reconstructions of the earliest collision in the southern Apennines region.
    Print ISSN: 0016-7568
    Electronic ISSN: 1469-5081
    Topics: Geosciences
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  • 7
    Publication Date: 2006-07-11
    Print ISSN: 0943-0105
    Electronic ISSN: 1432-0495
    Topics: Geosciences
    Published by Springer
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  • 8
    Publication Date: 2012-09-27
    Print ISSN: 0049-6979
    Electronic ISSN: 1573-2932
    Topics: Energy, Environment Protection, Nuclear Power Engineering
    Published by Springer
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  • 9
  • 10
    Publication Date: 2020-08-18
    Description: The Erosion Potential Method is a model for qualifying the erosion severity and estimating the total annual sediment yield of a catchment. The method includes a diverse set of equations, which are influenced by different factors such as geology, morphology, climate and soil use. This study describes a PyQGIS YES plug-in, which allows a semiautomatized use of the Erosion Potential Method in Geographic Information System (GIS) environment. In detail, we developed a plug-in using Python programming language that is made up of a series of operations allowing one to estimate sediment production through a wizard procedure. The first stage consists of data preprocessing and involves: (i) loading of the layers (e.g., geological map); (ii) spatial selection of the catchment area; (iii) elaboration of loaded layers (e.g., clipping). During the second stage, the user assigns a relative coefficient to each factor either by selecting a preloaded value from bibliographic sources or by inserting a value inferred from field observations and data. The third stage includes the addition of rainfall and temperature values loaded as: average values, point shapefiles (the plug-in calculates the average monthly values) or tables (the plug-in creates the linear regression depending on altitude). During the final stage, the plug-in executes the equation of EPM Model obtaining the sediment yield value at basin scale. Additionally, the user can use the “squared cell” method choosing the appropriate option in the setting dialogue of the plug-in. This method divides the catchment area in a regularly-spaced grid which allows one to carry out the distribution map of the sediment production during the final stage.
    Electronic ISSN: 2076-3263
    Topics: Geosciences
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