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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Asia
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Middle East
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Turkey
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Anatolia (1)
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Commonwealth of Independent States
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Russian Federation
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Urals
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Elba (1)
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Europe
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Orenburg Russian Federation (1)
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Iberian Peninsula
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Spain
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Italy
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United States
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Malheur County Oregon (2)
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elements, isotopes
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metals
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lithium (1)
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sodium (2)
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calcium (2)
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arsenic (1)
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iron
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ferric iron (1)
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sulfur (1)
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geologic age
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Cenozoic
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Holocene
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upper Holocene
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Roman period (1)
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igneous rocks
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igneous rocks
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feldspathoid rocks (2)
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plutonic rocks
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granites (1)
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pegmatite (1)
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ophiolite (1)
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metamorphic rocks
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ophiolite (1)
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minerals
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carbonates
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cancrinite (5)
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oxides (2)
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silicates
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asbestos (4)
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borosilicates (1)
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chain silicates
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amphibole group
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clinoamphibole
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edenite (2)
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richterite (1)
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tremolite (3)
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pyroxene group
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clinopyroxene
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clinoenstatite (1)
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diopside (1)
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feldspathoids (3)
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framework silicates
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cancrinite (5)
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leucite (1)
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nepheline group
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nepheline (1)
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sodalite group
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hauyne (1)
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lazurite (1)
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zeolite group
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erionite (5)
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natrolite (1)
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scolecite (1)
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ring silicates
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tourmaline group
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elbaite (1)
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sheet silicates
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serpentine group
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chrysotile (1)
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sulfates
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anhydrite (2)
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bassanite (3)
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gypsum (2)
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halotrichite (2)
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lazurite (1)
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sulfides
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cinnabar (1)
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lazurite (1)
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metacinnabar (1)
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realgar (2)
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-
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Primary terms
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Asia
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Middle East
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Turkey
-
Anatolia (1)
-
-
-
-
boron (1)
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Cenozoic
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Quaternary
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Holocene
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upper Holocene
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Roman period (1)
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-
-
-
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crystal chemistry (16)
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crystal growth (1)
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crystal structure (22)
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Europe
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Central Europe
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Czech Republic
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Moravia (1)
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Orenburg Russian Federation (1)
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Southern Europe
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Iberian Peninsula
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Spain
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Castilla-La Mancha Spain
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Ciudad Real Spain
-
Almaden Spain (1)
-
-
-
-
-
Italy
-
Campania Italy
-
Vesuvius (1)
-
-
Latium Italy (1)
-
Sicily Italy
-
Catania Italy (1)
-
Mount Etna (1)
-
-
Tuscany Italy
-
Grosseto Italy (1)
-
-
-
-
-
igneous rocks
-
feldspathoid rocks (2)
-
plutonic rocks
-
granites (1)
-
pegmatite (1)
-
-
-
metals
-
alkali metals
-
lithium (1)
-
potassium (3)
-
sodium (2)
-
-
alkaline earth metals
-
beryllium (1)
-
calcium (2)
-
-
arsenic (1)
-
iron
-
ferric iron (1)
-
-
-
phase equilibria (1)
-
pollution (2)
-
spectroscopy (1)
-
sulfur (1)
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thermal analysis (1)
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United States
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Maryland
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Montgomery County Maryland (1)
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Oregon
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Baker County Oregon (1)
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Malheur County Oregon (2)
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-
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Celleriite, ☐( Mn 2 2 + Al)Al 6 (Si 6 O 18 )(BO 3 ) 3 (OH) 3 (OH), a new mineral species of the tourmaline supergroup
Characterization and assessment of the potential toxicity/pathogenicity of Russian commercial chrysotile
Towards a detailed comprehension of the inertisation processes of amphibole asbestos: in situ high-temperature behaviour of fibrous tremolite
The thermal behaviour of sacrofanite
The crystal structure of mineral fibres
Abstract This chapter deals with the crystal structure of regulated and unregulated mineral fibres. The aim is to provide readers, both specialists and researchers broadly interested in environmental problems, with up-to-date information on a topic that is expanding daily. The chapter describes specifically the structure of the fibrous modification whenever available and outlines possible differences from the corresponding prismatic variety. Details of the experimental techniques used for structure determination/refinement are reported also, if appropriate, to outline the experimental difficulties faced due to the small dimensions, sensitivity and chemical complexity of mineral fibres.
Dissolution and biodurability of mineral fibres
Abstract Dissolution rates of mineral fibres in several environments are obtained as proxies for their biodurability in body fluids. This chapter provides a description of the experimental methods, the parameters and characteristics to be fixed during the design of dissolution experiments in closed (batch reactors) and open systems (flow-through cells), as well as details of the dissolution media. The dissolution of mineral fibres in buffered inorganic solutions is the key to understanding their behaviour during weathering processes because it contributes not only to their chemical transformation, but also to the breakdown of the fibres that may be dispersed in the environment. On the other hand, preparation of fluids representing different interstitial conditions in the lung is described, with particular attention to artificial lysosomal fluid (ALF) employed to mimic the environment that inhaled particles would encounter after phagocytosis by alveolar and interstitial macrophages. Moreover, the use of a neutral fluid such as Gamble’s solution (GS) simulates the interstitial lung fluid and airway lining fluid. Finally, the results of studies of mineral-fibre dissolution in inorganic and body fluids, found in the literature, are discussed. Methodologies for assessing the biodurability of fibres are illustrated, starting from dissolution rate data, and focus on in vitro studies. Rate constants are used to assess fibre lifetimes utilizing a fibre-shrinking model equation. Finally, literature studies show differences in biopersistence between serpentine and amphibole asbestos, due to their different crystal structures and dissolution conditions of pH and solution composition.