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dc.contributor.editorJu, Yiwen
dc.contributor.editorWan, Quan
dc.contributor.editorHochella, Jr.
dc.date.accessioned2021-05-01T15:30:11Z
dc.date.available2021-05-01T15:30:11Z
dc.date.issued2020
dc.identifierONIX_20210501_9783039365999_573
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/68827
dc.description.abstractIn 2018, the International Symposium on Nanogeoscience was held in Guiyang, China. Scholars from around the globe gathered to discuss recent progress and development trends in various aspects of nanogeoscience, including nanomineralogy. Nanomineralogy, an important aspect of nanogeoscience, focuses on the composition, structure, and physical and chemical properties of nanoscale minerals and their interrelations with other Earth critical components. To give a sampling of the latest progress in nanomineralogy and related fields, we offer this Special Issue, which describes a full range of recent nanomineralogic achievements relating to everything from nanominerals and geochemistry, mineral nanostructures, and nanomineral deformation, to nanopores in oil and gas reservoirs, nanomineral deposits, and nanomineral material. Today, nanomineralogy faces a new strategic opportunity as well as a revolutionary challenge. We thus present this special nanomineralogy-focused issue of Minerals with the aim of encouraging our colleagues to familiarize themselves with current developments, trends, and directions in nanomineralogy, enabling an understanding of the potential of the field as a whole. We look forward to developing further scientific research and cooperation in nanomineralogy, hoping thereby to attract and guide young scholars to participate in this field.
dc.languageEnglish
dc.subject.classificationthema EDItEUR::G Reference, Information and Interdisciplinary subjects::GP Research and information: generalen_US
dc.subject.classificationthema EDItEUR::R Earth Sciences, Geography, Environment, Planningen_US
dc.subject.otherpreparation
dc.subject.otherhydroxysodalite
dc.subject.otherbentonite
dc.subject.otheralkali-activation
dc.subject.otherwater-bath
dc.subject.othertotal porosity
dc.subject.othershale gas reservoir
dc.subject.otherLongmaxi Formation
dc.subject.otherSoutheast Chongqing
dc.subject.otherpyrite
dc.subject.otherthermal treatment
dc.subject.otherpyrrhotite
dc.subject.otherHg(II) removal
dc.subject.othermechanism
dc.subject.otherChangling Fault Depression
dc.subject.otherShahezi Formation
dc.subject.otherfractal dimensions
dc.subject.otherpore structure
dc.subject.othershale lithofacies
dc.subject.otherlacustrine shales
dc.subject.otherpore networks
dc.subject.otherpore connectivity
dc.subject.otherspontaneous fluid imbibition
dc.subject.otherShahezi shales
dc.subject.otherSm–Nd dating
dc.subject.otherShuiyindong
dc.subject.otherCarlin-type gold deposit
dc.subject.otherSouthwestern China
dc.subject.othersouthern North China
dc.subject.othermarine shale
dc.subject.othernanopore structure
dc.subject.otherheterogeneity
dc.subject.otherfractal dimension
dc.subject.othercalcium carbonate
dc.subject.othermesopore
dc.subject.otheramoxicillin
dc.subject.otheradsorption
dc.subject.otherkinetics
dc.subject.otherthermodynamics
dc.subject.othernanocubic pyrite
dc.subject.otherhydrothermal synthesis
dc.subject.othergreigite
dc.subject.otherthiourea
dc.subject.otheriron
dc.subject.othernanoparticle
dc.subject.otherFe
dc.subject.othernanomaterial
dc.subject.othercolloid
dc.subject.otherL-edge XANES
dc.subject.otherspeciation
dc.subject.otherhierarchical nanocomposite
dc.subject.othersepiolite
dc.subject.otherclay mineral
dc.subject.otherheavy metals
dc.subject.otherwater treatment
dc.subject.othernanograins
dc.subject.otherprincipal slip zone
dc.subject.othercrystallographic preferred orientation
dc.subject.otheramorphization
dc.subject.othermirror-slip surface
dc.subject.otherfaults
dc.subject.otherearthquakes
dc.subject.otherlocalization
dc.subject.otherNantuo Formation
dc.subject.othersyn-glacial dolostone
dc.subject.otherrare earth elements
dc.subject.otherferruginous conditions
dc.subject.otherSouth China
dc.subject.othernanostructure
dc.subject.otherOM–clay aggregate
dc.subject.othersilica nanograin
dc.subject.othertectonic and thermal evolution
dc.subject.otherLongmaxi Formation shale
dc.subject.otherN2 adsorption
dc.subject.otherhelium ion microscope
dc.subject.otherminerals
dc.subject.othertrace elements
dc.subject.othermajor elements
dc.subject.otherfault zone
dc.subject.othertectonically deformed coal
dc.subject.otherdifferentiation mechanism
dc.subject.othermetallic nanoparticles
dc.subject.othermigration mechanism
dc.subject.otherprospecting
dc.subject.otherShenjiayao gold deposit
dc.subject.othersyngenetic framboids
dc.subject.otherdiagenetic framboids
dc.subject.otherpaleoredox conditions
dc.subject.othershale gas content
dc.subject.othermiddle Yangtze area
dc.subject.othernanocrystalline rutile
dc.subject.otherphase transition
dc.subject.othermetallization
dc.subject.otherhigh pressure
dc.subject.otherdiamond anvil cell
dc.subject.othern/a
dc.titleNanomineralogy
dc.typebook
oapen.identifier.doi10.3390/books978-3-03936-600-2
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0
oapen.relation.isbn9783039365999
oapen.relation.isbn9783039366002
oapen.pages350
oapen.place.publicationBasel, Switzerland


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