Mineralogical Crystallography Volume II
Various scientific events are being held around the world under the auspices of this landmark event, the Year of Mineralogy, and it is highly satisfying that this Special Issue "Mineralogical Crystallography Volume II" is published in 2022. The first volume of the "Mineralogical Cryst...
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Format: | Electronic Book Chapter |
Language: | English |
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MDPI - Multidisciplinary Digital Publishing Institute
2022
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Online Access: | DOAB: download the publication DOAB: description of the publication |
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100 | 1 | |a Gurzhiy, Vladislav V. |4 edt | |
700 | 1 | |a Gurzhiy, Vladislav V. |4 oth | |
245 | 1 | 0 | |a Mineralogical Crystallography Volume II |
260 | |a Basel |b MDPI - Multidisciplinary Digital Publishing Institute |c 2022 | ||
300 | |a 1 electronic resource (278 p.) | ||
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520 | |a Various scientific events are being held around the world under the auspices of this landmark event, the Year of Mineralogy, and it is highly satisfying that this Special Issue "Mineralogical Crystallography Volume II" is published in 2022. The first volume of the "Mineralogical Crystallography" Special Issue [1] consisted of such topics as: Discovery of new mineral species; Crystal chemistry of minerals and their synthetic analogs; Behavior of minerals at non-ambient conditions; Biomineralogy; and Crystal growth techniques, and appeared to be very fruitful. The Special Issue "Mineralogical Crystallography Volume II" covers the following topics: Crystal chemistry and properties of minerals and their synthetic analogs; Gemology; Natural-based cement materials; Biomineralogy; and Crystal growth techniques. Additionally, we hope that this continuation will be just as successful, and that the new set of papers will again arouse genuine interest among readers and, perhaps, inspire them in their own successful research. We also believe that with the current collection of papers, we will be able to pay tribute to the union of Mineralogy and Crystallography. | ||
540 | |a Creative Commons |f https://creativecommons.org/licenses/by/4.0/ |2 cc |4 https://creativecommons.org/licenses/by/4.0/ | ||
546 | |a English | ||
650 | 7 | |a Research & information: general |2 bicssc | |
653 | |a uranyl | ||
653 | |a carbonate | ||
653 | |a mineral | ||
653 | |a crystal structure | ||
653 | |a topology | ||
653 | |a structural complexity | ||
653 | |a bentonite | ||
653 | |a mordenite | ||
653 | |a smectite | ||
653 | |a pozzolanicity test | ||
653 | |a cement | ||
653 | |a concrete | ||
653 | |a shchurovskyite | ||
653 | |a synthesis | ||
653 | |a X-ray diffraction | ||
653 | |a oxocentered tetrahedra | ||
653 | |a Barite | ||
653 | |a hydrothermal synthesis | ||
653 | |a typomorphic characteristics | ||
653 | |a in-situ mixing solutions at high temperature | ||
653 | |a high iron and quartz contents coal gangue | ||
653 | |a acid leaching | ||
653 | |a alkali melting | ||
653 | |a hydrothermal reaction | ||
653 | |a NaA zeolite | ||
653 | |a fluorite | ||
653 | |a pozzolan | ||
653 | |a mortar | ||
653 | |a mechanical strength | ||
653 | |a reduction of CO2 emissions | ||
653 | |a hydroxyapatite composite | ||
653 | |a spinel | ||
653 | |a beverage cans | ||
653 | |a bovine bones | ||
653 | |a lorenzenite | ||
653 | |a perovskite | ||
653 | |a loparite | ||
653 | |a titanite | ||
653 | |a apatite | ||
653 | |a carbonates | ||
653 | |a Khibiny | ||
653 | |a Lovozero | ||
653 | |a Kovdor | ||
653 | |a Afrikanda | ||
653 | |a alkaline intrusions | ||
653 | |a NF Fennoscandia | ||
653 | |a glass-ceramics | ||
653 | |a phase separation | ||
653 | |a nucleation | ||
653 | |a crystallization | ||
653 | |a microstructure | ||
653 | |a gahnite | ||
653 | |a gold nanoparticles | ||
653 | |a surface plasmon resonance | ||
653 | |a plasmonics | ||
653 | |a ivanyukite | ||
653 | |a lintisite | ||
653 | |a SIV | ||
653 | |a AM-4 | ||
653 | |a sorption | ||
653 | |a lead | ||
653 | |a ion-exchange | ||
653 | |a titanosilicate | ||
653 | |a Arctic | ||
653 | |a channel-water | ||
653 | |a X-ray fluorescence | ||
653 | |a infrared spectroscopy | ||
653 | |a UV-vis spectroscopy | ||
653 | |a transition metal ions | ||
653 | |a self-healing concrete | ||
653 | |a calcium nitrate | ||
653 | |a mineralization reaction | ||
653 | |a cracks | ||
653 | |a near-infrared spectroscopy | ||
653 | |a kaolinite | ||
653 | |a dickite | ||
653 | |a OH group | ||
653 | |a forsterite | ||
653 | |a boron | ||
653 | |a spectroscopy | ||
653 | |a orthoclase crystal | ||
653 | |a ultra-microchannel | ||
653 | |a water | ||
653 | |a feldspar alteration | ||
653 | |a sericitization | ||
653 | |a gemological | ||
653 | |a mineralogical | ||
653 | |a greenish blue apatite | ||
653 | |a fluorapatite | ||
653 | |a n/a | ||
856 | 4 | 0 | |a www.oapen.org |u https://mdpi.com/books/pdfview/book/6452 |7 0 |z DOAB: download the publication |
856 | 4 | 0 | |a www.oapen.org |u https://directory.doabooks.org/handle/20.500.12854/95796 |7 0 |z DOAB: description of the publication |