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  • PANGAEA  (11)
  • Mineralogical Society of Great Britain and Ireland  (3)
  • Springer Nature  (2)
  • 2010-2014  (16)
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  • 1
    Publication Date: 2012-10-08
    Description: Hielscherite, ideally Ca3Si(OH)6(SO4)(SO3)·11H2O, (IMA 2011-037) is the first ettringite-group mineral with essential sulfite. We have identified a continuous natural solid-solution series from endmember thaumasite, Ca3Si(OH)6(SO4)(CO3)·12H2O, to a composition with at least 77 mol.% endmember hielscherite. In this series, the SO3:CO3 ratio is variable, whereas the SO4 content remains constant. Compositions with more than 50 mol.% endmember hielscherite have only been found at Graulay quarry near Hillesheim in the western Eifel Mountains, Rhineland-Palatinate, where they occur with phillipsite-K, chabazite-Ca and gypsum in cavities in alkaline basalt. Sulfite-rich thaumasite has been found in hydrothermal assemblages in young alkaline basalts in two volcanic regions of Germany: it is widespread at Graulay quarry and occurs at Rother Kopf, Schellkopf and Bellerberg quarries in Eifel district; it has also been found at Zeilberg quarry, Franconia, Bavaria. Hielscherite forms matted fibrous aggregates up to 1 cm across and groups of acicular to prismatic hexagonal crystals up to 0.3 × 0.3 × 1.5 mm. Individual crystals are colourless and transparent with a vitreous lustre and crystal aggregates are white with a silky lustre. The Mohs hardness is 2–2½. Measured and calculated densities are Dmeans = 1.82(3) and Dcalc = 1.79 g cm−3. Hielscherite is optically uniaxial (−), ω = 1.494(2), ε = 1.476(2). The mean chemical composition of holotype material (determined by electron microprobe for Ca, Al, Si, and S and gas chromatography for C, H and N, with the S4+:S6+ ratio from the crystal-structure data) is CaO 27.15, Al2O3 2.33, SiO2 7.04, CO2 2.71, SO2 6.40, SO3 12.91, N2O5 0.42, H2O 39.22, total 98.18 wt.%. The empirical formula on the basis of 3 Ca atoms per formula unit is Ca3(Si0.73Al0.28)Σ1.01(OH)5.71(SO4)1.00(SO3)0.62(CO3)0.38(NO3)0.05·10.63H2O. The presence of sulfite was confirmed by crystal-structure analysis and infrared and X-ray absorption near edge structure spectra. The crystal structure of sulfite-rich thaumasite from Zeilberg quarry was solved by direct methods based on single-crystal X-ray diffraction data (R1 = 0.064). The structure of hielscherite was refined using the Rietveld method (Rwp = 0.0317). Hielscherite is hexagonal, P63, a = 11.1178(2), c = 10.5381(2) Å, V = 1128.06(4) Å3 and Z = 2. The strongest reflections in the X-ray powder pattern [(d,Å(I)(hkl)] are: 9.62(100)(010,100); 5.551(50)(110); 4.616(37)(012,102); 3.823(64)(112); 3.436(25)(211), 2.742(38)(032,302), 2.528(37)(123,213), 2.180(35)(042,402;223). In both hielscherite and sulfite-rich thaumasite, pyramidal sulfite groups occupy the same site as trigonal carbonate groups, with analogous O sites, whereas tetrahedral sulfate groups occupy separate positions. Hielscherite is named in honour of the German mineral collector Klaus Hielscher (b. 1957).
    Print ISSN: 0026-461X
    Electronic ISSN: 1471-8022
    Topics: Geosciences
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  • 2
    Publication Date: 2012-10-01
    Description: Hielscherite, ideally Ca3Si(OH)6(SO4)(SO3)·11H2O, (IMA 2011-037) is the first ettringite-group mineral with essential sulfite. We have identified a continuous natural solid-solution series from endmember thaumasite, Ca3Si(OH)6(SO4)(CO3)·12H2O, to a composition with at least 77 mol.% endmember hielscherite. In this series, the SO3:CO3 ratio is variable, whereas the SO4 content remains constant. Compositions with more than 50 mol.% endmember hielscherite have only been found at Graulay quarry near Hillesheim in the western Eifel Mountains, Rhineland-Palatinate, where they occur with phillipsite-K, chabazite-Ca and gypsum in cavities in alkaline basalt. Sulfite-rich thaumasite has been found in hydrothermal assemblages in young alkaline basalts in two volcanic regions of Germany: it is widespread at Graulay quarry and occurs at Rother Kopf, Schellkopf and Bellerberg quarries in Eifel district; it has also been found at Zeilberg quarry, Franconia, Bavaria. Hielscherite forms matted fibrous aggregates up to 1 cm across and groups of acicular to prismatic hexagonal crystals up to 0.3 × 0.3 × 1.5 mm. Individual crystals are colourless and transparent with a vitreous lustre and crystal aggregates are white with a silky lustre. The Mohs hardness is 2–2½. Measured and calculated densities are Dmeans = 1.82(3) and Dcalc = 1.79 g cm−3. Hielscherite is optically uniaxial (−), ω = 1.494(2), ε = 1.476(2). The mean chemical composition of holotype material (determined by electron microprobe for Ca, Al, Si, and S and gas chromatography for C, H and N, with the S4+:S6+ ratio from the crystal-structure data) is CaO 27.15, Al2O3 2.33, SiO2 7.04, CO2 2.71, SO2 6.40, SO3 12.91, N2O5 0.42, H2O 39.22, total 98.18 wt.%. The empirical formula on the basis of 3 Ca atoms per formula unit is Ca3(Si0.73Al0.28)Σ1.01(OH)5.71(SO4)1.00(SO3)0.62(CO3)0.38(NO3)0.05·10.63H2O. The presence of sulfite was confirmed by crystal-structure analysis and infrared and X-ray absorption near edge structure spectra. The crystal structure of sulfite-rich thaumasite from Zeilberg quarry was solved by direct methods based on single-crystal X-ray diffraction data (R1 = 0.064). The structure of hielscherite was refined using the Rietveld method (Rwp = 0.0317). Hielscherite is hexagonal, P63, a = 11.1178(2), c = 10.5381(2) Å, V = 1128.06(4) Å3 and Z = 2. The strongest reflections in the X-ray powder pattern [(d,Å(I)(hkl)] are: 9.62(100)(010,100); 5.551(50)(110); 4.616(37)(012,102); 3.823(64)(112); 3.436(25)(211), 2.742(38)(032,302), 2.528(37)(123,213), 2.180(35)(042,402;223). In both hielscherite and sulfite-rich thaumasite, pyramidal sulfite groups occupy the same site as trigonal carbonate groups, with analogous O sites, whereas tetrahedral sulfate groups occupy separate positions. Hielscherite is named in honour of the German mineral collector Klaus Hielscher (b. 1957).
    Print ISSN: 0026-461X
    Electronic ISSN: 1471-8022
    Topics: Geosciences
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  • 3
    Publication Date: 2013-12-01
    Print ISSN: 1748-3387
    Electronic ISSN: 1748-3395
    Topics: Biology , Chemistry and Pharmacology , Physics
    Published by Springer Nature
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  • 4
    Publication Date: 2012-07-25
    Print ISSN: 0028-0836
    Electronic ISSN: 1476-4687
    Topics: Biology , Chemistry and Pharmacology , Medicine , Natural Sciences in General , Physics
    Published by Springer Nature
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  • 5
    Publication Date: 2012-10-01
    Description: Hielscherite, ideally Ca3Si(OH)6(SO4)(SO3)·11H2O, (IMA 2011-037) is the first ettringite-group mineral with essential sulfite. We have identified a continuous natural solid-solution series from endmember thaumasite, Ca3Si(OH)6(SO4)(CO3)·12H2O, to a composition with at least 77 mol.% endmember hielscherite. In this series, the SO3:CO3 ratio is variable, whereas the SO4 content remains constant. Compositions with more than 50 mol.% endmember hielscherite have only been found at Graulay quarry near Hillesheim in the western Eifel Mountains, Rhineland-Palatinate, where they occur with phillipsite-K, chabazite-Ca and gypsum in cavities in alkaline basalt. Sulfite-rich thaumasite has been found in hydrothermal assemblages in young alkaline basalts in two volcanic regions of Germany: it is widespread at Graulay quarry and occurs at Rother Kopf, Schellkopf and Bellerberg quarries in Eifel district; it has also been found at Zeilberg quarry, Franconia, Bavaria. Hielscherite forms matted fibrous aggregates up to 1 cm across and groups of acicular to prismatic hexagonal crystals up to 0.3 × 0.3 × 1.5 mm. Individual crystals are colourless and transparent with a vitreous lustre and crystal aggregates are white with a silky lustre. The Mohs hardness is 2–2½. Measured and calculated densities are Dmeas = 1.82(3) and Dcalc = 1.79 g cm–3. Hielscherite is optically uniaxial (–), ω = 1.494(2), ε = 1.476(2). The mean chemical composition of holotype material (determined by electron microprobe for Ca, Al, Si, and S and gas chromatography for C, H and N, with the S4+:S6+ ratio from the crystal-structure data) is CaO 27.15, Al2O3 2.33, SiO2 7.04, CO2 2.71, SO2 6.40, SO3 12.91, N2O5 0.42, H2O 39.22, total 98.18 wt.%. The empirical formula on the basis of 3 Ca atoms per formula unit is Ca3(Si0.73Al0.28)Σ1.01(OH)5.71(SO4)1.00(SO3)0.62(CO3)0.38(NO3)0.05·10.63H2O. The presence of sulfite was confirmed by crystal-structure analysis and infrared and X-ray absorption near edge structure spectra. The crystal structure of sulfite-rich thaumasite from Zeilberg quarry was solved by direct methods based on single-crystal X-ray diffraction data (R1 = 0.064). The structure of hielscherite was refined using the Rietveld method (Rwp = 0.0317). Hielscherite is hexagonal, P63, a = 11.1178(2), c = 10.5381(2) Å, V = 1128.06(4) Å3 and Z = 2. The strongest reflections in the X-ray powder pattern [(d, Å (I)(hkl)] are: 9.62(100)(010,100); 5.551(50)(110); 4.616(37)(012,102); 3.823(64)(112); 3.436(25)(211), 2.742(38)(032,302), 2.528(37)(123,213), 2.180(35)(042,402;223). In both hielscherite and sulfite-rich thaumasite, pyramidal sulfite groups occupy the same site as trigonal carbonate groups, with analogous O sites, whereas tetrahedral sulfate groups occupy separate positions. Hielscherite is named in honour of the German mineral collector Klaus Hielscher (b. 1957).
    Print ISSN: 0026-461X
    Electronic ISSN: 1471-8022
    Topics: Geosciences
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  • 6
    Publication Date: 2023-07-09
    Keywords: Acrocirrus sp.; Aglaophamus paramalmgreni; Ammotrypanella mcintoshi; Ampharete kerguelensis; Ampharetidae; Amphicteis vestis; Anaitides longipes; ANT-XXIV/2; Arabellidae; Aricidea antarctica; Aricidea cf. antarctica; BC; Box corer; Brania sp.; Braniella palpata; cf. Paraonis gracilis; Cirratulidae; Cossura sp.; Date/Time of event; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Elevation of event; Ephesiella sp.; Eteone aurantiaca; Eteone sculpta; Eteone sp.; Eunicidae; Euphrosine cirribranchis; Event label; Exogone sp.; Fabricia sp.; Fauveliopsis cf. challengeriae; Flabelligella sp.; Giant box corer; GKG; Glycera kerguelensis; Hesionidae; Hyboscolex equatorialis; Jasmineira crumenifera; Kefersteinia fauveli; Laonice sp.; Latitude of event; Laubieriopsis sp.; Leanira cf. hystricis; Leitoscoloplos kerguelensis; Leitoscoloplos sp.; Leodamas sp.; Longitude of event; Lumbrineris magalhaensis; Lysaretidae; Maldanidae; Maldaninae; Melinnopsis sp.; Mugga sp.; Myriochele heeri; Mystides notialis; Nereis eugeniae; Notomastus (Clistomastus) lineatus; Octobranchus antarcticus; Oligobregma collare; Oligobregma quadrispinosa; Ophelina breviata; Ophelina nematoides; Paramphinome australis; Paramphinome sp.; Pholoididae; Pionosyllis epipharynx; Polarstern; Polychaeta; Prionospio sp.; PS71/013-11; PS71/013-13; PS71/017-13; PS71/017-9; PS71/039-11; PS71/039-13; PS71/085-6; PS71/090-3; PS71 ANDEEP-SYSTCO SCACE; Pseudoscalibregma sp.; Pseudoscalibregma usarpium; Rhodine sp.; Scalibregmatidae; Scolelepis sp.; Scoloplos sp.; South Atlantic Ocean; Sphaerodoropsis parva; Sphaerodoropsis sp.; Sphaerosyllis lateropapillata uteae; Spionidae; Spiophanes sp.; Spiophanes tcherniai; Terebellidae; Terebellides aff. stroemii; Travisia kerguelensis; Trichobranchidae; Weddell Sea
    Type: Dataset
    Format: text/tab-separated-values, 712 data points
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  • 7
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    PANGAEA
    In:  Supplement to: Wilmsen, Eileen; Schüller, Myriam (2011): Diversity and distribution of Polychaeta in deep Antarctic and Subantarctic waters along the Greenwich meridian. Deep Sea Research Part II: Topical Studies in Oceanography, 58(19-20), 2004-2012, https://doi.org/10.1016/j.dsr2.2011.01.011
    Publication Date: 2023-10-28
    Description: In the course of the ANDEEP-SYSTCO project, during the ANT XXIV-2 expedition in austral summer 2007/2008, the diversity and composition of the Polychaeta of the Antarctic deep-sea and adjacent South Atlantic basins were analyzed. A total of 847 individuals of 31 families were found belonging to 86 different species. Calculation of diversity (Shannon-Wiener Index, Pielou's Evenness) and the general species composition of Polychaeta showed patterns typical for the deep sea, with high species richness and low abundances. Lowest diversity was found in the Agulhas Basin in over 4000 m water depth. Lowest Evenness was found on top of Maud Rise where one-third of all Polychaeta belonged to one species. Cluster analyses resulted in higher affinities of Maud Rise to the Agulhas Basin than to the Antarctic continental slope. Explanations are sought in similarities of environmental factors (e.g., sediment, food input).
    Keywords: Priority Programme 1158 Antarctic Research with Comparable Investigations in Arctic Sea Ice Areas; SPP1158
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 8
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Brandt, Angelika; Bathmann, Ulrich; Brix, Saskia; Cisewski, Boris; Flores, Hauke; Göcke, C; Janussen, Dorte; Krägefsky, Sören; Kruse, Svenja; Leach, Harry; Linse, Katrin; Pakhomov, Evgeny A; Peeken, Ilka; Riehl, Torben; Sauter, Eberhard-Jürgen; Sachs, Oliver; Schüller, M; Schrödl, M; Schwabe, E; Strass, Volker H; van Franeker, Jan Andries; Wilmsen, Markus (2011): Maud Rise - a snapshot through the water column. Deep Sea Research Part II: Topical Studies in Oceanography, 58(19-20), 1962-1982, https://doi.org/10.1016/j.dsr2.2011.01.008
    Publication Date: 2024-03-23
    Description: The benthic fauna was investigated during the expedition ANT-XXIV/2 (2007/08) in relation to oceanographic features, biogeochemical properties and sediment characteristics, as well as the benthic, pelagic and air-breathing fauna. The results document that Maud Rise (MR) differs distinctly from surrounding deep-sea basins investigated during previous Southern Ocean expeditions (ANDEEP 2002, 2005). Considering all taxa, the overall similarity between MR and adjacent stations was low (~20% Bray-Curtis-Similarity), and analyses of single taxa show obvious differences in species composition, abundances and densities. The composition and diversity of bivalves of MR are characterised by extremely high abundances of three species, especially the small sized Vesicomya spp. Exceptionally high gastropod abundance at MR is due to the single species Onoba subantarctica wilkesiana, a small brooder that may prey upon abundant benthic foraminiferas. The abundance and diversity of isopods also show that one family, Haplomunnidae, occurs with a surprisingly high number of individuals at MR while this family was not found at any of the 40 bathyal and abyssal ANDEEP stations. Similarly, polychaetes, especially the tube-dwelling, suspension-feeder fraction, are represented by species not found at the comparison stations. Sponges comprise almost exclusively small specimens in relatively high numbers, especially a few species of Polymastiidae. Water-column sampling from the surface to the seafloor, including observations of top predators, indicate the existence of a prospering pelagic food web. Local concentrations of top predators and zooplankton are associated with a rich ice-edge bloom located over the northern slope of MR. There the sea ice melts, which is probably accelerated by the advection of warm water at intermediate depth. Over the southern slope, high concentrations of Antarctic krill (Euphausia superba) occur under dense sea ice and attract Antarctic Minke Whales (Balaenoptera bonaerensis) and several seabird species. These findings suggest that biological prosperity over MR is related to both oceanographic and sea-ice processes. Downward transport of the organic matter produced in the pelagic realm may be more constant than elsewhere due to low lateral drift over MR.
    Keywords: AWI; Priority Programme 1158 Antarctic Research with Comparable Investigations in Arctic Sea Ice Areas; SPP1158
    Type: Dataset
    Format: application/zip, 7 datasets
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  • 9
    Publication Date: 2024-03-23
    Keywords: ANT-XXIV/2; Chlorophyta; CTD/Rosette; CTD-RO; Depth, bottom/max; Depth, top/min; DEPTH, water; Diatoms; Dinoflagellates; Haptophytes; HPLC/CHEMTAX (Mackey et al. 1996); Polarstern; PS71/039-3; PS71 ANDEEP-SYSTCO SCACE; South Atlantic Ocean
    Type: Dataset
    Format: text/tab-separated-values, 7 data points
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  • 10
    Publication Date: 2024-03-23
    Keywords: Agassiz Trawl; AGT; ANT-XXIV/2; BC; Box corer; Clione limacina antarctica; Clio pyramidata sulcata; Conorbela antarctica; Conorbela sp.; Date/Time of event; EBS; Echinospira, larvae; Epibenthic sledge; Event label; Gastropoda; Giant box corer; GKG; Iothia coppingeri; Latitude of event; Limacina helicina antarctica; Lissotesta strebeli; Longitude of event; Melanella sp.; Method/Device of event; Oenopota striatula; Onoba subantarctica wilkesiana; Polarstern; PS71/039-1; PS71/039-11; PS71/039-13; PS71/039-15; PS71/039-16; PS71/039-17; PS71 ANDEEP-SYSTCO SCACE; Rectangular midwater trawl; RMT; Scaphander sp.; South Atlantic Ocean; Spongiobranchaea australis; SUIT; Surface and under ice trawl; Toledonia striata
    Type: Dataset
    Format: text/tab-separated-values, 90 data points
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