Feedstocks of the Terrestrial Planets

Richard W. Carlson1, Ramon Brasser2, Qing-Zhu Yin3, Mario Fischer-Gödde4, Liping Qin5
Space Science Reviews 2018 214:121 Link to Article [DOI: 10.1007/s11214-018-0554-x]
1Department of Terrestrial MagnetismCarnegie Institution for ScienceWashingtonUSA
2Earth Life Science InstituteTokyo Institute of TechnologyTokyoJapan
3Department of Earth and Planetary SciencesUniversity of California, DavisDavisUSA
4Institut für Geologie und MineralogieUniversity of CologneCologneGermany
5CAS Key Laboratory of Crust-Mantle Materials and EnvironmentUniversity of Science and Technology of ChinaHefeiChina

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Calibrating NIST SRM 683 as a new international reference standard for Zn isotopes

1,2Yang, Y., 2Zhang, X., 3Liu, S.-A., 4Zhou, T., 4Fan, H., 2Yu, H., 1,2Cheng, W., 2Huang, F.
Journal of Analytical Atomic Spectroscopy 33, 1777-1783 Link to Article [DOI: 10.1039/c8ja00249e]
1State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, Nanjing, 210008, China
2School of Earth and Space Sciences, University of Science and Technology of China, Hefei, Anhui 230026, China
3State Key Laboratory of Geological Process and Mineral Resources, China University of Geosciences, Beijing, 100083, China
4State Key Laboratory of Ore Deposit Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang, Guizhou 550081, China

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Morphology of sulfide minerals in some ordinary chondrites

1Hontsova, S.S., 2Danilenko, I.A., 2Yakovlev, G.A., 2Petrova, E.V., 1Maksimova, E.M., 1Nauhatsky, I.A.
AIP Conference Proceedings 2015, 020029 Link to Article [DOI: 10.1063/1.5055102]
1Department of Theoretical Physics and Solid State, Institute of Physical – Technical, Crimean Federal University, Simferopol, 295007, Russian Federation
2Department of Physical Techniques and Devices for Quality Control, Institute of Physics and Technology, Ural Federal University, Ekaterinburg, 620002, Russian Federation

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X-ray powder diffraction study of the stability of clathrate hydrates in the presence of salts with relevance to the Martian cryosphere

1,2Emmal Safi, 2Stephen P.Thompson, 1Aneurin Evans, 2Sarah J.Day, 2Claire A.Murray, 2Annabelle R.Baker, 1Joana M.Oliveira, 1Jacco Th.van Loon
Geochimica et Cosmochimica Acta (in Press) Link to Article [https://doi.org/10.1016/j.gca.2018.10.034]
1Astrophysics Group, Lennard-Jones Laboratories, Keele University, Keele, Staffordshire, ST5 5BG, UK
2Diamond Light Source, Harwell Science and Innovation Campus, Didcot, Oxfordshire, OX11 0DE, UK
Copyright Elsevier

Water on the present day Martian surface is thought to exist in two thermally distinct sub-surface reservoirs: as ice in the cryosphere and as groundwater located deeper in the crust. These sub-surface environments are thought to contain saline, rather than pure, water and laboratory studies on whether or not clathrate hydrates can form in such environments are lacking. We fill this gap by performing synchrotron radiation X-ray powder diffraction to investigate the formation and evolution of clathrate hydrates in weak chloride solutions at CO2 pressures, and over temperature ranges, that are similar to those found in the Martian regolith. We have found that clathrate hydrates can form under conditions relevant to the Martian cryosphere, despite the presence of chloride salts. We find that the dissociation temperatures for CO2 clathrate hydrates formed in saline solutions are depressed by 10–20 K relative to those formed in pure water, depending on the nature of the salt and the CO2 pressure. We suggest that the inhibiting effect that salts such as MgCl2, CaCl2 and NaCl have on clathrate hydrate formation could also be related to the salts’ effect on the formation of the low temperature phase of ice. However, despite the inhibiting effect of the salts, we conclude that the presence of clathrate hydrates should still be possible under conditions likely to exist within the Martian cryosphere.

Improved Chandrayaan-1 M3 data: A northwest portion of the Aristarchus Plateau and Contiguous maria

1Yu.Shkuratov, 1Ye.Surkov, 2M.Ivanov, 1V.Korokhin, 1V.Kaydash, 3G.Videen, 4C.Pieters, 1D.Stankevich
Icarus (in Press) Link to Article [https://doi.org/10.1016/j.icarus.2018.11.002]

1V.N. Karazin Kharkiv National University, 35 Sumska St, Kharkiv, 61022, Ukraine
2V.I. Vernadsky Institute of Geochemistry and Analytical Chemistry, Russian Academy of Sciences, 19, Kosygin st., 119991 Moscow, Russia
3Space Science Institute, 4750 Walnut St. Suite 205, Boulder CO 80301, USA
4Department of Earth, Environmental and Planetary Sciences, Brown University, Providence, RI 02912, USA
Copyright Elsevier

We provide and test a method to obtain significant improvement of available Chandrayaan-1 M3 data. The advance is achieved using the Gaussian λ-convolution of spectra and Fourier filtration of images. The main result is imagery of the reflectance across different wavelengths as well as parameters of 1 μm and 2 μm absorption bands with unprecedented quality. This approach can be particularly useful for further investigations using M3 data, since it produces improved imagery of various lunar surface characteristics. We studied a region comprising a portion of the Aristarchus Plateau, Montes Agricola, and a small part of the mare surface in Ocean Procellarum to the north of Montes Agricola. We found that the lava flows in the area between the Aristarchus Plateau and Montes Agricola have a chemical/mineral composition different in comparison with mare areas to the northwest of the ridge Montes Agricola. We also identified distinct spectral properties of morphologically young craters located on the plateau and mare surface. A correlation diagram for positions of the minima of the 1 μm and 2 μm bands allows a cluster analysis of the region, and we map areas associated with a cluster corresponding to pyroclastic glasses. Relationships between geologic and spectral parameter maps were established.

An analysis of orthopyroxene from Tsarev L5 meteorite using X-ray diffraction, magnetization measurement and Mössbauer spectroscopy

1Maksimova, A.A., 2Kamalov, R.V., 1,3Chukin, A.V., 4Felner, I., 1Oshtrakh, M.I.
Journal of Molecular Structure 1174, 6-11 Link to Article [DOI: 10.1016/j.molstruc.2018.06.040]
1Department of Experimental Physics, Institute of Physics and Technology, Ural Federal University, Ekaterinburg, 620002, Russian Federation
2Department of Rare Metals and Nanomaterials, Institute of Physics and Technology, Ural Federal University, Ekaterinburg, 620002, Russian Federation
3Department of Theoretical Physics and Applied Mathematics, Institute of Physics and Technology, Ural Federal University, Ekaterinburg, 620002, Russian Federation
4Racah Institute of Physics, The Hebrew University, Jerusalem, 91904, Israel

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The curious case of the rock at Venera 8

1J. Gregory Shellnutt
Icarus (in Press) Link to Article [https://doi.org/10.1016/j.icarus.2018.11.001]
1National Taiwan Normal University, Department of Earth Sciences, 88 Tingzhou Road Section 4, Taipei 11677, Taiwan
Copyright Elsevier

The surface rock composition measured by gamma (γ)-ray spectrometry at the Venera 8 landing site has anomalously high Th (6.5 ± 2.2 ppm) and U (2.2 ± 0.7 ppm) concentrations with respect to the material analyzed at other landing sites (Vega 1, Vega 2, Venera 9, Venera 10). A calculated bulk rock composition of Venera 8, constrained by the measured Th, U and K2O (4.0 ± 1.2 wt%) contents, is similar to silicic to intermediate rocks (diorite/granodiorite) that are typical of terrestrial convergent margins (magnesian, calc-alkalic). In this study, major and trace elemental modeling is applied in order to determine if the calculated whole rock composition of Venera 8 can be derived from a parental magma composition similar to Venusian basalt. The modeling results indicate that polybaric fractional crystallization of a hydrous (H2O = 0.4 wt%) and relatively oxidizing (ΔFMQ +0.7) parental composition similar to Venera 14 can yield residual silicic liquids that match the calculated Venera 8 whole rock composition. The measured Th and U concentrations can also be reproduced within the data uncertainty. Although Venus lacks modern Earth-style plate tectonics, magnesian, calc-alkalic compositions are common within Archean greenstone belts and some rift settings (Haida Gwaii). Consequently, it is possible that the Venera 8 probe encountered a fragment of crust that resembles a terrestrial greenstone belt.

Development of X-ray Generator for Active X-ray Fluorescence Spectroscopy of Future Lunar Landing Mission and Its Contribution to Lunar Science

1Hiroshi NAGAOKA, 1,2Nobuyuki HASEBE, 2Masayuki NAITO, 1Eido SHIBAMURA, 1Haruyoshi KUNO, 2Miho MIZONE, 3Kyeong Ja KIM
TRANSACTIONS OF THE JAPAN SOCIETY FOR AERONAUTICAL AND SPACE SCIENCES, AEROSPACE TECHNOLOGY JAPAN 16, 137-142 Link to Article [https://doi.org/10.2322/tastj.16.137]
1Research Institute for Science and Engineering, Waseda University
2Schools of Advanced Science and Engineering, Waseda University
3Korean Institute of Geoscience and Mineral Resources (KIGAM)

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Beryllium-boron relative sensitivity factors for melilitic glasses measured with a NanoSIMS ion microprobe

1Kohei Fukuda, 2Wataru Fujiya, 1Hajime Hiyagon, 3Yoshiki Makino, 1Naoji Sugiura, 1Naoto Takahata, 3Takafumi Hirata,4Yuji Sano
Geochemical Journal 52, 255-262 Link to Article [https://doi.org/10.2343/geochemj.2.0510]
1Department of Earth and Planetary Science, The University of Tokyo
2College of Science, Ibaraki University
3Geochemical Research Center, The University of Tokyo
4Atmosphere and Ocean Research Institute, The University of Tokyo

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