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Journal/NDM38 2003 eng — различия между версиями
Kronrod (обсуждение | вклад) (→New Minerals and Their Varieeties: New Finds of Rare Minerals, Mineral Paragenesis) |
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− | [[File: | + | [[File:NDM38.jpg|thumb|350px|right|New Data on Minerals, vol.38, 2003]] |
− | + | '''New Data on Minerals. Volume 38, 2003''', 172 pages, 66 color photos.<br> | |
+ | |||
+ | __TOC__ | ||
<div class="mw-collapsible mw-collapsed"> | <div class="mw-collapsible mw-collapsed"> | ||
=====Summary===== | =====Summary===== | ||
Строка 17: | Строка 19: | ||
in Science M.D. Dorfman about meetings with known mineralogists and geochemists – N.A. Smoltaninov, P.P. | in Science M.D. Dorfman about meetings with known mineralogists and geochemists – N.A. Smoltaninov, P.P. | ||
Pilipenko, Yu.A. Bilibin.<br> | Pilipenko, Yu.A. Bilibin.<br> | ||
− | + | This journal is of interest for mineralogists, geochemists, geologists, staff of natural history museums, collectors, and rocks aficionados. | |
− | |||
</div> | </div> | ||
</div> | </div> | ||
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=====Editorial Board===== | =====Editorial Board===== | ||
<div class="mw-collapsible-content"> | <div class="mw-collapsible-content"> | ||
− | + | '''Editor in Chief:''' - M.I. Novgorodova - Doctor of Geology and Mineralogy, Professor<br> | |
− | + | '''Executive Editor:''' - E.A. Borisova - Ph.D. of Geology and Mineralogy<br> | |
− | + | '''Members of Editorial Board:'''<br> | |
− | + | M.D. Dorfman - Doctor of Geology and Mineralogy<br> | |
− | + | S.N. Nenasheva - Ph.D. of Geology and Mineralogy<br> | |
− | + | E.N. Matvienko - Ph.D. of Geology and Mineralogy<br> | |
− | + | M.B. Chistyakova - Ph.D. of Geology and Mineralogy<br> | |
− | + | M.E. Generalov - Ph.D. of Geology and Mineralogy<br> | |
− | + | N.A. Sokolova - Secretary | |
− | + | ||
</div> | </div> | ||
</div> | </div> | ||
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=====Publishing group===== | =====Publishing group===== | ||
<div class="mw-collapsible-content"> | <div class="mw-collapsible-content"> | ||
− | + | '''Photo''' - M.B. Leybov, M.R. Кalamkarov, B.Z. Kantor, N.A. Pekova<br> | |
− | + | '''Leader of Publishing group''' - M.B. Leybov<br> | |
− | + | '''Executive Editor''' - A.L. Cheshko<br> | |
− | + | '''Art Director''' - N.O. Parlashkevich<br> | |
− | + | '''Design (idea)''' – D. Ershov<br> | |
− | + | '''Layout''' – S.B. Dvoskina<br> | |
− | + | '''Translators''' – D. Belakovskii, Il'.Kubancev, M. Girfanov, B. Kantor, V.Zubarev<br> | |
− | + | '''English Style''' - Patricia A. S. Gray<br><br> | |
− | + | You can order the current issue or subscribe to the magazine at www.minbook.com or by email minbooks@online.ru | |
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Строка 109: | Строка 86: | ||
| Авторы = Leonid A. Pautov. | | Авторы = Leonid A. Pautov. | ||
| Название = Pabstite from the Dara-i-Pioz moraine (Tadjikistan), p. 15 - 19 | | Название = Pabstite from the Dara-i-Pioz moraine (Tadjikistan), p. 15 - 19 | ||
− | | Аннотация = Pabstite was discovered in the moraine of the | + | | Аннотация = Pabstite was discovered in the moraine of the Dara-i-Pioz glacier (Garmsky district, Tadjikistan) in a leucocratic |
rock mainly composed of microcline, quartz, and albite. Subordinated minerals are aegirine, titanite, | rock mainly composed of microcline, quartz, and albite. Subordinated minerals are aegirine, titanite, | ||
astrophyllite, bafertisite, galena, sphalerite, ilmenite, pyrochlore, fluorite, zircon, fluorapatite, and calcite. | astrophyllite, bafertisite, galena, sphalerite, ilmenite, pyrochlore, fluorite, zircon, fluorapatite, and calcite. | ||
Строка 123: | Строка 100: | ||
| Авторы = Igor V. Pekov, Nikita V. Chukanov, Natalia N. Kononkova, Dmitirii Yu. Pushcharovsky. | | Авторы = Igor V. Pekov, Nikita V. Chukanov, Natalia N. Kononkova, Dmitirii Yu. Pushcharovsky. | ||
| Название = Raremetal «zeolites» of the hilairite group, p. 20 - 33 | | Название = Raremetal «zeolites» of the hilairite group, p. 20 - 33 | ||
− | | Аннотация = | + | | Аннотация = The hilairite group includes hilairite, calciohilairite, komkovite, sazykinaite-(Y) and pyatenkoite-(Y). Their |
+ | unique structural type is based on a mixed framework of screwed chains (Si<sub>3</sub>O<sub>9</sub>) and isolated Moctahedra | ||
+ | (M = Zr, Ti, Y+Ln); large cations (Na, Ca, Ba, and subordinated K, Sr) and water molecules settle down in | ||
+ | extensive zeolitelike cages and channels. Some features of chemical composition and properties of hi - | ||
+ | lairitegroup minerals are easily explained if to consider them as specific raremetal «zeolites». | ||
+ | Hilairitegro up minerals occur in hydrothermalites of the KhibinyLovozero alkaline complex, Kola | ||
+ | Peninsula. This paper gives a review of publications on the hilairite group, describes new finds in Khibiny | ||
+ | and Lovozero massifs, gives 29 chemical analyses of these minerals, including 17 analyses made by the | ||
+ | authors. The isomorphous series hilairite – calciohilairite was established in material from Lovozero, as | ||
+ | well as BaK and Srcontaining varieties of calciohilairite. The first finds of hilairite and pyatenkoite(Y) in | ||
+ | Khibiny are described. The comparative analysis of IR spectra of all group members is given for the first time. | ||
+ | Crystal chemistry, properties and genesis of hilairitelike minerals are discussed in view of their zeolite-like | ||
+ | structure. | ||
| Файл = NDM_2003_38_Pekov_e.pdf | | Файл = NDM_2003_38_Pekov_e.pdf | ||
}}{{NDM_article | }}{{NDM_article | ||
| Авторы = Svetlana N. Nenasheva. | | Авторы = Svetlana N. Nenasheva. | ||
| Название = On the Chemical Composition of Germanite, p. 34 - 40 | | Название = On the Chemical Composition of Germanite, p. 34 - 40 | ||
− | | Аннотация = | + | | Аннотация = Germanite is a very rare mineral that commonly occurs as small segregations in association with bornite, |
+ | renierite, fahlores, sphalerite, galena, and other sulfides and sulfosalts. Very fine structures of replacement of | ||
+ | germanite for renierite are often observed. Such small segregations are difficult to study. Optical properties of | ||
+ | germanite are slightly variable in different areas and in samples from different deposits. The chemical composition | ||
+ | (concentrations of the principal elements) of germanite varies over a wide range. In addition, the mineral | ||
+ | was revealed to contain a wide set of admixtures. Therefore, different researchers propose different formulas | ||
+ | for germanite. Chemical and electron microprobe analyses of germanite, accessible in literature, were compiled | ||
+ | by the author, and peculiarities of the chemical composition of germanite were studied. It has been | ||
+ | revealed that 28 analyses from 37 ones are adequately recalculated to the formula with 66 atoms in the unit cell; | ||
+ | 6 analyses, to the formula with 64 atoms; and 3 analyses, with 68 atoms. The Me/S ratio in the analyses varies | ||
+ | from 32:32 to 34:32 and to 36:32; that is, this ratio in the real analyses is inconstant. This fact suggests that we | ||
+ | deal either with solid solutions or with three different, but similar in the chemical composition and properties, | ||
+ | minerals. The second assumption is more probable. It is concluded that there exist three mineral species close | ||
+ | to germanite in the chemical composition. | ||
| Файл = NDM_2003_38_Nenasheva_e.pdf | | Файл = NDM_2003_38_Nenasheva_e.pdf | ||
}}{{NDM_article | }}{{NDM_article | ||
| Авторы = Svetlana N. Nenasheva, Leonid A. Pautov. | | Авторы = Svetlana N. Nenasheva, Leonid A. Pautov. | ||
| Название = On Germanocolusite from Kipushi (Katanga), p. 41 - 44 | | Название = On Germanocolusite from Kipushi (Katanga), p. 41 - 44 | ||
− | | Аннотация = | + | | Аннотация = Bornite from the Kipushi ore deposit was studied in Sample 64332 from the collection of the Fersman |
+ | Mineralogical Museum. It was revealed to contain small oval inclusions of germanocolusite associated with | ||
+ | renierite, tennantite, chalcopyrite, and sphalerite. Germanocolusite from Kipushi contains slightly more Zn | ||
+ | and V and less As, as compared to germanocolusite from the type locality. A new crystallochemical formula | ||
+ | proposed for germanocolusite takes into account the isomorphism Zn<sup>2+</sup> + Ge<sup>4+</sup> → As<sup>5+</sup> + Cu<sup>+</sup>, characteristic for complex sulfides of Ge. This is the first find of germanocolusite at the Kipushi deposit. | ||
| Файл = NDM_2003_38_Nenasheva2_e.pdf | | Файл = NDM_2003_38_Nenasheva2_e.pdf | ||
}}{{NDM_article | }}{{NDM_article | ||
| Авторы = Vladimir A. Kovalenker, Olga Yu. Plotinskaya, Rustam I. Koneev. | | Авторы = Vladimir A. Kovalenker, Olga Yu. Plotinskaya, Rustam I. Koneev. | ||
| Название = Mineralogy of Epithermal Gold-Sulfide-Telluride Ores of the Kairagach Gold Deposit, (Uzbekistan), p. 45 - 56 | | Название = Mineralogy of Epithermal Gold-Sulfide-Telluride Ores of the Kairagach Gold Deposit, (Uzbekistan), p. 45 - 56 | ||
− | | Аннотация = | + | | Аннотация = The Kairagach ore deposit is situated on the northern slope of the Kurama Ridge (East Uzbekistan), 3.5 km |
+ | northeast of the wellknown Kochbulak goldtelluride ore deposit. According to specific mineralogical features | ||
+ | of the ores and hydrothermal alterations, it was assigned to the highsulfidation (or acidsulfate) type of | ||
+ | epithermal mineralization. However, in contrast to typical gold deposits of this type with a pronounced Au-Cu | ||
+ | specialization, the ores of the Kairagach deposit are characterized by the Au-Sn-Bi-Se-Te geochemical profile. | ||
+ | This paper briefly summarizes original and published data on the Kairagach deposit, including its geological | ||
+ | features and ore characteristics, sequence of the mineral formation, and the main mineral assemblages. | ||
+ | Occurrence conditions and chemical peculiarities of the essential minerals of the | ||
+ | gold-sulfide-selenide-telluride mineralization are considered. Data on the abundance and compositional variations | ||
+ | of native elements (gold, tellurium, and tin), fahlores, Bi and Sb sulfosalts, Cu and Fe sulfostannates, and | ||
+ | various selenides and tellurides are presented.<br> | ||
+ | It is shown that the unique diversity of the ore mineralization is determined by the variety of state and occurrence | ||
+ | forms (native, isomorphous, sulfide, selenide, and telluride) of their contained chemical elements. | ||
| Файл = NDM_2003_38_Kovalenker_e.pdf | | Файл = NDM_2003_38_Kovalenker_e.pdf | ||
}}{{NDM_article | }}{{NDM_article | ||
| Авторы = Margarita I. Novgorodova, Stepan N. Andreev, Alexander A. Samokhin. | | Авторы = Margarita I. Novgorodova, Stepan N. Andreev, Alexander A. Samokhin. | ||
| Название = Cavitation model of mineral microspherula formation in hydrothermal ores, p. 57 - 63 | | Название = Cavitation model of mineral microspherula formation in hydrothermal ores, p. 57 - 63 | ||
− | | Аннотация = | + | | Аннотация = The cavitation model was considered to explain mineral microspherula formation conditions in ores of |
+ | hydrothermal genesis. Microspherulas are treated as hardened and crystallized drops of melt. Thermodynamic | ||
+ | calculations of thermal energy emitted during microseconds at gas bubble contraction in boiling up | ||
+ | hydrothermal solution show that fusion of such refractory substances as quartz and gold is possible. | ||
| Файл = NDM_2003_38_Novgorodova_e.pdf | | Файл = NDM_2003_38_Novgorodova_e.pdf | ||
}} | }} | ||
Строка 151: | Строка 172: | ||
| Авторы = Tat'yana L. Evstigneeva, Vyacheslav S. Rusakov, Yurii K. Kabalov. | | Авторы = Tat'yana L. Evstigneeva, Vyacheslav S. Rusakov, Yurii K. Kabalov. | ||
| Название = Isomorphism in the minerals of stannite-family, p. 65 - 69 | | Название = Isomorphism in the minerals of stannite-family, p. 65 - 69 | ||
− | | Аннотация = | + | | Аннотация = The crystals structures of stannite group minerals and mechanism of isomorphic substitution were studied |
+ | using a complex of analytical techniques. Ten members of the kuramitestannite series, Cu<sub>3-x</sub>Fe<sub>x</sub>SnS<sub>4</sub> (0<x<1), | ||
+ | synthesized by ~0.1 formula units, pure stannite, and kesterite were chosen for this study. The methods used | ||
+ | included microprobe and profile analysis (Rietveld method), Mö ssbauer spectroscopy, scanning and transmitting | ||
+ | electron microscopy, and X-ray photoelectron spectroscopy. The intermediate members of the | ||
+ | kuramitestannite series are structurally similar homogeneous phases of tetragonal symmetry with regularly | ||
+ | changing unit cell parameters (c/a~2). According to the structural analysis, four compounds of the series | ||
+ | Cu<sub>3-x</sub>Fe<sub>x</sub>SnS<sub>4</sub> with x= 0.3, 0.6, 0.8, and 1.0 have tetragonal structures, which differ from stannite by their lower | ||
+ | symmetry <i>(I 4)</i> and distribution of atoms among tetrahedral positions.<br> | ||
+ | According to the Mö ssbauer, the compounds of this mineral group contain divalent and trivalent iron atoms. | ||
+ | Below the limiting iron atom concentration Fe (x) ~ 0.5 data shows that all Fe atoms are trivalent and occupy | ||
+ | the sulfur octahedra. At 0<x<0.5, the substitution of atoms and the change of the structural positions and atom | ||
+ | valence is carried out according to the scheme: 2Cu<sup>2+</sup>(Td) → Cu<sup>1+</sup>(Td) + (Td) + Fe<sup>3+</sup>(Oh). The formula of the | ||
+ | intermediate compounds can be expressed as | ||
+ | Cu<sup>1+</sup><sub>2</sub>Cu<sup>2+</sup><sub>1-2x</sub>Fe<sup>3+</sup><sub>x</sub>Cu<sup>1+</sup><sub>x</sub>Sn<sup>4+</sup>S<sub>4v</sub> The rend phase of this process is Cu<sup>1+</sup><sub>2.5</sub>Fe<sup>3+</sup><sub>0.5</sub>Sn<sup>4+</sup>S<sub>4</sub>. At the concentration | ||
+ | (x>0.5), the mechanism of isomorphism is different: Cu<sup>1+</sup>(T<sub>d</sub>) + Fe<sup>3+</sup>(O<sub>h</sub>) + (T<sub>dv</sub> → 2Fe<sup>2+</sup>(T<sub>d</sub>), and the end | ||
+ | phase of this process is Cu<sup>1+</sup><sub>2</sub>Fe<sup>2+</sup>Sn<sup>4+</sup>S<sub>4</sub>.<br> | ||
+ | Based on the results of the Mö ssbauer analysis, the structure of the intermediate phase Cu<sub>3-x</sub>Fe<sub>x</sub>SnS<sub>4</sub> with x~0.6 was refined. It has been shown that Fe<sup>3+</sup> atoms have octahedral coordination and occupy the positions that are | ||
+ | free in the «normal» ordered sphalerite structure.<br> | ||
+ | The Fe3+atoms (highspin state) in kesterite with low Fe content are distributed among octahedral positions, | ||
+ | which are vacant in the structure of pure Cu<sub>2</sub>ZnSnS<sub>4</sub>. This result is in good agreement with the complex scheme | ||
+ | of isomorphism in Cu<sub>3-x</sub>Fe<sub>x</sub>SnS<sub>4</sub> series. | ||
| Файл = NDM_2003_38_Evstigneeva_e.pdf | | Файл = NDM_2003_38_Evstigneeva_e.pdf | ||
}}{{NDM_article | }}{{NDM_article | ||
Строка 157: | Строка 199: | ||
| Название = Additive models of optical | | Название = Additive models of optical | ||
properties in minerals of humite polysomatic series, p. 70 - 79 | properties in minerals of humite polysomatic series, p. 70 - 79 | ||
− | | Аннотация = | + | | Аннотация = Additive models of optic properties of the MgFhumite minerals are proposed based on two schemes of structural |
+ | partition. The recent scheme of structure partition with both forsterite and sellaite layers stacking is discussed | ||
+ | and a new one with both norbergite and forsterite layers stacking is suggested. The essence of models | ||
+ | is that weighted components of partial dielectric permeability tensors, belonging to different kinds of structural | ||
+ | blocks, give an individual pays to average tensor and so they determine refractive indices of mineral. The | ||
+ | partial tensor component values were estimated by least squares procedure and the calculated refractive are | ||
+ | very close to those. Since both structure partition schemes provide a good agreement with real optical properties | ||
+ | for models constructed by them, they seem to be correct and, therefore, the humite group minerals are | ||
+ | members of a polysomatic series. | ||
| Файл = NDM_2003_38_Shkursky_e.pdf | | Файл = NDM_2003_38_Shkursky_e.pdf | ||
}} | }} | ||
+ | |||
====Mineralogical Museums and Collections==== | ====Mineralogical Museums and Collections==== | ||
{{NDM_article | {{NDM_article | ||
| Авторы = Marianna B. Chistyakova, Nina R. Budanova. Articles of Kolyvan grinding factory in the | | Авторы = Marianna B. Chistyakova, Nina R. Budanova. Articles of Kolyvan grinding factory in the | ||
| Название = Fersman Mineralogical museum of the Russian Academy of Science, p. 81 - 88 | | Название = Fersman Mineralogical museum of the Russian Academy of Science, p. 81 - 88 | ||
− | | Аннотация = | + | | Аннотация = Brief history of decorative stone discovery and stonecutting development on Altai. Description of articles of |
+ | Kolyvan grinding factory in the Museum's collection | ||
| Файл = NDM_2003_38_Chistyakova_e.pdf | | Файл = NDM_2003_38_Chistyakova_e.pdf | ||
}}{{NDM_article | }}{{NDM_article | ||
| Авторы = Marina L. Moisseeva. Petr A. | | Авторы = Marina L. Moisseeva. Petr A. | ||
| Название = Kochubei and His Mineral Collection in A.E. Fersman Mineralogical Museum, p. 89 - 98 | | Название = Kochubei and His Mineral Collection in A.E. Fersman Mineralogical Museum, p. 89 - 98 | ||
− | | Аннотация = | + | | Аннотация = The article described the history of the unique mineral collection created by the Prince P.A. Kochubei in the |
+ | nineteenth century. | ||
| Файл = NDM_2003_38_Moisseeva_e.pdf | | Файл = NDM_2003_38_Moisseeva_e.pdf | ||
}}{{NDM_article | }}{{NDM_article | ||
| Авторы = Mikhail E. Generalov. | | Авторы = Mikhail E. Generalov. | ||
| Название = Ten Taels More to the Fund of the Museum, p. 99 - 100 | | Название = Ten Taels More to the Fund of the Museum, p. 99 - 100 | ||
− | | Аннотация = | + | | Аннотация = A silver ingot from the collection of the Fersman Mineralogical Museum has turned out to be a yamb, an |
+ | ancient Chinese coin. Its description and information obtained from its marking stamps are presented. | ||
| Файл = NDM_2003_38_Generalov_e.pdf | | Файл = NDM_2003_38_Generalov_e.pdf | ||
}}{{NDM_article | }}{{NDM_article | ||
| Авторы = Dmitriy I. Belakovskiy. | | Авторы = Dmitriy I. Belakovskiy. | ||
| Название = New acquisitions of the Fersman Mineralogical Museum Russian Academy of Sciences (1997–2001), p. 101 - 112 | | Название = New acquisitions of the Fersman Mineralogical Museum Russian Academy of Sciences (1997–2001), p. 101 - 112 | ||
− | | Аннотация = | + | | Аннотация = Between 1997 and 2001, 3414 new mineral specimens were introduced into the inventories of the five major collections |
+ | of the Fersman Mineralogical Museum RAS. These specimens represent 980 different mineral species | ||
+ | from 73 countries. Among these, 372 are new species for the Museum, including 83 that were discovered during | ||
+ | this period. Museum staff members discovered sixteen of these. Three of the new species were discovered | ||
+ | in previously cataloged museum pieces that were acquired as other minerals. Of the minerals obtained, 93 are | ||
+ | either type specimens or fragments of type specimens. By the end of 2001 the number of valid mineral species | ||
+ | in the Museum fund reach 2700. Of the newly acquired items, 1197 were donated by 230 persons and by | ||
+ | 12 organizations; 610 specimens were collected by the Museum staff, 600 were exchanged, 334 bought, 521 registered | ||
+ | from previously collected materials, and 152 were obtained in other ways. A review of the new acquisitions | ||
+ | is presented by mineral species, geography, acquisition type and source. The review is accompanied by a | ||
+ | list of new species for the Museum along with a want list. | ||
| Файл = NDM_2003_38_Belakovskiy_e.pdf | | Файл = NDM_2003_38_Belakovskiy_e.pdf | ||
}}{{NDM_article | }}{{NDM_article | ||
| Авторы = Alexander A. Evseev. | | Авторы = Alexander A. Evseev. | ||
| Название = Geographical Location of Mineral Type Localities, p. 113 - 124 | | Название = Geographical Location of Mineral Type Localities, p. 113 - 124 | ||
− | | Аннотация = | + | | Аннотация = An inventory of mineral type localities at which more than three new mineral species were discovered (nearly |
+ | 200 sites over the world) has been compiled. Their geographical locations have been refined (the coordinates | ||
+ | are presented) using the multimedia Microsoft Encarta2001 World Atlas. Examples of the earliest (regarding | ||
+ | the year of the publication) and last finds of new minerals are presented for each of the type localities. These | ||
+ | data can be used for expansion of museum collections at the expense of additions of type specimens. | ||
| Файл = NDM_2003_38_Evseev_e.pdf | | Файл = NDM_2003_38_Evseev_e.pdf | ||
}}{{NDM_article | }}{{NDM_article | ||
| Авторы = Leo V. Bulgak. | | Авторы = Leo V. Bulgak. | ||
| Название = Archive of the Mineralogical Museum: replensishment of collection in 1909–1914., p. 125 - 128 | | Название = Archive of the Mineralogical Museum: replensishment of collection in 1909–1914., p. 125 - 128 | ||
− | | Аннотация = | + | | Аннотация = Information on replenishment of Museum’s collections in 1909–1914 based on the study of archival sources. |
| Файл = NDM_2003_38_Bulgak_e.pdf | | Файл = NDM_2003_38_Bulgak_e.pdf | ||
}}{{NDM_article | }}{{NDM_article | ||
Строка 195: | Строка 263: | ||
| Название = The role of A.E. Fersman in the Mineralogical museum | | Название = The role of A.E. Fersman in the Mineralogical museum | ||
of the Russian Academy of Science, p. 129 - 134 | of the Russian Academy of Science, p. 129 - 134 | ||
− | | Аннотация = | + | | Аннотация = The paper portrays Academician A.E. Fersman as one of the founders and supporters of the Mineralogical |
+ | Museum in Moscow; he guided the museum to form a new research center here. | ||
| Файл = NDM_2003_38_Pavlova_e.pdf | | Файл = NDM_2003_38_Pavlova_e.pdf | ||
}}{{NDM_article | }}{{NDM_article | ||
| Авторы = Vyacheslav D.Dusmatov. A.E. | | Авторы = Vyacheslav D.Dusmatov. A.E. | ||
| Название = Fersman's contribution to the systenatic collection of the mineralogical museum of the Russian Academy of Sciences, p. 135 - 141 | | Название = Fersman's contribution to the systenatic collection of the mineralogical museum of the Russian Academy of Sciences, p. 135 - 141 | ||
− | | Аннотация = | + | | Аннотация = The geography of A.E.Fersman’s mineralogical collections, including samples surrendered to the systematic |
+ | collection of the Mineralogical Museum of the Russian Academy of Sciences is described. | ||
| Файл = NDM_2003_38_Dusmatov_e.pdf | | Файл = NDM_2003_38_Dusmatov_e.pdf | ||
}} | }} | ||
+ | |||
====Mineralogical Notes==== | ====Mineralogical Notes==== | ||
{{NDM_article | {{NDM_article | ||
| Авторы = Boris Z. Kantor. | | Авторы = Boris Z. Kantor. | ||
| Название = Photographing Minerals, p. 143 - 146 | | Название = Photographing Minerals, p. 143 - 146 | ||
− | | Аннотация = | + | | Аннотация = For art or technical photographing minerals in non-professional conditions, high quality of medium magnifications |
+ | can be ensured by means of miniature single lens reflex (SLR) cameras of general use and ordinary | ||
+ | photographic materials. To apply longfocus macro lenses and avoid diaphragm excessive closing is recommended. | ||
+ | To reproduce morphological features of a mineral, flexible and multi-functional artificial lighting is | ||
+ | necessary. For negatives, daylight film in combination with light-conversion filter is recommended. | ||
+ | Adequate reproducing of mineral complicated color involves accurate matching of color temperatures and | ||
+ | selection of light sources, preferably halogen lowpower cold-light lamps, corresponding the given combination | ||
+ | of photographic material and colorconversion filter. | ||
| Файл = NDM_2003_38_Kantor_e.pdf | | Файл = NDM_2003_38_Kantor_e.pdf | ||
}}{{NDM_article | }}{{NDM_article | ||
| Авторы = Moisei D. Dorfman. | | Авторы = Moisei D. Dorfman. | ||
| Название = Reminiscences, p. 147 - 151 | | Название = Reminiscences, p. 147 - 151 | ||
− | | Аннотация = | + | | Аннотация = The veteran research worker of the A.E. Fersman Mineralogical Museum, Russian Academy of Sciences, |
+ | described his meetings with N.A. Smolyaninov, P.P. Pilipenko, and Yu.A. Bilibin, prominent mineralogists and | ||
+ | geologists. | ||
| Файл = NDM_2003_38_Dorfman_e.pdf | | Файл = NDM_2003_38_Dorfman_e.pdf | ||
}}{{NDM_article | }}{{NDM_article | ||
| Авторы = | | Авторы = | ||
| Название = Book reviews, p. 152 | | Название = Book reviews, p. 152 | ||
− | | Аннотация = | + | | Аннотация = |
| Файл = NDM_2003_38_reviews_e.pdf | | Файл = NDM_2003_38_reviews_e.pdf | ||
}} | }} |
Текущая версия на 17:21, 1 июня 2020
New Data on Minerals. Volume 38, 2003, 172 pages, 66 color photos.
Содержание
[убрать]Summary
Editorial Board
Publishing group
Сontent
New Minerals and Their Varieeties: New Finds of Rare Minerals, Mineral Paragenesis
Atali A. Agakhanov, Leonid A. Pautov, Dmitriy I. Belakovskiy, Elena V. Sokolova, Frank C. Hawthorne.
Telyushenkoite CsNa6[Be2(Si,Al,Zn)18O39F2] – a new cesium mineral of the leifite group, p. 5 - 8
Nikita V. Chukanov, Viktor.V. Subbotin, Igor V. Pekov, Aleksandr E. Zadov, Anatoliy I. Tsepin,
Kseniya A. Rozenberg, Ramiza K. Rastsvetaeva, Giovanni Ferraris.
NeskevaaraiteFe, – Fe, NaK3Fe(Ti,Nb)4(Si4O12)2(O,OH)4.6H2O – a new labuntsovite group mineral, p. 9 - 14
Leonid A. Pautov.
Pabstite from the Dara-i-Pioz moraine (Tadjikistan), p. 15 - 19
Igor V. Pekov, Nikita V. Chukanov, Natalia N. Kononkova, Dmitirii Yu. Pushcharovsky.
Raremetal «zeolites» of the hilairite group, p. 20 - 33
Svetlana N. Nenasheva.
On the Chemical Composition of Germanite, p. 34 - 40
Svetlana N. Nenasheva, Leonid A. Pautov.
On Germanocolusite from Kipushi (Katanga), p. 41 - 44
Vladimir A. Kovalenker, Olga Yu. Plotinskaya, Rustam I. Koneev.
Mineralogy of Epithermal Gold-Sulfide-Telluride Ores of the Kairagach Gold Deposit, (Uzbekistan), p. 45 - 56
Margarita I. Novgorodova, Stepan N. Andreev, Alexander A. Samokhin.
Cavitation model of mineral microspherula formation in hydrothermal ores, p. 57 - 63
Crystal Chemistry, Minerals as Prototypes of New Materials, Physical and Chemical Properties of Minerals
Tat'yana L. Evstigneeva, Vyacheslav S. Rusakov, Yurii K. Kabalov.
Isomorphism in the minerals of stannite-family, p. 65 - 69
Boris B. Shkursky.
Additive models of optical
properties in minerals of humite polysomatic series, p. 70 - 79
Mineralogical Museums and Collections
Marianna B. Chistyakova, Nina R. Budanova. Articles of Kolyvan grinding factory in the
Fersman Mineralogical museum of the Russian Academy of Science, p. 81 - 88
Marina L. Moisseeva. Petr A.
Kochubei and His Mineral Collection in A.E. Fersman Mineralogical Museum, p. 89 - 98
Mikhail E. Generalov.
Ten Taels More to the Fund of the Museum, p. 99 - 100
Dmitriy I. Belakovskiy.
New acquisitions of the Fersman Mineralogical Museum Russian Academy of Sciences (1997–2001), p. 101 - 112
Alexander A. Evseev.
Geographical Location of Mineral Type Localities, p. 113 - 124
Leo V. Bulgak.
Archive of the Mineralogical Museum: replensishment of collection in 1909–1914., p. 125 - 128
Tat'yana M. Pavlova.
The role of A.E. Fersman in the Mineralogical museum
of the Russian Academy of Science, p. 129 - 134
Vyacheslav D.Dusmatov. A.E.
Fersman's contribution to the systenatic collection of the mineralogical museum of the Russian Academy of Sciences, p. 135 - 141
Mineralogical Notes