Минералогический Музей им. А.Е. Ферсмана
Москва, Ленинский проспект 18 корпус 2,
тел. (495) 954-39-00
  • Intro banner1.jpg
  • Intro banner2.jpg
  • Intro banner3.jpg
  • Intro banner1a.jpg
  • Intro banner2a.jpg
  • Intro banner3a.jpg
  • Intro banner4.jpg
  • Intro banner5.jpg
  • Intro banner6.jpg
  • Intro banner2b.jpg
  • Intro banner3b.jpg
  • Intro banner7.jpg
  • Intro banner8.jpg
  • Intro banner9.jpg
  • Intro banner10.jpg
  • Intro banner11.jpg

Journal/NDM38 2003 eng — различия между версиями

(New Minerals and Their Varieeties: New Finds of Rare Minerals, Mineral Paragenesis)
 
(не показано 7 промежуточных версий 1 участника)
Строка 1: Строка 1:
[[File:pictures/novosti/oblojka1sm.jpg|newdata38.jpg|thumb|350px|right|New Data on Minerals, vol.38, 2003]]
+
[[File:NDM38.jpg|thumb|350px|right|New Data on Minerals, vol.38, 2003]]
<b>New Data on Minerals.</b>Moscow.: Ocean Pictures, 2003. volume 38, 172 pages, 66 color photos.  
+
'''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>
The volume is of interest for mineralogists, geochemists, geologists, and to museum curators, collectors and amateurs
+
This journal is of interest for mineralogists, geochemists, geologists, staff of natural history museums, collectors, and rocks aficionados.
of minerals.
 
 
</div>
 
</div>
 
</div>
 
</div>
Строка 25: Строка 26:
 
=====Editorial Board=====
 
=====Editorial Board=====
 
<div class="mw-collapsible-content">
 
<div class="mw-collapsible-content">
*Editor in Chief Margarita I .Novgorodova, Doctor in Science, Professor
+
'''Editor in Chief:''' - M.I. Novgorodova - Doctor of Geology and Mineralogy, Professor<br>
*Editor in Chief of the volume: Elena A.Borisova, Ph.D
+
'''Executive Editor:''' - E.A. Borisova - Ph.D. of Geology and Mineralogy<br>
*Moisei D. Dorfman, Doctor in Science
+
'''Members of Editorial Board:'''<br>
*Svetlana N. Nenasheva, Ph.D
+
M.D. Dorfman - Doctor of Geology and Mineralogy<br>
*Marianna B. Chistyakova, Ph.D
+
S.N. Nenasheva - Ph.D. of Geology and Mineralogy<br>
*Elena N. Matvienko, Ph.D
+
E.N. Matvienko - Ph.D. of Geology and Mineralogy<br>
*Мichael Е. Generalov, Ph.D
+
M.B. Chistyakova - Ph.D. of Geology and Mineralogy<br>
*N.A.Sokolova Secretary
+
M.E. Generalov - Ph.D. of Geology and Mineralogy<br>
*Patricia A. S. Gray, English Style
+
N.A. Sokolova - Secretary
*Translators: Dmitrii Belakovskii, Michael Girfanov, Boris Kantor, Il'ya Kubancev, Victor Zubarev
+
 
 
</div>
 
</div>
 
</div>
 
</div>
Строка 41: Строка 42:
 
=====Publishing group=====
 
=====Publishing group=====
 
<div class="mw-collapsible-content">
 
<div class="mw-collapsible-content">
*Photo: Michael B. Leibov
+
'''Photo''' - M.B. Leybov, M.R. Кalamkarov, B.Z. Kantor, N.A. Pekova<br>
*Michael R. Кalamkarov
+
'''Leader of Publishing group''' - M.B. Leybov<br>
*Boris Z. Kantor
+
'''Executive Editor''' - A.L. Cheshko<br>
*Natalia A. Pekova
+
'''Art Director''' - N.O. Parlashkevich<br>
*Leader of publishing group Michael B. Leibov
+
'''Design (idea)''' – D. Ershov<br>
*Executive Editor Ludmila А. Cheshko (Еgorova)
+
'''Layout''' – S.B. Dvoskina<br>
*Art Director Nikolay О. Parlashkevich
+
'''Translators''' – D. Belakovskii, Il'.Kubancev, M. Girfanov, B. Kantor, V.Zubarev<br>
*Design Dmitrii Ershov
+
'''English Style''' - Patricia A. S. Gray<br><br>
*Layout Sophia B. Dvoskina
+
You can order the current issue or subscribe to the magazine at www.minbook.com or by email minbooks@online.ru
<b>Library of Congress Cataloging-in-Publication Data<b><br>
+
 
Novye dannye o mineralakh. English.<br>
 
New data on minerals / [edited by Margarita I. Novgorodova].-- [1st American pbk. ed.].<br>
 
p. cm.<br>
 
At head of title: Russian Academy of Science, Fersman Mineralogical Museum.<br>
 
Includes bibliographical references.<br>
 
ISBN 5900395502 (pbk.)<br>
 
1. Mineralogy. I. Novgorodova, M. I. (Margarita Ivanovna) II. Mineralogicheskiæi muzeæi im. A.E. Fersmana. III. Title.<br>
 
QE351.N68 2003<br>
 
549--dc22<br>
 
2003016532<br>
 
Authorized for printing by the Fersman Mineralogical Museum of the Russian Academy of Science<br>
 
© Text, photo, drawings, Fersman Mineralogical Museum Russian Academy of Science, 2003<br>
 
© Design, Ocean Pictures, 2003<br>
 
<i>Published by</i> Fersman Mineralogical Museum RAS <br>
 
Bld. 18/2 Leninsky Prospekt, Moscow, 117071, Russia <br>
 
phone (7495) 9520067; fax (7495) 9524850<br>
 
email: mineral@fmm.ru; www.fmm.ru<br>
 
Ocean Pictures Ltd <br>
 
4871 S. Dudley St., Littleton<br>
 
CO 80123, USA<br>
 
tel/fax (303) 9042726 <br>
 
phone/fax (7495) 2033574 <br>
 
email: minbooks@online.ru; www.minbook.com<br>
 
<b>Printed in Russia</b><br>
 
 
</div>
 
</div>
 
</div>
 
</div>
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 DaraiPioz glacier (Garmsky district, Tadjikistan) in a leucocratic
+
| 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, vol.38, 2003

New Data on Minerals. Volume 38, 2003, 172 pages, 66 color photos.

развернуть
Summary
развернуть
Editorial Board
развернуть
Publishing group

Сontent

New Minerals and Their Varieeties: New Finds of Rare Minerals, Mineral Paragenesis

развернуть

Pdf icon.pngAtali 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



развернуть

Pdf icon.pngNikita 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



развернуть

Pdf icon.pngLeonid A. Pautov. Pabstite from the Dara-i-Pioz moraine (Tadjikistan), p. 15 - 19



развернуть

Pdf icon.pngIgor V. Pekov, Nikita V. Chukanov, Natalia N. Kononkova, Dmitirii Yu. Pushcharovsky. Raremetal «zeolites» of the hilairite group, p. 20 - 33



развернуть

Pdf icon.pngSvetlana N. Nenasheva. On the Chemical Composition of Germanite, p. 34 - 40



развернуть

Pdf icon.pngSvetlana N. Nenasheva, Leonid A. Pautov. On Germanocolusite from Kipushi (Katanga), p. 41 - 44



развернуть

Pdf icon.pngVladimir A. Kovalenker, Olga Yu. Plotinskaya, Rustam I. Koneev. Mineralogy of Epithermal Gold-Sulfide-Telluride Ores of the Kairagach Gold Deposit, (Uzbekistan), p. 45 - 56



развернуть

Pdf icon.pngMargarita 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

развернуть

Pdf icon.pngTat'yana L. Evstigneeva, Vyacheslav S. Rusakov, Yurii K. Kabalov. Isomorphism in the minerals of stannite-family, p. 65 - 69



развернуть

Pdf icon.pngBoris B. Shkursky. Additive models of optical properties in minerals of humite polysomatic series, p. 70 - 79



Mineralogical Museums and Collections

развернуть

Pdf icon.pngMarianna B. Chistyakova, Nina R. Budanova. Articles of Kolyvan grinding factory in the Fersman Mineralogical museum of the Russian Academy of Science, p. 81 - 88



развернуть

Pdf icon.pngMarina L. Moisseeva. Petr A. Kochubei and His Mineral Collection in A.E. Fersman Mineralogical Museum, p. 89 - 98



развернуть

Pdf icon.pngMikhail E. Generalov. Ten Taels More to the Fund of the Museum, p. 99 - 100



развернуть

Pdf icon.pngDmitriy I. Belakovskiy. New acquisitions of the Fersman Mineralogical Museum Russian Academy of Sciences (1997–2001), p. 101 - 112



развернуть

Pdf icon.pngAlexander A. Evseev. Geographical Location of Mineral Type Localities, p. 113 - 124



развернуть

Pdf icon.pngLeo V. Bulgak. Archive of the Mineralogical Museum: replensishment of collection in 1909–1914., p. 125 - 128



развернуть

Pdf icon.pngTat'yana M. Pavlova. The role of A.E. Fersman in the Mineralogical museum of the Russian Academy of Science, p. 129 - 134



развернуть

Pdf icon.pngVyacheslav 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

развернуть

Pdf icon.pngBoris Z. Kantor. Photographing Minerals, p. 143 - 146



развернуть

Pdf icon.pngMoisei D. Dorfman. Reminiscences, p. 147 - 151