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| boxwidth =
| boxwidth =
| boxbgcolor =
| boxbgcolor =
| image = Massicot.jpg
| image = File:Massicot-177335.jpg
| imagesize =
| imagesize = 260px
| alt =
| alt =
| caption = Massicot, Cerro Gordo Mine, [[Inyo County, California]]
| caption = Massicot from the Monte Cristo mine, Goodsprings District, Clark County, Nevada (size: 5.0 x 4.0 x 4.0 cm)
| category = [[Oxide minerals]]
| category = [[Oxide mineral]]
| formula = PbO
| formula = [[PbO]]
| IMAsymbol = Msi<ref>{{Cite journal|last=Warr|first=L.N.|date=2021|title=IMA–CNMNC approved mineral symbols|journal=Mineralogical Magazine|volume=85|issue=3 |pages=291–320|doi=10.1180/mgm.2021.43 |bibcode=2021MinM...85..291W |s2cid=235729616 |doi-access=free}}</ref>
| strunz = 04.AC.25
| dana =
| symmetry =
| unit cell =
| molweight =
| molweight =
| color =
| strunz = 4.AC.25
| dana =
| system = [[Orthorhombic]]
| class = Dipyramidal (mmm) <br/>[[H-M symbol]]: (2/m 2/m 2/m)
| symmetry = ''Pbcm''
| unit cell = a = 5.4903&nbsp;Å, b = 5.892&nbsp;Å, <br/>c = 4.752&nbsp;Å; Z&nbsp;=&nbsp;4
| color = Yellow may have a red tint
| colour =
| colour =
| habit =
| habit = Scaly as incrustations, massive
| system =
| twinning =
| twinning =
| cleavage =
| cleavage = Distinct on {100} and {010}
| fracture =
| fracture = Flexible
| tenacity =
| tenacity =
| mohs =
| mohs = 2
| luster =
| luster = Greasy to dull
| streak =
| streak = Yellow
| diaphaneity =
| diaphaneity = Translucent
| gravity =
| gravity = 9.642 calculated
| density =
| density =
| polish =
| polish =
| opticalprop =
| opticalprop = Biaxial (+)
| refractive = n<sub>α</sub> = 2.510 n<sub>β</sub> = 2.610 n<sub>γ</sub> = 2.710
| refractive =
| birefringence =
| birefringence = δ = 0.200
| pleochroism =
| pleochroism = Y = light sulfur-yellow; Z = deep yellow
| 2V =
| 2V = Measured: 90°, calculated: 86°
| dispersion =
| dispersion = Strong
| extinction =
| extinction =
| length fast/slow =
| length fast/slow =
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| prop1 =
| prop1 =
| prop1text =
| prop1text =
| references = <ref>[https://www.mineralienatlas.de/lexikon/index.php/MineralData?mineral=Massicot Mineralienatlas]</ref><ref name=HBM>[http://rruff.geo.arizona.edu/doclib/hom/massicot.pdf Mineral data publishing - PDF]</ref><ref name=Webmin>[http://www.webmineral.com/data/Massicot.shtml Webmineral data]</ref><ref name=Mindat>[http://www.mindat.org/show.php?id=2587&ld=1&pho= Mindat with location data]</ref>
| references =
}}
}}


'''Massicot''' is [[lead(II) oxide]] in an [[orthorhombic crystal system|orthorhombic lattice structure]].
'''Massicot''' is [[Lead(II) oxide|lead (II)]] [[oxide mineral]] with an [[orthorhombic crystal system|orthorhombic lattice structure]].
Lead(II) oxide (formula: PbO) can occur in one of two lattice formats, [[orthorhombic crystal system|orthorhombic]] and [[tetragonal crystal system|tetragonal]]. The red tetragonal form is called [[litharge]]. PbO can be changed from massicot to litharge (or vice versa) by controlled heating and cooling. At room temperature massicot forms soft ([[Mohs hardness]] of 2) yellow to reddish-yellow, earthy, scaley masses which are very dense, with a [[specific gravity]] of 9.64. Massicot can be found as a natural mineral, though it is only found in minor quantities. In bygone centuries it was mined. Nowadays massicot arises during industrial processing of lead and lead oxides,<ref>A simple example is given in [https://books.google.com/books?id=PpTi_JAx7PgC&dq=massicot&pg=PA383 ''A Text Book of Inorganic Chemistry''], by Anil Kumar De, year 2007, page 383. A more complex example is in [https://books.google.com/books?id=rPzaMRjK8pQC&dq=massicot&pg=PA115 ''The Chemistry of Metal Alkoxides''], published by Kluwer Academic Publishers, year 2002, section 9.4 on lead alkoxides, page 115.</ref> especially in the glass industry, which is the biggest user of PbO.

Lead(II) oxide is also called lead monoxide and also called PbO. PbO molecules can occur in one of two lattice formats, [[orthorhombic crystal system|orthorhombic]] and [[tetragonal crystal system|tetragonal]]. The tetragonal form of PbO is called [[litharge]]. PbO can be changed from massicot to litharage (or vice versa) by controlled heating and cooling. At room temperature massicot forms soft ([[Mohs hardness]] of 2) yellow to reddish-yellow, earthy, scaley masses which are very dense, with a [[specific gravity]] of 9.64. Massicot can be found as a natural mineral in the Earth, though it is not common. In bygone centuries it was mined. Nowadays massicot arises during industrial processing of lead and lead oxides,<ref>A simple example is given in [http://books.google.co.uk/books?id=PpTi_JAx7PgC&lpg=PA383&dq=massicot&pg=PA383#v=onepage&f=false ''A Text Book of Inorganic Chemistry''], by Anil Kumar De, year 2007, page 383. A more complex example is in [http://books.google.co.uk/books?id=rPzaMRjK8pQC&lpg=PA115&dq=massicot&pg=PA115#v=onepage&q=massicot&f=false ''The Chemistry of Metal Alkoxides''], published by Kluwer Academic Publishers, year 2002, section 9.4 on lead alkoxides, page 115.</ref> especially in the glass industry, which is the biggest user of PbO.


The definition of massicot as orthorhombic PbO dates from the 1840s, but the substance massicot and the name massicot has been in use since the late medieval era.<ref>Some comments about the evolution of the definition of the word massicot over the past few centuries is in [http://books.google.co.uk/books?id=ZL4OAAAAQAAJ&pg=PA16&lpg=PA16&dq=massicot#v=onepage&q=massicot&f=false ''Lead Manufacturing in Britain: A History''], by David John Rowe, year 1983, page 16. The word is in Italian and French in the late medieval era meaning naturally occurring massicot and in some records more vaguely a lead-based ceramics glaze that may or may not have been massicot.</ref> There is some evidence that the ancient Romans used the substance.<ref>[http://books.google.co.uk/books?id=7VMVguiMmY0C&pg=PA172&lpg=PA172&dq=massicot&hl=en#v=onepage&q&f=false ''Archaeomineralogy''], by George Robert Rapp, year 2002, page 173, says three lead oxides were known to the ancient Romans: [[Minium (mineral)|minium]], litharge, and massicot.</ref>
The definition of massicot as orthorhombic PbO dates from the 1840s,<ref name=Mindat/> but the substance massicot and the name massicot has been in use since the late medieval era.<ref>Some comments about the evolution of the definition of the word massicot over the past few centuries is in [https://books.google.com/books?id=ZL4OAAAAQAAJ&dq=massicot&pg=PA16 ''Lead Manufacturing in Britain: A History''], by David John Rowe, year 1983, page 16. The word is in Italian and French in the late medieval era meaning naturally occurring massicot and in some records more vaguely a lead-based ceramics glaze that may or may not have been massicot.</ref> There is some evidence that the ancient Romans used the substance.<ref>[https://books.google.com/books?id=7VMVguiMmY0C&dq=massicot&pg=PA172 ''Archaeomineralogy''], by George Robert Rapp, year 2002, page 173, says three lead oxides were known to the ancient Romans: [[Minium (mineral)|minium]], litharge, and massicot.</ref>


It may occur as an [[oxidation]] product of other lead-bearing minerals such as [[galena]], [[bournonite]], [[boulangerite]], either naturally or in industrial processing. When massicot is found in a natural environment, some other minerals that may be found with it may include [[cerussite]], litharge, [[Minium (mineral)|minium]], [[wulfenite]], [[valentinite]] and [[limonite]].<ref name=HBM/>
==See also==
*[[Lead(II) oxide]]


==References==
==References==
{{reflist}}
{{reflist}}
* Palache, C., H. Berman, and C. Frondel (1944) Dana’s system of mineralogy, (7th edition), v. I, 516–517
* Palache, C., H. Berman, and C. Frondel (1944) Dana’s system of mineralogy, (7th edition), v. I, 516–517
*[http://www.webmineral.com/data/Massicot.shtml Webmineral data]
*[http://www.mindat.org/show.php?id=2587&ld=1&pho= Mindat with location data]
*[http://rruff.geo.arizona.edu/doclib/hom/massicot.pdf Mineral data publishing - PDF]


[[Category:Oxide minerals]]
[[Category:Oxide minerals]]
[[Category:Lead minerals]]
[[Category:Lead minerals]]
[[Category:Alchemical substances]]
[[Category:Alchemical substances]]
[[Category:Orthorhombic minerals]]
[[Category:Minerals in space group 57]]


{{oxide-mineral-stub}}
{{oxide-mineral-stub}}

Latest revision as of 10:21, 17 March 2023

Massicot
Massicot from the Monte Cristo mine, Goodsprings District, Clark County, Nevada (size: 5.0 x 4.0 x 4.0 cm)
General
CategoryOxide mineral
Formula
(repeating unit)
PbO
IMA symbolMsi[1]
Strunz classification4.AC.25
Crystal systemOrthorhombic
Crystal classDipyramidal (mmm)
H-M symbol: (2/m 2/m 2/m)
Space groupPbcm
Unit cella = 5.4903 Å, b = 5.892 Å,
c = 4.752 Å; Z = 4
Identification
ColorYellow may have a red tint
Crystal habitScaly as incrustations, massive
CleavageDistinct on {100} and {010}
FractureFlexible
Mohs scale hardness2
LusterGreasy to dull
StreakYellow
DiaphaneityTranslucent
Specific gravity9.642 calculated
Optical propertiesBiaxial (+)
Refractive indexnα = 2.510 nβ = 2.610 nγ = 2.710
Birefringenceδ = 0.200
PleochroismY = light sulfur-yellow; Z = deep yellow
2V angleMeasured: 90°, calculated: 86°
DispersionStrong
References[2][3][4][5]

Massicot is lead (II) oxide mineral with an orthorhombic lattice structure. Lead(II) oxide (formula: PbO) can occur in one of two lattice formats, orthorhombic and tetragonal. The red tetragonal form is called litharge. PbO can be changed from massicot to litharge (or vice versa) by controlled heating and cooling. At room temperature massicot forms soft (Mohs hardness of 2) yellow to reddish-yellow, earthy, scaley masses which are very dense, with a specific gravity of 9.64. Massicot can be found as a natural mineral, though it is only found in minor quantities. In bygone centuries it was mined. Nowadays massicot arises during industrial processing of lead and lead oxides,[6] especially in the glass industry, which is the biggest user of PbO.

The definition of massicot as orthorhombic PbO dates from the 1840s,[5] but the substance massicot and the name massicot has been in use since the late medieval era.[7] There is some evidence that the ancient Romans used the substance.[8]

It may occur as an oxidation product of other lead-bearing minerals such as galena, bournonite, boulangerite, either naturally or in industrial processing. When massicot is found in a natural environment, some other minerals that may be found with it may include cerussite, litharge, minium, wulfenite, valentinite and limonite.[3]

References

[edit]
  1. ^ Warr, L.N. (2021). "IMA–CNMNC approved mineral symbols". Mineralogical Magazine. 85 (3): 291–320. Bibcode:2021MinM...85..291W. doi:10.1180/mgm.2021.43. S2CID 235729616.
  2. ^ Mineralienatlas
  3. ^ a b Mineral data publishing - PDF
  4. ^ Webmineral data
  5. ^ a b Mindat with location data
  6. ^ A simple example is given in A Text Book of Inorganic Chemistry, by Anil Kumar De, year 2007, page 383. A more complex example is in The Chemistry of Metal Alkoxides, published by Kluwer Academic Publishers, year 2002, section 9.4 on lead alkoxides, page 115.
  7. ^ Some comments about the evolution of the definition of the word massicot over the past few centuries is in Lead Manufacturing in Britain: A History, by David John Rowe, year 1983, page 16. The word is in Italian and French in the late medieval era meaning naturally occurring massicot and in some records more vaguely a lead-based ceramics glaze that may or may not have been massicot.
  8. ^ Archaeomineralogy, by George Robert Rapp, year 2002, page 173, says three lead oxides were known to the ancient Romans: minium, litharge, and massicot.
  • Palache, C., H. Berman, and C. Frondel (1944) Dana’s system of mineralogy, (7th edition), v. I, 516–517