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Pantellerite
Pantellerite

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Pantellerite vs Dolomit

1 Definition
1.1 definisi
pantellerite punika rhyolite peralkaline. wis wesi luwih lan komposisi aluminium ngisor saka comendite
dolomite punika rock sedimentary ngemot luwih saka 50 persen saka dolomite Mineral dening bobot
1.2 Sajarah
1.2.1 asal
Selat saka sisilia
Alps kidul, prancis
1.2.2 panemu
Dingertèni
dolomieu
1.3 Etimologi
saka Pantelleria, pulo vulkanik ing selat saka sisilia
saka french, saka jeneng dolomieu (1750-1801), geologis french sing ditemokaké rock ing
1.4 kelas
batuan beku
rocks sedimentary
1.4.1 sub-kelas
awet rock, hard rock
awet rock, medium atose rock
1.5 kulawarga
1.5.1 group
vulkanik
ora ditrapake
1.6 kategori liyane
rock grained nggoleki, rock opaque
rock grained coarse, rock grained nggoleki, medium rock grained, rock opaque
2 Tekstur
2.1 tektur
eutaxitic
earthy
2.2 werna
greenish peteng - werna abu-abu
ireng, coklat, wernane, ijo, grey, pink, putih
2.3 pangopènan
kurang
kurang
2.4 kekiatan
awet
awet
2.4.1 banyu tahan
81% Igneous Rocks rocks have it !
59% Sedimentary Rocks rocks have it !
2.4.2 ngeruk tahan
86% Igneous Rocks rocks have it !
62% Sedimentary Rocks rocks have it !
2.4.3 rereged tahan
66% Igneous Rocks rocks have it !
43% Sedimentary Rocks rocks have it !
2.4.4 angin tahan
49% Igneous Rocks rocks have it !
38% Sedimentary Rocks rocks have it !
2.4.5 asam tahan
48% Igneous Rocks rocks have it !
22% Sedimentary Rocks rocks have it !
2.5 katon
dilapisi lan foliated
glassy utawa pearly
3 Kagunaane
3.1 arsitektur
3.1.1 Efesus interior
durung digunakake
aggregates hiasan, homes, interior
3.1.2 Efesus njaba
durung digunakake
Taman hiasan, bangunan kantor
3.1.3 Efesus arsitektur liyane
durung digunakake
durung digunakake
3.2 industri
3.2.1 industri construction
na
minangka flux ing produksi wesi baja lan babi, minangka agen sintering ing industri baja kanggo proses biji wesi, minangka watu ukuran, Pabrik semen, kanggo dalan kanthi jumlah ongko, nggawe semen alam, Pabrik Magnesium lan dolomite refractories, produksi kaca lan keramik, serves minangka rock lenga lan reservoir gas
3.2.2 industri medical
durung digunakake
dijupuk minangka tambahan kanggo calcium utawa Magnesium
3.3 Efesus jaman
artefak, reca
artefak, perhiasan, monumen, reca, figurines cilik
3.4 Panggunaan sanès
3.4.1 komersial
nggawe kriya
reservoir lenga lan gas, tambahan feed kanggo ternak, gemstone, flux Metallurgical, produksi jeruk, kondisioner lemah, sumber magnesia (MgO)
4 Jinis
4.1 jinis
ignimbrite pantelleritic
boninite lan jasperoid
4.2 fitur
isi fe dhuwur
tuan rumah rock kanggo timbal, traps kanggo cairan njero kaya lenga lan gas alam., seng lan tembaga celengan
4.3 pinunjul arkeologi
4.3.1 monumen
durung digunakake
used
4.3.2 monumen misuwur
ora ditrapake
data ora kasedhiya
4.3.3 reca
durung digunakake
used
4.3.4 patung misuwur
ora ditrapake
data ora kasedhiya
4.3.5 Pictographs
ora digunakake
used
4.3.6 petroglyphs
ora digunakake
used
4.3.7 figurines
durung digunakake
used
4.4 fosil
absen
saiki
5 Tatanan
5.1 tatanan
pantellerite punika, hard rock nggoleki-grained kang jinis metasomatite, ateges ngrubah basalt. iku formulir karo utawa tanpa crystallization, salah siji ngisor permukaan minangka rocks intrusive utawa ing lumahing minangka rocks extrusive.
rocks dolomite sing Originally setor minangka kalsit utawa aragonite watu gamping sugih, nanging sak proses diagenesis, ing kalsit utawa aragonite wis rubah menyang dolomite.
5.2 komposisi
5.2.1 isi Mineral
amphibole, Feldspar, ilmenite
mineral lempung, pyrite, quartz, sulfides
5.2.2 senyawa isi
al, fe
NaCl, cao, karbon dioksida, Magnesium karbonat, MgO
5.3 transformasi
5.3.1 metamorphism
97% Igneous Rocks rocks have it !
19% Sedimentary Rocks rocks have it !
5.3.2 jinis metamorphism
metamorphism kakubur, metamorphism cataclastic
metamorphism kakubur, metamorphism cataclastic, kontak metamorphism
5.3.3 cuaca
99% Igneous Rocks rocks have it !
78% Sedimentary Rocks rocks have it !
5.3.4 jinis udan
udan biologi, udan kimia
ora ditrapake
5.3.5 erosi
92% Igneous Rocks rocks have it !
86% Sedimentary Rocks rocks have it !
5.3.6 jinis erosi
erosi kimia, erosi gisik, erosi Glacier, erosi segara, banyu erosi, angin erosi
ora ditrapake
6 Properties
6.1 fisik
6.1.1 atose
6-7
3.5-4
6.1.2 ukuran gandum
grained nggoleki
medium kanggo nggoleki coarse grained
6.1.3 rengat
sub-conchoidal
conchoidal
6.1.4 tilas
dingerteni
putih
6.1.5 porosity
kurang keropos
kurang keropos
6.1.6 luster
earthy
vitreous lan mutiyara
6.1.7 kekuatan compressive
Flint
ora Sumadhiya
Rank: N/A (Overall)
140.00 n / mm 2
Rank: 15 (Overall)
Obsidian
ADD ⊕
6.1.8 cleavage
conchoidal
sampurna
6.1.9 kateguhan
2
1
6.1.10 tartamtu gravitasi
ora Sumadhiya
2.8-3
6.1.11 transparan
tembus kanggo opaque
transparent kanggo Translucent
6.1.12 Kapadhetan
ora Sumadhiya
2.8-2.9 g / cm 3
6.2 situs termal
6.2.1 kapasitas panas tartamtu
tatanan wesi ba..
ora Sumadhiya
Rank: N/A (Overall)
0.92 kj / kg k
Rank: 10 (Overall)
Granulite
ADD ⊕
6.2.2 resistance
tahan panas
tahan panas, meksa tahan, nyandhang tahan
7 Cadangan
7.1 celengan ing bawana wétan
7.1.1 asia
China, India
China, India
7.1.2 africa
Angola, Egypt, Madagascar, Namibia, Nigeria
Morocco, Namibia
7.1.3 europe
germany, iceland, ireland, italy, spain, united kingdom
austria, italy, romania, spain, Swiss
7.1.4 wong
durung ketemu
durung ketemu
7.2 celengan ing bawana kulon
7.2.1 lor amerika
Canada, USA
Mexico, USA
7.2.2 kidul amerika
Argentina, Bolivia, Brazil, Colombia, Ecuador
Brazil, Colombia
7.3 celengan ing Oseania bawana
7.3.1 australia
Central Australia, Queensland, Western Australia
New South Wales, Queensland, Yorke Peninsula