About This Item
densidade de vapor
1.05 (vs air)
pressão de vapor
37.95 atm ( 21.1 °C)
temperatura de autoignição
881 °F
Lim. expl.
13 %
concentração
10 ppm in nitrogen
pb
−88 °C (lit.)
pf
−172 °C (lit.)
densidade
0.362 g/mL at 20 °C (lit.)
cadeia de caracteres SMILES
CC
InChI
1S/C2H6/c1-2/h1-2H3
chave InChI
OTMSDBZUPAUEDD-UHFFFAOYSA-N
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Aplicação
For calibrating analytical instruments.
Embalagem
Packaged in lightweight no-return cylinder
Produtos recomendados
Control valve Z166995 or regulator Z167002 is recommended.
Certificados de análise (COA)
Busque Certificados de análise (COA) digitando o Número do Lote do produto. Os números de lote e remessa podem ser encontrados no rótulo de um produto após a palavra “Lot” ou “Batch”.
Já possui este produto?
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The Journal of chemical physics, 136(20), 204309-204309 (2012-06-07)
Two-body Coulomb explosion processes of ethane (CH(3)CH(3)) and its isotopomers (CD(3)CD(3) and CH(3)CD(3)) induced by an intense laser field (800 nm, 1.0 × 10(14) W/cm(2)) with three different pulse durations (40 fs, 80 fs, and 120 fs) are investigated by
Environmental science & technology, 46(17), 9282-9289 (2012-08-03)
We use historical and new atmospheric trace gas observations to refine the estimated source of methane (CH(4)) emitted into California's South Coast Air Basin (the larger Los Angeles metropolitan region). Referenced to the California Air Resources Board (CARB) CO emissions
Molecules (Basel, Switzerland), 17(4), 4661-4671 (2012-04-24)
The energy change on each Occupied Molecular Orbital as a function of rotation about the C-C bond in ethane was studied using the B3LYP, mPWB95 functional and MP2 methods with different basis sets. Also, the effect of the ZPE on
Journal of the American Chemical Society, 134(36), 14635-14637 (2012-08-24)
Absolute ethylene/ethane separation is achieved by ethane exclusion on silver-exchanged zeolite A adsorbent. This molecular sieving type separation is attributed to the pore size of the adsorbent, which falls between ethylene and ethane kinetic diameters.
Nature, 488(7412), 490-494 (2012-08-24)
After methane, ethane is the most abundant hydrocarbon in the remote atmosphere. It is a precursor to tropospheric ozone and it influences the atmosphere's oxidative capacity through its reaction with the hydroxyl radical, ethane's primary atmospheric sink. Here we present
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