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Flammable High Purity Gases Hydrogen Gas H2 Semiconductor Industry
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Product Details
Brand Name: | Newradar | Place of Origin: | China | Model Number: | N/A |
Product Description
Certification:ISO/DOT/GB
Flammable High Purity Gases Hydrogen Gas H2 Semiconductor Industry
Description:
Hydrogen is a chemical element with chemical symbol H and atomic number 1. At standard temperature and pressure, hydrogen is a colorless, odorless, tasteless, non-toxic, nonmetallic, highly combustible diatomic gas with the molecular formula H2.
Hydrogen gas is highly flammable and will burn in air at a very wide range of concentrations between 4% and 75% by volume. Hydrogen gas forms explosive mixtures with air in concentrations from 4–74% and with chlorine at 5–95%. The explosive reactions may be triggered by spark, heat, or sunlight.
Pure hydrogen-oxygen flames emitultraviolet light and with high oxygen mix are nearly invisible to the naked eye, as illustrated by the faint plume of the Space Shuttle Main Engine, compared to the highly visible plume of a Space Shuttle Solid Rocket Booster, which uses anammonium perchlorate composite. The detection of a burning hydrogen leak may require a flame detector; such leaks can be very dangerous.
Hydrogen flames in other conditions are blue, resembling blue natural gas flames. The destruction of the Hindenburg airship was an notorious example of hydrogen combustion and the cause is still debated. The visible orange flames in that incident were the result of a rich mixture of hydrogen to oxygen combined with carbon compounds from the airship skin. H2 reacts with every oxidizing element. Hydrogen can react spontaneously and violently at room temperature withchlorine and fluorine to form the corresponding hydrogen halides, hydrogen chloride and hydrogen fluoride, which are also potentially dangerous acids.
While H2 is not very reactive under standard conditions, it does form compounds with most elements. Hydrogen can form compounds with elements that are more electronegative, such as halogens, or oxygen; in these compounds hydrogen takes on a partial positive charge. When bonded to fluorine, oxygen, or nitrogen, hydrogen can participate in a form of medium-strength noncovalent bonding with the hydrogen of other similar molecules, a phenomenon called hydrogen bonding that is critical to the stability of many biological molecules. Hydrogen also forms compounds with less electronegative elements, such as metals and metalloids, where it takes on a partial negative charge. These compounds are often known as hydrides.
Specifications:
1. Physical properties
Commodity | High purity hydrogen gas |
Molecular Formula | H2 |
UN No. | UN1049 |
CAS No. | 1333-74-0 |
Hazardous class for transort | 2.2 |
2. Typical technical data (COA)
Contents | Pure Hydrogen Gas | High Purity Hydrogen Gas | High Purity Hydrogen Gas |
Hydrogen (%) | ≥99.99 | ≥99.999 | ≥99.9999 |
Impurity (ppmv) | Limit | ||
CO/10-6 | ≤5 | ≤1 | ≤0.2 |
CO2/10-6 | ≤5 | ≤1 | ≤0.2 |
N2/10-6 | ≤60 | ≤5 | ≤2 |
H2O/10-6 | ≤30 | ≤3 | ≤5 |
O2/10-6 | ≤5 | ≤1 | ≤0.5 |
CH4/10-6 | ≤10 | ≤1 | ≤0.1 |
3. Package
Cylinder Size |
Cylinder Content (m3) |
Gauge Pressure (bar) |
Outlet Connection |
8ltr | 1 | 100bar | According to the valve type |
40ltr | 5.5 | 135bar | According to the valve type |
44ltr | 6 | 150bar | CGA580 |
47ltr | 7 | 165bar | CGA580 |
Other sizes are also available |
Applications: