Zirconium-hydride is a chemical formula ZrH2, with a density of 5.6g/cm3, melt before decomposition, and generates heat of 39.7kcal/mol. It is prepared in the same way as titanium hydride.
Purity: 99%
Particle Size: 325 mesh
Zirconium Hydroide ZrH2 powder:
ZrH2 is the hydride zirconium. Its density is 5.6g/cm3. After melting, heat 39.7kcal/mol forms. You prepare it with titanium hydrogenated. This temperature is usually 900 degrees C. You can dilute zirconium hydrofluoric or ethanol in it. These compounds have severe reactions with acids, oxidants, and water.
A stable liquid, zirconium hydrofluoride fluid is also stable. The air and water can be stable in normal conditions. Although zirconium is susceptible to being oxidized and strongly acidic, it can burn well under ignition and can decompose in vacuum between 300 and 700 degrees C.
L. zirconium hydroide shows an alloy that is bonded to zirconium, hydrogen. Hydrogen can be used as a hardening ingredient to avoid dislocations in zirconia’s atomic lattices. You can control the hardness, durability, and strength of the resulting hydrogenide by altering the hydrogen/hydride ratio (precipitation phase). Although zirconium can be harder and stronger than zirconium due to its hydrogen content, it is less tougher than zirconium. If you are interested in purchasing Zirconium Hydroide ZrH2 powder bulk, please send us an inquiry.
Zirconium Hydride Powder CAS 7704-99-6:
The powder can be used in normal circumstances to keep it stable. It can react violently to strong acids or oxidants. It ignites quickly and then begins to decay at 300°C in a vacuum.
How Zirconium Hyide ZrH2 Pulver is produced?
This metal reacts with hydrogen to create zirconium hydrochloride. To make zirconium hydrogen liquid, we heated sponge metallic zirconium (purity 99.8%) to high purity hydrogen (99.999%). It is an exothermic reaction. It can occur even at room temperatures. Uniform integral hydrogenation can usually be achieved through annealing for several hours up to several weeks at temperatures between 400 and 600 degrees C. Even in high vacuums, the zirconium-hydrogenide found in air at room temperature will quickly oxidize. It is possible to ignore oxidation effects caused by oxygen diffusion through the nano-thin oxide layers. You can also reduce zirconium oxide at 600°C in a hydrogen stream to obtain zirconium-hydride.
Zirconiumhydride ZrH2 Pulver:
The pure powder zirconium hydroide can be used to hydrogenate powder metals and absorb dust in vacuum tubes. Zirconium hydroide can be used in vacuum systems to create a barrier between ceramics and metals.
For industrial purposes, zirconium hydroide can be used to make fireworks, flux, and other ingredients.
ZrH2 has many uses in powder metal metallurgy. Another use is as a fuel, or fireworks explosions.
Zirconium Hydride is an effective reducing agent. As an additive, you can use it. It is possible to prepare desoxicide or desulfurization agents during the production of iron alloy.
Mixing nitride and carbonized calcium carbon dioxide can create a metallic coating.
Because ceramics are susceptible to infiltration, zirconium serves as an adhesive metal-ceramic for ceramic tubes and devices.
Zirconium hydroide is also useful as an agent for neutron reduction, an atomic energy station, other material or a suction agent.
Zirconium Hydroide ZrH2 Pulver Storage:
Wet reunions can adversely affect ZrH2’s dispersion and usage effects. Zirconiumhydride ZrH2 should be stored in vacuum bags and kept dry. Additionally, ZrH2 powder must be kept away from stress.
Shipping and Packing of Zirconium Hydroide ZrH2 powder:
The amount of Zirconium Hydroide ZrH2 powder is a factor in the variety of packing options.
Zirconium Hydride ZrH2 Powder packaging:vacuum packing 100g to 500g or one kg/bag 25kg/barrel and as per your request
Zirconium Hydride ZrH2 Pulp shipping: Could be sent out by air or sea as soon after receipt of payment.
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Other Titles |
Zirconium(II) hydride, Dihydridozirconium, zirconium(2+) dihydride, ZrHx, ZrH, CAS 15457-96-2 (ZrH4), CAS 13940-37-9 (ZrH), zirconium-hydrogen alloy |
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7704-99-6 |
Compound Formula |
ZrH2 |
Molecular Weight |
93.24 |
Appearance |
Black powder to dark gray |
Melting Point |
N/A |
Solubility In Water |
N/A |
Density |
5.56 g/cm3 |
Purity |
99.00% |
Particle Size |
325mesh |
Boling Point |
N/A |
Specific Heat |
N/A |
Thermo Conductivity |
N/A |
Thermal Expansion |
N/A |
Young’s Module |
N/A |
Exact |
91.920354 |
Monoisotopic |
91.920354 D |
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Safety Notice |
Danger |
Hazard Statements |
H228-H315-H319-H335 |
Flashing Point |
N/A |
Hazard Codes |
F |
Risk Codes |
11-36/37/38 |
Safety statements |
24/25-43-7/8 |
RTECS # |
ZH8015000 |
Transport Information |
UN 1437 4.1/PG2 |
WGK Germany |
3 |
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