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Erbium

Erbium

CAS #: 7440-52-0

Molecular Formula: Er

EC No.: 231-160-1

                
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Product Details

Erbium metal, silver white metal; Melting point 1497 ° C, boiling point 2868 ° C, density 9.006g/cm3; Erbium is Antiferromagnetism at low temperature, strong ferromagnetic near Absolute zero, and superconductor. Erbium is slowly oxidized by air and water at room temperature. Erbium(III) oxide is rose red.

Applications:

1. Neutron absorption control material for nuclear reactor.

2. Activators for certain fluorescent materials.


Product Series

Product

Product Code

Security Data

Technical Data

Erbium  Metal  99.9%

ET-ErM-01

Erbium.pdf

Erbium  99.9%.pdf


Erbium  Metal 99.99%

ET-ErM-02

Erbium  99.99%.pdf


Properties (Theoretical)

Molecular Weight

382.56

Appearance

Silvery

Melting Point

1497℃

Boiling Point

2868℃

Density

9066kg/m³

Resistivity

107.0 microhm-cm @ 25 °C

Electronegativity

1.2 Paulings

Fusion Heat

4.10 Cal/gm mole

Heat of Vaporization

67 K-Cal/gm atom at 2863 °C

Poisonby

0.237

Specific Heat

0.0401 Cal/g/K @ 25 °C

Tensile Strength

N/A

Thermal Conductivity

0.145 W/cm/K @ 298.2 K

Thermal Expansion

(rt) (poly) 12.2 µm/(m·K)

Vickers Hardness

589MPa

Young's Modulus

69.9 GPa


Health & Safety Information

Signal Word

Danger

Risk Statement

N/A

Dangerous Code

F

Preventive Instructions

P210-P222-P231+P323-P370+P378-P422-P501

Flash Point

Not applicable

Risk Code

N/A

Safety Statement

N/A

RTECS Number

N/A

Transportation Information

UN 2813 4.3/PG 1

WGK Germany

3

GHS Pictogram

2022092752933053.png


Packaging Specifications:

Standard packaging: 50 kg/drum, 500 kg/pallet, ton bags

Sample packaging: 500 g/bag, 1 kg/bottle





Erbium
About Lanthanum Metal

After separating erbium from other rare earth elements through ion exchange or solvent extraction technology, metallic erbium can be prepared by metal thermal reduction method. The lithium thermal reduction of rare earth chlorides is different from the Calciothermic reaction of rare earth chlorides. The reduction process of the former is carried out in the gas phase. The lithium thermal reduction reactor is divided into two heating zones, and the reduction and distillation processes are carried out in the same equipment. Anhydrous Erbium(III) chloride is placed in the upper titanium reactor crucible (also known as ErCl3 Still room), the reducing agent lithium is placed in the lower crucible, and then the stainless steel reaction tank is vacuumized to 7Pa before heating. When the temperature reaches 1000 ℃, maintain for a certain period of time to allow ErCl3 vapor to fully react with lithium vapor, and the reduced metal erbium solid particles fall into the lower crucible. After the reduction reaction is completed, only heat the lower crucible and distill LiCl into the upper crucible. The reduction reaction process usually takes about 10 hours. In order to obtain purer metal erbium, the reducing agent metal lithium needs to use 99.97% high-purity lithium and anhydrous ErCl3 from secondary distillation.