Lithium Hydroxid

Lithium Hydroxide with Industrial Grade Technical Grade CAS 1310-65-2

 

  • Inoa mea kūʻai:Lithium Hydroxide
  • Papa:Industrial Grade
  • Nā waiwai:Pauda keʻokeʻo
  • Hoʻopili:50kg/bag
  • MOQ:1 ton
  • Waihona:Wahi Maloo Puanu
  • Ola ola:2 makahiki


Nā kikoʻī

Nā huaʻōlelo

Hōʻike huahana

 

Lithium hydroxide monohydrate can be used as a raw material for preparing lithium compounds. It can also be used in metallurgy, petroleum, glass, ceramics and other industries. Battery-grade lithium hydroxide monohydrate is mainly used in the preparation of cathode materials for lithium-ion batteries, and it can also be used as an additive for alkaline battery electrolytes. Photographic developer, preparation of lithium salt, production of alcohol to resin, catalyst. Reagent for the decomposition of oxides and silicates.

 

Hōʻike Huahana

 

Nā hiʻohiʻona

 

  1. Produce nickel-hydrogen battery, nickel-cadmium battery, lithium battery and other high-purity lithium-included compounds.
    2. Used for the production of grease, alkaline batteries, corrosion-resisting zinc pigment.
    3. Used as carbon dioxide absorber.

 

Palapala noi

 

Lithium hydroxide can be used as developing agent and lubricating oil for spectral analysis. The additive of alkaline battery electrolyte can increase the electric capacity by 12% to 15% and increase the service life by 2 to 3 times.
It can be used as an absorbent for carbon dioxide and can purify the air in submarines.
The chemical equation is: 2LiOH(s)+CO2(g)=Li2CO3(s)+H2O(l).
It is used to make lithium salt and lithium-based grease, electrolyte of alkaline battery, absorption liquid of lithium bromide refrigerator, etc.; used in petroleum, chemical industry, light industry, nuclear industry, etc. When used in alkaline batteries, the aluminum content is not more than 0.06%, and the lead content is not more than 0.01%. It is used as an analytical reagent, a photographic developer, and also in the manufacture of lithium; it is used as a raw material for the preparation of lithium compounds. It can also be used in metallurgy, petroleum, glass, ceramics and other industries.

 

 

Nā pono

 

Loaʻa iā mākou nā hale hana kiʻekiʻe me ka pilina hohonu, hiki iā ia ke hāʻawi iā ʻoe i nā huahana kiʻekiʻe a me nā kumukūʻai hoʻokūkū. A hiki iā mākou ke hāʻawi i nā uku no nā kūʻai nui. A ke hui pū nei mākou me nā ʻoihana lawe ukana ʻoihana he nui, hiki ke hāʻawi i nā huahana me ka palekana a me ka maʻalahi i kou mau lima. ʻO ka manawa hoʻouna ma kahi o 3-20 mau lā ma hope o ka hōʻoia ʻana o ka uku.

 

Hōʻike

 

Parameters
Hōʻike
Nā hualoaʻa
Ka nana aku
Pauda keʻokeʻo
Hoʻohālike
Purity
≥99%
Hoʻohālike
Na
≤0.05%
Hoʻohālike
K
≤0.05%
Hoʻohālike
Ca
≤0.01%
Hoʻohālike
Fe
≤0.005%
Hoʻohālike
Cl
≤0.005%
Hoʻohālike
SO4
≤0.05%
Hoʻohālike
CO2
≤1.5%
Hoʻohālike
H2O
≤0.5%
Hoʻohālike
Ka hopena
Comply to the enterprise standard

 

 

ʻIke huahana:

 

Appearance and features white crystal powder molecular weight 23.95
pH(1mol/L) 14 Solubility Soluble in water, slightly soluble in ethanol
melting point 471.2ºC molecular formula LiOH

Chemical properties
It is easy to absorb carbon dioxide and moisture in the air, but the absorption capacity is slightly worse than that of NaOH and KOH. Lithium hydroxide has the general property of alkali, and the following reactions can occur.  


1. alkaline reaction
It can make purple litmus test solution blue and colorless phenolphthalein to turn red; and its concentrated solution can denature phenolphthalein after experimental verification, so that the solution changes from red to colorless (similar to concentrated NaOH).
2. neutralized with acid
HCl+LiOH=LiCl+H2O
3. Reacts with acidic oxides
2LiOH+CO2=Li2CO3+H2O (this reaction is used to absorb carbon dioxide in aerospace)
4. Reacts with metal salt solutions
FeCl3+3LiOH=Fe(OH)3↓+3LiCl

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Inā makemake ʻoe i kā mākou huahana, hiki iā ʻoe ke koho e waiho i kāu ʻike ma aneʻi, a e hoʻopili koke mākou iā ʻoe.


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