HF / Hydrofluoric Acid for Dissolve Oxides

HF / Hydrofluoric Acid for Dissolve Oxides

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Min.Order:1 Piece

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0 Piece / Pieces per Month
Payment Terms:
T/T L/C D/P D/A
Delivery Detail:
7 days

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Brand Name:
KUNHAI
Place of Origin:
China
Model Number:
HF

Guangzhou Kunhai Trading Co.,Ltd

Business Type: Trading Company
Main Products: Mineral Fluorspar

Product Details

Delivery Time:WITHIN 25DAYS AFTER GOT LC OPENED NOTICE OR RECEIVED ADVANCE PAYMENT
Certification:SGS,GB 7744-1998
HF / Hydrofluoric Acid for Dissolve Oxides

Specifications:

ELEMENTS

SUPERIOR

GRADE I

GRADE II

HF-40

HF-40

HF-55

HF-60

HF-40

HF-55

HF-60

HF-%min

40

40

55

60

40

55

60

H2SiF6-%max

0.02

0.2

0.5

0.5

0.6

1.0

1.0

H2SO4-%max

0.02

0.05

0.08

0.1

0.6

0.8

1.0

Fe-%max

0.005

0.01

--

--

--

--

--

Description:


Hydrofluoric acid (HF) is a solution of hydrogen fluoride in water. It is a valued source of fluorine and is a precursor to numerous pharmaceuticals such as fluoxetine (Prozac) and diverse materials such as PTFE (Teflon).
Hydrofluoric acid is a highly corrosive acid, capable of dissolving many materials, especially oxides. Its ability to dissolve glass has been known since the 17th century, even before hydrofluoric acid had been prepared in large quantities by Carl Wilhelm Scheele in 1771.[2] Because of its high reactivity toward glass and moderate reactivity toward many metals, hydrofluoric acid is usually stored in plasticcontainers (although PTFE is slightly permeable to it).
Hydrogen fluoride gas is an acute poison that may immediately and permanently damage lungs and the corneas of the eyes. Aqueous hydrofluoric acid is a contact-poison with the potential for deep, initially painless burns and ensuing tissue death. By interfering with body calcium metabolism, the concentrated acid may also cause systemic toxicity and eventual cardiac arrest and fatality, after contact with as little as 160 cm2 (25 square inches) of skin.

Applications:

Oil refining

In a standard oil refinery process known as alkylation, isobutane is alkylated with low-molecular-weightalkenes (primarily a mixture of propylene and butylene) in the presence of the strong acid catalystderived from hydrofluoric acid. The catalyst protonates the alkenes (propylene, butylene) to produce reactive carbocations, which alkylate isobutane. The reaction is carried out at mild temperatures (0 and 30 °C) in a two-phase reaction.

Production of organofluorine compounds

The principal use of hydrofluoric acid is in organofluorine chemistry. Many organofluorine compoundsare prepared using HF as the fluorine source, including Teflon, fluoropolymers, fluorocarbons, andrefrigerants such as freon.

Production of fluorides

Most high-volume inorganic fluoride compounds are prepared from hydrofluoric acid. Foremost are Na3AlF6, cryolite, and AlF3, aluminium trifluoride. A molten mixture of these solids serves as a high-temperature solvent for the production of metallic aluminium. Given concerns about fluorides in the environment, alternative technologies are being sought. Other inorganic fluorides prepared from hydrofluoric acid include sodium fluoride and uranium hexafluoride.

Etchant and cleaning agent

The ability of hydrofluoric acid to dissolve metal oxides is the basis of several applications. It removes oxide impurities from stainless steel, a process called pickling, and silicon wafers in the semiconductor industry. In this regard it is

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