Phosphoric Acid
Phosphoric Acid
2024-12-27
PHOSPHORIC ACID ELECTRONIC GRADE
Used for liquid crystal screens and for cleaning and etching of chip-level precision electronic components.
PHOSPHORIC ACID FOOD GRADE
Mainly used as food starter, and important additivés for toothpaste, animal auxiliary feed, etc.
It is directly used in drinks as a sour taste regulator, and widely used in fats, MSG, sugar, and
other food and related products as an indispensable reaction aid; also used for the
production of food-grade phosphates.
PHOSPHORIC ACID INDUSTRIAL GRADE
Widely used in medicine, printing, metallurgy, coating, feed, fertilizer,
metal surface phosphating treatment, water treatment, new energy industries, etc.
POLYPHOSPHORIC ACID (105%、115%、116%、117%、118%、120%)
It is mainly used in drug synthesis, pigment synthesis, catalyst synthesis, carbon fiber production,
inorganic flame retardants, and many other fine chemical fields. It can also produce lithium hexafluorophosphate, the raw material of lithium battery electrolyte.
Using the "one-step" production technology, the polymer content is much higher than that ofthe
"two-step" production of polyphosphoric acid, with stable performance and good fluidity.
Used for liquid crystal screens and for cleaning and etching of chip-level precision electronic components.
PHOSPHORIC ACID FOOD GRADE
Mainly used as food starter, and important additivés for toothpaste, animal auxiliary feed, etc.
It is directly used in drinks as a sour taste regulator, and widely used in fats, MSG, sugar, and
other food and related products as an indispensable reaction aid; also used for the
production of food-grade phosphates.
PHOSPHORIC ACID INDUSTRIAL GRADE
Widely used in medicine, printing, metallurgy, coating, feed, fertilizer,
metal surface phosphating treatment, water treatment, new energy industries, etc.
POLYPHOSPHORIC ACID (105%、115%、116%、117%、118%、120%)
It is mainly used in drug synthesis, pigment synthesis, catalyst synthesis, carbon fiber production,
inorganic flame retardants, and many other fine chemical fields. It can also produce lithium hexafluorophosphate, the raw material of lithium battery electrolyte.
Using the "one-step" production technology, the polymer content is much higher than that ofthe
"two-step" production of polyphosphoric acid, with stable performance and good fluidity.
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