Zirconium nitrate is an inorganic compound with the chemical formula Zr(NO3)4. There are pentahydrate and anhydrate. Like other nitrates, zirconium nitrate is an oxidizing agent. Zirconium nitrate is white crystals and easily absorbs moisture. Decompose when heated to 100°C to produce zirconyl nitrate and nitric acid. Easily soluble in water, the aqueous solution is acidic and soluble in alcohol. The newly prepared zirconium dioxide hydrate is dissolved in the nitric acid and acts on it to obtain the coordination compound zirconia nitrate. Zirconium nitrate can be used as a reagent and preservative for the determination of fluoride, as well as for the separation of phosphate. In addition, zirconium nitrate is also an important catalyst in organic chemical industry.
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China's proven industrial reserves of rare earths are 52 million tons, accounting for about 50% of the world's total. China is the country with the richest rare earth resources and a complete range of mineral types.
Benefits of Zirconium Nitrate
Solubility
Zirconium nitrate hydrate has good solubility. It is easily soluble in water, making it relatively convenient for preparing solutions and conducting chemical reactions. Meanwhile, this solubility also enables it to be thoroughly mixed and reacted with other substances in industrial production and laboratory applications.
Chemical activity
Zirconium nitrate hydrate has high chemical activity. It can participate in various chemical reactions, such as metathesis reactions, redox reactions, etc. This makes zirconium nitrate hydrate have important application value in catalyst preparation, organic synthesis, and other fields.
Optical properties and thermal stability
Zirconium nitrate hydrate also has certain optical properties and thermal stability. It may exhibit specific color or fluorescence characteristics under specific conditions, which makes it have potential applications in materials science, optical devices, and other fields. Meanwhile, zirconium nitrate hydrate exhibits relatively stable properties within a certain temperature range, making its application in high-temperature environments possible.
Types of Zirconium Nitrate

Zirconium Nitrate Hydrate
Zirconium nitrate hydrate refers to a compound formed by the combination of zirconium nitrate and a certain number of water molecules. Zirconium nitrate (Zr (NO 3) 4) is an inorganic compound, and hydrates are products of this compound's hydrogen bonding with water molecules. Zirconium nitrate can take various forms of hydrates depending on the number of bound water molecules.

Zirconium Nitrate Hexahydrate
Zirconium nitrate hexahydrate, also known as it, has the chemical formula Zr (NO 3) 4· 6H 2O. It is an inorganic compound, belonging to one of the high-purity zirconium compounds. This compound has certain applications in chemistry, materials science, and other related fields.it has good solubility in water, which makes its reaction and treatment in aqueous solution relatively easy.

Zirconium Nitrate Pentahydrate
Zirconium nitrate, with the chemical formula Zr(NO3)4, is an inorganic compound.Zirconium nitrate pentahydrate can be customized into various specifications and packaging.Zirconium nitrate is colorless crystal or crystalline powder. It is stable at room temperature but decomposes when heated. Zirconium nitrate is soluble in water and alcohol, but insoluble in non-polar solvents.
Application of Zirconium Nitrate
Ceramic industry
Zirconium nitrate hydrate is widely used as a component of ceramic materials, especially in the manufacturing of high-performance ceramics. It can significantly improve the high-temperature and corrosion resistance of ceramics. At the same time, it can also serve as a component of colorants and coatings, adding rich colors to ceramic products.
Catalyst preparation
Zirconium nitrate hydrate is an important raw material for manufacturing catalysts, especially in the process of manufacturing ternary catalysts, zirconium compound intermediates, and chemical reagents. These catalysts have wide applications in the chemical industry, petrochemical industry, and other fields, and can effectively promote the progress of various chemical reactions.
Nuclear industry
Due to the special properties of zirconium, zirconium nitrate hydrates also have important applications in the nuclear industry. It can be used as fuel cladding material for nuclear reactors, and can also play a crucial role in nuclear fuel recovery and purification processes.
Electronic materials and glass industry
Zirconium nitrate hydrate can be used to prepare high-performance electronic materials and glass materials. The addition of zirconium elements can significantly improve the refractive index, heat resistance, and chemical stability of materials, making them more effective in specific fields.
Other chemical reactions
Zirconium nitrate hydrates can also serve as important raw materials for other chemical reactions, such as the synthesis of zirconium salts, zirconates, and zirconium complexes. These compounds have broad application prospects in materials science, medicine, agriculture, and other fields.

It has high chemical activity. It can be used as a cross-linking agent with good water resistance in paper coating. The coating cures quickly. The paper does not need to be stored for a long time or dried off the machine, and has good water resistance. It can enable coated paper to obtain better comprehensive properties in terms of whiteness, printing gloss, wet friction resistance, dry and wet bonding strength, etc.
Zirconium carbonate is an inorganic salt-resistant and water-resistant cross-linking agent that can clean up defects caused by toxic organic residues such as urea-formaldehyde resin (UF), modified melamine-formaldehyde resin (MF), and glyoxal. Therefore, it has broad application prospects in daily necessities, sanitary appliances, food and beverages, export commodity packaging materials, etc.
Compared with similar products, it has the advantages of long stabilization time, high temperature resistance, and no deterioration.
How to Detect Zirconium Nitrate
Content analysis
Zirconium nitrate content is usually analyzed using atomic absorption spectrometry (AAS) or inductively coupled plasma optical emission spectrometry (ICP-OES). Both methods can accurately determine the content of zirconium nitrate, and calculate the content of zirconium nitrate by measuring the absorption or emission signal of the zirconium element in the sample.
Purity testing
The purity of zirconium nitrate can be tested using chemical analysis methods, such as titration or complexometric titration. The titration method is a method to determine the concentration of zirconium ions contained in zirconium nitrate through a titration reaction, while the complex titration method uses a complexing agent to form a complex with the zirconium in zirconium nitrate, and then determines the complex through the color change of the indicator. The content of the compound can indirectly determine the purity of zirconium nitrate.
Process of Zirconium Nitrate
Add 1 part of zirconium carbonate to 0.75 parts of dilute nitric acid to form an acid solution
Let it stand for 1 hour and then stir for 0.5 hours, where the dilute nitric acid is a nitric acid aqueous solution with a volume concentration of 68%;
Filter and remove impurities
Filter the acid solution obtained in step (1) through a 1000 mesh screen to obtain a filtrate;
Microfiltration
The filtrate obtained in step (2) is then microfiltrated through a microporous filter to obtain a filtrate, wherein the pore size of the filter screen of the microporous filter is 0.5 μm;
Constant temperature crystallization
Crystallize the filtrate obtained in step (3) at 45°C for 90 hours and then filter out the zirconium nitrate crystals;
Crush
Add the zirconium nitrate crystals obtained in step (4) to a crystal grinder and grind for 10 minutes to obtain zirconium nitrate powder;
Centrifugal dehydration
Add the zirconium nitrate powder obtained in step (5) to a centrifugal dehydrator and centrifuge for 30 minutes to obtain zirconium nitrate.
Handling And Storage of Zirconium Nitrate
Operation precautions
Closed operation, local exhaust. Operators must undergo special training and strictly abide by operating procedures. It is recommended that operators wear self-priming filter dust masks, chemical safety glasses, tape anti-virus clothing, and neoprene gloves. Keep away from fire and heat sources. Smoking is strictly prohibited in the workplace. Keep away from flammable and combustible materials. Avoid dust generation. Avoid contact with reducing agents. When handling, load and unload with care to prevent damage to packaging and containers. Equipped with corresponding varieties and quantities of fire-fighting equipment and leakage emergency treatment equipment. Empty containers may be harmful residues.
Storage precautions
Store in a cool, ventilated warehouse. Keep away from fire and heat sources. The packaging must be completely sealed to prevent moisture absorption. It should be stored separately from flammable (combustible) materials, reducing agents, etc., and avoid mixed storage. Suitable materials should be available in the storage area to contain spills.
Method of packing
Full-open or middle-opening steel drums outside plastic bags or two-layer kraft paper bags; Ordinary wooden boxes outside plastic bags or two-layer kraft paper bags; Ordinary screw-top glass bottles, iron-capped glass bottles, plastic bottles or metal barrels (cans) Wooden boxes; screw-top glass bottles, plastic bottles or tin-plated sheet steel barrels (cans) with full-floor grate boxes, fiberboard boxes or plywood boxes.
Transportation precautions
During railway transportation, the dangerous goods assembly table in the "Dangerous Goods Transport Rules" of the Ministry of Railways should be strictly followed. Ship separately during transportation, and ensure that the container does not leak, collapse, fall, or be damaged during transportation. During transportation, transportation vehicles should be equipped with corresponding types and quantities of fire-fighting equipment. It is strictly prohibited to mix and transport with acids, flammable substances, organic substances, reducing agents, self-igniting items, wet flammable items, etc. When transporting, the speed of the vehicle should not be too fast, and no forced overtaking is allowed. Transport vehicles should be thoroughly cleaned and washed before and after loading and unloading, and it is strictly forbidden to mix organic matter, flammable matter and other impurities.
Global Zirconium Nitrate Market: Segmentation
To offer a holistic view of the Global Zirconium Nitrate Market, we employ a segmentation approach. We categorize the market into segments based on criteria such as product types, geographic regions, and consumer demographics.
Each segment is scrutinized to reveal specific trends, growth potential, and challenges. This segmented analysis empowers businesses to tailor their strategies to distinct market needs, enhancing their competitive edge. Our segmentation analysis is a strategic tool that guides market participants in navigating the complexities of the Global Zirconium Nitrate Market effectively.
Our Factory
Beijing FreeRun Technology Co.,Ltd. was established in 2020. It is located in Shandong Province, an important industrial province in China and one of China's rare earth mineral production areas. Its main products are polishing powder/liquid in semiconductors, optics and other fields, as well as nano rare earths and anhydrous rare earths. , the company integrates rare earth R&D, production and sales.The company's products include high-purity nano rare earth oxides, rare earth polishing powders, precision polishing fluids, rare earth compounds, anhydrous rare earth and other new rare earth materials. The company will provide high-quality products and services in the fields of semiconductor CMP, semiconductor ceramics, aerospace power systems, military guidance, electric vehicles, new energy, petroleum fission, grinding/precision polishing, pharmaceutical chemicals, electronic materials and other fields.




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FAQ
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