Calcium Nitride Ca3N2 Powder Product Performance

Overview of calcium nitride Ca3N2

Calcium nitride is a compound of calcium and nitrogen with the chemical formula Ca3N2. In most cases, calcium nitride can usually be used in large amounts. Hydrogen is easily produced from renewable energy sources and is the most abundant element in the universe. There are many sources of hydrogen, such as solid fuels, water, and renewable materials. Hydrogen is non-polluting and will form harmless water during use. Challenges related to the use of hydrogen as an energy source include the development of safe, compact, reliable, and cost-effective hydrogen storage and transmission technologies. Currently, hydrogen can be stored in three forms: compressed hydrogen, liquid hydrogen and chemical storage. High purity, sub-micron and nano powder forms can be considered. Calcium nitride Ca3N2 is the main raw material for high-end phosphors. The phosphor is more stable, has better performance, and has better effect under high temperature and high humidity. Last but not least, calcium nitride can also be used as a chemical treatment agent, which is the key to determining the performance of water-based mud.

Calcium nitride Ca3N2 powder has the characteristics of high purity and uniform particle size distribution.

Calcium nitride is hydrolyzed to produce calcium hydroxide, which releases ammonia, dissolves in dilute acid and decomposes in alcohol.

Product performance of calcium nitride Ca3N2 powder

Calcium nitride Ca3N2 powder has the characteristics of high purity and uniform particle size distribution. 

Calcium nitride is hydrolyzed to produce calcium hydroxide and release ammonia, which is dissolved in dilute acid and decomposed in alcohol.

Application of calcium nitride Ca3N2

Calcium nitride Ca3N2 is mainly used as a chemical reagent, and active nitride ions can be obtained with Ca3N2. Calcium hydride (desiccant) can be prepared by heating calcium nitride and hydrogen at a temperature higher than 350°C. Ca3N2 can be used to obtain active nitride ions, and calcium hydride (desiccant) can be obtained by heating calcium nitride with hydrogen at a temperature higher than 350°C.

When calcium burns in the air, it will form Ca3N2 with the oxide CaO. The distilled fibrous metallic calcium is heated to 450°C in a stream of pure nitrogen, and then the metallic calcium is nitrided into calcium nitride after 3-4 hours.

Depending on the preparation temperature, the calcium nitride obtained is black at 350°C, milky white at 350-1150°C, and golden yellow above 1150°C. It is easy to identify the calcium nitride formed because it can react with moisture or water to form calcium hydroxide and ammonia.

Price of Calcium Nitride Ca3N2

The price of calcium nitride Ca3N2 will vary randomly with factors such as the production cost of calcium nitride Ca3N2, transportation costs, international conditions, exchange rates, and market supply and demand of calcium nitride Ca3N2. Tanki New Materials Co., Ltd. aims to help various industries and chemical wholesalers find high-quality, low-cost nanomaterials and chemicals by providing a full set of customized services. If you are looking for calcium nitride Ca3N2, please feel free to send an inquiry to get the latest price of calcium nitride Ca3N2.

Suppliers of Calcium Nitride Ca3N2

As a global calcium nitride supplier, Tanki New Materials Co., Ltd. has extensive experience in the performance, application and cost-effective manufacturing of advanced engineering materials. The company has successfully developed a series of powder materials (titanium nitride, silicon nitride, titanium nitride, etc.) high-purity targets, functional ceramics and structural devices, and provides OEM services.

Technical Parameter of Calcium Nitride Ca3N2 powder

Product Name MF Purity Particle Size Melting Point Density Color
calcium nitride Ca3N2 99% 5-10um 1195℃ 2.67g/cm3 red-brown

Chemical Composition of Calcium Nitride Ca3N2 powder

Ca3N2 N Ca Si O C Fe
99% 13% balance 0.05% 0.3% 0.05% 0.2%

Newsletter Updates

Enter your email address below and subscribe to our newsletter