what is nitrolim and is uses?

http://en.wikipedia.org/wiki/Calcium_cyanamide

What is nitrolium? What is its use

Nitrolim, also known as Calcium Cyanamide, is a chemical compound commonly used in agriculture as a fertilizer and soil conditioner. It is a white, granular substance that contains nitrogen and calcium.

To understand its uses, you can follow these steps:

1. Start by searching for "nitrolim" or "calcium cyanamide" online. This will provide you with general information about the compound.

2. Look for reliable sources such as scientific journals, agricultural websites, or government publications. These sources usually provide accurate and up-to-date information on the subject.

3. Read through the information provided to understand the uses of nitrolim. Some potential uses include:

- Fertilizer: Nitrolim releases nitrogen into the soil, which is essential for plant growth, protein synthesis, and chlorophyll production. It can improve crop yield and enhance the quality of fruits, vegetables, and grains.

- Weed control: Nitrolim has herbicidal properties and can inhibit the germination and growth of certain weeds, reducing competition with cultivated plants.

- Soil conditioner: Nitrolim can improve soil structure, enhance water-holding capacity, and regulate pH levels. It also promotes the decomposition of organic matter, which releases nutrients for plant uptake.

4. Take note of any precautions or guidelines mentioned regarding the use of nitrolim. These may include recommended application rates, timing, and safety measures to ensure proper usage.

Remember, it's always important to consult experts, such as agricultural professionals or extension services, to get precise recommendations and guidelines for using nitrolim effectively and safely.

The Frank–Caro process, also called cyanamide process, is the nitrogen fixation reaction of calcium carbide with nitrogen gas in a reactor vessel at about 1,000°C. The reaction is exothermic and self-sustaining once the reaction temperature is reached. Originally the reaction took place in large steel cylinders with an electrical resistance element providing initial heat to start the reaction. Modern production uses rotating ovens. The synthesis produces a solid mixture of calcium cyanamide (CaCN2) and carbon.