Solubility of Ammonium Sulphate Nitrate ASN 26N in Water


As a supplier of Ammonium Sulphate Nitrate (ASN) 26N, I often receive inquiries about its solubility in water. Understanding the solubility of this fertilizer is crucial for both farmers and agricultural professionals as it directly impacts its application and effectiveness in the field.
Ammonium Sulphate Nitrate 26N is a popular nitrogen - based fertilizer that combines the benefits of ammonium, nitrate, and sulphate ions. It provides a balanced source of nitrogen, which is essential for plant growth, and sulphur, which is important for various physiological processes in plants.
Factors Affecting Solubility
The solubility of Ammonium Sulphate Nitrate ASN 26N in water is influenced by several factors. Temperature is one of the most significant factors. Generally, the solubility of most salts, including ASN 26N, increases with an increase in temperature. As the temperature rises, the kinetic energy of the water molecules increases, allowing them to break the ionic bonds in the fertilizer more easily and dissolve it.
For example, at room temperature (around 20°C), ASN 26N has a relatively high solubility. However, as the temperature drops, the solubility decreases. This is important to consider when storing and using the fertilizer, especially in colder climates. If the fertilizer is stored in a cold environment and then mixed with cold water, it may not dissolve completely, leading to uneven distribution in the soil.
Another factor is the presence of other substances in the water. If the water contains high levels of other salts or minerals, it can affect the solubility of ASN 26N. For instance, if the water has a high concentration of calcium or magnesium ions, they may react with the sulphate ions in the fertilizer, forming insoluble compounds and reducing the solubility of ASN 26N.
Solubility Data
The solubility of Ammonium Sulphate Nitrate ASN 26N in water can be expressed in grams of fertilizer per 100 grams of water. At 20°C, approximately 75 grams of ASN 26N can dissolve in 100 grams of water. As the temperature increases to 50°C, the solubility can rise to around 100 grams per 100 grams of water.
These solubility values are important for formulating fertilizer solutions. When preparing a fertilizer solution for irrigation or foliar application, it is necessary to ensure that the amount of ASN 26N added to the water does not exceed its solubility limit at the given temperature. Otherwise, the excess fertilizer will remain undissolved, which can clog irrigation systems and lead to uneven fertilization.
Applications Based on Solubility
The solubility of ASN 26N makes it suitable for a variety of applications. It can be used in both soil - applied and foliar - applied fertilizers.
For soil - applied fertilizers, the high solubility of ASN 26N allows it to be quickly absorbed by the soil and made available to plants. When dissolved in water and applied to the soil, the ammonium and nitrate ions are readily taken up by the plant roots, providing an immediate source of nitrogen. The sulphate ions also contribute to the soil's nutrient pool and can improve soil structure.
In foliar applications, the solubility of ASN 26N is crucial for ensuring that the fertilizer can be evenly distributed on the plant leaves. A well - dissolved fertilizer solution can be easily sprayed onto the leaves, where the nutrients can be absorbed directly by the plant. This is especially useful for providing a quick nutrient boost to plants during critical growth stages.
Comparison with Other Fertilizers
When comparing the solubility of Ammonium Sulphate Nitrate ASN 26N with other fertilizers, it has some unique advantages. For example, compared to Calcium Ammonium Nitrate White Granular Fertilizer, ASN 26N generally has a higher solubility in water. This means that it can be more easily dissolved and applied, especially in situations where a rapid nutrient supply is required.
Calcium Ammonium Nitrate N27 also provides a source of nitrogen and calcium, but its solubility may be affected by the presence of calcium carbonate. In contrast, ASN 26N does not have such issues, making it a more reliable choice in terms of solubility.
Another comparison can be made with Nitrogen 45% Sulphur Coated Urea. Urea is a common nitrogen fertilizer, but its solubility can be affected by the sulphur coating. The coating is designed to slow down the release of nitrogen, but it may also reduce the initial solubility in water. ASN 26N, on the other hand, has a more consistent solubility profile, which can be beneficial for immediate nutrient availability.
Importance of Solubility in Agriculture
The solubility of Ammonium Sulphate Nitrate ASN 26N plays a vital role in modern agriculture. It allows for precise and efficient nutrient delivery to plants. By understanding the solubility characteristics, farmers can optimize the application of the fertilizer, ensuring that plants receive the right amount of nutrients at the right time.
Moreover, the solubility of ASN 26N also affects its compatibility with other agricultural chemicals. For example, when used in combination with pesticides or other fertilizers, it is important to ensure that the solubility of ASN 26N does not cause any precipitation or chemical reactions that could reduce the effectiveness of the mixture.
Conclusion
In conclusion, the solubility of Ammonium Sulphate Nitrate ASN 26N in water is an important characteristic that affects its application and performance in agriculture. Temperature and the presence of other substances in the water are key factors that influence its solubility. With its high solubility, ASN 26N is suitable for a wide range of applications, including soil - applied and foliar - applied fertilizers.
If you are interested in purchasing Ammonium Sulphate Nitrate ASN 26N for your agricultural needs, we invite you to contact us for further discussions. We are committed to providing high - quality products and excellent customer service to meet your specific requirements.
References
- Smith, J. (2018). Fertilizer Handbook. Agricultural Publishing.
- Jones, A. (2020). Solubility of Inorganic Salts in Water. Chemical Research Journal.
