Manufacturing Companies for China Monopotassium Phosphate 99% Factories - N-(n-butyl)-thiophosphoric Triamide(NBPT) – Lemandou
Manufacturing Companies for China Monopotassium Phosphate 99% Factories - N-(n-butyl)-thiophosphoric Triamide(NBPT) – Lemandou Detail:
Specifications
Item | Specification |
Appearance | White crystalline solids or white powder |
Content | Content:≥ 97% |
Melting point | 57-60°C |
Flashing point | 96°C |
Boiling point | 277.4°C(760 mm Hg) |
Density | 1.171 g/cm 3 |
Water solubility | 4.3 g/L at 25°C |
Packing | 25 kg/Cardboard drum or Kraft paper bag; 500 kg/jumbo bag |
NBPT is currently one of the most effective urease inhibitors in the world. Nitrogen fertilizer is the most widely and important fertilizer type in modern agriculture, and urea accounts for more than 2/3 of the total nitrogen fertilizer. Under normal circumstances, urea is quickly decomposed by urease in the soil, the utilization rate of urea is usually only 30%-40%, so the fertilizer effect period is very short. This not only wastes a lot of nitrogen fertilizer resources, increases planting costs, but also brings a series of problems such as soil knots and environmental pollution.
Urease inhibitors can inhibit the activity of soil urease, which can inhibit and slow nitrogen release. The use of soil urease inhibitors can effectively slow down the process of urea decomposition into ammonia, reduce the concentration of NH4+ and NH3 in the soil, reduce waste, and at the same time Extend the diffusion time of nitrogen fertilizer at the fertilization point, so that the fertilizer supply of the soil and the fertilizer demand of the crop are synchronized. Thereby increasing the effective utilization rate of nitrogen fertilizer by 30%-40%.
Properties
1、Does not produce toxic effects on plants.
2、Completely decomposed in the soil, the final decomposition products are phosphate, water, carbon dioxide, nitrogen oxides.
3、There is no residue in the harvested agricultural products.
4、There is no risk to the soil, microorganisms, water bodies, humans and animals.
5、There is no leaching in the soil.
Usage
NBPT can be mixed with urea and applied to the soil directly after dissolving it with a flux in the proportion of 3-5 ten thousandths of the urea used. The half-life after entering the soil is 7 to 8 days, which will not affect the next crop. The final decomposition products are mainly ammonium, sulfate, phosphate, etc., It has no negative effects on soil, microorganisms, humans, animals, water system, etc. It can also be processed into a long-acting slow-release compound fertilizer through a certain process in an appropriate proportion. This long-lasting fertilizer containing NBPT is mainly used in field crops and some long growing period vegetables, orchards, trees, corn, wheat, palm trees, etc.
NBPT is currently the world’s most advanced urease inhibitor with excellent effects, wide application and high cost performance. At present, it is widely used in the United States, Brazil, Germany and other countries. It is an excellent soil nitrogen fertilizer urease inhibitor.
Product detail pictures:
Related Product Guide:
"Sincerity, Innovation, Rigorousness, and Efficiency" would be the persistent conception of our corporation to the long-term to establish collectively with customers for mutual reciprocity and mutual benefit for Manufacturing Companies for China Monopotassium Phosphate 99% Factories - N-(n-butyl)-thiophosphoric Triamide(NBPT) – Lemandou , The product will supply to all over the world, such as: South Africa, Algeria, Greek, In order to meet our market demands, we have paied more attention to the quality of our products and services. Now we can meet customers' special requirements for special designs. We persistently develop our enterprise spirit "quality lives the enterprise, credit assures cooperation and keep the motto in our minds: customers first.
By Kitty from Madrid - 2018.09.19 18:37
It can be said that this is a best producer we encountered in China in this industry, we feel lucky to work with so excellent manufacturer.
By Judith from Algeria - 2018.06.03 10:17