Liquid fertilizer production line

The liquid foliar fertilizer production line is an integrated industrial equipment system. Through physical mixing, chemical reactions and fine processing techniques, it dissolves and blends macronutrients such as nitrogen, phosphorus and potassium with micronutrients, organic matter or bioactive substances to form liquid fertilizers. Eventually, it is filled into dedicated production lines suitable for application through irrigation systems.

Description

The liquid foliar fertilizer production line is a complete set of equipment system specially designed for continuous and standardized production of liquid form foliar fertilizers. Its core function is to integrate key processes such as “raw material treatment – dissolution and mixing – purification and filtration – metering and filling – finished product inspection”, to achieve an automated processing flow from basic nutrients like nitrogen, phosphorus, and potassium, trace elements (calcium, magnesium, sulfur, zinc, etc.), humic acid / amino acid additives and other raw materials to liquid fertilizers that meet agricultural foliar application requirements. Through technological innovation and system integration, the liquid foliar fertilizer production line not only realizes efficient production and precise fertilization but also promotes the transformation and upgrading of agricultural inputs towards green and intelligent directions, becoming a key equipment supporting the high-quality development of modern agriculture. The production line consists of raw material storage system, metering and batching system, mixing and stirring system, filtration system, pH adjustment and nutrient composition adjustment system, filling and packaging system, control system, etc.

Features of the liquid foliar fertilizer production line:
High degree of automation; strong adaptability to raw materials; continuous production process; strict precision control; excellent corrosion resistance of equipment; outstanding environmental protection and safety; flexible adaptation to diverse demands; convenient intelligent management; energy-saving and low-consumption characteristics.

Faqs

(1) The solid raw materials (such as urea, potassium dihydrogen phosphate) were added too quickly without sufficient contact with the solvent (water); (2) The solvent temperature was too low (below 15℃), which reduced the solubility of the raw materials; (3) The particle size of the raw materials was too large, resulting in a slow dissolution rate.
(1) Weighing error during manual feeding (more than ±2%); (2) Sensor failure in the automatic feeding system, resulting in inaccurate measurement; (3) Density fluctuations of liquid raw materials (such as humic acid solution, amino acid mother liquor) cause deviations when measured by volume.

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