Aid-containing trace element foliar fertilizer and preparation method thereof
A foliar fertilizer and trace element technology, applied in fertilizer mixtures, fertilization devices, applications, etc., can solve the problem that product components are difficult to reflect the differences in crops, soil, and planting systems, and the lack of scientific nutrient ratio design affects the spraying effect To achieve excellent compatibility, reduce soil pollution, and ensure healthy growth
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Embodiment 1
[0026] Embodiment 1, the mensuration of different concentration APG surface tension and its determination of critical micelle concentration
[0027] (1) JZ-200A automatic interfacial tensiometer was used to measure the surface tension of surfactants.
[0028]The concentration of APG solution is 10mg / L, 30mg / L, 50mg / L, 100mg / L, 500mg / L, 1000mg / L, 5000mg / L, 10000mg / L, 15000mg / L respectively. The surface tension of different concentrations of APG solution and water were measured by surface tensiometer. ) The surface tension of the same sample measured three times in a row differs by less than 0.2mN / m.
[0029] see results figure 1 . From figure 1 The turning point shows that the critical micelle concentration of the surfactant APG is about 100mg / L, and the surface tension is 37.8mN / m at this time.
Embodiment 2
[0030] Embodiment 2, investigate the liquid holding capacity of different concentrations of APG to cucumber leaves and rape leaves
[0031] Take fresh leaves to measure their mass, then soak the leaves in different concentrations of APG solutions for 10 seconds and take them out. When the leaves are not dripping water, measure the mass of the leaves after soaking, repeat 3 times to calculate the average value; measure the leaf area at the same time, convert it to 1cm 2 of liquid holding capacity.
[0032] (1) Liquid holding capacity of cucumber leaves with different concentrations of APG
[0033] With the increase of APG concentration, the liquid holding capacity on cucumber leaves also increases, reaching the maximum liquid holding capacity near the critical micelle concentration, and the liquid holding capacity begins to decrease after the value is higher than this value. As the concentration continues to increase, the liquid holding capacity The volume increased again and ...
Embodiment 3
[0036] Embodiment 3, prepare trace element foliage fertilizer
[0037] Every 100kg trace element foliar fertilizer is composed of the following substances: copper sulfate 9.0kg, ferrous sulfate 4.5kg, zinc sulfate 15.5kg, manganese sulfate 9.0kg, boric acid 2.0kg, EDTA disodium 5.0kg, citric acid 1.0kg, alkane base glycoside 10kg, and the balance is water.
[0038] The preparation method is as follows:
[0039] 1. Add 50kg of water into the reaction kettle, control the temperature at 70-80°C, add the chelating agent disodium EDTA and citric acid, and stir to fully dissolve it.
[0040] 2. Then add copper sulfate, ferrous sulfate, zinc sulfate, manganese sulfate, and boric acid in the reaction kettle in sequence, stir well while adding to make it dissolve quickly, and fully react at 70-80°C for 1.5 hours;
[0041] 3. After cooling to room temperature, add the additive APG, stir well to disperse evenly in the solution, and finally add water to 100kg.
[0042] 4. After filteri...
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