Preparation method of water-soluble foliar fertilizer
A foliar fertilizer and water-soluble technology, applied in the field of agriculture, can solve the problems of increasing soil solution concentration and aggravating soil salinization, etc., and achieve the effects of high utilization rate, fast fertilizer effect and high efficiency
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment 1
[0025] A kind of preparation method of water-soluble foliar fertilizer in the present embodiment is characterized in that, comprises the following steps:
[0026] Step 1: The raw materials are prepared according to the following parts by weight: 30 parts of urea, 15 parts of potassium chloride, 20 parts of boric acid, 10 parts of ammonium chloride, 20 parts of sea sac algae, 100 parts of water, and photosynthetic probiotic bacteria, lactic acid bacteria, Yeast flora, actinomycetes, filamentous flora;
[0027] Step 2: Ferment the above-mentioned sea sac algae, then foam at high temperature to concentrate into essence, and then process at low temperature to extract plant active ingredients;
[0028] Step 3: Pour urea, potassium chloride, boric acid, ammonium chloride, plant active ingredients obtained in step 2, and water into the fermenter, adjust the ambient temperature to 25°C, and generally not exceed 30cm in thickness, and add photosynthetic probiotic bacteria , lactic aci...
Embodiment 2
[0031] A kind of preparation method of water-soluble foliar fertilizer in the present embodiment is characterized in that, comprises the following steps:
[0032] Step 1: The raw materials are prepared according to the following parts by weight: 35 parts of urea, 17 parts of potassium chloride, 25 parts of boric acid, 15 parts of ammonium chloride, 25 parts of sea sac algae, 120 parts of water, and photosynthetic probiotic bacteria, lactic acid bacteria, Yeast flora, actinomycetes, filamentous flora;
[0033] Step 2: Ferment the above-mentioned sea sac algae, then foam at high temperature to concentrate into essence, and then process at low temperature to extract plant active ingredients;
[0034] Step 3: Pour urea, potassium chloride, boric acid, ammonium chloride, plant active ingredients obtained in step 2, and water into the fermenter, adjust the ambient temperature to 28°C, and generally not exceed 30cm in thickness, and add photosynthetic probiotic bacteria , lactic aci...
Embodiment 3
[0037] A kind of preparation method of water-soluble foliar fertilizer in the present embodiment is characterized in that, comprises the following steps:
[0038] Step 1: The raw materials are prepared according to the following parts by weight: 50 parts of urea, 20 parts of potassium chloride, 30 parts of boric acid, 20 parts of ammonium chloride, 30 parts of sea sac algae, 150 parts of water, and photosynthetic probiotic bacteria, lactic acid bacteria, Yeast flora, actinomycetes, filamentous flora;
[0039] Step 2: Ferment the above-mentioned sea sac algae, then foam at high temperature to concentrate into essence, and then process at low temperature to extract plant active ingredients;
[0040] Step 3: Pour urea, potassium chloride, boric acid, ammonium chloride, plant active ingredients obtained in step 2, and water into the fermenter, adjust the ambient temperature to 30°C, and generally not exceed 30cm in thickness, and add photosynthetic probiotic bacteria , lactic aci...
PUM

Abstract
Description
Claims
Application Information

- R&D
- Intellectual Property
- Life Sciences
- Materials
- Tech Scout
- Unparalleled Data Quality
- Higher Quality Content
- 60% Fewer Hallucinations
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2025 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com