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Potassium Humic Acid Fertilizer Fulvic Acid Organic Fertilizers For Improving Soil

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xClassification | ORGANIC FERTILIZER | Trace Elements Content | ≥0.5% |
---|---|---|---|
Release Type | QUICK | Function | Increase Yield |
Ph Range | 5-6 | Einecs No | Bio Fulvic Acid Fertilizer |
Application | Foliar Spray, Drip Irrigation, Soil Application | Richness | 70% |
Water Solubility | 100% Soluble | Other Names | FULVIC ACID |
Fulvic Acid Content | ≥5% | State | Powder/Liquid |
Potassium Humic Acid Fertilizer Fulvic Acid Organic Fertilizers For Improving Soil
Product Introduction
Potassium humate is a highly efficient organic potassium fertilizer. This is because the humic acid in it is a bioactive agent that can increase the content of available potassium in the soil, reduce potassium loss and fixation, enhance the absorption and utilization rate of potassium by crops, and also has functions such as improving soil quality, promoting crop growth, enhancing crop stress resistance, improving crop quality, and protecting the agricultural ecological environment. When mixed with urea, phosphate fertilizer, potassium fertilizer, trace elements, etc., it can be made into highly efficient and multi-functional compound fertilizer. In addition, potassium humate can also be used as a treatment agent for petroleum drilling fluids, mainly to prevent wellbore collapse.
Product ingredients
Main application areas:
The main effects of this product in agriculture
1. Soil improvement
Structural optimization: Promote soil granulation, alleviate compaction, enhance air permeability and water and fertilizer retention capacity.
Detoxification and harm reduction: Adsorb heavy metals, neutralize acidic and alkaline soils, and reduce salinization or acidification problems.
2. Fertilizer efficiency
Chelated nutrients: Fix nitrogen, phosphorus, potassium and trace elements, reduce loss, and increase fertilizer utilization by more than 30%.
Alternative fertilizers: Reduce the amount of fertilizers and reduce the risk of soil degradation.
3. Promote crop health
Developed root system: stimulate root hair growth and enhance nutrient absorption capacity.
Enhance photosynthesis: increase chlorophyll content, promote fruit expansion and sugar accumulation, and improve yield and quality.
4. Resistance to adversity and disease prevention
Adversity resistance: enhance drought resistance, cold resistance, and waterlogging resistance, and alleviate pesticide or fertilizer damage.
Disease inhibition: activate plant immune enzymes (such as peroxidase) and reduce the occurrence of soil-borne diseases.
The main effects of this product for aquaculture
1. Water quality management
Purify water quality: absorb toxins such as ammonia nitrogen and nitrite, and stabilize the pH value of water bodies.
Inhibit algae and regulate algae: inhibit the outbreak of blue algae and promote the reproduction of beneficial algae such as diatoms and green algae.
2. Health of farmed animals
Enhance immunity: enhance the disease resistance of fish and shrimp, and reduce the risk of bacterial (such as Vibrio) infection.
Promote digestion: increase the activity of intestinal digestive enzymes, reduce the feed coefficient, and shorten the breeding cycle.
3. Environmental adaptation
Anti-stress: Relieve stress response caused by high temperature, heavy rain or water change, and reduce mortality.
Indirect oxygenation: Promote algae photosynthesis and indirectly increase dissolved oxygen in water.
The main effects of this product for feed
1. Feed efficiency
Nutrient absorption: Improve protein and mineral utilization, and accelerate weight gain of livestock and poultry.
Intestinal health: Inhibit harmful bacteria (such as Escherichia coli), regulate flora balance, and reduce diarrhea.
2. Environmental optimization
Deodorization and emission reduction: Reduce ammonia and hydrogen sulfide emissions in feces and improve the air quality of farms.
Feces treatment: Accelerate composting fermentation and improve the efficiency of organic fertilizer decomposition.
3. Improved production performance
Anti-heat stress: Maintain feed intake in high temperature environment, stabilize egg production rate and milk production.
Improved meat quality: Reduce dependence on antibiotics and improve the safety and nutrition of meat, eggs and milk.
Agricultural science popularization:
The difference between potassium humate from mineral sources and potassium fulvate from mineral sources:
1. Different activities. Due to its relatively high degree of aromatic condensation, the carbon-oxygen ratio of potassium humate from mineral sources increases, and the number of oxygen-containing functional groups is less than that of potassium fulvate from mineral sources. However, it has a strong complexing ability, which is difficult for potassium humate from mineral sources to match.
2. The resistance to hard water varies. The average molecular weight of potassium fulvate from mineral sources is much smaller than that of ordinary potassium humate from mineral sources. After complexing with divalent metal salts, it has a certain degree of solubility, thus having a certain resistance to hard water. However, the resistance of large-molecule potassium humate from mineral sources to hard water is very weak. In ordinary tap water, it will quickly sink to the bottom in the form of flocs such as calcium and magnesium humate.
3. Different soil improvement capabilities! The soil improvement capacity of potassium humate from mineral sources is much greater than that of potassium fulvate from mineral sources. The reason is that the complexation ability of macromolecules, the dosage and adsorption capacity are also good. It can complex ammonium ions and other cations, improve the nitrogen utilization rate of ammonium fertilizers, and at the same time, it can also come into contact with the fixation of phosphate fertilizers in the soil, thus being utilized slowly. Potassium humate from mineral sources is a macromolecular mixture. It has a sponge-like spatial structure with an extremely large specific surface area, which can retain the evaporation of water in the soil.
Notes
1. Reasonable dosage: 5-10 kg per mu for agriculture, 0.1-0.3 g per cubic meter for aquatic products, and 0.1%-0.5% for feed.
2. Scientific combination: synergize with organic fertilizers and probiotics, and avoid mixing with strong alkaline substances.