Ethylenediamine N N Bis O Hydroxyphenyl Acetic Acid Fe6 Eddha Chelated Iron
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Ethylenediamine-N,N'-Bis(o-hydroxyphenyl)Acetic Acid Fe6% EDDHA Chelated Iron

Huihuang Chemical

Ethylenediamine-N,N'-Bis(o-hydroxyphenyl)Acetic Acid Fe6% EDDHA Chelated Iron
Specifications

HS Code

495915

Chemical Formula C18H16N2O6FeNa
Appearance Dark - brown to black powder
Iron Content 6%
Chelating Agent EDDHA
Solubility Sparingly soluble in water
Ph Range Stable in acidic to neutral pH
Stability High stability in the chelated form
Bioavailability High bioavailability for plants
Application Used for iron - deficiency correction in plants
Compatibility Compatible with many fertilizers and pesticides
Storage Should be stored in a dry and cool place
Chemical Formula C20H16FeN2O8
Molecular Weight 468.24 g/mol
Appearance Dark red - brown powder
Solubility Soluble in alkaline solutions
Ph Range Stable in pH 4 - 9
Chelating Capacity High chelating ability for iron
Iron Content 6% iron by weight
Stability Good chemical stability
Bioavailability High bioavailability for plants
Application Used as iron fertilizer for plants
Chemical Name Ethylenediamine-N,N'-Bis(o-hydroxyphenyl)Acetic Acid Fe6% EDDHA Chelated Iron
Chemical Formula C34H26FeN2O10
Appearance usually a dark - colored powder
Iron Content 6%
Solubility relatively low solubility in water
Chelating Ability strong chelating effect on iron ions
Stability stable under normal storage conditions
Ph Range effective in a wide pH range (4 - 9)
Biological Availability high bio - availability for plants
Application used as a foliar spray or soil amendment for iron - deficient plants
Toxicity low toxicity to humans and the environment when used as directed
Packing & Storage
Packing 5 - kg bag of Eddha Fe 6% Eddha Chelated Iron with secure chemical - grade packaging.
Storage "Eddha Fe6% Eddha Chelated Iron" should be stored in a cool, dry place, away from direct sunlight. Keep it in a well - sealed container to prevent moisture absorption and contamination. Store separately from reactive substances like strong acids or alkalis. Ensure the storage area has good ventilation to avoid the build - up of harmful vapors.
Shipping "Eddha Fe6% Eddha Chelated Iron" is shipped in well - sealed containers to prevent moisture and contamination. Shipment may be via sea or air, depending on urgency, with strict compliance to chemical transport regulations.
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Ethylenediamine-N,N'-Bis(o-hydroxyphenyl)Acetic Acid Fe6% EDDHA Chelated Iron Ethylenediamine-N,N'-Bis(o-hydroxyphenyl)Acetic Acid Fe6% EDDHA Chelated Iron Ethylenediamine-N,N'-Bis(o-hydroxyphenyl)Acetic Acid Fe6% EDDHA Chelated Iron
General Information
Historical Development
Ethylenediamine - N, N '-Bis (o-hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron, which is a good medicine for agricultural and plant iron supplementation. Its history has evolved and has a long history. Ancient farmers suffered from iron deficiency, crop yellowing, and poor harvests.
And science is gradually emerging, and various scholars analyze it to solve the problem of iron deficiency. After years of research, I finally got the method of EDDHA chelating iron. At first, the preparation was difficult, the cost was high, and it was only tried on a small scale.
However, with the increasing progress of technology, process improvement, and cost reduction, EDDHA chelating iron was widely used. In the field of agricultural planting, correcting plants for iron deficiency and chlorosis has achieved remarkable results, helping crops thrive and maintaining the hope of a bumper harvest. Its contribution to agriculture can be said to be great.
Product Overview
There is a product today, named Ethylenediamine - N, N '- Bis (o-hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron. It is a chelate of iron, with ethylenediamine - N, N' -bis (o-hydroxyphenyl) acetic acid as a ligand, and contains 6% iron.
This product is very beneficial in the fields of agriculture and planting. Plants often need iron for growth, but soil conditions are changeable, and the availability of iron may be limited. This product can stabilize the form of iron, so that it can be absorbed by plants in different acid-base environments, help plants replenish iron, promote their thriving growth, and prevent iron deficiency, such as yellowing of leaves and growth retardation. Its unique performance makes it the best choice for agricultural production to ensure plant iron supply.
Physical & Chemical Properties
Ethylenediamine - N, N '-Bis (o-hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron is an important chemical product. Its physical and chemical properties are quite critical. From the perspective of physical properties, this product often takes a specific form, or is powdery, or has a specific color state, and its particle size and solubility affect its application. In terms of chemical properties, EDDHA chelated iron has a stable structure, and iron ions form a tight chelated structure with EDDHA, which can effectively prevent iron ions from oxidizing and precipitating. This property makes it efficient for plant iron supplementation in the agricultural field, and it is not easy to be fixed in the soil. It can maintain the effectiveness of iron, help plants thrive, and improve crop yield and quality. In industry, it is also widely used in various reaction systems that require the stable participation of iron due to its chemical stability.
Technical Specifications & Labeling
Ethylenediamine - N, N '- Bis (o - hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron is an important chemical product. Its technical specifications and identification (product parameters) are the key.
When it comes to technical specifications, it is necessary to ensure that the content of the active ingredient EDDHA Chelated Iron is accurate to 6%. This is the core indicator of the product, which is related to its application efficiency. The purity of raw materials also needs to be strictly controlled, and the impurity content should be extremely low to avoid affecting the quality of the product. The production process needs to follow a specific process, from raw material mixing, reaction conditions control to finished product purification, there are strict requirements.
Regarding the logo, the name Ethylenediamine - N, N '- Bis (o-hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron should be clearly marked on the product packaging, and key parameters such as active ingredient content, production batch, and production date should be clearly defined. In this way, users can clarify the characteristics of the product, ensure the correct application in agriculture, horticulture, and other fields, give full play to its iron supplementation equivalent, and enhance product value and market recognition.
Preparation Method
Ethylenediamine - N, N '- Bis (o - hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron is made today. The raw materials are crucial to the production process, reaction steps and catalytic mechanism.
Prepare o-hydroxyphenylacetic acid, ethylenediamine and other raw materials in an appropriate ratio and place them in the reactor. Control the temperature in a specific range, such as [X] ° C, to slow down the reaction rate. Add a specific catalyst to speed up the reaction process. At the beginning of the reaction, the raw material molecules collide with each other and the chemical bonds begin to recombine. After a few years, the nitrogen atom of ethylenediamine interacts with the carboxyl group and phenylcyclohydroxyl group of o-hydroxyphenylacetic acid to gradually form the parent structure of EDDHA. After reacting with the iron source, the iron ions are embedded in the structure and form a stable chelated state.
During this period, the pH value, temperature and other parameters of the reaction system are monitored, and fine-tuned in a timely manner to ensure the smooth reaction. After purification and drying, high-purity Ethylenediamine - N, N '- Bis (o-hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron products are obtained to meet the needs of various industries and agriculture.
Chemical Reactions & Modifications
Ethylenediamine - N, N '-Bis (o-hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron. The chemical reaction and modification of this chemical substance are related to many key aspects. The reaction process often involves complex chemical mechanisms. Under specific conditions, various atoms and groups interact, resulting in bond formation and bond breaking. Modification aims to optimize its properties, such as improving stability, enhancing solubility, etc.
In ancient times, although there were no modern methods of accurate chemical analysis, wise sages could also observe the changes of substances and know their chemical reaction characteristics. Today, chemists rely on advanced instruments and theories to explore this substance in depth. By adjusting the reaction conditions, such as temperature and pH, the chemical reaction process can be effectively regulated to achieve the desired modification effect, laying a solid foundation for many applications.
Synonyms & Product Names
Ethylenediamine - N, N '-Bis (o - hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron This substance has many synonymous names. In the industry, it is also called ethylenediamine dio-hydroxyphenyl macroacetate iron, or call EDDHA Chelated Iron. This product is used in the field of agriculture and planting, and its effect is outstanding. It can improve iron supplementation, solve the iron deficiency of plants, and make leaves green again.
In the past, farmers often encountered difficulties in planting in iron-deficient soil, and the crops were wilting and the harvest was poor. Since EDDHA chelated iron is present, it is like rain falling on dry soil. It uses a unique chelation method to retain the activity of iron, which is stable but not melted, and is easy for plants to take.
Therefore, EDDHA chelates iron, in the name of various synonyms, to help agriculture and planting, among the green fields, to show its extraordinary ability, to be a good friend of agriculture and planting, and to rely on for a good harvest.
Safety & Operational Standards
Ethylenediamine - N, N '-Bis (o-hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron, this is a rather special compound. It needs to be taken very seriously in terms of its safety and operating standards.
In terms of storage, find a cool, dry and well-ventilated place. Do not let it come into contact with fire and heat sources to prevent accidents. Due to its nature or flammable in case of heat, it can cause danger. Storage should also be kept away from strong oxidants, acids and other substances to avoid reactions, damage to this material, and prevent the formation of harmful substances.
When operating, be sure to wear appropriate protective equipment. Such as protective gloves to prevent this object from coming into contact with the skin, because it may irritate and corrode the skin; wear protective glasses to protect the eyes, if this object accidentally enters the eyes, it may cause serious injury. The operating environment should be kept well ventilated to avoid inhaling its dust or volatile gas. If inhaled, it may cause damage to the respiratory tract.
If you accidentally come into contact with this object during operation, you should immediately dispose of it according to specific methods. If it touches the skin, rinse it with a large amount of flowing water immediately, preferably for more than 15 minutes, and then seek medical attention as appropriate. If you accidentally enter the eyes, rinse the eyes with a large amount of water immediately, not less than 15 minutes, and seek medical attention quickly at the same time.
In short, the treatment of Ethylenediamine - N, N '- Bis (o - hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron must strictly follow safety and operating practices to ensure personnel safety and material integrity.
Application Area
Ethylenediamine - N, N '-Bis (o - hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron, which is a unique chemical compound. Its application field is quite wide, and it can be used in agricultural planting soils to correct iron deficiency yellowing disease. Because iron is a key element in plant growth, soil conditions often make it difficult for plants to absorb iron.
This EDDHA Chelated Iron, with its unique chemical structure, can maintain the availability of iron in various soil environments. In garden flower cultivation, it can make flowers green and bright. In fruit and vegetable cultivation, it can improve fruit quality and enhance plant disease resistance. Fruit trees such as citrus and grapes can relieve iron deficiency symptoms after application, and improve fruit yield and quality. They are essential materials for agricultural planting.
Research & Development
Ethylenediamine - N, N '-Bis (o - hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron is an important chemical product. During the research process, I deeply analyzed its characteristics. The development of this product aims to meet the needs of efficient utilization of iron in many fields.
After repeated experiments, it was found that its chemical structure is unique, the stability is quite good, and it can show excellent performance in different environments. In the agricultural field, it can effectively supplement the iron required by plants, improve crop yield and quality; in industrial production, it also plays a role that cannot be ignored. In the future, we will further expand the application scope of this product, deepen the study of its interaction with other substances, and hope to contribute more to the development of the industry through technological innovation, optimize the production process, improve product purity and efficiency, and promote the continuous progress of EDDHA Chelated Iron products to meet the needs of the times.
Toxicity Research
On a certain evening, I studied a chemical substance in my room, named Ethylenediamine-N, N '-Bis (o-hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron. Thinking about the toxicity of this substance, it is related to people's livelihood and the environment, so I dedicated myself to studying it.
At first, check its chemical properties, analyze its structure, and explore its state in different environments. Take various samples and test them by various methods. In water and liquid, observe its solubility and ionization; under temperature changes, observe its stability.
After repeated research, I found that although this substance is effective in agricultural and plant iron supplementation, its potential toxicity should not be ignored. Under high concentration, it may inhibit micro-growth and accumulate in the soil for a long time, or the ecology of chaotic soil. Therefore, it should be used with caution and must be controlled according to regulations, so as to ensure that the advantages outweigh the disadvantages and avoid harm to future generations.
Future Prospects
Ethylenediamine - N, N '- Bis (o - hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron This product is the result of our painstaking research. It has extraordinary potential in the field of agriculture. Looking at today's agricultural mulberry, soil iron deficiency is frequent, and many crops are affected by growth. And this chelated iron product is like a timely rain.
We firmly believe that in the future, it will be widely used in vast farmlands. Its precise iron supplementation characteristics can greatly improve crop yield and quality. With advanced technology, iron is stable and easy to absorb. With time, we will surely be able to help agriculture reach new heights, benefit all people, and make the pastoral fields harvest abundantly, presenting a picture of prosperity. This is our vision for its future.
Frequently Asked Questions
Ethylenediamine-N, N '-Bis (o-hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron
Ethylenediamine-N, N '-bis (o-hydroxyphenyl) ferric acetate (EDDHA chelated iron, containing 6% iron), this substance has a wide range of uses and is effective in the field of agricultural mulberry.
First, it can treat the deficiency of iron in plants. Iron is indispensable for plant growth. If iron is deficient, the leaves and branches will wilt and the vitality will be damaged. EDDHA chelated iron can precisely supplement iron for plants. Its unique chelated structure makes iron stable in different soil environments, easy for plant roots to absorb, helps plants regreen and rejuvenate, and the fruits are full and the flowers are prosperous.
Second, it is also useful in horticultural landscape creation. When flowers and green plants are cultivated, iron supplementation is often required in order to maintain their bright color and lush growth. EDDHA chelates iron to ensure the green leaves of flowers, delicate colors, and beautiful tree shapes, and enhances the ornamental value of garden landscapes.
Furthermore, it is of great significance to the sustainable development of agriculture. It can improve the utilization rate of iron, reduce the loss and waste of iron fertilizers, reduce the pollution of soil and water sources, and at the same time improve the soil microecology, promote the reproduction of soil beneficial microorganisms, enhance soil fertility and water and fertilizer retention capacity, and achieve long-term agricultural prosperity.
In short, EDDHA chelates iron in many aspects of agronomy and horticulture. It plays a key role in helping plants grow and nourishing the land.
Ethylenediamine-N, N '-Bis (o-hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron
Ethylenediamine-N, N '-bis (o-hydroxyphenyl) ferric acetate (Fe6% EDDHA chelated iron), this is a rather unique chemical agent that has significant effects in many fields.
In the agricultural field, many crops rely on it to help. Fruit trees such as citrus are often susceptible to iron deficiency, resulting in yellowing of leaves and stunted growth. Fe6% EDDHA chelated iron can effectively replenish iron, making citrus leaves green again, enhancing photosynthesis, and improving fruit quality and yield. The same is true for grapes. Chlorosis is prone to occur when iron is deficient. Applying this chelated iron can improve the iron nutrition of grape plants, promote the growth of plants, and make grape fruits fuller and sweeter. Among vegetables, spinach has a high demand for iron. Fe6% EDDHA chelated iron can ensure the normal growth of spinach, prevent iron deficiency physiological diseases, and improve the nutritional value and commerciality of spinach.
In terms of flower planting, hydrangea, roses and other flowers will have poor flower color and poor flower development if they are deficient in iron. Fe6% EDDHA chelated iron can accurately replenish iron for flowers, making hydrangea more colorful, roses more delicate, and enhancing the ornamental value of flowers.
In the maintenance of horticultural landscape green plants, this chelated iron also plays an important role. If the lawn is yellow and sparse when it is deficient in iron, the use of Fe6% EDDHA chelated iron can promote the recovery of lawn grass, showing a green and dense state, and creating a beautiful garden landscape.
In short, Fe6% EDDHA chelated iron is an indispensable iron supplement in the growth and development of many plants. It is of great significance for improving the quality and yield of various plants.
Ethylenediamine-N, N '-Bis (o-hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron
Ethylenediamine - N, N '-Bis (o-hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron, that is, ethylenediamine dio-hydroxyphenyl macroacetic acid iron, this is a good agent for iron supplementation, mostly used in agriculture, to solve the problem of iron deficiency in plants. To use it properly, you need to follow the following method:
View the state of crops, the state of iron deficiency. The leaves are yellow and the veins are green, mostly a sign of iron deficiency. Such as citrus and apples, the new leaves are yellow if they are iron deficient. At this time, this agent should be used for iron supplementation.
According to the situation of crops and iron deficiency, the dosage is fixed. Usually, when applying soil, the dosage is about 100-200 grams per mu. If it is foliar spraying, the concentration should be controlled at 0.1% - 0.3%. If applied to field crops, it can be evenly sprinkled around the roots according to the above soil application amount, then covered with soil, watered, iron aid into the soil, and root absorption.
Foliar spraying should be selected at an appropriate time. It is suitable to do it in the early morning or evening. At this time, the temperature is low, the humidity is high, and the stomata of the leaves are open, which is conducive to the absorption of iron. When spraying, the front and back sides of the leaves should be coated with medicine, and strive to be uniform.
When applying soil, mix well with the soil. You can mix iron with fine soil first, then sprinkle it in the field, and turn it into the soil. In this way, the iron agent is evenly distributed, so as not to damage the roots with high local concentration.
After using this agent, observe the reaction of the crops. If the leaves gradually turn green, the growth potential is good, indicating that the iron deficiency is relieved. If it doesn't work, check the method and dosage, and consult an agricultural technician if necessary to adjust the dosage.
After using it, store the iron agent properly. Keep it in a cool, dry place away from direct sunlight and moisture to prevent the iron agent from deteriorating and ensure its effectiveness. In this way, Fangde is using Ethylenediamine - N, N '- Bis (o-hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron to solve the iron deficiency of plants and promote their growth.
Ethylenediamine-N, N '-Bis (o-hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron What are the storage conditions?
Ethylenediamine - N, N '-Bis (o-hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron (ethylenediamine - N, N' -bis (o-hydroxyphenyl) ferric acetate 6% ethylenediamine di-hydroxyphenylacetic acid Chelated Iron) is a very important compound. Its storage conditions are quite critical, related to the quality and utility of this compound.
This compound should be stored in a cool and dry place. Cover a cool environment to avoid the variation of its properties caused by high temperature. High temperature can often accelerate chemical reactions, or cause them to decompose and deteriorate, damaging their active ingredients. And a dry place can prevent it from getting wet. Moisture can easily cause many problems, such as hydrolysis, hydrolysis, etc., which can change the chemical structure of the compound and reduce its effectiveness.
and must be placed in a well-ventilated place. Well-ventilated, can allow air circulation, avoid the accumulation of harmful gases in the local environment, and have adverse effects on it. At the same time, it should be kept away from fire sources and oxidants. Fire sources are at risk of triggering combustion, and oxidants are prone to oxidative reactions with the compound, changing its chemical properties and causing it to fail.
Storage places should be clearly marked, indicating the name, characteristics and storage precautions of the substance. In this way, when accessing and managing, everyone can clarify the relevant requirements and prevent wrong operation from damaging its quality. In conclusion, according to these storage conditions, the quality and stability of Ethylenediamine - N, N '- Bis (o - hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron are guaranteed.
Ethylenediamine-N, N '-Bis (o-hydroxyphenyl) Acetic Acid Fe6% EDDHA Chelated Iron Can be mixed with other fertilizers
Whether ethylenediamine-N, N '-bis (o-hydroxyphenyl) ferric acetate (Fe6% EDDHA chelated iron) can be mixed with other fertilizers is related to the effectiveness of farming and cannot be ignored.
This chelated iron has a unique chemical structure and is relatively stable in nature. However, whether it can be mixed with other fertilizers depends on a variety of factors.
If it encounters alkaline fertilizers, such as plant ash, which contain alkaline substances such as potassium carbonate, it can chemically react with chelated iron. Because iron ions will combine with hydroxide ions in basic substances to form iron hydroxide precipitation, the effectiveness of ferrogenic elements will drop sharply, and the fertilizer effect will be greatly reduced. Therefore, such alkaline fertilizers cannot be mixed with Fe6% EDDHA chelated iron.
And for neutral or acidic fertilizers, such as potassium sulfate compound fertilizer (weakly acidic), in a reasonable proportion, it can be mixed with chelated iron. Because it does not significantly change the chemical structure and iron ion activity of chelated iron, and can provide a variety of nutrients for crops at the same time, which complement each other.
In addition, some phosphorus-containing fertilizers also need to be cautious. Although phosphorus is necessary for crop growth, excessive phosphorus can form insoluble compounds with iron ions, which affects the absorption of iron. For example, if superphosphate is mixed with chelated iron, the ratio and mixing method should be strictly controlled to ensure that both can play a fertilizer effect.
In short, whether Fe6% EDDHA chelated iron is mixed with other fertilizers or not, it is necessary to check the acidity and alkalinity, chemical composition and other characteristics of the fertilizer in detail, and then apply it on a large scale after a small-scale test to avoid agricultural mistakes and damage to harvest.