Oligosaccharides Chelate B+Mo

Oligosaccharides Chelate B+Mo

This product is a clear and transparent product made from oligosaccharides such as Erythritol, Mannitol, Xylitol and Lactitol, and boron and zinc elements through a high-temperature chelation process. liquid. This product is in Golden Clear state, with no impurities, no precipitation, no precipitates, no crystals, high density (1.3-1.35), and a stable pH value between 8.0-9.0.

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Product Code:
XFCL1004
OEM:
Available
Sample:
Available
Port:
MAIN PORT, CHINA
Payment:
PayPal,Western Union,T/T
Place of Origin:
China
Shipping:
Sea freight · Land freight · Air freight
Supply Ability:
10000 ton per Month
Apperance
Golden Clear liquid
Chitosan Oligosaccharide
20-30g/L
Seaweed Oligosaccharide
20-30g/L
Amino Acid
20-30g/L
B
120-130g/L
Mo
5-10g/L
Erythritol
30-40g/L
Mannitol
30-40g/L
Xylitol
30-40g/L
Lactitol
30-40g/L
Density
1.3-1.35
PH
8.0-9.0
Catelog of Oligosaccharides Chelate Clear Liquid
 

Model No.

Product Name

Sugar Alcohol

Content

Appearance

Density

PH

XFCL1001

Oligosaccharides Chelate Ca+B

 

 

Erythritol:30-40g/L

Mannitol:30-40g/L;

Xylitol: 30-40g/L

Lactitol:30-40g/L;

Ca: 120-130g/LB : 8-10g/L;

Transparent Clear liquid

1.40-1.45

3.0-4.0

XFCL1002

Oligosaccharides Chelate B

B : 150-160g/L;

Golden Clear liquid

1.3-1.35

8.0-9.0

XFCL1003

Oligosaccharides Chelate B+Zn

B : 120-130g/L; Zn:8-10g/L;

Golden Clear liquid

1.3-1.35

8.0-9.0

XFCL1004

Oligosaccharides Chelate B+Mo

B : 120-130g/L; Mo:5-10g/L;

Golden Clear liquid

1.3-1.35

8.0-9.0

XFCL1005

Oligosaccharides Chelate Medium & trace elements

 

 

 

 

Erythritol:30-50g/L

Mannitol:30-35g/L;

Xylitol: 50-60g/L

Lactitol:60-70g/L;

N:70-75g/L S: 5-10g/L Ca:90-95g/L

Mg:10-15g/L Zn:30-35g/L B:0.5-1g/L

Fe: 0.5-1g/L Cu:3-5g/L Mn:0.5-1g/L

Mo:0.5-1g/LCl: 0.5-1g/L La:0.5-1g/L

Ce:0.5-1g/L Ti: 0.1-0.3g/L

Green Clear liquid

1.40-1.45

 

1.0-2.0

XFCL1006

Oligosaccharides Chelate Major& medium elements

N:30-35g/L P2O5:490-500g/L K2O:40-45g/LS: 5-10g/L Ca:10-15g/L Mg:10-15g/L Zn:90-100g/L B:5-10g/L

Fe: 2-5g/L Cu:8-10g/L Mn:0.5-1g/L Mo:0.5-1g/L Ce:0.5-1g/L Ti: 0.1-0.3g/L

Blue Clear liquid

1.55-1.60

1.0-2.0



Oligosaccharides Chelate B+Mo

 
1.Product specifications:

Appearance

Golden Clear liquid

Chitosan Oligosaccharide

20-30g/L

Seaweed Oligosaccharides

20-30g/L

Amino Acid

20-30g/L

B

120-130g/L

Mo

5-10g/L

Erythritol

30-40g/L

Mannitol

30-40g/L

Xylitol

30-40g/L

Lactitol

30-40g/L

Density

1.30-1.35

PH

8.0-9.0


2. Product characteristics:

2.1 High stability: A stable liquid is formed through high-temperature chelation technology, which is not easy to decompose or fail after long-term storage.
2.2 High purity: clear and transparent, no impurities and no precipitation, ensuring the high purity of chelated boron and molybdenum elements.
2.3 Good solubility: the liquid form is easy to mix with other liquids and easy to use.
2.4 High safety: The sugar alcohols used are all from natural sources and are environmentally and biologically friendly.
2.5 High density: Compared with ordinary liquids, higher density may mean better solubility and permeability.


3. Production process:

3.1 Raw material preparation: Select high-quality Erythritol, Mannitol, Xylitol and Lactitol as raw materials, and prepare compounds of boron and molybdenum elements.
3.2 Chelation reaction: Under high temperature conditions, perform a chelation reaction between sugar alcohols and compounds of boron and molybdenum elements to ensure that boron and molybdenum elements are effectively chelated by sugar alcohols.
3.3 Filtration and purification: Finely filter the reaction liquid to remove possible impurities and unreacted raw materials to ensure the purity and quality of the product.
3.4 Adjust the pH value: Adjust the pH value of the liquid as needed to control it between 8.0-9.0.
3.5 Testing and packaging: Carry out quality testing on the filtered liquid, including density, PH value, chelation rate and other indicators, and package it after passing the test.

4. Process characteristics

4.1 High-temperature chelation: High-temperature chelation technology is used to ensure that boron and molybdenum elements are fully combined with sugar alcohols to form stable chelates.
4.2 Fine filtration: Through fine filtration process, impurities and unreacted raw materials are removed to improve the purity and quality of the product.
4.3 pH adjustment: Adjust the pH of the liquid to ensure that the product remains stable within a specific pH range.
4.4 Strict quality control: From raw materials to finished products, strict quality control is carried out throughout the process to ensure that products meet standards.

5. Product Application:

5.1 Chemical industry:
As a boron source and molybdenum source, it is used to prepare various boron and molybdenum-containing compounds and catalysts.
As a stabilizer, used to improve the stability and performance of chemicals.

5.2 Agriculture:
As a trace element nutrient supply, it provides the boron and molybdenum elements needed by plants to promote plant growth and development.
Improve soil quality, increase soil water retention capacity and fertility.
Improve the stress resistance of crops, such as drought resistance, disease resistance, etc.
Promote the absorption and utilization of nutrients by crops and improve crop yield and quality

5.3 The main functions of boron include:

Participate in the composition and stability of cell walls: Boron in plants is mainly complexed with galactomannan in the cell wall in the form of boric acid to form a stable complex.
Promote cell division: Boron is necessary for the active growth zone of plants. It ensures the health of the plant's storage and conductive tissues and enables a stable supply of nutrients, water, etc.
Increase the transport rate of sugars: Boron can increase the transport rate of sugars produced through photosynthesis in functional leaves and transport them to active growth areas and developing flowers and fruits.
Interaction with auxin: Boron can inhibit the activity of indole acetic acid oxidase and improve its efficiency. Specifically, it promotes flower germination, fruit development, cell wall and tissue formation, root elongation, etc.
Promote flowering and fruiting: Boron significantly promotes pollen germination and pollen tube growth. When boron is deficient, the pollen tube cannot elongate due to abnormal cell wall development. In addition, the stability of the plasma membrane is poor, the deployment of sugars is hindered, and some extravasate, ultimately affecting the fertilization process, resulting in flowers that are not solid and flower and fruit drop. , large and small particles, etc. occur.
Boron can also enhance crop resistance to drought and disease and promote early maturation of crops.

5.4 The main functions of molybdenum include:

Participate in nitrogen metabolism in plants: Molybdenum is the active component of nitrate reductase. Nitrate reductase can be found in most plant species and even fungi and bacteria. It may be a key factor for plants to live in a wide range of nitrogen environments.
Promotes phosphorus uptake and transport: Molybdenum is also involved in biological nitrogen fixation processes, as well as phosphorus uptake and transport by plants.
It is beneficial to the formation of chlorophyll and promotes photosynthesis: molybdenum element can promote the absorption of iron, which is an important component of chlorophyll; at the same time, molybdenum element is also an important component of the chloroplast coating. If crops are deficient in molybdenum, leaves will become chlorotic and yellow during growth.
Improve the transport capacity of nutrients in plants: Molybdenum mainly exists in microtubule bundles and phloem in plants. After supplementing molybdenum, the transport of nutrients in these locations will be faster and smoother, especially the transport of carbohydrates, and plant growth will be improved. better.
Promote the absorption of phosphorus by plants and reduce the harm of active aluminum: Molybdenum element can also reduce the harm of active aluminum enriched in plants, which is harmful to plants.
Enhance the plant's metabolic capacity and resistance to adverse environments: After using molybdenum, the plant's metabolic capacity is enhanced and its resistance to adverse environments is also stronger.

6. Packaging, transaction method, delivery method, etc.:

Packaging: 1kg/25kg bag/drum with linner inside.

Payment method: Western Union; T/T; MoneyGram

7. After-sales service/customized service/sample service:

 

Packaging customization: Customized services are provided for packages above 1000KG;

Sample service: samples are available;

 

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