Gluconic Acid Sodium Salt

Gluconic Acid Sodium Salt

Gluconic acid sodium salt is a compound with formula NaC6H11O7.It is the sodium salt of gluconic acid. This white, water-soluble powder has a wide range of applications across industries. Originally derived from gluconic acid in the 19th century, Sodium Gluconate is known for its chelating properties and is utilized as a chelating agent in various processes.
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Product Introduction

What is Gluconic Acid Sodium Salt

 

 

Gluconic acid sodium salt is a compound with formula NaC6H11O7.It is the sodium salt of gluconic acid. This white, water-soluble powder has a wide range of applications across industries. Originally derived from gluconic acid in the 19th century, Sodium Gluconate is known for its chelating properties and is utilized as a chelating agent in various processes.

 

Benefits of Gluconic Acid Sodium Salt

 

 

Chelating Properties: Gluconic acid sodium salt exhibits excellent chelating properties, effectively binding to metal ions and preventing their negative impact on food, cleaning products, and concrete mixes. It enhances product stability, improves performance, and prevents mineral deposits.

 

Environmental Friendliness: Gluconic acid sodium salt is non-toxic and environmentally friendly. It is biodegradable and does not pose significant environmental risks, making it a sustainable choice for various applications.

 

Improved Product Performance: In food, cleaning, and concrete applications, gluconic acid sodium salt enhances product performance by improving texture, preventing mineral buildup, and increasing workability.

 

PH Regulation and Stability: Gluconic acid sodium salt acts as a pH regulator, ensuring the desired acidity or alkalinity in formulations. It helps maintain product stability and extends shelf life.

 

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Superplasticizer For Concrete Sodium Gluconate

With the increasing demand for high-performance concrete, superplasticizers have become an essential component in the construction industry. These admixtures are added to the concrete mixture to enhance workability and strength. One type of superplasticizer is sodium gluconate.Powder

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Food Grade Sodium Gluconate

Food Grade Sodium Gluconate

Using:Food additive
Molecular Formula:C6h11nao7
CAS No:527-07-1
H.S. Code: 29181600
Colour:White or Yellow Power

Industrial Grade Sodium Gluconate

Industrial Grade Sodium Gluconate

Type:water-reducing admixture
Using:Concrete Admixture
Molecular Formula:C6h11nao7
CAS No:527-07-1
H.S. Code: 29181600
Colour:White or Yellow Power

Construction Chemical Sodium Gluconate

Construction Chemical Sodium Gluconate
Type:water-reducing admixture
Using:Concrete Admixture
Molecular Formula:C6h11nao7
CAS No:527-07-1
H.S. Code: 29181600
Colour:White or Yellow Power

Sodium Gluconate Powder

Sodium Gluconate Powder
Type:water-reducing admixture
Using:Concrete Admixture
Molecular Formula:C6h11nao7
CAS No:527-07-1
H.S. Code: 29181600
Colour:White or Yellow Power

Drilling Chemicals Xanthan Gum

Water Reducing Agent Sodium Gluconate
Type:water-reducing admixture
Using:Concrete Admixture
Molecular Formula:C6h11nao7
CAS No:527-07-1
H.S. Code: 29181600
Colour:White or Yellow Power

Superplasticizer Sodium Gluconate

Water Reducing Agent Sodium Gluconate
Type:water-reducing admixture
Using:Concrete Admixture
Molecular Formula:C6h11nao7
CAS No:527-07-1
H.S. Code: 29181600
Colour:White or Yellow Power

Superplasticizer Sodium Gluconate

Superplasticizer Sodium Gluconate

Type:chelating agent
Using:scale formation and metal corrosion
Molecular Formula:C6h11nao7
CAS No:527-07-1
H.S. Code: 29181600
Colour:White or Yellow Power

Xanthan Gum Polymer

Gluconic Acid Sodium Salt

Type:water-reducing admixture
Using:Concrete Admixture
Molecular Formula:C6h11nao7
CAS No:527-07-1
H.S. Code: 29181600
Colour:White or Yellow Power

 

Why Choose us
 

Quality Assurance
The company has developed into shandong province AAA credit enterprises, high-tech enterprises. Our products include sodium gluconate, Xanthan gum Titanium dioxideall Citric acid of which are certified by ISO9001, ISO22000, KOSHER, HALAL, HACCP, API certification etc.

 

Cutting-edge technology
Our company has a complete set of testing equipment, a perfect testing laboratory, microbial culture laboratory, and millions of ICP trace element testing equipment. A perfect blend of global experience andexpertise to further our focus on technology.

 

Rich Experience
Our company has many years of production work experience. The concept of customer-oriented and win-win cooperation makes the company more mature and stronger.

 

Enhancing Industrial Performance: Versatile Applications Of Gluconic Acid Sodium Salt

 

Concrete admixture: Enhancing durability and workability
In the construction industry, gluconic acid sodium salt is widely used as a concrete admixture. It acts as a powerful plasticizer and retarder, improving the workability and durability of concrete. By slowing down the setting time of concrete, gluconic acid sodium salt allows for more extended periods of work, which is particularly advantageous in hot weather conditions or large-scale projects where delays might occur.
Additionally, gluconic acid sodium salt enhances the water-to-cement ratio, creating a more homogenous and workable mix. This results in concrete with better mechanical properties, increased strength, and reduced permeability. The improved durability ensures structures can withstand environmental stressors, providing long-term benefits and reducing the need for repairs and maintenance.

 

Water treatment: Effective descaling and corrosion control
One of the primary uses of gluconic acid sodium salt is in water treatment, where it serves as an efficient descaling and corrosion control agent. Its excellent chelating properties enable it to bind with metal ions such as calcium, iron, and magnesium, preventing them from forming scale deposits. It helps maintain the efficiency of heat exchangers, boilers, and cooling towers, reducing maintenance costs and downtime.
Moreover, gluconic acid sodium salt's ability to form stable complexes with metal ions effectively prevents corrosion. By inhibiting the oxidation of metal surfaces, it extends the lifespan of water systems and pipelines. This attribute is particularly beneficial for industries that rely heavily on water circulation systems, ensuring their longevity and optimal performance.

 

Drilling operations: Reducing fluid loss
In drilling, gluconic acid sodium salt plays a crucial role as an additive in drilling fluids. Its ability to stabilize and maintain the viscosity of drilling muds is essential for efficient drilling operations. By reducing fluid loss, gluconic acid sodium salt helps maintain the integrity of the borehole, preventing complications that can arise from excessive fluid penetration into the surrounding formations.
Using gluconic acid sodium salt in drilling operations also improves the overall efficiency of the process. It minimizes the risk of wellbore instability and enhances the performance of drilling fluids, ensuring smoother and more cost-effective drilling activities. It is particularly important in the oil and gas industry, where operational efficiency directly impacts profitability.

 

Production Process of Gluconic Acid Sodium Salt

 

 

Gluconic acid sodium salt can be produced through the fermentation process or chemical synthesis.In the fermentation process, glucose is fermented by certain microorganisms, typically strains of aspergillus niger or pseudomonas. Gluconic acid is the primary product of this fermentation, and gluconic acid sodium salt is derived by neutralizing gluconic acid with sodium hydroxide.

 

Source of gluconic acid: The production of gluconic acid sodium salt commences with its precursor, gluconic acid. This organic acid is often obtained through a fermentation process. Glucose, or other sugar sources, serves as the substrate for microorganisms, typically bacteria or fungi, to produce gluconic acid.

 

Conversion to gluconic acid sodium salt: Once gluconic acid is harvested, it undergoes a transformation into gluconic acid sodium salt. The conversion primarily involves a chemical reaction where gluconic acid is neutralized with sodium hydroxide (naoh). This reaction results in the formation of gluconic acid sodium salt, where the sodium ions (na+) replace the hydrogen ions (h+) in gluconic acid.

 

Purification and crystallization: Purification often includes filtration and chemical treatments to achieve the desired level of purity. Following purification, the solution is subjected to crystallization.

 

Drying and packaging: After crystallization, the gluconic acid sodium salt crystals still contain residual moisture. Drying may involve processes like air drying or spray drying.

 

What is the Mechanism of Gluconic Acid Sodium Salt
 
 

Gluconic acid sodium salt is a compound that has gained widespread attention and utility across various industries, including food, pharmaceuticals, and construction. This is largely due to its chelating properties, which enable it to bind to metal ions and prevent undesirable reactions. To understand the mechanism of gluconic acid sodium salt, it is crucial to delve into its chemical structure, functional properties, and the specific ways it interacts with other substances.

 
 

Chemically, gluconic acid sodium salt is the sodium salt of gluconic acid. It is a white, crystalline powder that is highly soluble in water. The gluconate ion has a molecular formula of c6h11o7^- and is derived from the oxidation of glucose. The structure of the gluconate ion includes a six-carbon chain with multiple hydroxyl groups (-oh) and a carboxylate group (-coo^-) at one end. This configuration allows it to readily engage in chelation, a process where the gluconate ion forms stable complexes with metal ions.

 
 

One of the primary mechanisms by which gluconic acid sodium salt functions is through its role as a chelating agent. In aqueous solutions, the gluconate ion can bind to metal ions such as calcium, iron, and magnesium. This chelation process involves the formation of coordinate bonds between the metal ions and the electron-donating oxygen atoms present in the carboxylate and hydroxyl groups of the gluconate ion. By sequestering these metal ions, gluconic acid sodium salt prevents them from participating in reactions that could lead to precipitation, scaling, or oxidation. This property is particularly valuable in cleaning and personal care products, where it helps to soften water and enhance the effectiveness of detergents and soaps.

 
 

In the construction industry, gluconic acid sodium salt is used as a concrete additive. It functions as a set retarder by delaying the hydration process of cement. This is achieved through the chelation of calcium ions, which are crucial for the formation of calcium silicate hydrates that contribute to the hardening of cement. By binding to these ions, gluconic acid sodium salt slows down the rate at which they are available for reactions, thus extending the working time of concrete mixtures. This property is especially beneficial in hot weather conditions or when long transport times are involved, as it helps to maintain the workability and finish quality of concrete.

 
 

Gluconic acid sodium salt also finds applications in the food and pharmaceutical industries due to its safety and efficacy. In food products, it acts as a sequestrant, stabilizer, and thickener. Its ability to chelate metal ions helps to prevent discoloration and off-flavors caused by oxidative reactions. In pharmaceuticals, gluconic acid sodium salt is used to enhance the bioavailability of certain drugs by preventing their precipitation and facilitating their absorption in the gastrointestinal tract.

 
 

Another important aspect of the mechanism of gluconic acid sodium salt is its biodegradability. Unlike some synthetic chelating agents, gluconic acid sodium salt is readily broken down by microorganisms in the environment. This makes it an eco-friendly choice in applications where environmental impact is a concern. The biodegradation process involves the microbial oxidation of the gluconate ion, ultimately converting it into carbon dioxide and water.

 
 

The mechanism of gluconic acid sodium salt is primarily based on its ability to chelate metal ions through the formation of stable complexes. This property enables it to function effectively in a wide range of applications, from improving the performance of cleaning agents and construction materials to enhancing the stability and quality of food and pharmaceutical products. Its biodegradability further adds to its appeal as a versatile and environmentally friendly compound. Understanding these mechanisms not only highlights the multifaceted utility of gluconic acid sodium salt but also underscores its importance in various industrial and consumer applications.

 

 

Our Factory

 

Dezhou Yuanjin Biotechnology Co.,Ltd. is located in dezhou city, Shandong Province, China with beautiful scenery and convenient transportation. The company has developed into shandong province AAA credit enterprises, high-tech enterprises. Our products include sodium gluconate, Xanthan gum Titanium dioxideall Citric acid of which are certified by ISO9001, ISO22000, KOSHER, HALAL, HACCP, API certification etc. Our products sell well both at home and abroad. Sales area covers more than 20 provinces in China, Southeast Asia, Europe,Middle Eastern countries, Africa and other regions more than 50 countries. The annual output value of the company is 10 billion yuan and the annual profit is 50 million yuan. Scientific and technological innovation is the driving force of the company's sustainable development.

Our company is an enterprise integrating scientific research, production, testing and sales. Our company has a complete set of testing equipment, a perfect testing laboratory, microbial culture laboratory, and millions of ICP trace element testing equipment. A perfect blend of global experience andexpertise to further our focus on technology.

Our company hopes to be the "customer is God, quality is fundamental" purpose, "customer satisfaction, continuous improvement - is our pursuit" principle, in the days to come, as always, wholeheartedly for new and old customers to provide quality products and services. Thanks to our stable quality and good service, many good partners have good cooperation from now to the future.

 

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Asked Questions
 

Q: Is gluconic acid sodium salt safe to eat?

A: Gluconic acid is used in the manufacture of metal, leather, and food. It has been accredited with the capability of inhibiting bitterness in foods. Gluconic acid sodium salt is permitted in food and it has gras (generally recognized as safe) status.

Q: What are the benefits of gluconic acid sodium salt?

A: It acts as a water reducer and retarder, enhancing the workability and performance of concrete. Textiles: In textile dyeing and printing, it is utilized as a chelating agent to improve color fastness. Metallurgy: Gluconic acid sodium salt is employed for metal surface treatment and cleaning, particularly for steel surfaces.

Q: Is gluconic acid sodium salt natural or synthetic?

A: Gluconic acid sodium salt is a white crystalline powder that is a salt of gluconic acid, a compound found naturally in fruits and honey. Gluconic acid sodium salt has many uses, including as a chelating agent, which means it can bind to metal ions and prevent them from reacting with other substances in the environment.

Q: Is gluconic acid sodium salt fda approved?

A: Gluconic acid sodium salt. (b) conditions of use. This substance is generally recognized as safe when used in accordance with good manufacturing or feeding practice.

Q: What does gluconic acid sodium salt do for hair?

A: Gluconic acid sodium salt is used to improve the performance and appeal of many hair care products. It removes unwanted metal ions from the products, improving the clarity and reducing the buildup of minerals on hair. Gluconic acid sodium salt also prevents dryness and breakage, leaving hair looking and feeling healthier.

Q: Is it safe to eat gluconic acid sodium salt?

A: Gluconic acid sodium salt is generally recognized as safe (gras) by the fda.

Q: Can you be allergic to gluconic acid sodium salt?

A: This medicine may cause serious types of allergic reactions, including anaphylaxis and kounis syndrome, which can be life-threatening and require immediate medical attention.

Q: Is gluconic acid sodium salt organic or inorganic?

A: Gluconic acid sodium salt is an organic sodium salt having d-gluconate as the counterion. It has a role as a chelator.

Q: Is gluconic acid sodium salt an electrolyte?

A: In large volume parenterals, gluconic acid sodium salt provides sodium ions (na⁺), which are essential for maintaining electrolyte balance in the body. Sodium is one of the key electrolytes responsible for maintaining fluid balance, nerve function, and muscle contraction.

Q: How to use gluconic acid sodium salt?

A: Add it to the water phase of a formulation at 25 oc.
Stir it continuously using a propeller.
Add surfactant phase of choice to this solution at room temperature.
Use sodium hydroxide to maintain the ph value.

Q: Where does gluconic acid sodium salt come from?

A: Gluconic acid sodium salt is the sodium salt of gluconic acid, produced by fermentation of glucose. It is a white to tan, granular to fine, crystalline powder, very soluble in water.

Q: What does gluconic acid sodium salt do in toothpaste?

A: Gluconic acid sodium salt plays an important role as stabiliser for fluoride delivery systems in toothpaste formulations.

Q: What is gluconic acid sodium salt in laundry detergent?

A: Gluconic acid sodium salt is used in cleaning formulations across several applications. Gluconate is used in detergent formulations both in industry and home/ personal care. Gluconic acid sodium salt is used because of its excellent chelating properties. This makes it desirable in areas where hard water is an issue.

Q: Is gluconic acid sodium salt bad for your hair?

A: Ans: Gluconic acid sodium salt is generally safe for your hair and scalp. However, avoid using it directly on your hair and scalp. Instead, use it via different hair care products like shampoos and conditioners.

Q: What does gluconic acid sodium salt do in cosmetic?

A: In addition to being a chelating agent, gluconic acid sodium salt in skin care can also function as a humectant, meaning it helps skin retain a balanced amount of water. Its typical use level in cosmetics is 0.1-1.0%.

Q: What is gluconic acid sodium salt cosmetic grade?

A: Widely used in the cosmetic industry for stabilizing purposes. Synonym: D-gluconic acid, monosodium salt. Usp grade. Stabilizes and protects cosmetic products from discoloration and rancidity of cosmetic oils and butters.

Q: Is gluconic acid sodium salt alkaline?

A: E576 (gluconic acid sodium salt) is a good chelator at alkaline ph, with chelating power relatively better than edta, nta and other chelators. E576 (gluconic acid sodium salt) has wide range of industrial applications which include textile dyeing, water treatments, printing and as cleaning agent for glass bottles.

Q: Is gluconic acid sodium salt flammable?

A: Icsc 1737 - gluconic acid sodium salt. Combustible. No open flames. Use powder, alcohol-resistant foam, water spray, carbon dioxide.

Q: What is gluconic acid sodium salt in food safety?

A: Gluconic acid is used in the manufacture of metal, leather, and food. It has been accredited with the capability of inhibiting bitterness in foods. Gluconic acid sodium salt is permitted in food and it has gras (generally recognized as safe) status.

Q: Is gluconic acid sodium salt a salt?

A: Gluconic acid sodium salt is an organic sodium salt having d-gluconate as the counterion. It has a role as a chelator. It contains a d-gluconate. Gluconic acid sodium salt is the sodium salt of gluconic acid with chelating property.

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