Tartaric Acid is a naturally occurring organic acid used in cosmetic and personal-care formulations, particularly as a pH-adjusting ingredient. It is also known as 2,3-Dihydroxybutanedioic Acid and contains two carboxylic acid groups and two hydroxyl groups. Tartaric Acid has the molecular formula C₄H₆O₆ and a molecular weight of approximately 150.09 g/mol.
Tartaric Acid is naturally associated with grapes and other fruits and is commercially available in different stereochemical forms. The chemical form is important when specifying the CAS number and quality requirements of a commercial cosmetic raw material.
In cosmetic formulation, Tartaric Acid can be considered for skin-care, facial-care, cleansing and personal-care products where controlled pH adjustment is required. Its acidic properties allow formulators to modify the pH of suitable aqueous and water-containing systems.
Tartaric Acid is an alpha-hydroxy dicarboxylic acid containing two carboxylic acid groups and two hydroxyl groups. Its systematic chemical name is 2,3-Dihydroxybutanedioic Acid.
Tartaric Acid occurs naturally in several plants and fruits, particularly grapes and tamarinds. It is commercially important because of its defined chemical structure, acidic characteristics and availability in different stereochemical forms.
The molecular formula of Tartaric Acid is C₄H₆O₆, while its molecular weight is approximately 150.09 g/mol.
Tartaric Acid should not be confused with Potassium Bitartrate, Sodium Tartrate or other tartrate salts, because these are different chemical substances with different properties and applications.
Tartaric Acid is relevant to cosmetic formulation primarily because of its acidic properties and pH-adjusting capability.
Cosmetic formulations require controlled pH for many reasons. The pH of a product can influence the stability of ingredients, preservative performance, viscosity, solubility, colour, emulsion behavior and overall product characteristics.
Tartaric Acid can be incorporated during formulation development when the product requires controlled acidification.
The appropriate concentration is formulation-dependent and should be established through testing rather than applying a universal concentration to every cosmetic product.
Tartaric Acid is a diprotic organic acid. In an aqueous system, it can release hydrogen ions and thereby reduce the pH of the formulation.
The final pH depends on factors such as:
For this reason, formulators should measure the pH after incorporating Tartaric Acid and make adjustments according to the finished-product requirements.
Tartaric Acid can be evaluated in suitable skin-care formulations where pH adjustment is required.
Potential applications include:
The formulation should be evaluated for pH, stability, compatibility and appearance after the addition of Tartaric Acid.
Facial cleansers commonly contain surfactants, humectants, preservatives, fragrances and other functional ingredients.
Tartaric Acid can be considered as part of the pH-adjustment system during cleanser development.
The amount required depends on the initial pH and buffering capacity of the formulation. After adjustment, the finished cleanser should be evaluated for pH, viscosity, appearance, stability and compatibility.
Tartaric Acid can be used in selected cream and lotion formulations where an acidic pH needs to be established or adjusted.
Creams and lotions may contain emulsifiers, emollients, humectants, polymers, preservatives and cosmetic actives. Changes in pH can affect the behavior of these ingredients and may influence emulsion stability.
Tartaric Acid should therefore be incorporated under controlled conditions and the finished formulation should be evaluated for:
Tartaric Acid can be considered for suitable cosmetic serum formulations, particularly water-based systems.
Serums may contain multiple functional ingredients whose stability and compatibility depend on the formulation environment. Controlled pH adjustment can therefore be an important part of serum development.
The final product should be evaluated for pH, clarity, appearance, viscosity, stability and compatibility.
Tartaric Acid can also be evaluated in selected hair-care formulations where pH adjustment is required.
Potential applications include:
Hair-care formulations may contain surfactants, conditioning agents, polymers, preservatives and other materials that respond to changes in pH.
Tartaric Acid can therefore be considered as part of a controlled formulation pH system.
Shampoos commonly contain surfactants, conditioning ingredients, preservatives, fragrances and other cosmetic raw materials.
Tartaric Acid can be incorporated during formulation development when adjustment of shampoo pH is required.
The quantity should be determined according to the formulation's initial pH, buffering capacity and desired final pH. The finished shampoo should be tested after adjustment.
Hair conditioners can contain fatty alcohols, cationic conditioning ingredients, polymers, silicones and other functional materials.
Tartaric Acid can be evaluated as a pH-adjusting ingredient where the formulation requires an acidic environment.
Compatibility testing is important because pH can influence the behavior of conditioning ingredients and formulation stability.
Tartaric Acid can be considered for a range of personal-care formulations where controlled pH adjustment is required.
These may include:
The appropriate use depends on the formulation, target pH, ingredient compatibility and applicable cosmetic requirements.
Tartaric Acid is highly soluble in water, making it suitable for consideration in aqueous and water-containing formulations.
Its dissolution can be affected by temperature, concentration, particle characteristics and the presence of other dissolved ingredients.
Formulators should evaluate the actual commercial grade during development to determine the appropriate processing conditions.
The pH of a cosmetic product can affect several formulation characteristics.
Changes in pH may influence:
Tartaric Acid should therefore be incorporated as part of a controlled formulation-development process, followed by appropriate stability and compatibility testing.
Tartaric Acid can form salts known as tartrates.
Examples include:
These materials have different chemical identities and should not be treated as interchangeable with Tartaric Acid.
When developing a cosmetic formulation, the specific chemical form should be selected according to the intended formulation function and technical requirements.
Tartaric Acid and Citric Acid are both organic acids used in different formulation applications, but they have different chemical structures.
Tartaric Acid has the molecular formula C₄H₆O₆, whereas Citric Acid has a different molecular structure and molecular formula.
Both can contribute to acidic formulation systems, but they should not automatically be considered interchangeable.
The choice between Tartaric Acid and Citric Acid depends on the desired formulation characteristics, pH requirements, buffering behavior, compatibility and product specification.
Tartaric Acid and Malic Acid are both organic hydroxy acids, but their molecular structures are different.
Tartaric Acid contains two hydroxyl groups and two carboxylic acid groups, while Malic Acid contains one hydroxyl group and two carboxylic acid groups.
Tartaric Acid has the molecular formula C₄H₆O₆, whereas Malic Acid has the molecular formula C₄H₆O₅.
They should therefore be treated as separate cosmetic raw materials with individual specifications.
Tartaric Acid is identified by its chemical name 2,3-Dihydroxybutanedioic Acid and molecular formula C₄H₆O₆.
The molecular weight is approximately 150.09 g/mol.
Tartaric Acid has multiple stereochemical forms. L-(+)-Tartaric Acid is the naturally occurring form commonly associated with grapes, while other stereoisomeric forms include D-Tartaric Acid, meso-Tartaric Acid and racemic Tartaric Acid.
Because the CAS number can vary according to stereochemical form, the CAS number published for an SDP product should match the actual grade being supplied.
For manufacturers searching for Tartaric Acid Cosmetic Ingredient, Tartaric Acid Cosmetic Raw Material, or Tartaric Acid Manufacturer in India, the important selection factors include chemical form, stereochemical identity, CAS number, purity, assay, appearance, solubility and applicable quality specification.
Tartaric Acid can be considered particularly for cosmetic formulations requiring controlled pH adjustment.
The finished formulation should always be evaluated for pH, stability, compatibility and overall product performance.
Tartaric Acid Cosmetic Ingredient Manufacturer in India is an important commercial search phrase for cosmetic and personal-care manufacturers looking for Tartaric Acid raw material.
Swapnroop provides cosmetic raw-material solutions for professional formulation and manufacturing requirements.
Tartaric Acid can be considered for manufacturers developing skin-care, facial-care, cleansing, hair-care and personal-care products where controlled pH adjustment is required.
When sourcing Tartaric Acid, manufacturers should confirm the chemical form, stereochemical identity, CAS number, assay, purity and product-specific quality specification.
Cosmetic-Grade Raw Material: Suitable for professional cosmetic formulation development.
pH Adjustment: Suitable for formulations requiring controlled adjustment of acidic conditions.
Water-Soluble Ingredient: Suitable for evaluation in aqueous and water-containing formulations.
Skin-Care Applications: Can be considered for cleansers, creams, lotions, serums and other suitable cosmetic products.
Hair-Care Applications: Can be evaluated in shampoos, conditioners and selected hair-care formulations.
Defined Chemical Identity: Product information can be provided according to the applicable Tartaric Acid grade.
Formulation Flexibility: Suitable for formulation development across different cosmetic and personal-care categories.
B2B Cosmetic Raw Material: Intended for professional cosmetic manufacturing and formulation requirements.
Bulk Cosmetic Ingredient Supply: Suitable for commercial manufacturing applications.
Tartaric Acid can be used as a pH-adjusting ingredient in suitable cosmetic and personal-care formulations.
The molecular formula of Tartaric Acid is C₄H₆O₆.
The molecular weight of Tartaric Acid is approximately 150.09 g/mol.
The chemical name of Tartaric Acid is 2,3-Dihydroxybutanedioic Acid.
Yes. Tartaric Acid is highly soluble in water and can be considered for suitable aqueous cosmetic formulations.
The CAS number depends on the stereochemical form. 87-69-4 is commonly associated with L-(+)-Tartaric Acid, while other stereoisomeric forms have different CAS numbers. The CAS number on the SDP product page should match the actual commercial grade.
Tartaric Acid can be considered in suitable skin-care formulations such as cleansers, creams, lotions and serums where formulation pH adjustment is required.
Yes. Tartaric Acid can be evaluated in suitable shampoos, conditioners and other hair-care formulations where pH adjustment is required.
They are different organic acids with different molecular structures. Tartaric Acid has the formula C₄H₆O₆, while Citric Acid has a different chemical composition and structure.
Tartaric Acid contains two hydroxyl groups and two carboxylic acid groups, whereas Malic Acid contains one hydroxyl group and two carboxylic acid groups. Their molecular formulas are C₄H₆O₆ and C₄H₆O₅, respectively.
The required quantity depends on the initial pH, target pH, buffering capacity and formulation composition. The final product should be tested after incorporation to confirm pH and stability.
| Parameter | Specification |
|---|---|
| Appearance | White to off-white crystalline powder |