Products

Sodium Lauroyl Sarcosinate

    • Product Name: Sodium Lauroyl Sarcosinate
    • Alias: Sarkosyl
    • Einecs: Sodium Lauroyl Sarcosinate: 205-281-5
    • Mininmum Order: 1 g
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
    • CONTACT NOW
    Specifications

    HS Code

    905716

    Inci Name Sodium Lauroyl Sarcosinate
    Appearance Clear to pale yellow liquid
    Odor Mild
    Molecular Formula C15H28NO3Na
    Molecular Weight 293.37 g/mol
    Solubility In Water Soluble
    Ph Range 6.0 - 8.0 (10% solution)
    Surface Activity Anionic surfactant
    Function Cleansing agent, foaming agent
    Origin Derived from sarcosine (amino acid) and fatty acids (coconut/palm oil)
    Biodegradability Biodegradable
    Common Uses Shampoos, facial cleansers, toothpaste
    Irritation Potential Low to moderate, gentle on skin
    Preservative Requirements Typically requires additional preservative
    Stability Stable under normal conditions

    As an accredited Sodium Lauroyl Sarcosinate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Sodium Lauroyl Sarcosinate is packaged in a 25 kg white plastic drum with a secure screw cap and clear labeling for identification.
    Shipping **Shipping of Sodium Lauroyl Sarcosinate:** Sodium Lauroyl Sarcosinate is typically shipped in sealed, labeled containers or drums to prevent moisture absorption and contamination. Transport should be in accordance with local regulations for non-hazardous, mildly irritant chemicals. Store in a cool, dry place, away from strong acids or oxidizers. Handle with standard safety precautions.
    Storage Sodium Lauroyl Sarcosinate should be stored in a cool, dry, well-ventilated area away from heat, moisture, and direct sunlight. Keep the container tightly closed when not in use. Store separately from strong oxidizing agents and acids. Ensure it is kept in suitable, labeled containers to prevent contamination and maintain product integrity. Always follow local regulations and safety guidelines.
    Application of Sodium Lauroyl Sarcosinate

    Applications of Sodium Lauroyl Sarcosinate in Industrial Manufacturing

    Sodium Lauroyl Sarcosinate is a specialized anionic surfactant with proven performance in targeted industrial manufacturing sectors. Its unique chemical structure enables precise control over foaming, wetting, and mildness attributes, supporting compliance, process stability, and desired end product qualities. We supply this material directly from our audited facilities to ensure traceability and consistent technical support for your specific application needs.

    1. Personal Care Surfactants for Shampoos and Facial Cleansers

    Personal care manufacturers select Sodium Lauroyl Sarcosinate as a primary or secondary surfactant for sulfate-free, mild cleansing systems. Its skin compatibility, solid foaming profile, and ability to reduce irritation in finished formulations align with contemporary consumer and regulatory demands. The material enters downstream production during the surfactant batching stage, contributing to the final texture, viscosity, and mildness balance in the finished cleansers.

    Industry compliance standards

    • EU Cosmetics Regulation (EC) No 1223/2009
    • US FDA 21 CFR Cosmetics - Ingredients Permitted for Use
    • China Cosmetic Supervision and Administration Regulation (CSAR)
    • ISO 22716 (Cosmetics GMP)

    Typical usage ratio

    • Shampoos: 3–6% as the primary surfactant, or 1–3% as a co-surfactant to improve mildness
    • Facial cleansers: 1.5–3.5% based on viscosity target and compatibility with amphoteric or nonionic surfactants

    Downstream process integration

    • Added at the surfactant blending step following deionized water charge and before viscosity modifiers
    • Heated to 40-50°C during addition to facilitate dissolution and uniform mixing with other actives
    • QC includes mildness testing (Zein Value) and foaming performance checks

    Final product types

    • Sulfate-free shampoos for sensitive or colored hair
    • Foaming and non-foaming facial cleansers
    • Children’s bath and body wash formulations
    • Micellar cleansing waters

    2. Toothpaste Foaming and Cleansing Additive

    Oral care producers use this material for its proven mildness to mucous membranes and stable foaming in abrasive toothpaste systems. It supports homogeneous dispersion of insoluble actives and ensures a low irritation profile compared to traditional SLS or SLES surfactants. Material enters the toothpaste slurry after abrasive dispersal, maintaining stable foaming throughout mixing, extrusion, and tube filling.

    Industry compliance standards

    • US FDA 21 CFR 355 (Oral Care Drug Products)
    • USP-NF Monographs (Toothpaste Quality)
    • ISO 11609 (Dentifrices - Oral Hygiene Products)
    • Cosmetics Ingredient Review (CIR)/EU Cosmetics Inventory

    Typical usage ratio

    • 0.8–2.0% of total toothpaste formula, subject to adjustment based on foaming and RDA (abrasivity) targets

    Downstream process integration

    • Added after dispersion of abrasives (silica, calcium carbonate) into the binder gel
    • Batch processed with flavor oils, humectants, and actives before final homogenization
    • pH adjusted to 6.5–8.0 to ensure compatibility and foam profile

    Final product types

    • Whitening toothpastes for sensitive teeth
    • Children’s and low-foaming dental gels
    • Herbal or natural-positioned toothpaste lines

    3. Industrial Hard Surface Cleaning Solutions

    Commercial and institutional cleaning manufacturers use this ingredient to achieve rapid wetting, controlled foam, and easy rinsing properties in hard surface cleaners. Its compatibility with metal, glass, plastic, and ceramic substrates, as well as low residue after drying, meets sanitary and occupational risk requirements. The surfactant is blended with solvents, chelators, and alkaline boosters at the bulk mixing stage.

    Industry compliance standards

    • US EPA Safer Choice Standard (when applicable)
    • REACH (EC 1907/2006) Annex XVII, Detergents Regulation (EC 648/2004)
    • GB 38597-2020 (China Hygiene Standards for Detergents)

    Typical usage ratio

    • 0.5–2.5% depending on soil profile: higher for greasy kitchen degreasers, lower for glass or stainless steel cleaners

    Downstream process integration

    • Added to alkaline or neutral pH detergent bases during aqueous blending
    • Combined with nonionic or amphoteric surfactants for tailored foam control
    • Quality control includes surface residue, streak-free finish, and foam profile testing

    Final product types

    • Multipurpose household and industrial hard surface sprays
    • Non-streaking glass cleaners
    • Metal-safe degreasing formulations
    • Dishwashing liquids (manual, institutional)

    4. Textile Fiber Scouring and Wetting Agents

    Sodium Lauroyl Sarcosinate finds application in continuous and batch textile scouring due to its high wetting and dispersing efficiency, gentle action on delicate fibers, and low foaming in high-speed wash processes. It helps remove knit lubricants, natural waxes, and processing oils from both synthetic and natural fibers prior to dyeing or finishing. Direct addition into the scouring bath during pre-treatment minimizes redeposition risks and enhances dye uptake uniformity.

    Industry compliance standards

    • ZDHC MRSL v3.1 (Zero Discharge of Hazardous Chemicals)
    • OEKO-TEX Standard 100 (Class I-IV)
    • GB/T 26397-2011 (China Textile Wet Processing Chemicals)

    Typical usage ratio

    • 0.2–0.6% on weight of fabric (owf) as wetting or scouring agent, adjusted for fabric GSM, fiber type, and bath load

    Downstream process integration

    • Dosed directly into the scouring bath or continuous washing lines prior to alkali and peroxide treatments
    • Batch and continuous dosing possible, with temperature stability maintained between 40–90°C
    • Treated effluent handled per textile ETP standards

    Final product types

    • Knit and woven fabric rolls for garments
    • Industrial nonwovens
    • Textile yarns for further processing
    • Home textile base fabrics

    5. Mild Liquid Hand Soap Concentrates

    Formulators engaged in retail and institutional soap production use this material for its synergy in mild, sulfate-free liquid hand washes. It allows controlled foaming and skin compatibility, essential for frequent-use products in hospitality, healthcare, and office environments. Integration occurs in both concentrated and ready-to-use dilutions, after thickener and preservative addition, to stabilize clarity and flow properties.

    Industry compliance standards

    • EU CLP Regulation (EC) No 1272/2008 for Detergents
    • US FDA 21 CFR Soaps (where applicable)
    • Health Canada Cosmetic Ingredient Hotlist
    • GMP ISO 22716

    Typical usage ratio

    • 1.8–4.0% in finished liquid soap bases, varying by desired foam stability and viscosity in metered dispensers

    Downstream process integration

    • Added post-viscosity modification, pre-perfume, and color addition steps
    • Blended at controlled temperature (25–40°C) to avoid turbidity
    • Finished concentrate typically filtered before packaging

    Final product types

    • Liquid hand soap for institutional dispensers
    • Foaming hand wash for public restrooms
    • Refill liquid soap cartridges

    6. Shaving Creams and Mousse Manufacturing

    Producers of aerosol and tub shaving creams rely on this agent to create stable, creamy lather that rinses easily and reduces skin irritation. It works in both direct and indirect emulsification processes, helping disperse oils, humectants, and other actives. The surfactant is incorporated before propellant addition in aerosol systems, or before aeration in non-aerosol mousses.

    Industry compliance standards

    • EU Cosmetics Regulation (EC) No 1223/2009
    • US FDA 21 CFR Cosmetics
    • Japan Standards for Cosmetics
    • ISO 22716 (GMP for Personal Care Products)

    Typical usage ratio

    • 1.0–3.5% in the finished emulsion system; selected based on required foam structure, stability duration, and mildness profile

    Downstream process integration

    • Pre-mixed with other surfactants, emollients, and humectants before base emulsification
    • Added before final foaming or propellant blending for aerosol formulations
    • Consistency checked for foaming height and collapse time per batch

    Final product types

    • Aerosol shaving foams
    • Tub and pump shaving creams
    • Shaving mousse and gel-to-foam products

    Free Quote

    Competitive Sodium Lauroyl Sarcosinate prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please contact us at +8615365186327 or mail to admin@ascent-chem.com.

    We will respond to you as soon as possible.

    Tel: +8615365186327

    Email: admin@ascent-chem.com

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    Certification & Compliance
    More Introduction

    Sodium Lauroyl Sarcosinate: A Reliable Choice from a Manufacturer’s Perspective

    The Chemistry Behind Sodium Lauroyl Sarcosinate

    Sodium Lauroyl Sarcosinate comes from a blend of science and practical demand. The molecular structure stands out within surfactant categories by combining a lauric acid tail with sarcosine, a naturally occurring amino acid. Once neutralized with sodium, this molecule delivers notable surface activity while remaining gentle on skin and materials. Our process harnesses reliable raw materials, controls reaction stages tightly, and maintains purity batch after batch. As a direct producer, from vessel monitoring to final drying and sieving, we see how careful chemistry ensures consistent performance for end applications.

    Our Production and Quality Standards

    From the start, we place traceability at the core of production. Every lot draws from certified lauric acid sources and sarcosine yields, ensuring the sodium salt conversion proceeds cleanly. Our tanks and reactors, maintained under specific pH and temperature controls, minimize side reactions and produce an active matter that meets customer benchmarks. We sample, test, and verify the sodium content, residual fatty acids, and color. Each parameter gets logged and checked before anything leaves our warehouse. Over the years, improvements in the process have dropped impurity levels and met more stringent market demands.

    Specifications Our Customers Depend On

    Long experience in this field has taught us that customers count on active content consistency, fair pH values, and physical stability. Our Sodium Lauroyl Sarcosinate typically runs between 28% and 32% active matter in liquid grades, with solids content matching by demand for powdered or granular forms. We offer cosmetic and industrial grades, based on use. Color clarity and odor remain low due to strict purification, and each batch avoids cloudiness or precipitation under expected storage conditions. These features come from continuous dialogue with formulators and decades of running real-world quality checks, not just reference books.

    Performance in Applications

    Cleansers, shampoos, facial foams, and oral care products rely on the properties of Sodium Lauroyl Sarcosinate to balance mildness and cleaning power. Creators of sulfate-free and “gentle” formulas come to us for a surfactant that produces dense, elastic foam without harshness. In use, the molecule’s amphoteric nature lets it interact smoothly with hard water, minimize irritation, and blend with anionic, nonionic, or amphoteric partners. We have seen major personal care brands reformulate to include our product, aiming to answer consumer calls for sensitive-skin options. At industrial sites, parts washers and ultrasonic cleaners benefit from its residue-minimizing rinse and biodegradable profile. Its broad utility comes from decades of product feedback loops, lab testing, and field trials.

    Comparing with Other Surfactants

    Manufacturers who switch from sodium lauryl sulfate (SLS) or other sulfated surfactants often cite two main improvements: gentler touch and flexibility in blends. Unlike SLS, our Sodium Lauroyl Sarcosinate does not strip oils or spike irritation, even at significant use levels. In systems where pH matters or stability with cationic agents is essential, our product delivers without fuss. While alkyl polyglucosides remain popular for their plant-based image, they do not foam as richly or rinse as cleanly as our sarcosinate salt. In contrast to coco betaine, our product avoids buildup or tacky feeling on skin and resists thickening in cold conditions. These real-life distinctions come right from feedback logs and batch trials run with customers who bring us their toughest formulation puzzles.

    Skin Compatibility and Safety Considerations

    Our team pays close attention to test results on skin and mucosa, both in-house and reported by external labs. Decades of safety data demonstrate low irritation—meaning formulators can boost cleansing or foaming properties without increasing inflammation or “stinging” complaints from end users. This reputation relies not just on the molecule but on our commitment to supply it free from problematic impurities. By verifying residual fatty amides, monitoring NDEA and 1,4-dioxane content, and cross-checking results with global safety panels, we pass confidence down the value chain. Pediatric brands, sensitive-skin lines, and oral care developers keep coming back based on this track record.

    Environmental Profile and Sustainability

    Shifts in global regulations and consumer expectations spotlight surfactant biodegradability and aquatic safety. Sodium Lauroyl Sarcosinate scores highly for ultimate biodegradation in lab tests and field studies, breaking down effectively under aerobic and anaerobic conditions. Formulators in Europe and North America particularly push for eco-friendliness, so our production takes these priorities to heart. We’ve optimized rinsing characteristics to minimize wastewater load and adapted plant utilities to recover heat and water where possible. Material sourcing, by using palm oil-free grades when requested and auditing for responsible fatty acid production, addresses specific customer mandates. These actions matter not only for regulatory compliance, but also for aligning with supply partners building greener brands.

    Model Variants: Meeting Specialized Demands

    Our plant runs batch and continuous processes to supply several variants. Standard liquid grade comes stabilized for easy bulk handling and pumping. Powdered forms, used in tablets or as dry-blend ingredients, demand moisture protection and controlled particle sizing; our team follows up on every shipment to ensure no caking or lumping. Beyond standard actives, we have developed custom blends with fatty acid ratios tailored for unique foam profiles or solubility at low temperatures. In each case, end users work directly with our technical staff—discussing how a higher purity or modified pH profile drives easier downstream blending or faster dissolution in automated lines. These options reflect real feedback and requests from global partners relying on our versatile output.

    Supply Consistency Through Manufacturer Control

    Customers often cite concerns with third-party blending or uncertain sourcing. As the actual producer, we see every input, monitor every tank, and take responsibility for final packaging. Direct oversight allows us to solve problems within hours—trace a raw material, replace an errant pump, or adjust reactor parameters if sensors show drift. Over years of doing this, especially amid global supply disruptions, maintaining this level of control means product always matches the promised grade. Formulators appreciate not having to tweak recipes every batch and rarely face downtime linked to inconsistent raw surfactant. Detailed batch records, spot audits, and robust supplier partnerships form the backbone of long-term trust in our sodium lauroyl sarcosinate line.

    Formulator Relationships Drive Product Improvements

    We measure our output not just by lab numbers but by the performance our customers achieve in finished goods. Shampoo developers push us for finer color grades to complement clear formulas. Toothpaste teams ask for stricter taste profiles with no soapy aftertaste. Industrial partners challenge us to improve flowability or speed bulk handling. Our technical staff hold direct calls with these end users—swapping trial feedback, analyzing foam microstructure, or troubleshooting stability under high storage temperatures. Each year, this input leads not just to new product grades but also to process upgrades. Automated monitoring, inline purity checks, and even packaging rethinks have grown from these conversations. Being a manufacturer with direct customer ties keeps us nimble and responsive.

    Key Regulatory and Certification Footprints

    Markets worldwide keep building up standards for cosmetics and cleaning products. Our sodium lauroyl sarcosinate lines comply with EU (Cosmetic Regulation), US (FDA/USP), and Asia-Pacific requirements, depending on application and customer need. Certification audits—GMP for personal care, ISO for broader chemical manufacturing—run throughout the year. Our documentation covers not just composition but also processes around trace contaminants and allergen sources. For customers pursuing labels like “vegan” or “palm-free,” our documentation supports ingredient disclosure. This careful record-keeping comes from years of working side-by-side with compliance teams facing changing rules and ever-watchful brand scrutiny.

    Understanding Sodium Lauroyl Sarcosinate in Hair, Skin, and Oral Care

    We have watched the shift away from aggressive cleansers in personal care. Brands choose sodium lauroyl sarcosinate to answer growing demand for sulfate-free, milder, and more natural-looking ingredient lists. In shampoo, the foam feels creamy and leaves hair easier to detangle—our test panels repeatedly mark lower static and less frizz compared to pure SLS blends. In facial cleansers, customers see less redness and peeling. Dentifrice formulators turn to our product for a balance of foaming and gentle cleaning that supports enamel polish, without harshness consumers complain about when using other surfactants. These outcomes aren’t marketing slogans—they come from hands-on testing sessions, consumer trials, and regular feedback.

    Industrial and Home Care Reach

    Laundry brands, dish soaps, and hard surface cleaners all benefit from our sodium lauroyl sarcosinate, especially where residue-free rinsing matters. Parts washers in metalworking or electronics depend on a surfactant that won’t leave film or interfere with sensitive downstream operations. In the home, users of dish tablets or laundry pods welcome rinse speed, absence of tack, and compatibility with a wide detergent base. In these segments, physical stability during shipping, long shelf life, and non-reactivity with perfume or builder agents drive repeated procurement of our product. By working with logistic partners and packaging specialists, we adapt packing for ambient storage and long-haul resilience.

    Practical Challenges and Solutions from the Field

    Customer feedback doesn’t focus on generic specs—it’s about what works and what doesn’t day to day. Some users report pump clogs in automated factories. We’ve responded by tweaking viscosity profiles and introducing anti-caking agents that don’t interfere with surfactancy. Storage under humid conditions can cause clumping; our technical team found fixable packaging adjustments. Others need long shelf stability in tropical shipments; we reformulated preservatives to stretch unopened life by six months or more. Every solution traces back to being the manufacturer with a laboratory, field testing operation, and direct communication with global teams. Production troubleshooting is part of daily life here.

    Customer-Centric Innovation Moving Forward

    Expansion never means standing still. We keep upgrading plant controls, tightening environmental checks, and piloting new reactor designs. Feedback from skincare brands encourages us to push for even milder grades or to add certifications that open niche markets. Industrial users want faster-dissolving powders—so our R&D team scales up spray drying with variable inputs to balance performance without cost spikes. These innovations stem directly from what our users face, not abstract trends or analyst forecasts. Being a real manufacturer means commitment to continuous improvement, real-world troubleshooting, and staying curious about every use case a customer brings.

    Why Our Sodium Lauroyl Sarcosinate Stands Out

    Many surfactant buyers mention “just another commodity” when they start out. We have learned that these assumptions fade quickly in practice. Performance differences show up when a customer faces scale-up, regulatory audits, or new claims on product packaging. Direct manufacturing control, with deep technical knowhow, gives us an edge over traders and blending resellers. Beyond product, we offer troubleshooting, formulation advice, and logistics fixes. Every kilogram ships with our stamp—full traceability, hands-on documentation, and a reputation built batch by batch. In a sector where quality complaints and delays cost real money, that matters more each year.

    Looking Ahead for Sodium Lauroyl Sarcosinate

    Future demands require agility and depth. Regulatory landscapes shift rapidly, and sustainability targets climb year by year. Our commitment stays focused on producing sodium lauroyl sarcosinate to the highest purity, backing it with technical expertise, and strengthening supply stability. Whether a customer needs a custom cut of actives, a rare blend, or next-day technical support, direct connection to an experienced manufacturer makes all the difference. We build futures batch by batch, driven by real-world needs, and shaped by what’s happening in labs and factories every week.

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