Products

Sodium Carbonate Peroxide Hydrate

    • Product Name: Sodium Carbonate Peroxide Hydrate
    • Alias: Sodium Percarbonate
    • Einecs: 285-601-3
    • 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

    299536

    Chemical Name Sodium Carbonate Peroxide Hydrate
    Common Names Sodium Percarbonate, PCS
    Chemical Formula 2Na2CO3·3H2O2·nH2O
    Molar Mass 314.02 g/mol (anhydrous)
    Appearance White crystalline powder
    Odor Odorless
    Solubility In Water Moderately soluble
    Ph Value 10-11 (1% solution)
    Decomposition Temperature Above 50°C
    Oxidizing Properties Strong oxidizer
    Cas Number 15630-89-4
    Storage Conditions Store in a cool, dry, well-ventilated area

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

    Packing & Storage
    Packing White, sturdy plastic jar with blue labeling, secure screw cap, hazard symbols; contains 500 grams of Sodium Carbonate Peroxide Hydrate.
    Shipping **Shipping Description:** Sodium Carbonate Peroxide Hydrate should be shipped in tightly sealed containers, stored away from moisture and incompatible materials. It is classified as an oxidizing agent and must be handled with care, complying with relevant regulations (e.g., DOT, IATA). Proper labeling and documentation are required to ensure safe and legal transport.
    Storage Sodium carbonate peroxide hydrate should be stored in a tightly sealed container in a cool, dry, and well-ventilated area, away from moisture, heat sources, and direct sunlight. Keep it separate from combustible materials, strong acids, and reducing agents. Ensure the storage area is equipped with appropriate spill containment and labeled clearly to prevent accidental misuse. Avoid any contamination and minimize exposure to air.
    Application of Sodium Carbonate Peroxide Hydrate

    Applications of Sodium Carbonate Peroxide Hydrate in Industrial Manufacturing

    Sodium carbonate peroxide hydrate provides controlled oxidative and alkaline properties, making it a preferred ingredient across several specialized industrial sectors. Our production process maintains strict quality benchmarks to support precise integration in high-value manufacturing operations. Below we detail key downstream applications, including technical compliance, formulation guidance, integration into production, and finished product applications based on real industrial demand.

    1. Laundry Detergent and Textile Bleaching Formulations

    As a stable oxygen-releasing compound, sodium carbonate peroxide hydrate plays a core role in oxygen bleach granules and liquid detergent manufacturing for both institutional and consumer markets. Its dual alkaline and oxidizing effect enables controlled stain removal without the harshness of direct peroxygen contact, and is widely adopted in textile pre-treatment for color maintenance and fiber integrity. Our manufacturing supports high-bulk, flowable grades targeted to automated blending processes in detergent powder and tablet lines, as well as custom dissolution rates for textile processing facilities.

    Industry compliance standards

    • EN 60335-2-7 (Textile washing machines safety, Europe)
    • Detergents Regulation (EC) No 648/2004 (EU biodegradability and safety)
    • ANSI/AATCC 61 (Colorfastness to washing, USA)
    • REACH Substances of Very High Concern restrictions

    Typical usage ratio

    • 3%–8% by weight in household detergent powder; institutional textile facilities may calibrate within 4%–12% depending on fabric type, wash load, and target stain class

    Downstream process integration

    • Dry blending with surfactants and builders for powder detergents in ribbon blenders or vertical mixers
    • In-line slurry addition during liquid detergent saponification or hydrolysis step
    • Cold or warm water batch dissolution for textile pre-treatment tanks or continuous feed bleach baths

    Final product types

    • Powder laundry detergents (consumer and commercial grades)
    • Oxygen bleach boosters for washing machines
    • Textile bleach and desizing formulations
    • Laundry tablets and pods with controlled oxygen release

    2. Oral Care Powder and Tablet Production

    Oral care manufacturers use sodium carbonate peroxide hydrate as an effective mild whitening and cleansing agent in tooth powders and effervescent tablets. Its oxygen-release functionality enables peroxide-activated stain removal with lower abrasion compared to silica-based grades. Our product specifications support high purity and granular stability required for automated tableting and fine powder blending, serving both toothpaste alternative and dental appliance cleaning applications worldwide.

    Industry compliance standards

    • ISO 11609:2017 (Dentifrice requirements and test methods)
    • U.S. FDA 21 CFR 355 (Anticaries drug products for OTC human use)
    • European Pharmacopoeia Monograph 0167 (Peroxide standards for oral care)
    • GMP for Oral Care (ISO 22716)

    Typical usage ratio

    • 0.5%–1.8% by weight in tooth powders; 3%–6% in denture cleanser tablet blends, adjusted based on cleansing intensity and desired oxygenation effect

    Downstream process integration

    • Pre-mix with abrasives and flavor oils prior to direct compaction or agglomeration for tooth powder manufacturing
    • Dry blend with citric acid and tablet lubricants in rotary tablet press feed for denture cleaning tablet lines
    • Pulverization and sieving for uniformity in single-dose sachet packaging

    Final product types

    • Denture cleanser tablets
    • Effervescent oral hygiene powders
    • Teeth whitening powder blends
    • Orthodontic appliance cleansers

    3. Industrial and Institutional Surface Cleaners

    We supply sodium carbonate peroxide hydrate as a key oxidizing ingredient for formulating industrial surface and hard floor cleaning products, providing deep cleaning and deodorizing without chlorine residues. Its compatibility with alkaline and surfactant systems allows customization for kitchen, bathroom, and processing plant environments, targeting removal of organic deposits, mold, and microbial contamination.

    Industry compliance standards

    • U.S. EPA Safer Choice Program criteria for institutional cleaners
    • EN 1276 (Testing for bactericidal activity of chemical disinfectants, Europe)
    • OSHA 29 CFR 1910.1200 (Hazard Communication standard)
    • EU Detergents Regulation Annex VII ingredient listing

    Typical usage ratio

    • 2%–7% by weight for hard surface powders and concentrate granules; commercial cleaning liquids use 1%–3% by weight, adjusted for required oxidation strength and contact time

    Downstream process integration

    • Continuous addition to surfactant slurry during industrial powder blending
    • Direct granular dosing in automated cleaning product filling lines
    • Batch mixing with chelating agents, builders, and fragrance for ready-to-use liquids and sprays

    Final product types

    • Alkaline floor and tile cleaners
    • Multi-surface industrial cleaning powders
    • Institutional odor-control granules
    • Food processing plant sanitizers (non-chlorine)

    4. Pulp and Paper Bleaching Systems

    Pulp and paper mills integrate sodium carbonate peroxide hydrate into delignification and brightness enhancement stages to achieve stable, high-yield bleaching with reduced AOX emissions compared to conventional chlorine-based systems. Its use as a solid, flowable oxidizer provides a safety and handling advantage for on-site dosing, especially where hydrogen peroxide decays rapidly or liquid storage is not practical.

    Industry compliance standards

    • ISO 11475 (Brightness of pulp)
    • Environmental Protection Agency (EPA) Cluster Rule for pulp and paper mills (USA)
    • EN 643 (European list of standard grades of recovered paper and board)
    • FSC Chain of Custody Requirements for chemical inputs

    Typical usage ratio

    • 0.8%–2.5% by weight of oven-dry pulp, with exact dosage determined by initial Kappa number, desired final brightness, and equipment type

    Downstream process integration

    • Direct hopper dosing to pulp bleaching towers after brown stock washing
    • Dissolution in fresh water and metered addition for continuous bleaching reactors
    • Intermittent addition to paper machine headboxes for brightness losses recovery in recycling lines

    Final product types

    • Bleached chemical pulps (kraft, sulfite, recycled)
    • High-brightness office and publication paper
    • Tissue and hygiene grade cellulose
    • Printing and specialty board stock

    5. Water Treatment and Pool Shock Formulations

    Municipal, commercial, and recreational water treatment facilities utilize sodium carbonate peroxide hydrate for shock oxidation and stain removal in pool and spa systems, as well as specialty applications in aquaculture. Its ability to generate active oxygen with alkali assists in breaking down organic contamination and algae without introducing halogenated byproducts, providing an alternative to chlorine-based shock treatments under standardized protocols.

    Industry compliance standards

    • NSF/ANSI Standard 50 (Equipment and chemicals for swimming pools, spas, hot tubs, USA)
    • EN 15032 (Chemicals used for treatment of water intended for human consumption – Sodium carbonate peroxyhydrate, Europe)
    • U.S. EPA FIFRA regulations for pool chemicals
    • DIN 19643-2 (Treatment of water in swimming pools and baths, Germany)

    Typical usage ratio

    • 5–15 ppm per treatment in pool water (equivalent to 40–120 g per 10m3), frequency and concentration adjusted for organic load and algae presence

    Downstream process integration

    • Pre-packaged dosing in shock granules or slow-dissolving tablets for end-user application
    • Inline dosing in recirculating filtration systems using automatic chemical feeders
    • Bulk addition into balancing tanks during maintenance shutdowns or start-ups

    Final product types

    • Pool shock treatment granules
    • Algae control tablets
    • Commercial spa and hot tub oxidizers
    • Aquaculture water conditioning powders

    6. Soil and Substrate Disinfection in Horticulture

    Commercial greenhouse growers and horticultural substrate suppliers incorporate sodium carbonate peroxide hydrate for pathogen suppression and sanitation of soil-less media, including rockwool, coconut coir, and peat blends. Its decomposition delivers oxygenation alongside alkaline pH one-step treatment, reducing the need for multiple chemical inputs and helping meet certification for pesticide residue-free production in high-value produce lines.

    Industry compliance standards

    • OMRI Listing for organic use (according to the National Organic Program, USA)
    • EU Regulation (EC) No 834/2007 (Organic production and labelling)
    • GlobalG.A.P. IFA Crops standard (Integrated Farm Assurance)
    • Codex Alimentarius Code of Practice for the prevention and reduction of mycotoxins

    Typical usage ratio

    • 0.1%–0.7% (w/w) relative to substrate mass; exact application rate calibrated by grower according to pathogen load and irrigation frequency

    Downstream process integration

    • Batch mixing with soil media pre-bagging for nursery distribution
    • Dissolved in irrigation water in recirculating hydroponic systems
    • Direct application as powder or solution drench during greenhouse media change-outs between crop cycles

    Final product types

    • Pre-sanitized soil-free growing media
    • Greenhouse biosecurity disinfectant blends
    • Hydroponic substrate sterilizers
    • Root zone pathogen control agents for high-value crops

    Free Quote

    Competitive Sodium Carbonate Peroxide Hydrate 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 Carbonate Peroxide Hydrate: Practical Experience from Our Production Line

    Understanding Sodium Carbonate Peroxide Hydrate

    On our plant floor, Sodium Carbonate Peroxide Hydrate is something we know well. We have seen it packaged and shipped in thousands of drums, destined for industries that trust its stable release of hydrogen peroxide. Our primary grade rolls out at 85% active oxygen, with a moisture content capped between 2% and 8%. Each batch comes as a white, free-flowing granule, a detail we focus on because wet or dusty material won’t run smoothly in our customers’ automated systems.

    We’ve kept a close eye on purity and bulk density, which typically sits within the expected range. The consistency of the granule size lets end users dose and handle the product in a predictable way. The hydrogen peroxide content determines the bleaching power and is regularly confirmed by our quality control team. We do this both for our reputation and so our customers aren’t left troubleshooting under-dosed batches.

    Uses Supported by Practice

    On the production side, most shipments in bulk head out to laundry detergent plants and textile mills. The cleaning sector counts on our product to supply active oxygen for tough stains, but laundry applications aren’t the only use. We ship to pulp and paper factories, where Sodium Carbonate Peroxide Hydrate goes into the bleaching of paper fiber with a lower environmental load compared to older chlorine-based bleaching agents. Swimming pool maintenance, water treatment, soil remediation, and even some food processing processes make up smaller but growing segments.

    Our colleagues in research and technical service work with clients on pilot projects to substitute standard peroxides with our material. Because it contains no phosphate, it appeals to customers under pressure to reduce phosphorus discharges. Importantly, Sodium Carbonate Peroxide Hydrate, unlike sodium percarbonate, remains effective at higher washing temperatures and is less sensitive to water hardness. That means less foaming, more controllable reactions, and easier cleaning up after.

    Why Specifications Matter in Real Situations

    We often get questions about why some customers see variation in bleaching results with different peroxide products. It comes down to release rate and stability. Our Sodium Carbonate Peroxide Hydrate does not decompose rapidly under normal storage, so shelf life can extend past twelve months without significant loss of activity. Our customers count on consistency to keep production stops to a minimum. Peroxide content is tested in every lot, making sure textile runs, paper bleaching, and cleaning formulations stay on target.

    Where it comes to downstream use, the free-flowing nature of our hydrated granules makes mechanical handling predictable. In automated plants, hoppers and feeders work better with less bridging and clogging. Fine-tuning particle size can reduce dust in dusty facilities and keeps health and safety managers happy, particularly in enclosed workspaces.

    Distinguishing from Similar Products

    Many end users have compared Sodium Carbonate Peroxide Hydrate with sodium percarbonate or sodium perborate. The main operational difference we’ve seen in customer lines centers on the release conditions for hydrogen peroxide. Sodium carbonate peroxide hydrate releases hydrogen peroxide more steadily, especially under alkaline conditions. This matters when a smooth bleaching reaction is required—sudden surges cause patchy textile colors or incomplete stain breakdown.

    Sodium perborate, once popular in detergents, has fallen out of favor in Europe due to concerns about boron in wastewater effluent. Producers subject to REACH regulations or local environmental policy changed to our peroxide hydrate over the last decade. We support customers through this conversion with technical guidance, helping them balance performance with compliance.

    Working with several detergent brands, we’ve seen that sodium percarbonate can excel at cold-water bleaching, making it suitable for some consumer uses. For industrial-scale operations or processes running hot, especially where discharge water restrictions apply, Sodium Carbonate Peroxide Hydrate provides both adequate solubility and environmental benefits. The absence of borates or phosphates in our product lineup gives us a green advantage compared to some competitors.

    Lessons from Day-to-Day Operations

    Stability in storage is a practical concern. One common question is about temperature and humidity tolerance. We store raw material and finished goods in a climate-controlled area, typically below 35°C and below 65% relative humidity. Open containers or high-traffic loading zones can lead to moisture uptake. Our experience tells us that vigilance in packaging and pallet maintenance translates to far fewer complaints of clumping or premature decomposition.

    In regions with high ambient humidity or seasonal temperature swings, small changes in granule formula—tighter control of particle size or modified moisture content—make a difference. We routinely advise large customers on warehouse layout, stock rotation strategies, and even upgrading bulk handling systems to keep the product usable during extended storage.

    Process Efficiency and Cost Management

    Procurement teams look at not just chemical cost per unit but also at dosing rates, waste, and secondary cleaning requirements. Our Sodium Carbonate Peroxide Hydrate, measured by active oxygen percentage, often lets customers lower their overall peroxide consumption. This leads to direct operating cost savings, but also reduces residual chemicals in finished product wash-water, a point of deep interest for those under tighter industrial discharge standards.

    Over years of technical support, we’ve seen that adjusting process parameters—pH, temperature, agitation—can help customers extract the most from our product. In textile mills, increasing the pH range can improve bleaching performance. In cleaning product plants, pairing our product with a TAED (tetraacetylethylenediamine) activator increases stain removal for color-safe bleach formulas.

    Broader Sustainability Impact

    Pressure grows each year for less harmful chemicals and better wastewater treatment. Our product contributes here. Hydrogen peroxide breaks down to water and oxygen after use, which aligns with the circular principles manufacturers now seek. Sodium carbonate, as a residual salt, is far less likely to trigger regulatory scrutiny than boron or phosphate-laden alternatives.

    We have added energy-efficient process controls on our hydrate production line to reduce energy use per ton. By minimizing off-spec production and product rework, we control cost and cut down chemical consumption. These plant upgrades deepen our claim that sustainability isn’t a marketing slogan but a product of good process design.

    Quality Control and Product Integrity

    Quality assurance is more than a bureaucratic checkbox. Our lab teams run every batch through titration-based oxygen content measurements. Residual sodium carbonate and moisture levels get separate checks. Our daily reality includes fine-tuning dryer temperatures, spotting trends, and responding to batch-to-batch differences in raw inputs. Every certificate of analysis, which leaves our facility, stems from this hand-on oversight.

    Transport and storage practices count just as much. Even minor tears in lining film or mishandled super sacks become root causes for customer complaints. So, the loading dock regulars have mastered the art of rapid, careful handling. We see the difference when customers tell us rejected material is way down since switching pack formats or improving their own storage routines based on our feedback.

    Challenges and Continuous Improvement

    On a busy day in production, even the smallest deviations—a stuck valve, a worn-out sack stitch—affect final product quality. We have devoted years to controlling process variables. Our operators and maintenance technicians close the loop: every time a process improvement reduces downtime or reduces waste, the plant runs smoother, and our team has more bandwidth to focus on customer support.

    Our most successful product improvements started with direct conversations with industry users. We learned, for instance, that a slightly larger granule size cut dust levels in detergent factories. We worked with our engineering partners to retool the granulation stage. This kind of back-and-forth, changes based on what the user sees in daily reality, has more impact than new marketing claims or lab-based trials alone.

    Supporting Regulatory Compliance

    Working as a direct manufacturer, we do more than produce chemical to spec. We guide customers on safe handling under REACH and local laws, supporting auditors and plant managers alike. Our sodium carbonate peroxide hydrate already meets most European and North American compliance standards, which eases the path for customers aiming for certifications or audit compliance.

    Hydrate-based peroxides require less stringent transport controls compared to liquid hydrogen peroxide, and the reduced hazard profile simplifies logistics. It’s easier to store and move, especially for customers who must ship internationally or hold larger inventories in decentralized branches.

    Addressing Process Conversion Hurdles

    Converting from another bleaching agent isn’t always a plug-and-play operation. Long-standing customers in the textile or laundry sector can face some technical hurdles: pH curve shifts, temperature range differences, or dosing recalibration. We lend hands-on support through the conversion, providing plant trials and technical notes, rather than just datasheets. We’ve helped customers pilot test blends on small equipment, document colorfastness, and even optimize drying cycles post-wash.

    In paper mills or environmental cleanup operations, our team has worked side by side with plant engineers to measure oxygen release against legacy product benchmarks. Sometimes the transition uncovers new savings—like less need for post-wash water treatment or lower average chemical use per batch.

    Consumer Perception and Market Dynamics

    Retail buyers have gotten more sensitive to ingredient lists and ecolabels, so we partner with our clients to verify claims. Four years ago, our main detergent market competitors fell out of favor for high phosphate levels. Since then, reformulation initiatives—led by regulatory action and shaped by consumer demand—have tilted the market toward safer, multi-component, and less persistent chemicals like our peroxide hydrate.

    Reports from buyers point to a clear trend: shoppers want safer home and workplace cleaning products. Brands who reformulate with sodium carbonate peroxide hydrate instead of traditional agents now flag this on their labeling. We see the feedback loop, where market preference translates quickly to industrial purchasing decisions, then back to us as requests for modified grades or better technical documentation.

    Looking Ahead

    As a plant manager and process engineer, I see a future with stricter environmental standards, whether driven by new regulations or by customers who demand transparency. We keep R&D cycles short and keep production responsive, always ready to tweak particle size or moisture specs, and continue working closely with customers. Our approach means not waiting for the next shift in industry standards but leading change, so users can unlock new value with less environmental downside.

    By focusing on experience, hands-on problem-solving, and collaboration at every stage of the supply chain, we create more than just a chemical. We help our partners innovate, face new challenges, and make real steps toward more sustainable, more reliable manufacturing processes. Sodium Carbonate Peroxide Hydrate has earned its place in responsible production, not only for how it performs, but for what it avoids leaving behind.

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