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Manganese Disodium Edta Trihydrate

    • Product Name Manganese Disodium Edta Trihydrate
    • Alias Ethylene Diamine Tetraacetic Acid Manganese Disodium Salt Trihydrate
    • Einecs 237-001-7
    • Mininmum Order 1 g
    • Factory Site Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing
    • Price Inquiry admin@sinochem-nanjing.com
    • Manufacturer Sinochem Nanjing Corporation
    • CONTACT NOW
    VTB
    Specifications

    HS Code

    143634

    Chemical Name Manganese Disodium EDTA Trihydrate
    Chemical Formula C10H12MnN2Na2O8·3H2O
    Molecular Weight 404.14 g/mol
    Appearance Pinkish crystalline powder
    Solubility In Water Freely soluble
    Ph Of 1 Percent Solution 6.0 - 7.0
    Manganese Content Approximately 13%
    Cas Number 15375-84-5
    Stability Stable under normal conditions
    Storage Conditions Store in a cool, dry place
    Melting Point Decomposes before melting
    Odor Odorless

    As an accredited Manganese Disodium Edta Trihydrate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 25 kg white HDPE bag with blue labeling, includes chemical name, batch number, and safety symbols; moisture-resistant inner liner.
    Shipping Manganese Disodium EDTA Trihydrate is typically shipped in sealed, airtight containers or drums to prevent moisture absorption and contamination. It should be transported in accordance with local regulations, in a cool, dry place away from incompatible substances. Proper labeling and documentation, including hazard information, are required during transit.
    Storage Store Manganese Disodium EDTA Trihydrate in a tightly sealed container, in a cool, dry, and well-ventilated area, away from incompatible substances such as acids and oxidizing agents. Protect from moisture and direct sunlight. Ensure the storage area is labeled and restrict access to authorized personnel. Avoid contact with eyes and skin, and follow appropriate chemical safety protocols.
    Application of Manganese Disodium Edta Trihydrate

    Applications of Manganese Disodium Edta Trihydrate in Industrial Manufacturing

    Manganese Disodium EDTA Trihydrate serves as a highly effective chelating agent and micronutrient source across several industrial segments. Its controlled release, stability under varying pH conditions, and trace element contribution make it critical for modern manufacturing processes that demand precise ingredient integration and regulatory conformance.

    1. Agricultural Fertilizer Formulation

    Producers of specialty foliar and hydroponic fertilizers incorporate this material to prevent and correct manganese deficiency in crops. By chelating manganese, it enables plant uptake even in alkaline and calcareous soils where ionic manganese would otherwise precipitate. Formulators dissolve the product directly into liquid concentrates or incorporate it as a free-flowing solid in custom NPK blends for vegetables, grains, and fruit orchards.

    Industry compliance standards

    • FAO/WHO Fertilizer Regulations
    • European Regulation (EU) 2019/1009 (Fertilizing Products Regulation)
    • US EPA Micronutrient Certification for Fertilizer Use
    • ISO 8157:2015 (Fertilizers and soil conditioners – Vocabulary)

    Typical usage ratio

    • 0.05-0.2% w/w in finished fertilizers; adjusted according to soil manganese analysis, target crop, and regional guidelines

    Downstream process integration

    • Incorporation during bulk mixing of liquid or solid fertilizers
    • Direct dissolution into pre-diluted micronutrient concentrates
    • Granulation with secondary nutrients in compound fertilizer plants
    • Microencapsulation for controlled-release formulations

    Final product types

    • Foliar fertilizer solutions
    • Hydroponic nutrient blends
    • NPK+micronutrient complex granules
    • Customized micronutrient powders for horticulture

    2. Industrial Water Treatment

    Facilities managing boiler, cooling tower, and process water systems use it for addressing manganese scale formation and heavy metal chelation. The product binds residual manganese, preventing deposition on heat exchangers and piping, especially in systems prone to pH fluctuations. It supports continuous operation and reduces maintenance shutdown by ensuring trace metal solubility within tight industrial water parameter limits.

    Industry compliance standards

    • ASTM D5127-13 (Standard Guide for Ultra-Pure Water for Semiconductor Industry)
    • EU Water Framework Directive 2000/60/EC
    • US EPA National Primary Drinking Water Regulations for secondary standards (iron & manganese)
    • DVGW Worksheet W 624 (Germany – Water treatment materials)

    Typical usage ratio

    • 2–10 mg/L in process water, subject to feeding rate based on inlet manganese concentration and system volume

    Downstream process integration

    • Dosing via chemical feeders in pre-treatment steps of recirculating systems
    • Continuous or batch addition before filtration and softening
    • Integration in mixed chelant formulations for comprehensive trace metal control
    • Utilized in treatment skid assemblies for industrial clients

    Final product types

    • Chemical water conditioners
    • Ready-to-use corrosion inhibitor packages
    • Industrial cooling tower treatment products
    • Boiler water additive systems

    3. Animal Feed Premix and Mineral Supplements

    Manufacturers of feed premixes integrate the chelated manganese source for use in ruminant, poultry, and aquaculture diets. It ensures stable, bioavailable manganese delivery, overcoming issues of poor absorption from inorganic salts and minimizing antagonism with other dietary minerals. The EDTA complex protects the manganese from premature interaction and degradation during premix storage, extrusion, and pelletizing operations.

    Industry compliance standards

    • EU Register of Feed Additives Regulation (EC) No. 1831/2003
    • AAFCO (Association of American Feed Control Officials) Ingredient Definitions
    • Chinese Feed Additive Standard GB/T 7300.7
    • FAMI-QS (Feed Additive and Premixtures Quality System)

    Typical usage ratio

    • 80–200 mg/kg feed; levels calibrated to animal species, age, and regulatory manganese limits, always below the maximum permissible thresholds

    Downstream process integration

    • Blended into vitamin-mineral premix powders for onward mixing at feed mills
    • Wet or dry addition during extrusion or pelletization stages
    • Combined with other chelated trace minerals for comprehensive feed fortification
    • Dosed directly into specialty aquaculture feeds with high trace element requirements

    Final product types

    • Livestock and poultry feed premixes
    • Extruded fish feed pellets
    • Dairy cow mineral blocks
    • Granular or powdered complementary feed supplements

    4. Micronutrient Additives for Food and Beverage Fortification

    Food-grade manufacturing plants use EDTA-chelated manganese to create stable, bioavailable mineral additives for regulatory-compliant fortification of beverages, baby foods, cereals, and multinutrient products. The chelated form provides improved solubility in aqueous matrices without imparting off-flavors or causing undesirable precipitation, supporting homogenization and end-product clarity in clear drinks as well as baked goods.

    Industry compliance standards

    • Codex Alimentarius STAN 192-1995 (General Standard for Food Additives)
    • 21 CFR Parts 170-199 (US FDA Food Additives Regulation)
    • GB 2760-2014 (China National Food Safety Standard for the Use of Food Additives)
    • EU Regulation (EC) No 1925/2006 (Addition of Vitamins and Minerals and of Certain Other Substances to Foods)

    Typical usage ratio

    • 0.1–4 mg manganese per daily serving; precise dosing governed by regional fortification regulations, final product matrix, and nutritional target

    Downstream process integration

    • Metered addition to premix tanks before bottling or mixing
    • Inclusion in vitamin-mineral blends for ready-to-eat cereals
    • Batch mixing alongside other fortificants for baby foods and infant formula
    • Quality control monitoring of homogeneity and solubility during in-line fortification

    Final product types

    • Fortified juice and sports drinks
    • Nutritional infant foods
    • Energy bars and cereal flakes
    • Tableted multivitamin supplements

    5. Photographic Chemical Manufacturing

    Producers of black and white film developers and photographic process chemicals use this chelating agent to maintain manganese solubility in concentrated developer formulations. It prevents precipitation, maintains image contrast consistency, and extends developer shelf life, particularly in formulations where trace manganese improves emulsion performance and reduction reactions.

    Industry compliance standards

    • ISO 18911 (Imaging materials – Processed photographic films – Storage practices)
    • Japanese Industrial Standards JIS K1557 (Photographic chemicals)
    • ANSI/NAPM IT9.11 (American National Standard for Imaging Materials)
    • Internal QA/QC procedures for photographic developer purity

    Typical usage ratio

    • 0.01–0.05% w/v in concentrated developer formulas; adjusted by emulsion chemistry and required shelf stability

    Downstream process integration

    • Dissolved during bulk blending of developer batches
    • Combined with buffering salts and reducers during chemical mixing
    • Monitoring of chelant-manganese ratio in final solution through titration/QC protocols
    • Direct filling into liquid developer concentrates for industrial and consumer use

    Final product types

    • Black and white film developer concentrates
    • Photographic processing kits for laboratories
    • Archival quality developer solutions
    • Specialty photo-chemical additives for professional imaging

    6. Electroplating and Metal Surface Treatment

    Electroplating workshops and metal finishing plants utilize this chelated compound to control manganese ion availability during surface treatment and plating baths. Its presence enhances metal deposit uniformity, aids in controlling bath chemistry, and minimizes detrimental anode/cathode reactions. Operators benefit from reduced precipitation of manganese hydroxide, improved current efficiency, and consistent deposition on steel and alloy surfaces.

    Industry compliance standards

    • ISO 9587:2021 (Metallic and other inorganic coatings – Electroplated coatings of manganese)
    • ASTM B849-93 (Standard Specification for Pre-Treatments for Steel for Reducing Risk of Hydrogen Embrittlement)
    • RoHS 2015/863/EU (Restriction of Hazardous Substances)
    • Good Manufacturing Practice (GMP) for electrochemical applications

    Typical usage ratio

    • 0.1–0.5 g/L in plating baths; optimized per bath size, pH, temperature, and current density requirements

    Downstream process integration

    • Added into the initial plating bath make-up
    • Periodic replenishment based on bath analysis and plating throughput
    • Continuous monitoring and adjustment via automated dosing systems
    • Integrated into alloy surface passivation lines

    Final product types

    • Manganese-electroplated steel components
    • High-wear machinery parts
    • Passivated fasteners and precision hardware
    • Decorative and functional metal coatings
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    Certification & Compliance
    More Introduction

    Manganese Disodium EDTA Trihydrate: Real-world Insight from the Manufacturing Floor

    Understanding the Substance at Its Core

    Manganese Disodium EDTA Trihydrate stands out in daily plant life. Here, no calcium keeps gumming up tanks, and maintenance never hesitates to pour our batch into a mixer. Years of production have taught anyone working with micro-nutrients the headaches that come from low-solubility mineral additives or erratic purities in metal chelates. This model—produced as a premium grade crystalline solid—delivers a consistent performance. At various points in our quality control, we push for high ligand purity and tight control over iron and heavy metal contaminants. We target a manganese content above 12%, verified with every outgoing lot, because diluted starting materials breed headaches for everyone down the line.

    Why It Works: Manufacturing and Practical Advantages

    Our team doesn’t just move powder in a bag. We monitor reaction chemistry daily, batch after batch. By buffering pH through the right recipe, we help farmers and formulating partners avoid precipitation in their final blend. Impurities complicate things, so we built out systems to minimize dust, off-color tinges, and moisture variance. This trihydrate form, in particular, controls hygroscopicity—which means it doesn’t clump, stick, or require aggressive de-lumping equipment. In the real production world, these details cut handling costs. Over the years, plant managers told us it dissolves in water more rapidly than older formulations or generic chelates. Field trials bear that out—sprayer tanks, irrigation injection rigs, and liquid fertilizer mixing lines rarely need prolonged agitation.

    Field Feedback: Usage and Suitability

    Fertilizer blenders and agri-input manufacturers value reliability. In micronutrient solutions, every drift, every spot of sediment, creates problems at scale. One grower, running thousands of hectares of corn, reported stronger leaf color and better micronutrient uptake after switching from a less stable alternative. Powder sticking to mixers or caking in humid weather can put a halt to production, especially in tropical zones—the trihydrate here keeps the process moving. When applied via fertigation or foliar methods, good solubility and stable chelation help deliver manganese directly to leaves and roots. In hydroponics, water clarity matters and precipitates plug drippers—our formulation earns its keep with clear, hassle-free flow.

    Comparisons with Other Manganese Sources

    Raw manganese salts like sulfate or oxide have a long history. They cost less on paper but underperform in alkaline water or high-calcium environments. In fields with chalky or calcareous soil, growers using raw salts call in to say they’re losing micronutrients to soil lock-up. We developed our EDTA complex to sidestep that problem. EDTA’s chelating grip protects manganese, holding it soluble and plant-available across a wider pH range. Cheaper chelates or bulk blends looser on quality let go of manganese before crops can absorb it; our trihydrate version hangs on and resists precipitation, leading to better uptake. Peers in chemical supply say the trihydrate feels more refined—consistent crystal, lower dust, more manageable for both small and large mixer lines. In the past, factories using bulk sulfate had to chase clean filters, deal with inconsistent feeding, and field phone calls about uneven application. Our trihydrate chelate cuts those issues.

    In Industry: More Than Agriculture

    Beyond agriculture, water treatment operators and industrial laundry chemists source this chemical for its chelating and stabilizing properties. High-throughput water plants rely on clean manganese addition for trace-element balancing. Staff in municipal and food-industry laundries use it to soften water, fighting scale and mineral buildup without the harshness of simple mineral salts. The stability from the EDTA framework allows for precise dosing—less overfeed, more control. Over time, the low impurity profile means less system fouling or pipe buildup, improving lifetime service intervals.

    Plant Management Experience: Quality, Handling, and Storage

    Inside our production plant, we see how moisture, temperature shock, and careless handling degrade lesser chelates. We adjusted storage protocols and packaging—double-lined bags, sealed drums, desiccant packs for long-term partners shipping into humid regions. These standards didn’t develop overnight. Enough times seeing caked material or off-spec blends crystallize in customers’ tanks, we adopted them to guarantee delivery integrity. Forklift drivers hate sticky spills and payload loss. Our operators spend far less time dealing with blocked feeders or torn liners. One chemical mixing facility dropped energy costs on agitation equipment after switching. Fewer maintenance stops, lighter downtime—not the things pamphlets advertise, but wins that matter at scale.

    Understanding the End User’s Challenge

    End users, whether mixing in-site at a rural ag retail outlet or dosing at an automated greenhouse, have minimal patience for powders that vary bag to bag. Clarity, color, and particle flow matter. We went through years of refining, process tweaks, and feedback rounds to reach this trihydrate grade. It pours evenly and barely cakes, even under damp monsoon shipping. No grinder required, no screen blockages. The consistent manganese assay means nutrient management teams report tighter control over delivered ppm, saving input cost and simplifying compliance reporting. Agronomists tell us that with generic chelates, sample test results wander, while ours hit spec month after month. This degree of reliability didn’t come easy, but it keeps the trust flowing and minimizes troubleshooting in the field.

    Looking at Environmental Impact and Safety

    As a manufacturing company, safety oversight runs deep. We upgraded dust collection and exhaust systems to improve plant air quality after finding trace manganese at packaging stations. On the environmental front, labs test wastewater and effluents for manganese and chelant compatibility. EDTA complexes resist breakdown but don’t travel with the drift of free manganese ions, lowering the risk of shocking aquatic life or leaching into unintended places. Corporate partners in environmental services examine our batch traceability and chemical profile before approving procurement, since heavy metal carryover in chelated micronutrients can trigger tons of scrutiny. We provide thorough batch records, supported by ongoing process audits, to minimize those risks.

    Supply Assurance: Scale, Traceability, and Adaptability

    Sourcing and logistics teams rely on predictable schedules and repeatable batches. Over the years, we’ve scaled up to keep pace with global seasonal demand. Our warehousing system can split and ship out both small incremental orders and full container loads, so upstream production lines never face interruptions. Customers in volatile market environments—small co-ops, large distributorships—count on us to balance capacity, ship quality-assured goods, and absorb shocks from raw material delays or shipping bottlenecks. Traceability isn’t window dressing; every lot records batch history down to operator and reactor load, forming the backbone of largest supply contracts. When extra scrutiny appears—for instance, in phytosanitary certifications or international border inspections—full documentation travels alongside product loads. Our batch-level record-keeping and real-time process monitoring take much of the guesswork out, reducing rejection rates and accelerating customs clearance.

    Innovation and Continuous Improvement

    Manufacturing doesn’t stand still. Customers demand better flowability, easier dissolution, and cost-competitive pricing. R&D at our site never stops tweaking the synthesis recipe for higher yield and lower byproduct formation. Direct on-the-line feedback from shipping, warehouse, and application actually matters—for instance, shifting bag seam geometry after repeated end user complaints about tear strength. Recent updates have improved anti-caking during ocean transport, and brightened color uniformity by adjusting feedstock purity. Each incremental change gets field-tested by select buyers before rolling out site-wide. The investment isn’t just technical; retraining staff, reworking labeling, and updating information channels all go hand in hand. No batch moves until our QA and external trial results line up.

    The Difference Experience Makes

    Anyone can sell a formula, but running a production line day after day shows which products perform under pressure. Long-standing partnerships with direct industrial buyers reveal the small features—batch consistency, supply regularity, speedy technical support—that end up mattering most. Over the years, we’ve had to reroute export shipments during port strikes, troubleshoot rogue batches, and field urgent calls for extra test data for regulatory filings. These challenges shape our perspective. Manganese Disodium EDTA Trihydrate isn’t just a shelf item; it’s a reflection of everything learned from those events.

    Supporting Sustainable Farming and Industry

    Advisors and agronomists in sustainable farming note that micronutrient waste threatens both cost management and compliance with tightening emission standards. Losses to soil lock-up or leaching do nothing good for a grower’s bottom line. We put effort into developing a chelate that stays accessible to roots while limiting off-target movement. For food processing plants, laundry, or municipal water applications, lowering unwanted residue buildup translates to smoother operations and a reduced need for caustic system cleaning. Partners working toward sustainability certifications or eco-label benchmarks say predictable chelation helps them meet reporting and process guidelines. The cleaner the input, the simpler the downstream quality audit becomes.

    Consumer Demands and Evolving Standards

    Modern agricultural and industrial buyers demand more than a basic certificate of analysis. Trace heavy metals, chelant purity, packaging residue, and compliance with evolving international standards—I’ve seen each requirement grow over ten years. Meeting ISO-level demand or winning supply contracts with leading agrochemical producers means supporting strict shelf-life, transport, and regulatory guidelines. During site audits customers demand walk-throughs showing not just paperwork, but each step of clean-room handling, in-house laboratory verification, and staff training. Their buyers downstream—farmers, processors, municipal procurement officers—insist on the same detail.

    Technical Service and Partnership

    We don’t just pack up orders; our technical service team follows through post-shipment. Application teams frequently ask about compatibility with other micronutrients, stable pH windows, and specific tank-mixing tips. We’ve built in-house compatibility charts and maintain a real-time knowledge base. On-site visits, both virtual and in-person, have helped address special mixing or application headaches, like hard water precipitation or drip system sensitivity. Our crew’s real knowledge of reaction chemistry and experience with local water supplies means support goes deeper than label advice. Several partner facilities built special quality controls or mixing protocols based on our process guidance, trimming waste and boosting productivity.

    Future Focus and Commitments

    Markets change—crop shifts, sustainability benchmarks, tightening safety rules. The drive to produce better manganese chelates keeps us upgrading processes and plant infrastructure. Over decades, customer requests for non-dusting, reliably dissolving, and tightly specified chelates pushed us to outgrow old recipes. We spend as much time working on upstream supplier relationships and plant automation as the chemistry itself, to ensure stable product and secure supply. Our team remains committed to responding quickly to evolving standards and specialty customer requests. Skilled workers, technical oversight, and ongoing R&D make our manganese chelate solutions reliable, safe, and scalable.

    Lessons Learned and Industry Realities

    The weekly rush of orders, technical questions from users across the continent, and urgent freight updates never seem to slow. That tempo keeps everyone sharp. Years ago, a skipped QA step led to a run of discolored product—a hard lesson. Stepping up process control and investing in newer instrumentation turned a headache into a selling point. Customers remember the companies who fix a problem before it hits the field. The manganese market stays competitive; factories who cut corners lose partners fast. We aim to supply a product that works, with science-backed stability, clean chelation, and honest reporting. If your business depends on mineral micronutrient performance, the difference that hands-on manufacturing experience brings is impossible to fake.