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Diethanolammonium Perfluorooctanesulfonate

    • Product Name Diethanolammonium Perfluorooctanesulfonate
    • Alias DEAPS
    • Einecs 701-101-1
    • 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

    835308

    Chemical Name Diethanolammonium Perfluorooctanesulfonate
    Molecular Formula C10H24F17NO5S
    Molecular Weight 581.35 g/mol
    Appearance White to off-white solid
    Solubility Soluble in water
    Ph Approximately 7 (1% solution in water)
    Cas Number 251099-16-8
    Storage Conditions Store in a cool, dry, well-ventilated area
    Stability Stable under recommended storage conditions
    Odor Odorless
    Use Surfactant, wetting agent, and emulsifier

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

    Packing & Storage
    Packing A 500g white HDPE bottle labeled “Diethanolammonium Perfluorooctanesulfonate,” with hazard symbols, lot number, and manufacturer details.
    Shipping Diethanolammonium Perfluorooctanesulfonate should be shipped in tightly sealed, chemical-resistant containers, clearly labeled according to hazardous material regulations. Protect from heat, moisture, and incompatible substances. Transportation must comply with local, national, and international hazardous goods guidelines, including documentation and emergency response information due to potential environmental and health hazards. Handle using appropriate PPE.
    Storage Diethanolammonium Perfluorooctanesulfonate should be stored in a tightly closed container in a cool, dry, well-ventilated area away from incompatible substances such as strong oxidizers and acids. Protect from moisture and sources of ignition. Ensure storage area is equipped with chemical-resistant flooring and proper spill containment measures. Avoid prolonged exposure to light and extreme temperatures to maintain chemical stability.
    Application of Diethanolammonium Perfluorooctanesulfonate

    Applications of Diethanolammonium Perfluorooctanesulfonate in Industrial Manufacturing

    Diethanolammonium Perfluorooctanesulfonate serves critical roles in high-value industrial applications requiring advanced surface chemistry and regulated performance. As a direct manufacturer, we support downstream sectors with material tailored for demanding operational and compliance environments. The following sections detail key application tracks, including regulatory alignment, usage ratios, downstream process points, and representative final goods.

    1. Aqueous Film-Forming Foam (AFFF) for Fire Suppression Systems

    Major fire suppression foam producers rely on this raw material for high-performance AFFF formulations. Its molecular structure enables rapid spreading and stable film formation, which is required to control Class B hydrocarbon fuel fires, especially in aviation, petrochemical storage, and naval applications. Manufacturers closely control input ratio and integrate it during precision blending stages for consistent system quality, always within a framework of environmental and safety regulation.

    Industry compliance standards

    • NFPA 11 Standard for Low-, Medium-, and High-Expansion Foam
    • UL 162 Foam Equipment and Liquid Concentrates
    • EN 1568 Parts 1-4: Fire Extinguishing Media
    • US EPA 40 CFR Part 721, Significant New Use Rule (SNUR) for PFOS-related substances

    Typical usage ratio

    • Ranges from 0.5% to 1.5% by total foam concentrate mass, adjusted based on system testing and end-user specification

    Downstream process integration

    • Direct metering into surfactant blend tanks before foaming agent addition
    • Quality monitoring via cloud point and film spread tests in QC labs
    • Batch mixing under controlled pH and temperature for compound stability

    Final product types

    • Aqueous Film-Forming Foam (AFFF) concentrate
    • Alcohol-Resistant AFFF (AR-AFFF)
    • Finished portable and fixed fire suppression systems
    • Bulk export foaming agents for airport, refinery, and defense clients

    2. Industrial Wetting Agent for Specialty Coatings

    The specialty coatings sector integrates this material into waterborne and solvent-based formulations to improve substrate wetting, flow, and leveling, critical for high-end automotive, aerospace, and electronic device coatings. Its inclusion enables reduction of surface tension at the liquid-solid interface, supporting ultra-thin, defect-mitigated coatings while maintaining compliance with evolving chemical safety governance.

    Industry compliance standards

    • REACH EC No. 1907/2006 Annex XVII
    • Directive 2011/65/EU (RoHS) for electrical/electronic equipment coatings
    • ISO 12944-5:2018 Protective Paint Systems
    • GHS/CLP (EU 1272/2008) hazard labeling

    Typical usage ratio

    • Adopted in end-formulation from 0.02% to 0.2% by total resin volume, adjusted to target specific surface energy parameters for the intended substrate

    Downstream process integration

    • Incorporation during pigment dispersion or letdown stages in coating manufacture
    • Inline dosing prior to final viscosity and surface tension QC checks
    • Adjustment during pilot runs for custom industrial batch sizes

    Final product types

    • Anti-corrosive coatings for offshore and aviation components
    • Conductive and anti-static coatings for electronics
    • Automotive body and trim coatings
    • Specialty architectural finishes for high-exposure environments

    3. Additive for Electroplating Bath Formulations

    In metal finishing, Diethanolammonium Perfluorooctanesulfonate acts as a plating aid in electrochemical baths, particularly for chrome, nickel, and zinc coatings. Its function is to regulate bath foam and enhance surface wetting, which supports uniform metal deposition and reduced pitting for critical aerospace, medical, and electronics hardware. Producers must align precisely with industry regulations on chemical contents and process effluent.

    Industry compliance standards

    • ASTM B322: Cleaning Methods for Electroplating
    • ISO 4527:2003 Electrodeposited coatings of nickel
    • Restriction of Hazardous Substances (RoHS)
    • OECD Guidelines for the Testing of Chemicals

    Typical usage ratio

    • Typically 0.02–0.08 g/L in working electroplating baths, modified according to required surface finish and component design

    Downstream process integration

    • Pre-dilution in plating solution make-up for tank dosing
    • Dynamic addition under closed loop pH and conductivity control
    • Bath sampling and replenishment every shift for extended production campaigns

    Final product types

    • Precision electronic contacts and connectors
    • Instrument housings for medical and analytical equipment
    • Aerospace fasteners and chassis components
    • High-gloss decorative vehicle trim and wheels

    4. Surfactant for Semiconductor Photolithography Solutions

    Leading-edge semiconductor fabricators incorporate this material as a photoresist developer additive and wafer cleaning surfactant, leveraging its exceptional wetting and contaminant displacement for reduced defect density. Stringent purity and process controls are mandatory to meet global electronics industry frameworks and minimize trace ionic contamination that could impact yield and device reliability.

    Industry compliance standards

    • SEMI C93-0721 Standard for Electronic Grade Surfactants
    • IPC-CH-65B Cleaning Guidelines for Electronics Assemblies
    • ISO 14644-1 (Cleanrooms and assoicated controlled environments)
    • RoHS Directive for device materials

    Typical usage ratio

    • 0.001% to 0.05% by developer or rinse bath volume, adjusted based on wafer diameter and lithography node geometry

    Downstream process integration

    • Continuous dosing into developer and cleaning lines within ultra-clean manufacturing cells
    • Pre-filtration and degassing to eliminate particulates before resist/developer mixing
    • On-line monitoring via total organic carbon (TOC) analysis in chemical management systems

    Final product types

    • Photolithography developers and strippers for wafer fabrication
    • Semiconductor device rinse solutions
    • Advanced integrated circuits for consumer and automotive electronics
    • High-purity cleaning agents for process equipment

    5. Surface Active Agent in Industrial Cleaning and Degreasing

    Industrial cleaning fluid formulators select Diethanolammonium Perfluorooctanesulfonate to break down hydrophobic residues and oils from precision-machined metals or complex parts requiring residue-free results. Usage is defined by customer process rigor and sectoral toxicity control standards, particularly where downstream discharge limitations apply for perfluorinated compounds.

    Industry compliance standards

    • OECD 301 biodegradability testing (required for permit)
    • EU Ecolabel for cleaning & degreasing agents
    • US EPA Safer Choice Program for ingredient disclosure
    • REACH Registration and Annex XVII compliance for surfactants

    Typical usage ratio

    • Adopts a working concentration from 0.05% to 0.5% by wash solution weight, varied by soil type and rinse performance data

    Downstream process integration

    • Batch addition during concentrate preparation for industrial cleaning units
    • In-line injection in recirculating spray wash systems
    • Surfactant efficiency verified by gravimetric residue analysis in lab settings

    Final product types

    • Automated industrial parts washers (aqueous-based)
    • Cleaning concentrates for precision optics and instruments
    • Heavy machinery degreasing foams and sprays
    • Tank and vessel cleaning agents for food/non-food processing plants
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    Certification & Compliance
    More Introduction

    Introducing Diethanolammonium Perfluorooctanesulfonate: A Practical Solution from Concept to Application

    Our Experience as a Manufacturer

    In chemical manufacturing, the learning curve never stops. There’s no substitute for years spent in production, troubleshooting process snags, and talking face-to-face with plant operators and formulators. Every day, we see expectations for performance change, shaped by environmental regulations, customer needs, and a growing demand for transparency. That’s why we view Diethanolammonium Perfluorooctanesulfonate as more than a specialty chemical—a response to calls from industries requiring precision, reliability, and consistent results.

    Our focus has not just been to provide a product, but to back our claims with methods we can demonstrate in our own facilities. Whether it’s through batch consistency, monitoring purity, or optimizing handling, our procedures reflect years of direct experience. This approach yields practical insight into why Diethanolammonium Perfluorooctanesulfonate stands out in today’s chemical landscape.

    What Makes This Compound Distinct

    Diethanolammonium Perfluorooctanesulfonate offers properties that set it apart from standard surfactant salts and common fluorochemical additives. The structure gives this product exceptional surface activity, delivering low surface tension in both aqueous and some organic systems. This plays a critical role in applications where stable foaming, precise wetting, or robust chemical resistance are non-negotiable. From our factory floor to the formulations of end-users, these attributes translate into tangible advantages during processing and use.

    Distinction isn’t just chemical; it’s in consistency, reproducibility, and support after delivery. Over time, we’ve learned that receiving pure, uniform lots can make or break high-value runs, especially in electronics, fire control agents, or specialty coatings. Diethanolammonium Perfluorooctanesulfonate meets such needs by combining controlled synthesis with reliable quality oversight—not just monitoring numbers, but making adjustments in real time when variables appear.

    Model and Specifications: Insights from Real-World Production

    Let’s talk in terms of what we produce, not just theoretical values. Our Diethanolammonium Perfluorooctanesulfonate follows a model refined over years. Each batch undergoes direct quality assessment for parameters like active content, moisture, residual solvents, and total fluorine content. We employ validated analytical methods, including ion chromatography and mass spectrometry, to ensure each delivery reflects what customers expected in the sample approval stage. The final product remains a free-flowing, granular or powdered material—easy to handle, store, and dose based on the lessons we’ve learned from large-scale and pilot applications.

    Our process emphasizes separation and purification steps. This ensures unwanted by-products or functional impurities stay out of the finished goods. Having maintained control over our own synthetic pathway, we know where purity risks may arise, and we address such issues through additional purification cycles when alarms go off in routine batch screening. Not every competitor invests in frequent lot verification, but our experience has shown missing even a small deviation can throw off whole customer production campaigns.

    Usage in Industry: From Fire Protection to Fine Chemicals

    Every use case for Diethanolammonium Perfluorooctanesulfonate has its story. Take firefighting foams: stability across broad temperature ranges, compatibility with other foam ingredients, and rapid deployment all depend on the right surfactant. Our product finds its way into foam concentrates designed for hydrocarbon and polar solvent fires, used on runways, refineries, and chemical storage tanks. The perfluorinated chain ensures fire suppression with lasting film formation; the diethanolammonium group improves solubility and handling.

    Moving to high-tech applications, printed circuit board cleaning and etching require controlled surface tension to avoid pitting or stray etch marks. Our compound helps maintain uniform solution properties, thanks to its compatibility with strong acids and oxidizers. Electronics manufacturers report that our high-purity variants translate into fewer rejects and consistent yield on tight-tolerance boards.

    Industrial cleaning, degreasing, and specialty coatings also rely on enhanced wetting ability and chemical resistance. Aqueous systems containing Diethanolammonium Perfluorooctanesulfonate show faster spreading, and the long-chain perfluorinated structure guards against early degradation, making it possible to extend tank life or reduce maintenance cycles.

    In each of these sectors, we choose not to push a one-size-fits-all grade. Years of field feedback taught us to collaborate with formulators to tweak concentration, particle size, and even packaging formats. By capturing the specific needs voiced at the plant or lab level, we keep Diethanolammonium Perfluorooctanesulfonate aligned with evolving industry pressures.

    Key Differences from Other Surfactant and Salt Products

    Not every product that claims to be “fluorinated” matches the test results we see from direct comparison in formulation trials. Traditional alkyl sulfonates or hydrocarbon-based surfactants can fall short in aggressive chemical environments or when exposure to heat and oxidants is routine. Diethanolammonium Perfluorooctanesulfonate benefits from the inherent stability of its perfluorinated segment, showing less breakdown and fewer performance losses over repeated use.

    Many compounds make it through laboratory scale screening only to fall short during scale-up. We’ve learned through hard experience that differences in solubility, viscosity, or even slight contamination can change the outcome of a commercial run. Our product’s solubility profile stands out: it dissolves cleanly in water, giving clear solutions across a wide range of concentrations. It also coexists with solvents and additives called for in real-world blend formulations. User after user cites rapid, trouble-free mixing as a benefit, especially in batch systems with little margin for error.

    By keeping tabs on feedback from technical service calls and plant audits, we understand how even a slight deviation from the expected behavior can cause headaches. Thus, every lot undergoes process adjustment if our own checks show any hint of process drift. That means less worry about unwanted foaming, color change, or loss of performance mid-production.

    Addressing Modern Demands: Environmental and Regulatory Considerations

    We recognize growing international concern over perfluorinated substances and their persistence in the environment. Over the past years, our technical team has worked closely with compliance specialists to keep track of both regional and global guidelines, including emerging limits on PFOS and related materials. We don’t see regulation as an afterthought; it guides our material sourcing, waste management, and product stewardship. For us, transparency means tracking every precursor, reacting to legislative changes quickly, and being forthright about product documentation.

    Our focus on full traceability and regulatory support matters to users pressed to document compliance—from registration to end-of-life considerations. While our product has a unique function profile, we refine our processes to drive down impurity levels and seek options for post-use reclamation or safer disposal. We dedicate resources to staying ahead of emerging science, partnering with academia and regulatory consultants to ensure both our operations and our technical literature keep pace.

    Faced with evolving market pressure, our team participates directly in working groups, industry associations, and open forums on sustainable fluorochemistry. This doesn’t mean jumping on every trend, but it pushes us to constantly evaluate cleaner routes, energy-efficient synthesis, and minimize emissions from our own plant operations.

    Solving Challenges in Adoption and Application

    Bringing any new chemistry into an existing process comes with obstacles: compatibility questions, safety reviews, and sometimes skepticism. Over years at the manufacturing level, we’ve encountered concerns ranging from material handling (dusting, caking, or inconsistent dosing) to long-term storage stability. Our on-site trials and partnership pilots have given us the context to design storage, packaging, and transport methods that match our product’s behavior in varying climates and bulk storage conditions.

    End-users often ask about shelf life and ease of blending. Here’s where hands-on experience pays dividends. Diethanolammonium Perfluorooctanesulfonate shows excellent stability under ambient conditions, provided storage avoids moisture ingress. This advice doesn’t come from a data sheet but from forklifts and totes moving hundreds of tons each year, monitored via real-time inventory and batch testing programs.

    Further, we provide technical support not as a marketing claim but as a lived function. Our technical team—drawn from former plant chemists and QC staff—regularly consults on formulation snags and on-site troubleshooting. We’ve been called to troubleshoot tank mixing, foam stability, and unexpected interactions with downstream additives, and we’ve fed those learnings back into modifying our own production schedules and QC checks.

    Commitment to Continuous Improvement

    Production scale brings out realities that never appear in the lab bench. Over time, feedback from end-users and our own operators has prompted us to rethink raw material handling, reaction sequencing, and even process automation. Every year we dedicate resources not just to new product bells and whistles but also to making incremental improvements: tighter batch records, digital process monitoring, cross-training for operators, and investments in process safety improvements.

    Our facility has invested in monitoring systems that allow for early identification of process upsets, unplanned downtime, or potential cross-contamination—risks that can impact product purity or delay shipments. We continue refining our systems, seeking plant floor input and auditing adjustments after each campaign. Learning doesn’t stop once a batch is delivered; we revisit process logs, customer feedback, and market trends to inform the next production run.

    Why Our Approach to Quality and Value Matters

    It’s easy to sell on price—a race to the bottom that ignores the hidden costs of rework, inconsistent runs, or downstream process stoppages. We’ve been in enough meetings with purchasing, R&D, and production managers to know the time and resources lost from simple product failures or delivery shortfalls can swamp savings seen up front. Our philosophy values the supply chain as an ecosystem: smooth operations for you mean efficiency and reliability for us.

    Our warehouse and shipping team work in tandem with account managers to minimize delivery delays, plan around customer outages, and keep communication lines open. Anyone can offer “quality guarantees,” but we make it part of our daily operations. Every batch undergoes sign-off and customer-focused release review. Our laboratory staff conduct routine cross-comparisons with retained reference samples for every outgoing lot. Discrepancies result in full stop and investigation, not a quick fix and release.

    Chemical quality extends beyond the product itself; it touches documentation, handling, customs, and hazardous materials compliance. Our decades in bulk and specialty chemical manufacturing mean we’ve encountered every complication that can arise and built processes to anticipate and mitigate risk at each logistical step.

    Future Directions and Customer Partnerships

    The landscape for specialty surfactants like Diethanolammonium Perfluorooctanesulfonate continues to change. We see rising demand for tailored performance, better documentation, and innovative support services. Our partnership model extends beyond supply contracts—collaborative troubleshooting, ongoing product performance validation, and contribution to technical roadmaps all form part of our engagement with every client.

    By participating in multi-site pilot programs and joint innovation platforms, we deepen our understanding of new challenges and demands. Whether it’s tighter impurity specifications for critical markets or pressure to innovate on green chemistry metrics, we keep investment in technology and people as cornerstones of our manufacturing philosophy.

    Every year brings requests to modify, optimize, or tweak existing products for emerging applications. Our feedback from industries such as advanced materials, defense, and electronics manufacturing steers research and capital investment. Not every trend leads to a new product line, but our flexibility to build small, medium, or large campaigns allows us to stay nimble in the face of shifting demand.

    Direct Dialogues: Listening to Users

    Experience has proven the benefits of two-way engagement. Our technical sales and support teams spend time onsite with customers, not just selling but listening. Honest, candid dialogues reveal needs the lab or boardroom may not anticipate. This has led to packaging changes, dosing equipment recommendations, and support during process transitions.

    We keep lines open for process feedback—celebrating positive performance and carefully evaluating suggestions and criticisms. Many of our current product improvements, from labeling protocols to tamper-evident seals, come directly from shop floor conversations.

    It’s this cycle of open feedback, rooted in real-world outcomes, that lets us iterate solutions in a way too many overlook. We believe substance—in process, in product, in support—benefits not only our users but our own ongoing success as a producer.

    Technology Matters: Investment in Process and Product R&D

    We keep our R&D focused on process improvement as much as product development. Our lab infrastructure supports not only the synthesis of new molecules, but also the scale-up to commercial volumes under robust process control. This means that new product variants, improved grades, or alternative synthetic pathways can move from concept to production with fewer surprises and more predictability.

    By leveraging in-house analytical capabilities, we can deliver rapid investigation of customer issues, develop custom test protocols, and accelerate qualification of new applications. Our history in manufacturing, not just distribution, gives us unique insight. We build every new offering on the foundation of what’s proven in the plant, aiming for practical value over marketing promises.

    Collaboration with academic researchers and participation in industry consortia keeps us ahead of new technology trends. We view each partnership and every customer trial as an opportunity to grow knowledge and refine product offerings.

    From the Factory to Your Application

    Every drum of Diethanolammonium Perfluorooctanesulfonate leaving our facility tells a story—of numerous checks, adjustments, and the cumulative lessons of past batches. Though regulations tighten and market demands shift, our core remains built on experience, direct accountability, and an ongoing commitment to listening and advancing with our partners.

    Trust, in our view, rests not just on the outward quality of a given product, but on the reliability of the people behind it. Decades of in-house manufacturing, process experimentation, and careful validation have guided our approach to specialty chemicals. Diethanolammonium Perfluorooctanesulfonate reflects those values: a solution produced with pride, governed by process rigor, and delivered with the confidence earned from long hours on the plant floor.

    As performance specifications and regulatory climates evolve, we remain at the ready—drawing on the knowledge collected from every campaign, audit, and user conversation to shape the next generation of solutions. Today, as always, we produce with the belief that chemistry serves best when rooted in practical insight and continuous improvement.