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2-(Ethylamino)Ethanol

    • Product Name 2-(Ethylamino)Ethanol
    • Alias 2-Aminoethylethanol
    • Einecs 217-500-9
    • 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

    168014

    Chemicalname 2-(Ethylamino)ethanol
    Molecularformula C4H11NO
    Molarmass 89.14 g/mol
    Casnumber 110-73-6
    Appearance Colorless to pale yellow liquid
    Boilingpoint 171-174 °C
    Meltingpoint -36 °C
    Density 0.905 g/mL at 25 °C
    Solubilityinwater Miscible
    Refractiveindex 1.444
    Flashpoint 73 °C (closed cup)
    Odor Ammonia-like

    As an accredited 2-(Ethylamino)Ethanol factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Amber glass bottle containing 500 mL of 2-(Ethylamino)ethanol, sealed with a safety cap, labeled with hazard and handling information.
    Shipping 2-(Ethylamino)ethanol should be shipped in tightly sealed containers, clearly labeled, and stored upright. Transport should comply with local regulations for chemical safety. Protect from heat, moisture, and incompatible substances. Shipping documents must include proper identification, hazard details, and emergency procedures. Handle carefully to prevent leaks or spills during transit.
    Storage **2-(Ethylamino)ethanol** should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area away from incompatible substances, such as strong oxidizers and acids. Keep away from direct sunlight, heat sources, and ignition sources. Use secondary containment to prevent leaks or spills, and label the storage container clearly with the chemical’s name and hazard information.
    Application of 2-(Ethylamino)Ethanol

    Applications of 2-(Ethylamino)Ethanol in Industrial Manufacturing

    As a direct manufacturer of 2-(Ethylamino)ethanol, we supply this compound to a range of industrial sectors where it serves as a critical intermediate and functional ingredient. The following section outlines distinct downstream applications, summarizing the compliance requirements, dosage equations, manufacturing process points, and resulting end products for each scenario.

    1. Synthesis of Nonionic Surfactants for Textile Chemicals

    2-(Ethylamino)ethanol acts as a key intermediate in the manufacture of ethoxylated surfactants used by textile processors. Formulators incorporate it during the amine-alkoxylation reaction to produce surface-active agents that improve dye dispersion, wetting, and antistatic behavior in fiber finishing processes. Batch composition and temperature carefully influence the final surfactant’s hydrophilic-lipophilic balance, meeting requirements for polyester, acrylic, and blend fabric treatments. Producers monitor traceability and ensure raw material purity to comply with textile sector norms and avoid undesirable residuals in finished fabrics.

    Industry compliance standards

    • OEKO-TEX® Standard 100 (for textile auxiliaries)
    • ZDHC MRSL guidance (Zero Discharge of Hazardous Chemicals)
    • REACH Regulation (EC) No 1907/2006 registration and SVHC checks
    • ISO 9001:2015 for quality practices in chemical plant operations

    Typical usage ratio

    • Surfactant synthesis: 2-(Ethylamino)ethanol at 5–11% molar ratio relative to alkylene oxide charges
    • Adjustment according to the required HLB value for specific textile processes

    Downstream process integration

    • Charge to alkoxylation reactors during amine-initiated reaction phase
    • Neutralization and purification integrated before blending into textile wetting or dispersing agents
    • Quality control includes residual amine and color index testing per batch

    Final product types

    • Nonionic surfactants for leveling agents
    • Dyeing aids for synthetic and blended fabrics
    • Softeners and antistatic preparations for textile finishing
    • Foam control agents for textile processing baths

    2. Epoxy Resin Curing Agent Manufacturing

    2-(Ethylamino)ethanol is widely used as a co-curing or accelerator amine in epoxy resin hardener systems. Its dual-functionality allows formulators to optimize cure time, crosslink density, and mechanical properties in industrial-grade resin formulations. This material is particularly relevant when customizing room-temperature curing or low-exotherm compositions for grouts, adhesives, and coatings that require balanced flexibility with adhesion. Hardener manufacturers must track trace impurities and maintain consistent amine values to meet high-performance system specifications and downstream customer requirements.

    Industry compliance standards

    • ISO 9001:2015 certified process traceability
    • RoHS Directive (2011/65/EU) on restricted substances in electrical applications
    • REACH compliance documentation for amines in curatives
    • VOC emission test per ASTM D3960 in coating applications

    Typical usage ratio

    • As a co-curing agent or accelerator: 1–8% in total hardener composition by weight
    • Adjustment based on epoxy resin type, ambient curing requirement, and final mechanical property targets

    Downstream process integration

    • Direct incorporation into amine-epoxy blend at mixing stage
    • Mixed with major curing agents—polyamines or polyamides—to fine-tune setting time
    • Residual amine monitoring before final packaging

    Final product types

    • Epoxy adhesives for structural and construction assemblies
    • Protective industrial coatings for metal and concrete
    • Electrical potting and encapsulation systems
    • Epoxy mortar and grout used for civil engineering repairs

    3. Intermediary for Agrochemical Synthesis

    Crop protection chemical manufacturers utilize 2-(Ethylamino)ethanol as a building block or linker in the multi-step synthesis of certain herbicide and fungicide actives. The compound can serve as a nucleophile or catalyst moiety, enabling ring closure or chain extension during agrochemical API construction. Its handling requires compliance with national and international chemical control regimes and cross-verification for pesticide registration dossiers. Dosage ratios must reflect the desired intermediates and stoichiometry of each synthetic route in GMP-compliant operations.

    Industry compliance standards

    • FAO/WHO good manufacturing practice (GMP) guidelines for technical grade active substances
    • China ICAMA, US EPA, or EU PPP Regulation (EC) No 1107/2009 for active ingredient registration
    • REACH registration for export into the European Union
    • Internal QA per ISO 9001 for traceability and batch consistency

    Typical usage ratio

    • Intermediate: 4–15% theoretical yield basis in target molecule synthesis
    • Adjusted according to specific synthetic pathway and catalytic steps

    Downstream process integration

    • Added during early functionalization or amidation stages in pesticide API manufacture
    • Followed by downstream purification, neutralization, and technical grade product isolation
    • In-process control on residual amine and by-product removal before formulation

    Final product types

    • Selective post-emergence herbicide active ingredients
    • Fungicidal technical concentrate intermediates
    • Agrochemical APIs for downstream formulated crop protection products
    • Adjuvant and carrier molecules in finished pesticides

    4. Gas Sweetening Solvent Blends for Oil & Gas Upstream Operations

    Process engineers employ 2-(Ethylamino)ethanol as a secondary amine component in formulated solvent blends for natural gas sweetening. It enhances hydrogen sulfide (H₂S) and carbon dioxide (CO₂) capture in amine-based gas treating units, acting as an alternative to monoethanolamine (MEA) or diethanolamine (DEA) in cases prioritizing lower steam stripping energy and improved solvent stability. Industrial users must adhere to occupational safety and environmental regulations for amine use in gas processing, and accurate ratio selection ensures high acid gas removal efficiency with mitigated corrosion and solvent degradation in high-throughput pipelines.

    Industry compliance standards

    • API Standard 556 for gas treating process equipment
    • US EPA 40 CFR Part 60 (NSPS) and Part 63 (NESHAP) for emission compliance
    • OSHA 1910.119 for process safety management of amine systems
    • ISO 14001:2015 for environmental management systems in upstream facilities

    Typical usage ratio

    • Solvent blend: 15–28% by weight in mixed amine solutions
    • Optimized with water and other amines to achieve target acid gas removal and minimize degradation products

    Downstream process integration

    • Charged to absorption towers as part of circulating amine loops
    • Monitored for ammonia slip and solvent loss during continuous operation
    • Periodic solvent reclaim and GC analysis to maintain system performance

    Final product types

    • High-purity pipeline natural gas
    • Liquid sulfur as a by-product of sweetening units
    • Refinery fuel gases with reduced H₂S and CO₂ content
    • Sweet natural gas ready for NGL recovery processes

    5. Intermediate in Pharmaceutical API Synthesis

    Pharmaceutical manufacturers use 2-(Ethylamino)ethanol as a chemical intermediate in the preparation of certain small molecule APIs, especially where secondary ethanolamines are functional groups in the target medicinal structure. Its high purity and traceability are critical, and regulatory filings must include detailed impurity profiles and confirmation of supply chain GMP. The active ingredient synthesis may involve nucleophilic substitution, amidation, or ring-closing steps, requiring strict process validation, solvent residue checks, and full compliance with pharmacopoeial standards.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice for Active Pharmaceutical Ingredients
    • Chinese Pharmacopoeia/USP/EP listings, as required per finished pharmaceutical export
    • FDA Drug Master File (DMF) submission for US market APIs
    • ISO 15378:2017 for pharmaceutical packaging if used in intermediate storage

    Typical usage ratio

    • API synthesis: 3–10% molar ratio in multi-step organic synthesis, basis depending on molecular target
    • Process adjustment made for desired yield, impurity control, and route efficiency

    Downstream process integration

    • Charged during specific step—amide formation or functional group modification as dictated by synthesis pathway
    • Purge and fill protocols between steps to limit cross-contamination
    • Final API purification includes aminolysis product removal and solvent tracing

    Final product types

    • Antihypertensive API intermediates
    • Beta-blocker intermediate building blocks
    • CNS active small molecule APIs
    • Bulk pharmaceutical ingredients for formulation into tablets or injectables
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    Certification & Compliance
    More Introduction

    2-(Ethylamino)Ethanol: Practical Insights From the Manufacturer’s Floor

    Solid Chemistry, Real Results

    On any given production day, our tanks warm with the subtle scent of 2-(Ethylamino)ethanol. We know every phase of its creation, from sourcing raw materials through reacting, distilling, and the precise steps we follow to maintain purity levels batch after batch. Experience taught us that details—temperature control, stirring speed, and stripping off trace impurities—carry more weight than glossy brochures ever suggest. We’ve seen the compound’s versatility in action, both inside our facility and as it leaves our loading docks for customers across varied industries, and there’s pride in knowing the chemistry holds up where it truly counts.

    Specifications That Customers Value

    We typically offer 2-(Ethylamino)ethanol at a purity of 99% or higher. Physical properties matter to us, just as they do downstream. We monitor viscosity, water solubility, and ensure each drum meets the clarity and color standards long before labeling. A clear, faint-amber liquid signals we hit our mark. By controlling moisture and organic residue, unexpected interactions in customer applications remain minimal. Stability under normal storage makes shipment and handling less complicated for both us and our clients. Each batch receives full documentation certifying assay, color, and water content, and every container ties back to a unique batch traceable to our records.

    Why 2-(Ethylamino)ethanol is in Demand

    This molecule bridges the qualities of an alkanolamine with amine reactivity and primary alcohol function, expanding application boundaries. We see it frequently ordered in specialty surfactant manufacture, where the ethylamino group’s basicity tweaks formulations toward stability and tailored emulsification. Agricultural chemical suppliers rely on its neutralization power when building adjuvants and herbicide blends. Some pharmaceutical and intermediate producers come to us for its role in multi-step syntheses, often chasing better yield or fewer by-products. Customers appreciate how it manages to deliver reactivity without the hazards or volatility associated with smaller amines.

    Workforces dealing with inks and dyes take advantage of its water compatibility and easy conversion into functionalized derivatives. Coatings formulators lean on the product to help with dispersion or pH control. Across these segments, feedback always returns to the compound’s flexibility—strong enough for industrial tasks, gentle enough to avoid rapid evaporation or excessive odor. Our technical team notes that it integrates with aqueous and non-aqueous systems with little fuss, making it easier to predict behavior in blends compared to simpler amines or ethanol derivatives. Because it sits at the intersection between reactivity and manageability, laboratories often test it as a stand-in for either group, depending on the needed function.

    Choosing the Right Product in a Sea of Amino Alcohols

    Chemicals sound similar in catalogues, but regular users know the headaches possible from subtle differences. 2-(Ethylamino)ethanol stands out for us because of its unique molecular arrangement—a two-carbon chain with an ethylamino group and a primary hydroxyl group. This structure sets it apart from standard monoethanolamine (MEA) and diethanolamine (DEA). The presence of the ethyl group softens its reactivity, shifting its profile enough to reduce volatility and unwanted side reactions during synthesis or downstream processing. It doesn’t pick up water from the air as aggressively as some related compounds, and we measure lower corrosivity toward handling equipment.

    Some manufacturers or traders might substitute cheaper alkanolamines, but product trials usually root out these mistakes. MEA, for instance, brings a sharper amine odor and acts as a stronger base; those differences might create foaming or unwanted skin irritation in finished goods. DEA gives a bulkier molecule, affecting emulsification and producing more side products, especially under heat. Compared to those, 2-(Ethylamino)ethanol brings a happy medium—not as volatile or toxic as straight ethylamine, not as hydrophilic as triethanolamine, and without the reputation for sensitization that others in the group possess.

    Our Real-World Manufacturing Perspective

    Countless lab reports mean little unless production lines run reliably day after day. We’ve observed where certain amino alcohols destabilize formulations or create storage problems after months on the shelf. Our own batches of 2-(Ethylamino)ethanol consistently outperform similar chemicals in terms of staying clear and odor-neutral under typical storage. Our testing protocols flag any trace of yellowing, acid formation, or turbidity that hints at impurities, and we respond before product moves into drums. We equip our site with specialized stainless-steel reactors, which minimize contamination and keep corrosion at bay—a lesson learned after early trial runs tainted a few batches. Over time, these equipment investments paid off as rework rates dropped and customers spent less time resolving process issues downstream.

    Fielding technical questions from customers day after day, we’ve seen trends change. Surfactant companies, once satisfied with bulkier alkanolamines, now ask for something with a lighter touch. Evolving regulations and workplace safety guidelines drive people to our door looking for alternatives that minimize exposure to irritants or reduce regulatory paperwork. 2-(Ethylamino)ethanol fits this evolving demand. We ran exhaustive toxicological reviews and sought supplier certifications to ease the path for customers aiming for compliance in North America, Europe, and Asia.

    Managing Safety and Environmental Considerations

    Every batch meets strict thresholds for low impurities and is tested for amine and alcohol content separately. This brings peace of mind to production managers integrating it into high-shear mixing vessels, batch reactors, or open storage tanks. Release of vapors is low at room temperature, and regular engineering controls suffice in most setups—a relief compared to handling other amine-based ingredients. Small spills remain easy to manage with basic absorbents and regular ventilation. Our waste management adheres to standard amine effluent protocols, with in-plant recapture and neutralization tanks preventing off-site contamination. Third-party audits confirm the low environmental footprint, a point that attracts customers sensitive to end-of-life product fate.

    Regular upgrades on our flammable goods storage and supply lines safeguard both raw materials and finished product. Many operators come to us after experiencing headaches with rapid degradation or residue build-up using alternative products. We steer them toward 2-(Ethylamino)ethanol once they describe the process issues: residue gumming up nozzles, fluctuating pH during batch scale-up, or inconsistent behavior during temperature cycling. In practice, this compound supports smoother runs—fewer filter changes, steadier pH, less downtime. That reliability means a great deal for busy plant managers watching both budget and schedule.

    The Experience Behind Every Drum

    We don’t respond with generic answers when customers call about critical endpoints or ingredient pre-mixes. Our batch records stretch back years, and our plant operators document every adjustment, solvent flush, or temperature hold during synthesis. This library of real-world data allows us to advise with practical fixes: how to calibrate dosing pumps for more accurate addition, what storage temperatures help prevent discoloration, which seals and gaskets withstand prolonged exposure to the compound. These lessons emerge only after years of hands-on production, not from quick-turn product summaries or recycled web content.

    We’ve walked customers through scaling up from lab glassware to full-sized tanks, recommending modifications that prevent unwanted side reactions or phase separations. In our experience, 2-(Ethylamino)ethanol saves steps during downstream formulation, since it blends with both polar and non-polar ingredients. Its moderate boiling point and well-behaved vapor pressure make it suitable for processes needing open vessels or mild heating without risking excessive losses. The risk of developing stubborn residues in storage tanks is lower than with ethylene amines or propanolamines, and clean-up after a campaign generally proceeds without harsh chemicals or long downtime.

    A Versatile Product Beyond The Lab Bench

    Factories making textile treatments select this material for its mildness, both during handling and in finished products. In ink and polymer synthesis, our customers look for consistency in color and clarity—2-(Ethylamino)ethanol answers those needs, as its profile doesn’t compromise color quality or cause yellowing in final goods. Our team supports direct delivery into blending tanks, keeping exposure minimal and transition times tight, so customers actually see the promised efficiency improvements.

    We’ve advised detergent and personal care formulators who were mindful of skin compatibility and volatile organic compound (VOC) regulations. 2-(Ethylamino)ethanol fills a niche here, providing amine functionality without overly aggressive odors or the sensitization seen with some alternatives. Its moderate basicity provides good neutralization without risk of excessive skin irritation or instability. Long-term supply agreements with large cleaning product manufacturers confirm their trust in its stability and performance, and we routinely monitor feedback to refine our manufacturing and support.

    What Sets Our 2-(Ethylamino)ethanol Apart

    Every manufacturer claims purity and consistency, but those standards get tested when product enters harsh real-world settings. We monitor incoming materials, adjust process parameters to moisture and residual content, and reject batches that fail to meet the standards developed by decades of collaboration with large-volume buyers. Our quality control team invests as much effort in documentation as in physical measurement. Certificates of analysis incorporate micrographs, spectroscopic signatures, and real impurity levels—not just wordy assurances—so buyers have direct answers for their own regulatory filings or in-plant testing.

    Long-standing relationships with logistics partners and regional distributors ensure drums and totes arrive promptly, and complaint rates remain among the lowest in our segment. Our storage protocols provide tight inventory turnover and tank hygiene, minimizing risk of cross-contamination or product degradation during waiting periods. This investment in process and personnel reflects in fewer customer interruptions, smoother blending, and reduced downstream troubleshooting.

    Navigating The Market Landscape

    Supply shocks and disruptions in raw material input have always shaped chemical markets. During periods of supply tightening, we pivoted feedstock sourcing to avoid passing on unpredictable costs or risking supply gaps. Customers tell us they value this transparency: orders arrive as scheduled, and price changes tie clearly to objective market data, not hidden fees or unexplained hikes. Our technical representatives make themselves available for troubleshooting unusual process problems or providing ideas for formula improvements using 2-(Ethylamino)ethanol as a drop-in or replacement.

    Industrial chemistries facing tighter environmental rules and ongoing innovations require ingredients that perform under regulatory spotlight. We maintain a close watch on regulatory developments and certify each batch to meet all applicable standards. This responsiveness helps customers maintain seamless compliance when authorities audit records or examine final product specs. We spend as much time tracking policy as tuning our reactors, knowing those minutes pay off for both us and every link in the supply chain.

    Future Opportunities and Ongoing Work

    Researchers continue to probe the structure-activity relationship of amino alcohols, searching for the next generation of chemical building blocks. We welcome collaborations that challenge standard uses or probe for greener, safer process alternatives. 2-(Ethylamino)ethanol’s adaptable chemical framework opens doors for new surfactant developments, innovative agrochemical carriers, or niche intermediates for pharmaceutical synthesis. Our team keeps in touch with research consortia and pilot plant operators. Sometimes, the most innovative routes build off core chemicals refined over decades, adjusted for today’s performance and safety expectations.

    We remain open to conversations with formulation chemists, industrial product managers, and researchers. Feedback on unique blend behavior, unexpected stability issues, or odd color or odor shifts guides our process refinements. In every engagement, we translate experience on the plant floor to targeted solutions that help customers achieve reliability, compliance, and productivity.

    Why Real Manufacturing Experience Matters

    Manufacturers set priorities differently from outside observers. Safety and reliability draw from lived experience, not from abstract specifications. Each day spent monitoring batch reactions, packaging, and shipment logistics brings insights that incrementally shape the products we deliver. 2-(Ethylamino)ethanol evolved in our lineup after seeing repeated customer frustrations with similar molecules that did not deliver consistency, safe performance, or regulatory ease.

    Through every challenge—sudden supply disruptions, regulatory surprises, evolving industry specs—we rely on direct communication, disciplined documentation, and old-fashioned trial and error to deliver results that meet customer needs. The story of 2-(Ethylamino)ethanol in our plant reflects not just chemistry on paper, but the practical skills of people dedicated to making quality count, every drum, every day.