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HS Code |
650537 |
| Product Name | Ethyl Nitrate Alcohol Solution |
| Chemical Formula | C2H5NO3 in C2H5OH |
| Appearance | Colorless liquid |
| Odor | Fruity, alcohol-like |
| Molecular Weight | EtNO3: 91.07 g/mol; EtOH: 46.07 g/mol |
| Boiling Point | Ethyl nitrate: 87°C; Ethanol: 78°C |
| Solubility | Miscible with water and ethanol |
| Density | Approximately 0.87 g/cm³ (varies with concentration) |
| Flammability | Highly flammable |
| Storage Conditions | Store in a cool, ventilated area away from ignition sources |
| Cas Number | Ethyl nitrate: 625-58-1; Ethanol: 64-17-5 |
| Hazard Class | UN 1177 (Ethyl nitrate solution) |
| Ph | Neutral to slightly acidic |
| Refractive Index | 1.38–1.40 (varies with composition) |
As an accredited Ethyl Nitrate Alcohol Solution factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Amber glass bottle, 500 mL; tightly sealed with a screw cap; labeled with hazard symbols and chemical identification for safety compliance. |
| Shipping | Ethyl Nitrate Alcohol Solution is shipped as a hazardous material, requiring UN-approved packaging and appropriate hazard labeling per DOT and IATA regulations. Transport must avoid heat, sparks, and open flames. Shipping documentation must specify "Ethyl Nitrate Alcohol Solution," with emergency contact and safety data provided. Carriers must be authorized for hazardous goods. |
| Storage | **Ethyl Nitrate Alcohol Solution** should be stored in a cool, dry, well-ventilated area away from heat, sparks, and open flames. Use tightly sealed containers made of compatible materials. Store separately from oxidizers, acids, and reducing agents. The storage area should be equipped with spill containment facilities. Ensure all containers are clearly labeled, and access is restricted to trained personnel only. |
Applications of Ethyl Nitrate Alcohol Solution in Industrial ManufacturingAs a direct manufacturer specializing in high-purity Ethyl Nitrate Alcohol Solution, we support key industrial sectors relying on this material for demanding synthesis, energetic intermediate production, advanced coatings, and chemical engineering processes. Below we outline several principal downstream application scenarios, reflecting verified industry practices and requirements.
Ethyl nitrate solutions serve as nitrating agents and energetic additives in the production of low-sensitivity propellants and explosives for defense and mining sectors. Industrial-scale plants employ ethyl nitrate in alcohol not only to control reaction exothermicity but also to achieve uniform distribution within bulk nitration steps, supporting the synthesis of key intermediates such as nitrocellulose formulations and double-base propellant matrices. Industry compliance standards
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The solution acts as a nitrating and ethylating agent for introducing functional groups into aromatic or aliphatic substrates during multi-step synthesis of active pharmaceutical ingredients (APIs) and advanced agrochemical molecules. The use of the alcohol carrier minimizes localized overheating and supports process safety in continuous and batch reactors, which is critical during large-scale module campaigns for regulated markets. Industry compliance standards
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Formulators for heavy-duty industrial coatings utilize ethyl nitrate alcohol solution to initiate crosslinking reactions in nitrate-modified alkyd and polyurethane systems—enabling formation of extremely smooth, adherent films on reactive metal and alloy surfaces. The solution enhances resin penetration and aids rapid curing, particularly in tank, pipeline, and marine coating facilities. Industry compliance standards
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Within the environmental and chemical process sector, ethyl nitrate alcohol solutions act as selective absorption agents or reactants in pilot and industrial-scale scrubbing towers, especially for capturing nitrogen oxides (NOx) from flue gas streams. This enables downstream conversion of hazardous emissions into manageable aqueous species before discharge or recycling, supporting compliance with national emission caps. Industry compliance standards
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5. Laboratory and Pilot-Scale Analytical ChemistryResearch laboratories and pilot facilities use ethyl nitrate alcohol solution as a reference reagent for developing, calibrating, and validating analytical methods, especially in studies of nitrate esters or environmental nitrate monitoring. Carefully controlled application ensures reproducibility and regulatory compliance in method validation protocols. Industry compliance standards
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Our team has spent decades refining the process of making ethyl nitrate alcohol solution, and every step, from raw material handling to finished product QC, reflects on our reputation. Ethyl nitrate carries an energetic, highly functional profile valuable across both chemical synthesis and specialty formulation tasks. We started manufacturing it to tackle needs in pharmaceutical research and niche organic chemistry processes that demand precision in reactant behavior and purity. Clients in labs and production plants come to us looking for controlled performance and someone who stands behind the chemical composition, not just the label.
Our ethyl nitrate alcohol solution, Model ENAS-98, delivers a standardized 98% assay of ethyl nitrate in a neutral alcohol carrier, always with pharmaceutical and analytical professionals in mind. Each batch undergoes meticulous GC and Karl Fischer titrations to ensure moisture content hovers close to non-detectable, typically under 0.05%. We never blend or source secondary ingredients differently between lots; our operators follow a single validated process from charge-in to drum fill. You won’t see swings in color or scent from batch to batch—the clear, mobile liquid nature is a direct result of tight process controls and fresh distillation at every run.
We’ve seen what happens when lower-quality suppliers cut corners. High water content or inconsistent ethyl nitrate concentration can sabotage critical reactions and lead to plant shutdowns or unreliable laboratory data. Pharmaceutical R&D personnel often tell us about cascading failures when substitutes don’t perform as expected. We stick to validated methods and never stretch throughput at the expense of purity. Every drum, bottle, or tank we send out meets the same in-house release specifications. That predictability helps chemists plan, and it takes stress off lab managers who have enough problems to solve already.
From solvents to intermediate chemicals, quality starts before the first drop enters our kettles. We do not rely on generic feedstocks. We work directly with primary producers, pulling in alcohol and precursor reagents that meet our own GC-MS acceptance criteria. Temperature and agitation profiles are defined by years of data, not guesswork or bench-top assumptions. Testing at each critical point—pre-reaction, during reaction, and post-reaction—ensures the product remains inside a tight specification window. That discipline allows our ethyl nitrate alcohol solution to support more complicated chemistry, whether someone is derivatizing active pharmaceutical ingredients or exploring combustion properties in advanced R&D.
Most people hear “ethyl nitrate” and think of energetic compounds or specialty syntheses. That’s true, but our customers represent a wider field. Organic synthesis professionals reach for our solution when working on difficult esterifications and when mild but reactive nitrating agents are needed. Researchers in energetic materials look for purity, hoping to prevent unwanted side products during scaling. Historical textile and cellulose nitration sometimes require closely controlled blends, which our formulation can support. In pharmaceutical projects, certain pathway optimizations call for this material in steps where alternative nitrating agents cause degradation or introduce unwelcome byproducts.
What consistently stands out to our clients is the absence of downtime or rework when using our material. When a PhD chemist is pushing for a new intermediate or a scale-up project is approaching deadline, the reliability of inputs can mean the difference between hitting milestones or costly delays. Institutions trust solution integrity from our line, so project teams spend less time running auxiliary purity checks or adjusting process parameters for an unpredictable input.
It’s easy to confuse ethyl nitrate alcohol solution with related chemicals—without walking through the details, one bottle on a shelf looks much like another. The biggest differences arise in volatility, reactivity, and purification needs. Potassium nitrate, for instance, is a crystalline salt with different application profiles, acting as an oxidizer in pyrotechnic or fertilizer uses but useless when a chemist wants a ready-to-use nitrate group source in organic synthesis. Similarly, methyl nitrate gives a higher vapor pressure and faster end reactions, which can be unmanageable in bench-scale glassware setups not designed for rapid gas evolution.
Our ethyl nitrate solution, suspended in pharmaceutical-grade ethanol, offers a unique balance: enough volatility to participate efficiently in nitrate transfer reactions, but controlled enough not to cause runaway conditions under modest reaction setups. We only sell it in stabilized solution, never as a neat, pure liquid, due to safety concerns rooted in industry-wide best practices and regulatory direction. Many third-party vendors sacrifice this approach, favoring convenience or profit over laboratory safety; in our work, operator safety comes before throughput.
For every kilogram of ethyl nitrate alcohol solution we make, there is a balance between production challenge and end-use benefit. The formation process must avoid local exotherms and guarantee complete conversion of precursors. Our process engineers have developed jacketed reactor designs that regulate temperature gradients and pressure swings, keeping the product at the right performance window. Many alternative chemicals, such as nitric acid blends, would degrade sensitive reactants or introduce corrosive residues into downstream purification steps. The ethyl nitrate alcohol solution avoids these pitfalls, which translates to lower maintenance and better yields in synthetic operations.
Our customers rely on trace-level impurity data, not just COA values, which is why we employ both GC-MS and NMR analysis before any large-scale lot is cleared for shipment. We often support method development for analytical chemists needing to validate our solution in specialized workflows. When a team sends us feedback about performance, we trace the batch, review test logs, and update our controls. Our full-time scientists remain available to address unique technical questions, something few resellers or one-off traders can offer.
Some industrial suppliers fill bottles with diluted or aged material, then ship without process history or batch-level traceability. This shortcut saves money but puts users at risk of batch-to-batch variability and process contamination. On the other hand, our manufacturing model incorporates traceable batch numbering, sealed sample retention, and rapid recall protocols. This infrastructure supports pharmaceutical and advanced material customers who face regulatory scrutiny over input authenticity and process reproducibility.
When you open one of our drums or bottles, you see clarity and detect faint ethereal scent—subtle but consistent, a sign of true ethyl nitrate presence without overbearing byproducts. Inconsistency in physical or chemical properties can damage reactor equipment or spoil sensitive assays. There are few things worse than shutting down mid-campaign because a key contributor—like your nitrate solution—failed to meet the mark. We have spent years learning from client failures elsewhere, and we refuse to let our product become a variable in that equation.
Our familiarity with chemical regulations stems from experience, not just reading standards. We build containment into our site design and practice redundant emergency protocols, exceeding typical minimums for workplace and transit safety. Staff must clear advanced handling certifications before they approach production or bottling. No one in our plant moves a liter of ethyl nitrate alcohol solution without full PPE and environmental controls in place.
Packaging follows a double-seal approach: UN-certified containers, secondary leak-proof linings, and clear hazard markings. We understand shipping this material means more than pushing paperwork—every week, our logistics and technical managers review transit incidents, industry alerts, and regulatory guidance. We maintain ongoing relationships with agencies and first responders, ensuring that our material moves with the right documentation, safeguards, and rapid communication lines in the rare event of an incident.
Our technical teams interact with chemists ranging from university researchers to project engineers in multinational plants. Many trust us not just as a vendor but as consultants; they look for batch-level integration, custom packaging, or on-site solution preparation. We routinely adjust fill sizes, and for some clients, freshly prepare solution just-in-time before shipping. Process knowledge extends into application support; for labs trialing new reactions, we share data on potential byproduct formation and recommend best-use parameters based on our own long-term testing.
Not all needs are large scale. Academic labs or small-batch pharmaceutical developers often need modest quantities for pilot runs. We offer technical support for scale-up work, ensuring that transition from flask to reactor doesn’t introduce artifacts or batch failures. Many new application areas emerge annually, especially as chemistry pivots to greener or more selective processes. Our commitment to performance and partnership keeps us involved beyond just a sales transaction—we want to see our solution deliver results, not just volume.
Counterfeit or degraded ethyl nitrate alcohol solution occasionally appears in the market, presenting genuine risks, especially with material sourced from unregistered traders or generic brokers. We’ve heard stories—labs discover poor reactivity, unexplained residues, or even contamination with unrelated nitro compounds. That kind of incident risks intellectual property, health, safety, and company reputation. The antidote isn’t just paperwork or shiny brochures; it’s a living, auditable record for every container we produce. Our raw materials, production records, QC data, and distribution flows remain available for agency and client review upon request.
We advocate direct source relationships. For any company or lab needing ethyl nitrate solutions, work directly with proven producers, not intermediaries or distributors with unclear provenance. Reach out for technical conversations or site audits—transparency serves everyone. By taking on these extra efforts, we protect our customers and contribute to industry-wide improvement in safety and reliability.
Making energetic chemicals responsibly means planning for the future. Our process engineers invest in closed-loop solvent recovery and emissions minimization. We reclaim more than 90% of volatile organic compounds using in-line condensation and scrubbing, decreasing both waste and atmospheric emissions. Active process monitoring keeps batch energy use down and supports corporate sustainability goals. End-of-life packaging collection returns used drums and bottles to our facility for proper handling or recycling, closing the loop on our product lifecycle.
We understand global and local communities expect chemical producers to act responsibly. That pushes us to transparently report our emissions, invest in safer processing lines, and train our workforce to new standards as they emerge. These efforts do not mean higher prices for our customers—they are part of the real cost of quality and safety in chemical manufacturing. By advancing a sustainable mindset, we build a foundation for trust and longevity, and that helps everyone from the chemist at the lab bench to the regulator overseeing site safety.
Our role does not end with outbound shipping. No matter the scale of delivery, we follow up for feedback, review application successes and setbacks, and help troubleshoot unique user challenges. In large-scale campaigns, project engineers sometimes face process drift or unpredictable side reaction rates. Our technical staff step in to analyze conditions, evaluate input interactions, and suggest process tweaks or distillation adjustments based on both in-house and field data. Because our chemists and process operators work hands-on with ethyl nitrate every week, we bring direct, relevant insights to every problem.
This open line of communication builds mutual learning. We often adapt internal batch documentation or develop supplemental spec sheets after customer discoveries. Tracking evolving needs and sharing our process knowledge closes the gap between what’s made in the plant and what’s possible in the lab. Our customers trust this responsiveness, knowing that our team will not disappear after a transaction, but will stay available for technical review, formulation advice, or quick-turnaround documentation as regulatory audits or new projects come up.
Decades in the specialty chemicals field taught us that minor features mean major outcomes. Ethyl nitrate alcohol solution succeeds only when it matches both chemistry expectations and real-world process variables—never as a commodity or off-the-shelf product. Our manufacturing approach digests lessons from production troubleshooting, stringent regulatory oversight, and the evolving needs of research partners all over the world. Our operators carry personal responsibility for every liter produced and our technical support helps navigate complex synthesis, scale-up, and documentation issues.
If your research or production environment requires reliability and performance from an ethyl nitrate alcohol solution, reach out for a conversation. Direct engagement delivers better results than generic promises; we build transparency, safety, and technical depth into every batch. With our experience as a foundation, we help your process move forward with one less variable to worry about.