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Isopropyl Nitrate

    • Product Name Isopropyl Nitrate
    • Alias IPN
    • Einecs 209-235-5
    • 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

    277954

    Chemicalname Isopropyl Nitrate
    Chemicalformula C3H7NO3
    Molarmass 105.09 g/mol
    Casnumber 1712-64-7
    Appearance Colorless liquid
    Odor Fruity, sweet odor
    Density 1.056 g/cm3 (at 20°C)
    Boilingpoint 99°C
    Meltingpoint -99°C
    Flashpoint 15°C (closed cup)
    Solubilityinwater Slightly soluble
    Vaporpressure 42 mmHg (at 20°C)

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

    Packing & Storage
    Packing A 500 mL amber glass bottle, sealed with a tamper-evident cap, features hazard labels and a clear “Isopropyl Nitrate” identifier.
    Shipping Isopropyl Nitrate should be shipped in compliance with hazardous material regulations. It is classified as a flammable liquid and should be packed in approved, sealed containers, clearly labeled, and transported with appropriate documentation. Shipping must follow UN 2059 guidelines, using vehicles suitable for flammable substances, and handling should minimize risk of leaks or ignition.
    Storage Isopropyl Nitrate should be stored in a cool, dry, well-ventilated area away from heat, sparks, open flames, and incompatible substances such as strong oxidizers. Use tightly sealed containers made of compatible materials. Protect from physical damage and direct sunlight. Storage areas should have proper explosion-proof equipment and be clearly labeled to ensure safety due to its energetic and flammable properties.
    Application of Isopropyl Nitrate

    Applications of Isopropyl Nitrate in Industrial Manufacturing

    Isopropyl Nitrate serves distinct technical functions across key industrial applications where controlled combustion behavior and unique energetic properties are critical to downstream processing. As a factory producer with extensive supply track records, we support formulators and process engineers with high-purity, quality-controlled batches tailored for demanding industrial uses. The following application scenarios summarize main direct-use sectors based on documented technical acceptance, process compatibility, and regulatory compliance in global markets.

    1. Diesel Cetane Number Improvers for Fuel Formulation

    Refinery and fuel blending plants rely on Isopropyl Nitrate as a combustion modifier for enhancing cetane values in diesel engines, particularly for regulated on-road and off-road diesel fuels. Its fast ignition characteristics improve cold starting and reduce engine knocking, which refineries leverage for balancing cheaper crude sources with strict emissions targets. The additive enters as a specialty component during final stage fuel blending, subject to automotive and emissions legislation in each region.

    Industry compliance standards

    • EN 590 (European automotive diesel)
    • ASTM D975 (U.S. diesel fuel specification)
    • U.S. EPA Fuel Additive Registration (40 CFR Part 79)
    • ISO 8217 (Marine distillate and residual fuels)

    Typical usage ratio

    • 0.05–0.2% w/w in diesel, adjusted based on base fuel cetane rating, target performance and seasonal requirements

    Downstream process integration

    • Direct metered injection into final blending tanks; standardized dosing equipment for in-line mixing at bulk terminals

    Final product types

    • Premium automotive diesel (high-cetane)
    • Ultra-low sulfur diesel
    • Seasonal winter-grade diesel
    • Marine distillate fuels

    2. Rocket Propellant Ingredient for Aerospace Applications

    Aerospace component manufacturers utilize Isopropyl Nitrate’s energetic properties in selected monopropellant and bipropellant compositions for solid and liquid-fueled propulsion systems. Its inclusion supports rapid ignition and clean burning profiles under vacuum and ambient pressure, meeting strict purity and energetic control specifications established by aerospace regulatory agencies for manned and unmanned flight applications, satellite launches, and missile systems.

    Industry compliance standards

    • U.S. MIL-STD-1751 (Explosives & propellants quality)
    • NATO STANAG 4170 (Explosives safety and stability)
    • ISO 14620 (Space system safety program requirements)
    • DOT Hazardous Materials Regulations (49 CFR Parts 171–180)

    Typical usage ratio

    • 5–20% by weight within energetic formulations, adjusted by final thrust, storage stability, and system ignition profile requirements

    Downstream process integration

    • Weighing and solvent blending prior to emulsification and encapsulation as per propellant batch formula; vacuum drying and controlled granulation often follow

    Final product types

    • Monopropellant fuel cartridges
    • Bipropellant rocket fuel blends
    • Pyrotechnic igniters
    • Satellite thruster charge packs

    3. Explosive Detonator and Blasting Cap Manufacturing

    Manufacturers of initiators and detonators for mining and civil engineering sectors use Isopropyl Nitrate as a key component in cap-sensitive energetic mixtures. Its predictable and rapid gas generation supports reliable performance in electric and non-electric detonator assemblies, where compliance to regional explosives handling legislation and traceability protocols is mandatory for end users across mining, tunnel construction, and demolition projects.

    Industry compliance standards

    • EU Directive 2014/28/EU (Explosives for civil uses)
    • U.S. ATF Explosives Regulations (27 CFR Part 555)
    • UN Recommendations on the Transport of Dangerous Goods (Orange Book)
    • MSHA 30 CFR (U.S. Mine Safety & Health Administration)

    Typical usage ratio

    • 1–8% by mass within detonating compositions, tailored to required initiation sensitivity and environmental temperature range

    Downstream process integration

    • No-contact solution mixing within safety-rated containment, followed by loading into metal or plastic cap housings under inert gas, and crimp sealing

    Final product types

    • Electric blasting caps
    • Non-electric detonators
    • Delay detonators for sequential mining operations
    • Cap-sensitive booster charges

    4. Laboratory and Analytical Reference Materials Production

    Producers of certified reference standards and calibration blends depend on Isopropyl Nitrate to prepare trace-level analytical solutions and forensic detection kits. Its well-characterized chemical properties allow accurate standardization in spectroscopic and chromatographic methods used by national labs, environmental monitoring agencies, and quality control entities analyzing combustion gases, explosives residues, or pollution indicators.

    Industry compliance standards

    • ISO 17034 (General competence for reference material producers)
    • ISO/IEC 17025 (Testing/calibration laboratories)
    • USP-NF (Analytical reagents quality)
    • EPA SW-846 (U.S. hazardous waste test methods)

    Typical usage ratio

    • Prepared at concentrations from 0.1 ppm to 1000 ppm in certified solvent bases, depending on detection method sensitivity and application scope

    Downstream process integration

    • Accurate serial dilution and gravimetric mixing, followed by ampoule filling, QC certification, and ISO-compliant batch traceability

    Final product types

    • Analytical calibration standards
    • Forensic explosives testing kits
    • Industrial gas analyzer calibration blends
    • Chemical research reference solutions

    5. Aviation Engine Starting Fluid Formulation

    Aviation maintenance and supply companies incorporate Isopropyl Nitrate into starting fluid blends for aircraft piston and turbine engine ignition support under low-temperature or high-altitude conditions. Its rapid volatility enables fast vaporization and energetic ignition within strict safety tolerances, requiring compliance with civil aviation authority guidelines and sealed aerosol packaging standards. These blends must pass burn, storage stability, and flammability testing by certified laboratories before release to operators.

    Industry compliance standards

    • FAA AC 43.13-1B (Acceptable methods, aircraft maintenance)
    • SAE ARP5416 (Aircraft engine ground starting fluids)
    • IATA DGR (Dangerous Goods Regulations for air transport)
    • ICAO Annex 18 (Safe transport of dangerous goods by air)

    Typical usage ratio

    • 1–5% v/v in total aerosol or pressurized liquid formula, adjusted for ambient temperature range and aircraft engine manufacturer specifications

    Downstream process integration

    • Batch blending with hydrocarbon propellants and lubricants; direct filling and pressurization in certified aerosol line; QC sampling for vapor point and flash

    Final product types

    • Aerosol-pressurized engine starting fluids
    • Portable ignition aids for cold-weather aviation applications
    • Engine maintenance support products
    Free Quote

    Competitive Isopropyl Nitrate prices that fit your budget—flexible terms and customized quotes for every order.

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    Certification & Compliance
    More Introduction

    Experience Behind Isopropyl Nitrate Manufacturing

    In our day-to-day work as a chemical manufacturer, certain products command a bit more attention and caution than others. Isopropyl Nitrate is one of these. Hands-on manufacturing of this compound means strict monitoring in every step, from weighing raw isopropanol and nitric acid to the controlled, jacketed reactor runs inside closed systems. Working with volatile materials calls for no corners cut in ventilation, pressure control, and real-time monitoring by experienced hands. Our focus always centers not just on yield but on safety, reproducibility, and compliance. Teams check every batch for purity and precise performance, constantly running GC and IR spectra on site; specs demand it. What you get isn’t just a generic liquid, but Isopropyl Nitrate made under real industrial discipline.

    Technical Profile and Batch Consistency

    Manufacturers often get asked about the actual difference their product brings compared to offerings from brokers or traders. With Isopropyl Nitrate, the answer isn’t only in the label or a spec sheet; it comes from the lab results attached to each shipment. We track density at 20°C and refractive index, along with levels of unreacted isopropanol or nitrate by-products. Most customers, especially those sourcing propellants or specialty test chemicals, rely on dependable boiling ranges and assured composition. Any variation in trace impurities can alter performance, so production lines keep lots tight — topped off with batch records and retention samples. Years of running scaled glassware and stainless reactors means we spot trouble early, not after the drum lands at your dock.

    Downstream Use and Practical Applications

    People sometimes ask what sets Isopropyl Nitrate’s real-world uses apart from so many related compounds. Here’s how our direct experience lines up: this nitrate ester earns its place as a dependable monopropellant in specific engine starter cartridges or demolition initiators. Unlike ethylene glycol dinitrate or nitroglycerin, isopropyl nitrate offers a much lower freezing point, which is a lifesaver when equipment operates in subzero conditions. Commercial clients from defense, aerospace, or precision engineering trust the product to deliver reliable gas volumes on ignition, not unpredictable misfires. High-purity output ties directly into the clean combustion and measured detonation characteristics required by end-users working in high-stakes applications.

    That’s not just a theoretical advantage. From our own technical troubleshooting, swapping out older nitrate esters for high-purity Isopropyl Nitrate cuts downtime during cold weather operations. Maintenance crews like that the material stays liquid and that pressure measurements from cartridge testing stay within design targets. Low-volatility performance stands out against other organic nitrates, which may gel or lose uniformity with temperature swings. The careful work we do in purification — distilling each batch under reduced-pressure and tracking trace water content — brings noticeable improvements to how the finished product behaves under real operational stress. 

    Handling and Storage Experience

    It’s impossible to separate the story of Isopropyl Nitrate from the realities of safe handling and storage. Working with this compound has taught us more about engineering controls and practical risk reduction than most other chemicals in our portfolio. Flammability isn’t just a note in the HazCom folder. Experience with lab incidents and field returns confirms why overflow sensors, double-walled drums, and blast shielding aren’t just recommendations. Seasoned operators trust their knowledge and instincts, but they’re also backed by redundant safeguards and monitored ventilation at our plants.

    Storage experience has also shaped our approach to supply chain support. Our technical service team helps plant engineers design containment, choose compatible gaskets, and recommend inert gas blanketing for bulk tanks. Lessons from failed transfer fittings or non-standard packaging make it clear: using generic containers or standard valves can lead to leaks or product degradation that you won’t notice until the process stops cold. We ship with full chain-of-custody tracking and regular feedback loops with users. That real feedback — not just aggregated survey data — keeps us razor-sharp on practical improvements.

    Comparing Isopropyl Nitrate to Other Nitrate Esters

    Some buyers new to Isopropyl Nitrate want to know whether it stands alone or whether other nitrate esters can do the job. Over years of manufacture and support for client field trials, we’ve seen hands-on how it stacks up. Isopropyl Nitrate’s low freezing point really sets it apart. Methyl nitrate and nitromethane might work in room temperature storage; neither performs with the same reliability in winter pipelines or satellite propellant canisters. Nitroglycerin clearly outpaces it in brisance but brings immense regulatory headaches and tricky long-term storage due to stability problems.

    On the flip side, ethylene glycol dinitrate has higher energetic density, but also higher health, safety, and reactivity challenges. Isopropyl Nitrate offers a sweet spot for certain commercial uses where both cold weather performance and measured release matter more than maximum explosive power. For clients who once cycled through multiple alternatives, our consistent product has made scaling operations easier, since process conditions need fewer mid-campaign adjustments. This feedback loop across manufacturing, logistics, and user application anchors each process improvement on what works in the field, not just the lab.

    Regulatory Insights and Environmental Considerations

    Manufacturing Isopropyl Nitrate gives manufacturers a front row view into global regulatory pressures. No matter how well you process or purify, government agencies put nitrate esters under close scrutiny. We’ve faced routine audits on cradle-to-grave chemical tracking. Our teams maintain real-time documentation for each kilogram, and regularly interface with regulatory bodies on transport, storage, and end-user compliance. Guidance changes, and with it, our batch labeling, export licensing, and VOC reporting adapt. Technical experts who’ve completed official training can make or break a compliance inspection.

    Being a steward of chemical manufacturing means thinking beyond shipment. Our waste treatment facilities focus on minimizing nitrite and organic discharge, then neutralizing by-products with best-in-class scrubbing and water treatment. Less-experienced suppliers may overlook batch-to-batch effluent shifts, but anyone pulling samples from loading docks or process effluent lines knows the reality: skip a day and buildup starts fast. Through investment in on-site testing, we track trends early and push for higher recovery and recapture, which matters not just for legal compliance, but for reputation with community stakeholders. Locals expect more than a safe fence line — and as manufacturers, we owe them continual transparency.

    Supply Chain Reality and Market Reflections

    Making Isopropyl Nitrate is a demanding niche, not a bulk commodity story. Many bulk buyers find themselves chasing inconsistent supply, especially during raw material price spikes or logistical bottlenecks. As producers, we’ve spent years locking in direct supply links with isopropanol and nitric acid plants, as well as building in redundant lines for critical packaging and inerting gases. That’s built a buffer for our customers during times when spot market traders can provide nothing but delays and excuses. Industrial clients, especially those on strict process timetables, need to know the next shipment won’t miss a window because someone shorted a key precursor.

    Our technical and production teams interact directly with procurement groups at refineries, specialty aerospace shops, and research labs. Years in the sector have shown that transparent communication on batch readiness, transit schedules, and potential delays makes real-world planning possible. For some competitors, the transaction ends with the bill of lading. We stay connected right through product loading, shipment tracking, and post-delivery validation. Manufacturing specialty chemicals, and especially energetic compounds, demands this level of partnership, because a single misstep anywhere in the supply chain can have consequences far out of proportion to the size of an average drum.

    Innovation in Process and Product

    Manufacturing Isopropyl Nitrate at scale has driven sharp internal focus on incremental process improvements. Unlike resellers or short-term traders, we consistently put resources into pilot line experiments, more robust mixing heads, and advanced temperature and pressure feedback controls in our reactors. Most of the major jumps in purity, yield, and reduced by-products have come from operator experience — sometimes a gut instinct refined across hundreds of batches. Our R&D crews act fast on operator suggestions, rapidly running trials, crossing data with historical incidents, and making tailored upgrades to core plant equipment.

    Innovation doesn't stop at the reactor outlet. To better serve safety-conscious clients, our handling team began deploying safer breakaway couplings and pressure-rated, color-coded transfer lines. Over time, just tracking the wear habits of seals, or the solvent resistance of bulk gaskets, exposed reliability gaps. Engineering fixes, many born from past process upsets, get built into every new production run and passed directly to customers through specification updates and technical bulletins. Our direct and long history with this chemical means we know which “new” ideas have already fizzled out — and which are likely to stand up to the realities of continuous production and export.

    Supporting Direct User Needs

    Over the decades, we’ve learned that the relationship with end-users of Isopropyl Nitrate rarely ends at the point of sale. Customers ground their success in consistent material, but they often need guidance on real-world integration. Process engineers in cartridge filling operations, field teams prepping ignition devices, and even academic researchers all ask different things from the same compound. Since we control every step of production, our technical advisory staff engage on questions from how oxygen balance shifts at different nozzle geometries to how product age may impact final ignition pressure.

    Regular training sessions, webinars, and on-site consultation have become part of our day-to-day workflow. Some of the longest-lasting partnerships began with a technical issue: an unexpected pressure drop, a bottlenecked ignition system, or a concern about changing regulatory thresholds. Addressing each challenge using feedback from our manufacturing floor means users see adjustments made not in abstract guides but in actual altered process parameters or improved handling options. We value each story our clients bring about their Isopropyl Nitrate experience, and these stories keep our line technicians and engineers sharp.

    Quality Assurance From the Manufacturer’s View

    Quality control with Isopropyl Nitrate isn’t only an internal checklist item. Far too many users have faced project setbacks from undocumented blending and undisclosed contaminant levels. Our plant runs a multi-point QC regime, starting with raw material inputs all the way through staged sampling during synthesis and final pre-pack checks. Live chromatograms, water assays, and stability tests keep teams alert for any non-conforming batch attributes. Tracking these over years gives a technical baseline that can immediately flag deviations; sample failures mean adjustments on the spot, not “catch-up” fixes once a drum is in the field.

    Consistency drives user confidence. Sophisticated users, especially from the specialty propellant or research markets, know to ask for detailed batch histories. We provide this not out of regulatory pressure alone, but to support real trust and traceability. Retained reference vials from every output lot stay cataloged and accessible, and our senior QC staff monitor trends in minor contaminant levels that could affect downstream performance. Knowledge from each anomaly feeds not just our own process but the advice we give to stakeholders juggling multiple input vendors or in the middle of qualification trials for new applications.

    Looking Forward: Ongoing Challenges and Manufacturer Commitment

    The specialty nitrate market continues to evolve, shaped by shifting procurement pressures, new environmental expectations, and steadily rising performance benchmarks. For manufacturers, adapting to these demands doesn’t start or end at the bottom line — daily operations bring new regulatory forms, deeper audits, and more complex certification processes for both plant and product. Our engineering and compliance teams live these pressures, solving problems with every run and integrating external input with practical plant reality.

    Continual engagement with industry partners underscores why high-integrity Isopropyl Nitrate supply can't rely on shortcuts. Cheaper sourcing and skipped QC have already cost some process operators dearly, from failed starts to damaged hardware and regulatory fines. Real accountability, from receiving dock through final application, depends on the manufacturer’s expertise and willingness to invest in improvements based on hard-won experience. This active, field-driven approach not only meets higher expectations for safety and quality, but helps keep the entire supply network robust during the market's inevitable cycles.

    Final Thoughts from the Line

    Manufacturing Isopropyl Nitrate isn’t about making just another chemical — it’s about understanding, anticipating, and meeting the exacting demands of clients who depend on discipline and ongoing technical partnership. Every process improvement, every safety advance, and every pure batch comes from hands-on technical learning, hard data, and real communication. Newcomers might see Isopropyl Nitrate as a commodity, but those who work with or depend on it for precision results grasp the vital difference manufacturing expertise brings to the table. Our experience tells us that value comes not only from what we deliver, but from how we make, move, and support every single shipment.