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HS Code |
516899 |
| Chemical Name | Ethylamine Hydrochloride |
| Chemical Formula | C2H7N·HCl |
| Molar Mass | 81.54 g/mol |
| Appearance | White crystalline powder |
| Melting Point | 72-76 °C |
| Solubility In Water | Very soluble |
| Cas Number | 557-66-4 |
| Odor | Ammonia-like |
| Boiling Point | Decomposes before boiling |
| Density | 0.957 g/cm³ (at 20°C) |
| Storage | Store in a cool, dry, and well-ventilated place |
As an accredited Ethylamine Hydrochloride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Ethylamine Hydrochloride, 500g, is packaged in a sealed, high-density polyethylene bottle with tamper-evident cap and clear labeling. |
| Shipping | Ethylamine Hydrochloride is shipped in tightly sealed containers to prevent moisture absorption and contamination. The chemical should be clearly labeled and transported as a non-flammable, corrosive solid. Packages must comply with regulations for hazardous materials, ensuring safe handling during transit. Store and ship in a cool, dry, and well-ventilated environment. |
| Storage | Ethylamine Hydrochloride should be stored in a tightly sealed container, in a cool, dry, well-ventilated area away from moisture, heat, and incompatible substances such as strong oxidizers. Protect from physical damage and direct sunlight. Clearly label the container and keep it away from food and drink. Proper storage minimizes decomposition and prevents hazardous chemical reactions. |
Applications of Ethylamine Hydrochloride in Industrial ManufacturingAs a direct manufacturer of Ethylamine Hydrochloride, we supply globally recognized producers who require assured quality for precise application in tightly regulated sectors. Our product’s consistent purity and reliable supply chain integration support critical downstream processes. Below, we detail the key industrial domains and their specific deployment of Ethylamine Hydrochloride, including direct insight into compliance, dosing, process and end-product parameters. 1. Active Pharmaceutical Ingredient (API) Intermediate SynthesisOur Ethylamine Hydrochloride serves as a crucial amination source in the synthesis of intermediates for several antihistamines, antidepressants, and other small-molecule APIs. Pharmaceutical companies employ our material during early and mid-stage reactions, where the hydrochloride form delivers controlled reactivity and improved handling versus the free base. The compound’s performance directly impacts the yield and purity of key moieties, which form the backbone of finished pharmaceutical substances. Industry compliance standards
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2. Agrochemical Synthesis (Herbicide and Fungicide Production)Major agrochemical formulators rely on our Ethylamine Hydrochloride as a short-chain alkylamine source for constructing bioactive heterocycles and alkaloid analogues. The controlled addition ensures selectivity in nucleophilic substitution and coupling steps for proprietary herbicide and fungicide actives. Batch records for global registration frequently cite our material for traceability and batch audit requirements. Industry compliance standards
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3. Electroplating Chemistry and Surface TreatmentElectronics manufacturers and specialty finishers integrate Ethylamine Hydrochloride as a catalyst and bath additive for zinc and nickel electroplating, as well as controlled pH modulation in surface treatment formulations. Its solubility, defined pKa, and low volatility contribute to uniform current distribution and smooth deposit morphology even under high-throughput production conditions. Industry compliance standards
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4. Analytical Chemistry and Laboratory ReagentsProducers of certified reference materials and fine chemical kits utilize Ethylamine Hydrochloride for buffer solutions, titration standards, and chromatographic mobile phase conditioning. Its reliable chlorine content and defined purity profile meet method validation and trace analysis requirements, directly supporting regulated quality control environments for food, pharma, and environmental testing. Industry compliance standards
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5. Specialty Dye and Pigment ManufactureDye and pigment manufacturers employ Ethylamine Hydrochloride as a modifying amine in the production of azo, anthraquinone, and triphenylmethane dye classes. Its use drives key reactions that determine the final chromatic properties and solubility parameters of dyes for textile, ink, and coating applications. Careful control of dosage governs both shade specificity and regulatory acceptability for export markets. Industry compliance standards
Typical usage ratio
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As a chemical manufacturer, I get asked about the differences that come from making and supplying Ethylamine Hydrochloride ourselves, compared to what traders and third-party resellers might offer. Every batch of Ethylamine Hydrochloride starts with raw materials that have gone through scrutiny. This is the only way we maintain control over the properties most researchers or process engineers rely on. Years of handling organic amines in-house have taught us a lot, especially about this simple but essential compound. Ethylamine Hydrochloride carries a directness that many other amines lack, both in the production environment and in its use downstream.
Put plainly, Ethylamine Hydrochloride is the hydrochloride salt of ethylamine. Chemists often see it as a white, crystalline solid. Our facility produces it in strictly controlled batches, always checking moisture content, residual solvents, and trace byproducts. Even tiny variances in these areas can impact the final application, especially if the customer is synthesizing pharmaceuticals or working in fine chemicals. Compared to more volatile liquid amines, its solid, non-hygroscopic form gives stability in storage and transportation. There's a directness to weighing, dosing, and handling that liquid amines can't compete with.
Every batch we release meets an assay of at least 99%. Years of production have shown that content below that can affect downstream yields and reproducibility, especially for scale-up or regulated syntheses. We check for ammonia and other alkylamines as well. Maintaining low limits on these means downstream users see fewer side reactions and less byproduct formation.
Moisture control seems like a small detail, but anyone who has seen an ammonium salt cake up in storage or bagged product go mushy in humid climates knows otherwise. Every lot is dried and tested, because a little extra water will affect your stoichiometry and introduce headaches you don’t need.
Experience says the hydrochloride version is far more manageable than the freebase. The freebase tends to be liquid at room temperature and wafts out of open drums or flasks, making accurate weighing a pain. Not to mention, it’s corrosive and has a face-melting odor no one forgets. With the hydrochloride salt, those problems disappear. The salt handles easily, the product stays in the bag, and measuring the right dose is straightforward. You can open a drum in a normal fume hood without worrying about vapor escaping and contaminating other sensitive work.
Researchers and process engineers ask for Ethylamine Hydrochloride for a range of applications. Here, its advantages over other forms of ethylamine become very clear. In pharmaceutical syntheses, precision and traceability are everything. Many APIs (Active Pharmaceutical Ingredients) or their intermediates need clean, reproducible methylation, reductive amination, or heterocycle formation. Our Ethylamine Hydrochloride sees direct use as a nitrogen source in building azoles, imidazoles, and fused ring systems. Low metal content and consistent salt-to-base ratio make downstream purification significantly easier.
In agricultural research, Ethylamine Hydrochloride often serves as a building block for agrochemical intermediates. The stability of the solid salt means material holds up to shipping and warehousing, whether headed for a greenhouse or a pilot synthesis line.
Those working on dye chemistry or specialty coatings reach for Ethylamine Hydrochloride because impurities and inconsistent base strength ruin reactivity with their chromophores. Our longer-serving customers have seen what inferior grades do. Wasted days tracking down batch failures, color irregularities, or unpredictable side products. They come back to our product because the difference is obvious: no mysterious new peaks in their NMR, fewer headaches on their TLC plates.
Handling a solid salt in drum or bag form looks easy, but it’s the details we’ve refined over the years that matter most. Our packaging shields Ethylamine Hydrochloride from ambient moisture without posing static risks. We learned the hard way that polyethylene alone isn't always up to the challenge in tropical climates—the right lining prevents both moisture absorption and static charge buildup.
Long-term storage issues come down to keeping physical form and chemical purity stable. In our experience, low humidity packaging and proper pallet stacking keep the product free-flowing through extended shelf life. We schedule regular retention sampling, which catches any rare caking or decomposition. Shipping delays, especially during the storm season or across humid regions, can test any process. Customers who’ve had bad experiences with caked product from elsewhere appreciate these safeguards.
Some ask why not just use other simple amines, or their corresponding salts, and avoid the specific effort spent on Ethylamine Hydrochloride. From the manufacturer’s perspective, the differences are tangible. Monoethylamine freebase is a gas or liquid, harder to contain and to measure out accurately without specialized dispensing. Other amine hydrochloride salts like Methylamine Hydrochloride or Dimethylamine Hydrochloride have different base strengths, molecular weights, reactivities, and even odors. These alter reaction timings and product isolation steps in ways that cascade through a multi-step synthesis.
Ethylamine Hydrochloride specifically hits the sweet spot: a manageable volatility, a predictable reactivity profile, and a pure, solid form. It dissolves rapidly in water and lower alcohols, making it suitable for both batch and flow processes. We’ve also noticed, through customer feedback, that the stability of the hydrochloride form offers real cost savings compared to repeatedly testing and compensating for evaporative losses or variable water content in the freebase.
Having full control over the manufacturing process makes a real difference. Unlike traders, we see the effects of each change in process parameters. Sometimes minor tweaks in crystallization temperature or the grade of hydrochloric acid yield purer, more crystalline product. We observe the impact on downstream customer syntheses in the feedback we get, especially from those scaling up an R&D process. Analytical support, such as NMR and GC-MS, run in our own labs, helps us understand the true impurity profile the industry uses for qualification.
Traceability doesn’t just fulfill a regulatory checkbox—it lets researchers and plant managers root out sources of batch variability. Over the years, we’ve helped more than one user catch issues in their own process by comparing results against our batch certificates and retesting historical samples. This ongoing feedback loop has let us steadily improve the material, with insights you just can’t get if you only buy and sell as a middleman.
Of course, nothing is perfect. Ethylamine Hydrochloride is still corrosive, especially in moist air, and will react with metals or concrete if spillages happen. Anyone working on a production line has faced the frustration of accidental spills eating through mild steel tools or staining surfaces. Our decades in manufacturing have led us to reinforce the use of specific plastics or coated containers where practical. While not as hazardous or troublesome as the freebase, Ethylamine Hydrochloride calls for careful respect during handling.
Another challenge appears at high-throughput or large-scale applications. In these scenarios, small inefficiencies multiply. Dumping dozens of bags into reactors, especially in heat or humidity, sometimes causes agglomerates that slow dissolution. After dealing with this ourselves during scale-up for custom synthesis customers, we refined our granulation process and included anti-caking steps. Experience tells us that not every plant’s environmental conditions match ours, so flexibility and practical communication with our customers help head off these problems before they become expensive bottlenecks.
A real manufacturer learns quickly that nothing stays perfect for long in the chemical world. We've seen changing regulatory environments push us to rework production processes, reduce runoffs, and keep closer records of even trace impurities. While some may see quality documentation as a burden, I see it as the foundation for growing specialized applications and meeting new standards.
Workplace safety isn’t something to pencil in after the fact. All factory operators get specific hands-on training for Ethylamine Hydrochloride, from handling PPE to the right emergency procedures. There’s no shortcut for firsthand experience with the materials. One slip, and the pungent, irritant vapor reminds you how important basic measures are. Every improvement, whether in venting, packaging design, or handling protocols, stems from real people’s feedback across thousands of shifts.
As the ones actually operating the reactors and quality labs, we don’t work in a vacuum. Real improvements often come from plugging into the end-users’ workflow. Whether it’s a researcher in discovery chemistry or an engineer in a pharmaceutical plant, their process reveals what generic, off-the-shelf descriptions won’t tell you. We regularly welcome feedback about solubility quirks, isolation headaches, or anything that causes a batch rejection. The tight circle between manufacturing, QC, and the customer shortens response times and brings faster fixes.
For customers under regulatory oversight, traceability and data transparency is baked into our process. Several audits a year keep us sharp, pushing us toward robust documentation and clear digital batch histories. Some buyers only call us once, but the ones doing method development and scale-up tend to stick with our supply for years. That’s where our real reputation builds—not just on the spec sheet, but on consistent results in their unique workflows.
Markets may shift and regulations can tighten, but Ethylamine Hydrochloride stays a chemical backbone for many industries. It’s essential because of its simplicity and reliability. Growing interest in clean chemistry, green process design, and reduced solvent usage keeps our own development cycle moving. We study how our salt behaves under microreactor, continuous manufacturing, and even automated screening setups. Each tweak that improves solubility, flow, or hazard mitigation gets incorporated in future batches.
There’s an ongoing push from many of the markets we serve for increasingly tighter impurity controls and faster analytics. Reaching for tighter specs isn’t just about beating competitors to the punch; it’s about offering downstream users peace of mind that their next regulatory inspection—or scale-up challenge—won’t be derailed by a surprise out-of-spec batch. This challenge keeps us growing and learning, not resting on old formulas.
In today’s global supply world, it’s easy to lose sight of where things start. Mass-market suppliers, importers, and aggregators often can’t connect small but impactful process changes back to production. Manufacturing Ethylamine Hydrochloride ourselves means we own each metric of quality, each safety measure, and each piece of feedback that comes in. The true value isn’t just in a competitive price, but in the clarity and reliability that comes with direct production oversight.
The industry has plenty of places to source standard-grade Ethylamine Hydrochloride. Still, we often field requests for documentation on process changes, impurity data, and nuanced handling advice. These are the moments where firsthand familiarity with the upstream process builds trust. It also means we stay ahead of problems, adapting as our customers’ needs—and the regulatory environment—evolve.
If you’re sourcing Ethylamine Hydrochloride for research, pilot, or full-scale production, it pays to ask not just what the assay is, but how the material is packed, what levels of moisture or related amines are present, and whether the producer tracks and investigates issues across batches. These questions uncover the care that distinguishes a manufacturer invested in their process from a trader winding up a drum or repacking old stock.
Choosing Ethylamine Hydrochloride made and qualified with full attention to detail means fewer headaches for your own operation. Whether you’re making milligram samples in a lab or processing hundreds of kilograms in a plant, each small improvement at the manufacturing level creates time and cost savings downstream. Attention to packaging, regular analytical checks, and open communication often matter more than a simple certificate of analysis.
Ethylamine Hydrochloride brings together years of technical refinement and customer-centric adaptation. Making it in-house means daily engagement with process, quality, and practical use cases. We’ve learned what pitfalls come from careless raw material selection, inconsistent drying, or loose packaging. Each lesson shapes how new batches are planned, checked, and released. The result isn’t just a higher purity salt; it’s a product that reflects thousands of hours of continuous learning, close feedback from real-world applications, and the pride of building something reliable from start to finish.
Every shipment leaves our facility with confidence earned on the floor—not just from ticking off specs, but from knowing that what we deliver helps our customers avoid wasted time, prevent costly mistakes, and build their own winning results. That’s the real difference direct manufacturing makes, especially in a foundational product like Ethylamine Hydrochloride.