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HS Code |
591414 |
| Chemical Name | N-(Carbamoylmethyl)Taurine |
| Molecular Formula | C5H12N2O4S |
| Molar Mass | 196.23 g/mol |
| Cas Number | 17171-36-5 |
| Appearance | White to off-white crystalline powder |
| Solubility In Water | Soluble |
| Melting Point | 232-236°C (decomposes) |
| Ph Value | Neutral to slightly acidic (in solution) |
| Storage Conditions | Store at room temperature, dry and away from light |
| Synonyms | Carbamoylmethyltaurine; N-(2-Sulfoethyl)urea |
| Iupac Name | 2-[(Carbamoylmethyl)amino]ethanesulfonic acid |
| Pubchem Cid | 10110355 |
| Hazard Statements | Generally regarded as low hazard |
As an accredited N-(Carbamoylmethyl)Taurine factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | A 100g amber glass bottle with secure screw cap, clearly labeled "N-(Carbamoylmethyl)Taurine," including purity, CAS, and safety symbols. |
| Shipping | N-(Carbamoylmethyl)Taurine is shipped in tightly sealed containers under dry, cool conditions. Proper labeling in accordance with regulatory guidelines ensures safe handling and storage. The chemical is classified as non-hazardous but should be protected from moisture and direct sunlight during transit. Shipping complies with all relevant safety and environmental regulations. |
| Storage | N-(Carbamoylmethyl)Taurine should be stored in a tightly sealed container, away from moisture and incompatible substances such as strong oxidizers. Keep it in a cool, dry, and well-ventilated area, ideally at room temperature or as recommended by the manufacturer. Store away from direct sunlight and sources of ignition, and ensure clear labeling to prevent contamination or accidental misuse. |
Applications of N-(Carbamoylmethyl)Taurine in Industrial ManufacturingN-(Carbamoylmethyl)Taurine demonstrates proven performance as a specialty chemical intermediate in select downstream markets, supporting next-generation formulations with controlled functional attributes. As the direct manufacturer, we actively support the integration of this ingredient within production lines where compliance, processing requirements, and product efficacy are critical to end-product value. Below is an in-depth overview of application scenarios where our raw material adds quantifiable value by meeting industry specifications, process efficiency, and differentiated product finishing. 1. Detergent Formulations for Industrial Cleaning AgentsLarge-scale detergent manufacturers use N-(Carbamoylmethyl)Taurine as a hydrotrope and stabilizer within heavy-duty cleaning agents for institutional and industrial use. Its role focuses on facilitating clear, low-residue blends with improved dispersibility for surfactant-rich liquid detergents, particularly where hard water stability and compatibility with builder systems are decisive. Manufacturers benefit from the enhanced shelf-life and controlled foaming required in automated cleaning dosing. Industry compliance standards
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2. Electroplating Additives for Metal FinishingN-(Carbamoylmethyl)Taurine is widely adopted as an auxiliary agent in nickel and copper electroplating baths, where it supports leveling and brightness control. When incorporated in mid- or high-speed electroplating tanks, the compound regulates grain boundaries and metallic deposit uniformity, directly contributing to the reduction of pitting and enhancement of surface gloss on final plated parts. Electroplaters benefit from its controlled decomposition profile and compatibility with complex bath chemistries. Industry compliance standards
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3. Textile Auxiliaries for Fiber ProcessingIn wet-processing plants, N-(Carbamoylmethyl)Taurine functions as a leveling and anti-creasing agent for synthetic fiber dyeing and finishing. Its selective adsorption on fiber surfaces minimizes dye aggregation and supports uniform coloration in polyester, polyamide, and blended fabrics. It helps to regulate rheology during high-temperature dye baths, reducing mechanical stress on fabrics and enhancing process throughput. Industry compliance standards
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4. Personal Care and Mild Surfactant SystemsFormulators incorporate N-(Carbamoylmethyl)Taurine as a secondary surfactant and conditioning agent in mild cleansing systems, especially for sulfate-free products. Its compatibility with anionic and amphoteric surfactants enhances foam structure and salt-thickening response, enabling the production of transparent, low-irritation shampoos and liquid cleansers. Manufacturers rely on it to meet stringent dermatological and safety standards in rinse-off cosmetics. Industry compliance standards
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At our plant, hands handle chemicals every day, and the focus always stays on practical value as much as purity. Over the last decade, N-(Carbamoylmethyl)Taurine has grown from an uncommon specialty to what we now see as a reliable component across fine chemical manufacturing. Nearly every order starts not with a request for documentation, but with questions: how stable is it under different pH? Can it replace more expensive chelators without sacrificing process security? What sets it apart from other taurine derivatives?
Unlike more traditional taurine derivatives, this compound brings a carbamoylmethyl handle that truly changes its reactivity and field life. Every batch we send out carries that fingerprint. Not only does it feature a molecular structure that supports both biological activity and water solubility, but its stability under a range of storage conditions reduces customer headaches with shelf life and inventory loss.
Taurine derivatives have been available for decades, mostly as nutritional supplements or as humectants in personal care. It’s easy to pick out taurine or 2-aminoethanesulfonic acid itself from the market. But as soon as a synthesis route asks for selective reactivity, you find the list of standard products gets narrow. The carbamoylmethyl substitution on the nitrogen gives one solution to this. It adds a new binding site to the molecule, bettering the ability to chelate metals and improving compatibility with both aqueous and organic formulations.
We run our reactors with a focus on making sure byproducts stay limited—unlike bulk taurine, which comes by direct sulfonation, our synthesis path follows a more controlled order to combine taurine with chloroacetamide. We believe this deliberate approach leads to improved batch-to-batch consistency; our N-(Carbamoylmethyl)Taurine reaches a purity level consistently over 98%. Impurity profiles get tracked rigorously—no one likes post-reaction surprises, so we decide on purification steps based on both known industry requirements and our ongoing internal analysis.
By controlling every stage in-house, we avoid surprises later in customer’s own R&D work. Sometimes a finer purification is needed: we can tailor that promptly because everything starts with us, not a trader or third-party partner.
Our customers approach with a range of intended uses: most come from industries that value chelation, biological compatibility, or demand improvement in formulation behavior. N-(Carbamoylmethyl)Taurine works as a mild zwitterionic surfactant in certain detergent and cleaning mixtures. Pharmaceutical investigators see promise in its ability to act as a chelating co-agent for metal-based actives and diagnostic agents. Water treatment teams have turned to it in trials for its capacity to prevent metal fouling without introducing persistent residues.
In explicit terms, our product shows strong application in the synthesis of metal complexes where stability at neutral or near-neutral pH matters. It helps stabilize iron, copper, and zinc ions in aqueous phase reactions—tests over the last three years have shown lower precipitation compared to older, less tailored ligands. This property does not just stay useful at small scale: a number of surfactant formulators now blend our N-(Carbamoylmethyl)Taurine into high-clarity liquid cleansers to combine mildness with performance.
Unlike classical EDTA, our product exhibits minimal environmental persistence. In wastewater treatment trials, our technical team observed rapid breakdown under standard microbiological conditions, leaving little risk of downstream accumulation.
As a manufacturer, the conversation around taurine derivatives often veers quickly into the real-world consequences of process choices. Many plants rely on third-party intermediates or outsource crucial purification stages. We do not take that shortcut. All steps, from sulfonic acid activation to final crystalline drying, remain within our strictly controlled workspace.
Our reactors, ranging from 250 to 2000 liters, run with continuous monitoring systems for pH, temperature, and reactant addition velocity. The experience we’ve built up means that even small upsets—power outage, cooling failure—don’t translate into off-spec product. In those rare moments a batch faces anomaly, we trace back every value from our historian system, not just a single control card.
Powdered N-(Carbamoylmethyl)Taurine comes free-flowing, color consistency runs snow-white to faintly creamy yellow. Any batch exceeding defined color or impurity limits is stopped before it ever hits a container for shipment. We keep full traceability from feedstock to finished lot—so even years after a delivery, questions about origin or process can rely on real analytical proof.
We’ve fielded questions from end users about residual solvents and reagents. Regular GC-MS and HPLC checks set our confidence level. The way we see it, no QA certificate replaces the knowledge of our own in-house chemists who develop and oversee the process start to end.
Manufacturing is more than a shipping exercise. Every industry has language it trusts and the limits it expects. Small molecule research teams often ask for flexibility: can we deliver in lots from a kilo up to several hundred kilos in a campaign? Those needs get met because our infrastructure actually backs up the demand, not just in quantity, but in stability and documentation. Full CoAs accompany every lot, including water content, heavy metal analysis, and spectral proofs.
Unlike handling commodity products, R&D customers find that our technical managers keep dialogue open throughout the product integration process. Analytical support is available for early pilot stages, while manufacturing clients who scale up gain from our deep bench of hands-on applications experience. Processing feedback—say, about end-use powder dispersibility or fate in multi-component blends—feeds directly back into our next round of manufacturing improvements.
In customizing supply for novel chemistries, we’ve learned that sometimes even the smallest tweak in reactivity or crystalline form can influence entire downstream applications. We’re prepared to answer these with batch records, repeated pilot runs, and direct data sharing—not just a technical flyer or a basic analytical table.
Market options range from unchanged taurine, through its N-acylated and N-alkylated forms, to other engineered derivatives. Taurine itself is cheap, plentiful, easy to solubilize, but it remains limited where selectivity in reactivity is essential. Most acyl-taurines, such as N-acetyltaurine, improve membrane permeability but lose much of their capacity as chelators or metal-capturing agents.
N-(Carbamoylmethyl)Taurine’s added carbamoyl group grants it not only a different polarity profile, but also new hydrogen-bonding capabilities. This feature changes the behavior in both aqueous blends and in organic-in-water systems. End users who require something beyond basic buffering or surfactancy find it offers more robust chelation and interactions. Unlike some N-alkyl derivatives, which tend to be used mostly in surfactants or non-ionic blends, ours steps into chelation, metal stabilization, and biological buffer development with concerted effect.
In our experience, even minor tweaks to the nitrogen substituent create big functional change. We see this most clearly when customers test new formulations for personal care or biotech workflows. N-(Carbamoylmethyl)Taurine stands out for its balance between reactivity and biocompatibility. Sulfonic acid groups stay available for ionic interactions, while the carbamoylmethyl tail adds a layer of synthetic flexibility not seen in the starting material.
Across the chemical industry, customers demand two things: clean provenance and predictable quality. No one wants unknowns seeded into a tightly regulated process. We responded to this trend by putting every stage of N-(Carbamoylmethyl)Taurine production under one roof.
We source taurine from audited, GMO-free origins, and incoming lots get screened for both typical contaminants and rarer, less obvious residues. Our supply chain avoids regions with histories of inconsistent feedstock, and we maintain detailed logs of every incoming drum, every transfer, and every unit operation.
Waste handling and minimization stand as daily objectives, not annual targets. By running closed-loop recycling for mother liquors, distillates, and process waters, we limit offsite disposal to less than 4% of total input mass. Every time we redesign a process step, technicians measure not only yield but also actual waste profile—an approach that has held up under outside audit.
Certification bodies have given our manufacturing space ISO 9001 standing for nearly a decade. This translates for most customers as real assurance: traceability is not just a slogan or paperwork formality.
What scientists want more than anything is repeatability—the conviction that one bag or drum matches the last. For N-(Carbamoylmethyl)Taurine, shipment occurs in lined kraft bags at small scales, or antistatic-lined PE drums for larger orders. Free-flowing characteristics prevent caking, and the moderate hygroscopicity means the product stores safely in normal warehouse conditions away from standing water or high humidity.
Our line chemists test each batch for exacting readings: IR spectra confirm functional groups, HPLC measures purity and any minor isomers, and Karl Fischer titration reports moisture content. We keep hardcopy and digital archives of all test results for at least eight years—something few competitors in the region can match.
For end users concerned about handling safety, the product profile remains straightforward. It carries a low acute toxicity and lacks offensive odor or volatiles. Dust management is standard laboratory good practice, not a unique hazard. Tech sheets, safety sheets, and full regulatory statements ship with every order, and support stands only a phone call away—no offshore call centers, only direct access to our technical team in the original workplace.
Often, customers discover new functions: anyone moving from a classic chelating agent or a surfactant finds that N-(Carbamoylmethyl)Taurine handles differently in process streams or finished goods. We appreciate when a customer comes back with specific results or an unexpected observation. Sometimes this leads to a process push—in one case, a research team in biomedical device coatings found that our product's chelate stability at slightly alkaline pH enabled them to replace a less-friendly alternative.
Our technical staff record these case studies with every significant finding. This feedback circle powers our own process upgrades. In the last year, process modification based on a customer pilot test improved product yield and shed unnecessary waste. We see every report not as a complaint or outlier, but as an essential addition to the knowledge base.
Requests for new particle sizes, improved solubility, or alternative packaging get sent straight to our production and laboratory staff. We maintain a practical willingness to pilot such changes at our own risk, so the end user does not pay for validation—they get a proven result.
Outside theoretical chemistry, our business learns most from hearing about real applications. A mid-sized specialty detergent manufacturer draws on our N-(Carbamoylmethyl)Taurine for heavy-duty cleaners where metal sequestration without unmanageable foam is critical. A regional pharmaceutical company incorporates it as a stabilizer for drug intermediates, noting consistent pH stability during extended processing cycles.
One environmental laboratory running pilot wastewater remediation found that substituting their usual EDTA with this product dropped both operational cost and post-process treatment needs. In each scenario, consistent analytical performance, rapid supply turnaround, and straight-line technical support makes the difference.
Chemical companies succeed not because of slogans or empty marketing, but because they deliver when partners demand something new or better. Our entire practice around N-(Carbamoylmethyl)Taurine stems from ongoing conversations with customers—biotech, fine chemical, environmental, and specialty materials alike. We keep a strong readiness for collaborative research, joint optimization, and open technical exchange.
Specific process or technical integration questions reach our chemical engineers and application scientists directly. Formulation assistance, alternate packing, and long-term stability study participation all sit within our usual business framework. Over time, this builds mutual trust and adds value to both sides.
For everyone in this industry, reliability comes from the flow of actual substance, not from claims or branding. N-(Carbamoylmethyl)Taurine represents our work ethic: careful, transparent, and focused on straightforward communication.
From our vantage point as genuine hands-on manufacturers, we commit to maintaining the highest available quality, closing the gap between supply and application, and staying responsive to the ever-changing shape of chemical science in industry. Every batch shipped, every consultation provided, adds to the practical confidence customers have come to expect.
Collaboration, technical integrity, and product stewardship stand as our guiding beliefs—not simply for this product, but across our entire operation.