|
HS Code |
198734 |
| Name | 2-Chlororesorcinol |
| Cas Number | 608-25-3 |
| Molecular Formula | C6H5ClO2 |
| Molar Mass | 144.56 g/mol |
| Appearance | White to off-white crystalline powder |
| Melting Point | 104-107 °C |
| Boiling Point | 241 °C |
| Solubility In Water | Slightly soluble |
| Density | 1.45 g/cm3 |
| Smiles | C1=CC(=C(C(=C1)O)O)Cl |
| Pubchem Cid | 12217 |
As an accredited 2-Chlororesorcinol factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Amber glass bottle, 100 grams, sealed with a screw cap; hazard labels and product information clearly displayed on exterior. |
| Shipping | 2-Chlororesorcinol is shipped in tightly sealed containers to prevent moisture or contamination, and typically stored at room temperature. It should be handled in accordance with local regulations for hazardous materials, with proper labeling and documentation. Transport is generally via ground, air, or sea in accordance with chemical safety guidelines. |
| Storage | 2-Chlororesorcinol should be stored in a tightly closed container, in a cool, dry, and well-ventilated area, away from sources of ignition and incompatible substances such as strong oxidizers. Protect from direct sunlight and moisture. Use appropriate personal protective equipment when handling. Clearly label the storage container and ensure it is kept away from food and drink. |
Applications of 2-Chlororesorcinol in Industrial ManufacturingAs a direct manufacturer, we supply 2-Chlororesorcinol to multiple downstream industries that rely on its unique reactive profile for specialized synthesis. Below, we detail primary industrial application tracks, emphasizing real-world compliance, formulation, process point, and typical finished products based on verified market and regulatory requirements. 1. Hair Dye Intermediate Production2-Chlororesorcinol acts as a key coupling or modifying agent in the formulation of permanent oxidative hair dyes. The aromatic structure provides color nuance and stability, enabling formulators to achieve a wide shade spectrum. Major manufacturers use this material in coloration precursors that balance depth and resistance to fading. Production lines incorporate tight material specifications, monitoring purity and trace impurities to ensure downstream safety profiles. Quality control follows strict heavy metal and contamination limits, supporting safe cosmetic formulation for international brands. Industry compliance standards
Typical usage ratio
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2. API Intermediate for Dermatological AgentsThe molecule serves as a precursor in active pharmaceutical ingredient synthesis, notably for skin antimicrobials and antiseptics. Its phenolic character provides a gateway to specialized aromatic compounds in topical drug manufacturing. Our QC process aligns with pharmacopoeial raw material standards, and batches maintain traceability and documented purity. Pharmaceutical clients require consistent color, impurity profiles, and controlled moisture, as minor variations impact downstream synthesis and regulatory clearance. Industry compliance standards
Typical usage ratio
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3. Dye and Pigment Intermediate Manufacturing2-Chlororesorcinol functions as a primary aromatic intermediate for the synthesis of specialty dyes and pigments, including azo, anthraquinone, and heterocyclic series. Major pigment manufacturers value its controlled reactivity during diazotization, coupling, and elaborate condensation steps, which manage hue precision and fastness. Batches undergo optical density and chromatic value assessment to ensure compatibility with high-value pigment production lines supplying textile and plastic coloration sectors. Industry compliance standards
Typical usage ratio
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4. Synthesis of High-Performance UV StabilizersThe compound acts as a backbone in the creation of industrial UV absorbers and antioxidants, commonly used in the plastics, paints, and coatings industries. During synthesis of benzotriazole- and benzophenone-type stabilizers, material flow and purity critically affect photostability parameters. Resin manufacturers require consistent supply with tight limits on residual halogens and moisture, minimizing downstream filtration loss and maximizing end-use reliability, especially where long-term outdoor exposure standards apply. Industry compliance standards
Typical usage ratio
Downstream process integration
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In the field of specialty aromatic chemicals, 2-Chlororesorcinol draws attention for its reliability and unique performance edge. As chemists and process engineers, we know every step involved in synthesizing and refining this compound. The product’s foundation rests on years of reproducible bench chemistry, scaled up to deliver tonnage volumes without drifting from batch-to-batch quality. Every molecule leaving our reactors is manufactured with years of accumulated expertise behind it—not merely packaged or rebranded after the fact.
2-Chlororesorcinol, known chemically as 2-chloro-1,3-benzenediol, arises from a careful balance of halogenation and purification. As manufacturers, we track each reaction parameter under real-world plant conditions. Even trace impurities alter properties downstream, so development work never focuses solely on yield. The finished product features a monochloro substitution pattern on a dihydroxybenzene ring. This seemingly simple combination gives it a unique seat in chemical toolkits. The subtlety of this substitution is what often creates the biggest process differences compared with related compounds.
In-house specifications represent more than paperwork—they reflect tight control at production scale. Our 2-Chlororesorcinol emerges as either a faintly off-white or pale crystalline powder. Particle size often makes a world of difference depending on the reactor setup at a customer site. From filtration to charging and mixing, we tailor grind profiles within practical limits to keep workflow smooth.
Purity stands as the most discussed parameter on any customer call. We produce batches that meet or exceed 99% assay using high-performance liquid chromatography (HPLC) verification, not just legacy wet chemistry methods. Water content frequently impacts shelf life and stability, so Karl Fischer titration forms part of standard checks—our typical lots fall below 0.5% water by weight. Traceability anchors every drum, tracing raw material origins, processing history, and operator interventions. Those details directly tie to consistency, which drives formulators’ purchasing decisions far more than glossy brochures.
Odor is another subtle but telling detail: fresh, high-quality 2-Chlororesorcinol gives off a faint phenolic scent, not the sharp or burnt notes that emerge from uncontrolled side reactions. Manufacturers who pay attention at scale recognize that true process control appears in small sensory details just as much as in paperwork. Melting point ranges typically land within 80-86°C, confirming batch integrity and minimal isomer content—a fact that provides confidence for anyone running downstream syntheses or formulations.
We’ve worked alongside customers developing applications in dyes, fine chemicals, personal care actives, and pharmaceutical intermediates. The unique pattern of hydroxyl and chloro substituents brings several advantages. Dye manufacturers draw on its reactivity and solubility—2-Chlororesorcinol offers distinctive chromophore development with better shade control than unsubstituted resorcinol or 4-chlororesorcinol. In dye chemistry, this can mean stronger affinity for fibers and more reproducible color fastness.
In the pharmaceutical sector, the compound’s regiochemistry provides a useful springboard for further functionalization. Medicinal chemists frequently use it as a starting point or building block when crafting new molecules with biological activity. For skin creams or hair dyes, formulators appreciate the subtler irritancy profile versus more heavily halogenated phenols. Our technical teams regularly see customers leverage its intermediate polarity—in some cases striking a fine balance between solubility and reactivity crucial to plant-scale economics.
Feedback from personal care formulators reinforces something we see on our own QC lines. They want material that quickly dissolves at moderate temperature, minimizing speckling and grit in creams, gels, and solutions. Problems often traced back to off-grade resorcinol derivatives—such as inconsistent melting, dissolution, or lingering raw chemical smell—rarely surface in batches we’ve handled from synthesis through packing.
Anyone with hands-on experience in an industrial chemical plant recognizes that 2-Chlororesorcinol shares its molecular structure with a handful of similar compounds. Yet not every type behaves the same. Take 4-chlororesorcinol or unsubstituted resorcinol: seemingly minor shifts in substitution pattern yield clear differences in application performance. Isomeric distribution affects melting point and reactivity, meaning that swapping one for another can introduce unpredictable behavior.
Manufacturers accustomed to tweaking recipes for final product properties know the importance of reliable, single-isomer 2-Chlororesorcinol. Unwanted isomers can throw off reaction timing or shade formation—complications that never show up in generic spec sheets. Whether aiming for vivid dyes, specific intermediates, or performance ingredients, the reproducibility we guarantee makes for fewer headaches in large-scale production. Process ‘feel’—that intuitive familiarity with how a batch stirs, dissolves, or integrates—cannot be underestimated, and pure 2-Chlororesorcinol, meeting agreed parameters, leads to predictable results.
Comparing 2-Chlororesorcinol to resorcinol itself, we see how halogenation tweaks reactivity and, ultimately, end-use behavior. Inserted chlorine in the ortho position shields one hydroxyl while activating the other. This controlled difference makes it invaluable for stepwise synthesis strategies in both pharmaceuticals and specialty dyes. Where unsubstituted resorcinol reacts quickly and sometimes indiscriminately, 2-Chlororesorcinol lets chemists guide conversion rates to improve outcome selectivity. As experienced producers, we recognize that this one small aryl modification can determine the economic and technical success of entire product lines further downstream.
Distributors and trading houses often focus on paperwork and packaging, but in the chemical business, risk narrows when you know your material’s real origin. Every plant visit, every operator training session, every troubleshooting phone call with a customer, underlines how critical direct feedback is to long-term success. Only a true manufacturer can dig into the details, modifying a reaction parameter or tightening a drying profile based on how real customers use the material. This direct collaboration is how robust, market-relevant 2-Chlororesorcinol comes to market—not simply by shipping what happens to be available.
Process reliability is never accidental. Our staff executes at plant scale the same methods validated in analytical labs, confirming both assay and absence of residual impurities. Every shipment batch includes retained samples, with stored records of every adjustment made—down to plant temperature, atmospheric conditions, and operator shifts. If a user flags a sticking point—maybe a dissolution hiccup or unexpected side reaction—our plant engineers consult production logs and, when necessary, adjust upcoming runs. This loop of feedback, intervention, and documentation rarely occurs outside the manufacturing floor.
From a practical perspective, those building a supply program around 2-Chlororesorcinol demand more than a simple COA and material safety data sheet. They look for a supplier who shares risk as a partner, not just as a reseller. By discussing process bottlenecks—be it clumping, dissolution, or trace impurity interference—manufacturers can tailor plant protocols that eliminate issues before a tanker or drum ever leaves the yard.
Manufacturing specialty aromatics means facing challenges like batch reproducibility, raw material fluctuation, and regulatory compliance. Market volatility sometimes tempts short-term cost-cutting with cheaper precursors or lower-grade solvents, but these gambits always show up in product behavior. Our approach, from years in the business, keeps raw material traceability front and center. By working closely with vetted suppliers and verifying each incoming lot, consistency starts before reactors ever get charged.
Plant safety forms a parallel focus. Chlorinated organics present fire risk, and plant operators are trained not only on spills and releases but also on subtle process upsets that could lead to runaway conditions. Open channels between safety, production, and customer support mean feedback about “strange” product lots or off-odors is always logged and acted on, not written off as statistical outliers. This attention to operational detail forms the backbone of responsible chemical manufacturing and earns lasting customer trust much more reliably than reams of paper protocols.
Environmental concerns persist across our industry and have shaped our approach to waste minimization and energy use. We recover solvents and reuse materials wherever feasible, adjusting purification steps as technology improves. Off-gas scrubbing and liquid byproduct treatment follow regulatory guidelines not as a box-ticking exercise, but because we’ve seen firsthand how shortcuts lead to fines, lost permits, or community tension. We talk openly with downstream users about byproduct traces, offering technical solutions and ongoing documentation on performance improvements.
Supply chain disruptions underline the difference between original production and third-party reselling. During global transport delays or regulatory crackdowns on intermediates, those who control the entire value chain—from raw purchase to finished drum—can buffer customers more reliably. Our ownership of the plant and access to real-time process data means that, if a formulation challenge arises or alternative handling is needed, we adapt before a disruption becomes a business crisis for customers.
Buyers of 2-Chlororesorcinol rarely look for one-time procurement. Repeat business only comes when the product performs year in, year out without guesswork. Technical support teams, grounded in plant experience rather than just external sales, interpret customer needs in practical terms. If a customer’s reaction yield or final product aesthetics deviate, our chemists investigate potential raw material links with on-site testing—sampling at each processing stage. This ongoing dialogue keeps projects on schedule and minimizes costly do-overs.
Clients from both multinational and regional operations send us samples of end-use blends or intermediates for troubleshooting. This open-door approach grows out of shared reality: few projects follow the textbook from beginning to end. Real-world issues—such as gum formation, off-spec color shades, or variable solubility—demand technical answers rooted in process familiarity not just theoretical knowledge. We share learnings from our own production lines, suggesting processing tweaks or additive adjustments that genuinely improve outcomes.
Regular meetings and transparent updates, paired with representative samples and historical performance data, form the backbone of our client relationships. Performance claims always link back to real plant runs or customer feedback, making for reliable advice customers can act on. This practical experience surpasses generic technical sales pitches, providing a grounded source of confidence at every stage from R&D to commercial manufacture.
Innovation in 2-Chlororesorcinol production doesn’t arrive overnight. It demands a base of data gathered run after run, incorporating both customer feedback and advanced analytical insight. We track batch variability over the long term, spotting minor trends that can flag future operational tweaks. Analytical method improvements—switching from TLC to more robust HPLC or mass-spectrometry confirmation—arise from real challenges our team faces scaling up early-stage process development.
Originating from plant practice and backed by technical learning, every process refinement brings new possibilities. Precise control of hydrolysis, halogenation, and drying steps has improved both purity and user experience, observed not only by numbers but also by hands-on trial. Operators fine-tune temperature ramps, agitation speed, and solvent composition in response to both process safety reviews and customer reports of application bottlenecks. This dynamic of continual journey—bridging today’s practical needs with tomorrow’s specifications—has set our product apart over years of direct industry engagement.
We also prioritize improvements in sustainability and safety. Redesigning process water usage, improving air containment, and moving toward less hazardous purification agents all come directly out of ongoing, in-plant discussions. The feedback loop from customer, operator, and environmental teams leads to tangible changes that move the product line ahead without introducing new risks or costs. Over time, this steady advance leaves its mark on both plant efficiency and the reliability of every batch shipped.
For all the talk of molecules and materials, the long game in our field is partnership—not just transaction. Years of working in chemical plants, meeting face-to-face with users, and following up on post-sale feedback has built trust in a way no paper trail ever could. Our role as a manufacturer places us on the front line, solving supply consistency, regulatory expectations, and technical innovation together with the customer.
In the specialty arena, one-off selling always gives way to longer conversations. Customers return to us not for a discount, but for assurance that each new batch functions identically to the last. They know that if industry trends shift, regulatory regimes tighten, or product needs change, their partner on the other end understands the fine points of 2-Chlororesorcinol synthesis—because we’re running the reactors, not just selling the boxes. These are realities that, over time, shape market leaders in chemical manufacturing.
Every drum of 2-Chlororesorcinol we sell reflects choices made by the people who manufacture, analyze, and ship it—not just contract arrangements or middlemen’s markups. Our understanding of its properties, applications, and potential stems from seeing the material through every step: from raw precursor to final blended product. With years of customer-facing technical support, process optimization, and continued innovation, we offer more than a commodity—we deliver real manufacturing experience our customers put to work with confidence.