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2,6-Dibromo-4-Methylphenol

    • Product Name 2,6-Dibromo-4-Methylphenol
    • Alias BRMPP
    • Einecs 215-607-8
    • 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

    523554

    Cas Number 118-79-6
    Molecular Formula C7H6Br2O
    Molecular Weight 281.93 g/mol
    Iupac Name 2,6-Dibromo-4-methylphenol
    Appearance White to off-white crystalline powder
    Melting Point 77-81 °C
    Solubility In Water Slightly soluble
    Density 2.02 g/cm³
    Smiles CC1=CC(=C(C(=C1)Br)O)Br
    Synonyms Bromosol; 4-Methyl-2,6-dibromophenol
    Pubchem Cid 8584
    Storage Temperature Store at room temperature

    As an accredited 2,6-Dibromo-4-Methylphenol factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Amber glass bottle containing 100 grams of 2,6-Dibromo-4-Methylphenol, labeled with hazard warnings and product details.
    Shipping 2,6-Dibromo-4-Methylphenol is shipped in tightly sealed containers, protected from light and moisture, and labeled as a hazardous chemical. Transport complies with international regulations for brominated compounds. Appropriate shipping documents, hazard identification, and safety data sheets accompany the shipment to ensure safe and compliant handling and delivery.
    Storage 2,6-Dibromo-4-Methylphenol should be stored in a cool, dry, and well-ventilated area, away from sources of ignition and strong oxidizing agents. Keep the container tightly closed and protected from light and moisture. Store in a chemical-resistant container, appropriately labeled. Ensure it is inaccessible to unauthorized personnel and segregated from incompatible substances to prevent hazardous reactions.
    Application of 2,6-Dibromo-4-Methylphenol

    Applications of 2,6-Dibromo-4-Methylphenol in Industrial Manufacturing

    2,6-Dibromo-4-Methylphenol supports several industrial sectors as a specialty chemical intermediate and functional additive. Our direct production and rigorous quality control enable integration into specific manufacturing formulations where purity, dosage, and compliance to sectoral guidelines are critical.

    1. Antimicrobial Preservatives for Industrial Water Treatment

    Industries use 2,6-Dibromo-4-Methylphenol as an antimicrobial agent in closed-loop and recirculating water systems to control the growth of fungi, bacteria, and algae. This brominated phenolic compound proves essential where biostability is required in cooling water, pulp washing, and papermaking circuits, helping operators maintain equipment reliability, reduce biofilm formation, and meet discharge quality standards without promoting resistance among common water-borne microorganisms. Plant engineers select the active based on water chemistry, system volume, application method, and required maintenance intervals.

    Industry compliance standards

    • U.S. EPA FIFRA regulations for biocidal products
    • EU Biocidal Products Regulation (BPR) (EU) No 528/2012
    • OECD Guidelines for the Testing of Chemicals (biodegradation and toxicity)
    • National Sanitation Foundation (NSF) water treatment standards if required

    Typical usage ratio

    • 2–50 mg/L in treated water; exact dosage based on microbial load and retention time
    • Adjustment depends on system flow rate and organic content; initial shock dosing followed by maintenance dosing

    Downstream process integration

    • Introduced to holding tanks, cooling towers, or process water headers during make-up or recirculation
    • Integrated into automated dosing and online monitoring systems for continuous control

    Final product types

    • Recirculating industrial cooling water
    • Pulp processing water
    • Paper machine white water circuits
    • Industrial process water with antifouling requirements

    2. Intermediate for Pharmaceutical Antiseptic Formulations

    Pharmaceutical manufacturers employ 2,6-Dibromo-4-Methylphenol as a key intermediate in the synthesis of topical antiseptic agents and medicated skin cleansers, where reliable antimicrobial performance is needed for over-the-counter consumer and clinical products. API synthesis requires tight specification control on impurities and trace heavy metals, and downstream conversion follows cGMP principles throughout active pharmaceutical ingredient finishing and formulation into finished dosage forms.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice for Active Pharmaceutical Ingredients
    • Pharmacopoeia monographs such as USP, Ph. Eur., or JP when relevant
    • 21 CFR part 211 cGMP for Finished Pharmaceuticals
    • REACH Annex XVII substance restrictions for pharmaceuticals

    Typical usage ratio

    • Used as a synthetic precursor at 5–35% by weight of stepwise batch charge
    • Final active ingredient concentration in finished pharmaceutical products typically 0.1–2.0%, depending on formulation and therapeutic guidelines

    Downstream process integration

    • Reacted in controlled synthesis under inert conditions to form brominated phenol APIs
    • Incorporated via solution blending, chlorination, or esterification as part of proprietary processes; rigorous removal of byproducts

    Final product types

    • Topical antiseptic creams and lotions
    • Medicated soaps and skin cleansers
    • Hospital-grade antimicrobial handwashes
    • Prescription wound irrigants

    3. Biocidal Additive for Paints and Coatings

    Coatings formulators add 2,6-Dibromo-4-Methylphenol at the grind or letdown stage to prevent microbial spoilage and extend shelf life in high-value paints, varnishes, and industrial coatings. This biocidal component offers targeted action against bacteria and fungi that degrade resin binders, cause odor, or result in viscosity drift, contributing to defect-free application and long-term film protection under high humidity or wet service conditions.

    Industry compliance standards

    • Global Harmonized System (GHS) and CLP (EC) No 1272/2008 for labeling
    • ASTM D2574: Standard Test Method for Resistance of Emulsion Paints to Microbial Attack
    • GB/T 21862.2-2008 (China): Biocide content in coatings
    • REACH registration or authorization where required

    Typical usage ratio

    • 0.05–0.2% (w/w) based on total formulation volume
    • Adjusted according to binder system, water content, and expected shelf life; higher end for tropical climates

    Downstream process integration

    • Added post-dispersion to masterbatch or in final letdown stage before canning to avoid loss by volatilization
    • Fully dissolved and homogenized under medium agitation; monitored by QC for target particle size and dispersion

    Final product types

    • Architectural paints for humid environments
    • Industrial protective coatings
    • Marine antifouling paints (as part of biocide package)
    • Exterior wood stains and varnishes

    4. Raw Material for Functional Textile Finishes

    Textile finishing plants use 2,6-Dibromo-4-Methylphenol as a precursor in the preparation of antibacterial and antifungal treatments for technical and hygiene-oriented fabrics. These functional finishes protect fibers from microbial deterioration and odor during use in healthcare, hospitality, and sports applications. Dosing, chemical binding, and subsequent washing stability depend on fabric type and end-use certification requirements, supporting market demand for treated medical wear, bedding, and performance garments.

    Industry compliance standards

    • Oeko-Tex Standard 100 Annex 4 restricted substance list
    • ISO 20743:2013—Determination of antibacterial activity of textile products
    • REACH (EU) and TSCA (USA) textile additive notifications as applicable
    • ZDHC MRSL for chemical management in textile supply chains

    Typical usage ratio

    • 0.1–0.6% (w/w OWF, on weight of fabric) in finishing bath formulations
    • Ratio set according to fiber porosity, wash durability, and antimicrobial claims on final garment labels

    Downstream process integration

    • Dissolved in aqueous or solvent-based finishing emulsions, applied by padding, exhaustion, or spray methods
    • Cured onto fabric with controlled drying and heat fixation cycles to ensure lasting effect after laundering

    Final product types

    • Hospital bed linens and workwear
    • Sportswear and socks with odor control
    • Protective barrier gowns
    • Antimicrobial curtains or filter textiles
    Free Quote

    Competitive 2,6-Dibromo-4-Methylphenol prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please call us at +8615371019725 or mail to admin@sinochem-nanjing.com.

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    Certification & Compliance
    More Introduction

    2,6-Dibromo-4-Methylphenol: Reliable Chemistry, Real Solutions

    Direct from Our Reactors: Setting a Standard for Purity

    In the manufacturing world, the smallest detail often determines the final outcome. Operating on this principle, we've focused our production on 2,6-Dibromo-4-Methylphenol with a commitment to consistency and transparency. Over the years, we've learned that purity doesn’t just boost yield – it minimizes headaches for downstream processes. Every batch rolls out after demanding checks on content, moisture, color, and absence of residual solvents. By running our own reactors and overseeing every stage, we cut down variability and get a chemical product that keeps downtime and surprise rework to a minimum.

    Where Chemistry Meets Daily Demands

    Our product isn’t made to sit in a catalog. Its key performance traits come straight from practical feedback – from clients who run reactors themselves, balance batch economics, and don’t have patience for surprises. 2,6-Dibromo-4-Methylphenol finds steady use as an intermediate for pharmaceuticals and specialty biocides. Antibacterial and antifungal effectiveness comes built-in; the molecular structure resists breakdown under light and elevated temperatures, so it doesn’t quit halfway through a seasonal run or harsh processing step. Manufacturers in the home and personal care fields count on exacting impurity controls so that the end products check out with both auditors and end-users.

    Specifications That Impact More than Paperwork

    Details matter for those who run production lines. Our offering arrives with a minimum purity of 99 percent—no empty promises or rounds of recalculation needed. Technical staff in our facility have walked plenty of lines themselves; they know it’s easier to adjust a mixing ratio on a watch, not recalibrate an automated feeder every other lot. Every shipment logs test results for key parameters: melting point, bulk density, and moisture. Particle size distribution is another story altogether—customers often want something that stirs quickly into a formulation or, in other cases, settles fast for crystal recovery. Adjusting parameters means tweaking reactor inputs or refining crystallization steps—not guessing by trial and error months after a first order.

    Why Ours Looks, Smells, and Handles Differently

    Take a freshly opened drum and it's easy to spot: rich white to pale brown crystalline bits, clean aroma without the sharp tang of overbrominated byproducts. Years in the field showed us that minor color shifts can flag an upcoming batch issue, so we keep visual parameters tight. Many generic supplies show gray tints or off-smells that translate to higher impurity loads. It’s not about lab cosmetics—those off-notes often point to instability and lower antimicrobial punch. What some brands dismiss as “cosmetic non-conformance” ends up costing days of hold in our customer’s warehouse when it triggers a QC rejection.

    Handling Real-World Applications: What We Hear from the Floor

    Raw material choices aren’t made at a desk; they happen in filling rooms, blending stations, and during test runs that either fall short or unlock new product launches. Our partners in the personal care sector drive the feedback loop tighter: their next launch might stand on the ability of a preservative active to dissolve fully in a tricky blend, or pass an in-use shelf-life study in a tropical market. Our product outperforms because we hold water and non-volatile impurities down, which means fewer surprises in stability runs and a smoother regulatory path.

    The Downstream Differences: Ways This Product Sets Itself Apart

    Experience stacks up choices at every production step. Some producers lean into volume, pushing short-cycle output that leads to broader impurity targets. That may work when the customer can handle reprocessing or isn’t bound by tight registration specs. We take another route. Our reactors stay tuned toward narrow cut-off points for byproducts, and our drying step receives twice the scrutiny compared to standard protocols. This results in chemical that survives both routine batch validations and those rare surprise audits.

    We’ve seen national tenders stipulate color intensity or ash content so low only a tight production setup can deliver. Large regular customers—especially across medical and regulated-homecare fields—insist on batch-to-batch comparability, even with annual demand swings. Meeting their needs, and not fielding endless support calls, requires consistency. Any time a supplier outsources steps or pushes post-reaction processing to a broker, risk creeps in. We keep it on-site—and in reach.

    Comparing Across the Shelf: How We Stack Up to Alternatives

    Buyers and technical officers often stand at a crossroads: cheaper, indistinct material sourced indirectly, or a tighter, signed-off lot from a direct producer. There are several brominated phenolics out there, but substitutions don’t always play fair with performance. Some customers attempt 2,4,6-Tribromophenol or blend-in less precise brominated portfolios. Molecular substitution matters—sometimes a methyl group, seemingly trivial, determines activity, solubility, and how regulators read a certificate. Our 2,6-Dibromo-4-Methylphenol brings the optimal mix: enough bromination for potency, with the right side-group to offer compatibility and stability during storage and end use.

    Difference shows in the field. Some alternatives require higher dosages to keep bacterial growth in check; that leads to higher input costs and, long-term, tighter list approvals. Our product keeps batch formulations straightforward—no recalculation, no cross-formulation bottle-necking. Suppliers who can’t offer documented residual solvents or uncontrolled color parameters fall short when end-user queries roll in.

    Regulatory and Sustainability Actions from the Source

    Being the original manufacturer means there’s no guessing on compliance. We pull process-related documentation on each run, covering everything from RoHS queries to VOC level statements. The market shifts fast; some partners require support for new labeling or data for customs clearance. We help with those needs upfront, drawing on years in certification reviews. Internally, we've moved to reduce both solvent use and batch emissions, keeping our output competitive as buyers face stricter procurement guidelines abroad.

    Customers ask about waste reduction and emissions. Our facility doesn't just test for quality—it audits raw material origin, water recycling rates, and proper high-temperature incineration methods for mother liquors and residues. We hear buyers in Europe and North America describe new demands for chain-of-custody and sustainability reporting. Our operations audit the entire cycle, not just the finished drum. That builds a level of trust, and keeps the product on shortlists for brands moving toward full life-cycle assessments and greener chemistry roadmaps.

    Risk Control: Protecting Users and Processes

    Many users care about more than final assay. The volatile organic content and impurity classes raise health, safety, and shelf-life questions. Having the synthesis on-site ensures a full trace on origins, reaction conditions, and process improvements. We learned the hard way in early runs—small shifts in reaction temperature or raw bromine grade led to out-of-range organics or higher polybrominated impurities. Adjusting these, and fully drying product before packing, removed trouble before downstream users discovered it after shipment. Post-reaction screening picks up issues immediately, not after a drum has crossed the ocean.

    Clients want to avoid triggers for recalls, shelf instability, or new regulatory headaches. Detailed specs and reference samples from each batch go out with the product, audited by in-house and third-party labs. For us, that is a matter of reputation and process ownership, not box-checking.

    Product Handling: Designed for Today’s Realities

    Over years in this industry, we saw plenty of cases where poor packaging cost more in hassle than the original order was worth. Our product comes in multi-layered packaging, sealing out moisture, dust, and light. We started using barrier drums after encountering contamination complaints on overseas shipments—it cut customer rejection rates by more than half. Handling advice from our technical staff goes beyond what’s printed on the container. Common reminders: keep drums tight after opening, avoid extended repeated exposure to warehouse air, move unused portions into fresh sealed bags.

    Storage is straightforward—ambient conditions suit most warehouse settings, but we always steer customers away from extremes. Open communication lets us quickly solve any logistics concerns, including customization requests for batch size or split shipping, based on the realities of time and cost savings on your end.

    A Trained Eye on Your Process: Why Feedback Drives Improvements

    Most feedback about our 2,6-Dibromo-4-Methylphenol goes beyond numbers. People in the field want to see reduced hold time, smoother integration in downstream synthesis, and better color stability in products that sit on store shelves. Real-world wins include a European biocide producer who cut their batch failures by switching from a blended-source supply to ours, or a South American household product plant that solved microcrystal reflux losses after we adjusted particle size in production.

    Our technical team stays in the loop, not just on launch day. Any performance hiccup or suggestion for improvement gets discussed with process engineers, batch supervisors, and staff who see the outcome of minor tweaks. That cycle means new batches reflect lessons learned and drive upgrades for future orders, not just bare compliance.

    What Sets Our Product Apart in the Chemical Market

    Manufacturers who don’t run their own reactions, or who hand off key steps to third-party tollers, rarely have the same depth of information or adaptation speed. We see new applications and customer demands each year, and the ability to pivot or fine-tune without months of delay is built into our core work. Clients appreciate not just the chemical’s purity, but the process transparency—they know who to call, what’s been changed, and the rationale for every adjustment.

    We put value on the direct manufacturer relationship as supply chains grow more complex. Every level of our operation reflects this; from procurement, through processing, all the way to final dispatch. By handling the entire journey, we keep the margin for error as close to zero as chemistry allows, and free up customers to focus on what matters most on their side of the business.

    Looking Forward: Market Trends and Product Responsiveness

    As regulations tighten and customer scrutiny mounts, bulk suppliers without deep process control or responsive technical support lose ground. Products like 2,6-Dibromo-4-Methylphenol must tick the boxes for cost, quality, and compliance while also adapting to ever-shifting registration lists and consumer-facing ingredient screens. Our ongoing investment in process analytics keeps us ahead. We roll out inline detection for contaminants, and fine-tune synthesis steps based on direct customer trials. The product that moves through our facility tomorrow reflects feedback we get today; that’s how we plan to stay ahead of broader market swings and emerge as the partner of record.

    Conclusion: Chemical Manufacturing Anchored in Real Experience

    Handling 2,6-Dibromo-4-Methylphenol isn’t theoretical for us—it’s real-world production, tested by everyday use. Our clients want more than chemical content on a page; they need confidence that what arrives in their plant matches what kept their lines running yesterday. Years of supplier audits, batch troubleshooting, and international shipping have shaped how we make and deliver this essential compound. It goes out the door clean, safely packed, and reliably specified, because that’s what we’d demand on our own floor. Our focus remains constant: practical quality for the end user, detailed technical backing for the buyer, and a willingness to improve from direct experience.