Products

Bis-Ethylhexyloxyphenol Methoxyphenyl Triazine

    • Product Name: Bis-Ethylhexyloxyphenol Methoxyphenyl Triazine
    • Alias: Tinosorb S
    • Einecs: 403-800-1
    • Mininmum Order: 1 g
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
    • CONTACT NOW
    Specifications

    HS Code

    822322

    Inci Name Bis-Ethylhexyloxyphenol Methoxyphenyl Triazine
    Common Trade Names Tinosorb S
    Cas Number 187393-00-6
    Function UV Filter
    Appearance Yellowish to pale brown viscous liquid
    Solubility Oil-soluble
    Uv Absorption Range 280-400 nm
    Maximum Absorption Peak 310 nm and 340 nm
    Photostability Highly photostable
    Use Level Up to 10% in EU
    Odor Characteristic, mild
    Molecular Weight 627.8 g/mol
    Compatibility Compatible with most cosmetic oils and other UV filters

    As an accredited Bis-Ethylhexyloxyphenol Methoxyphenyl Triazine factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing White, opaque HDPE container with secure screw cap, labeled “Bis-Ethylhexyloxyphenol Methoxyphenyl Triazine,” net weight 500 grams, with safety information.
    Shipping Bis-Ethylhexyloxyphenol Methoxyphenyl Triazine is shipped in tightly sealed, chemical-resistant containers, protected from light and moisture. It is classified as non-hazardous for transport, but should be handled with standard precautions. Shipping conditions generally require cool, dry storage. Ensure all packaging complies with local and international chemical transport regulations.
    Storage Bis-Ethylhexyloxyphenol Methoxyphenyl Triazine should be stored in a tightly closed container, in a cool, dry, and well-ventilated area away from direct sunlight and incompatible substances. Avoid exposure to heat and moisture. Store at room temperature, ideally below 25°C. Ensure the storage area is secure and clearly labeled, and prevent contamination with other chemicals, especially strong oxidizers and acids.
    Application of Bis-Ethylhexyloxyphenol Methoxyphenyl Triazine

    Applications of Bis-Ethylhexyloxyphenol Methoxyphenyl Triazine in Industrial Manufacturing

    We supply Bis-Ethylhexyloxyphenol Methoxyphenyl Triazine, a high-purity broad-spectrum UV absorber, formulated for advanced light protection requirements in technical and regulated industries. Below, we outline its key industrial application scenarios based on actual end-use markets.

    1. High-Performance Sunscreen Emulsions (Cosmetic and Dermaceutical Production)

    Cosmetic manufacturers integrate our UV filter into sunscreen lotion and emulsion production lines, targeting maximum UVA and UVB protection. The ingredient is compatible with both oil-in-water and water-in-oil systems and co-formulates with other UV filters to achieve compliance with strict regional sun protection factor (SPF) claims. Formulators maintain stability under high-shear homogenizing and thermal processing, ensuring consistent dispersion without crystallization. Final batches undergo controlled QC for active content and photostability before packaging into finished primary and secondary consumer units.

    Industry compliance standards

    • EU Cosmetics Regulation (EC) No 1223/2009
    • FDA 21 CFR Part 352 (USA OTC Sunscreen Monograph)
    • ASEAN Cosmetic Directive
    • ISO 24443:2012 (UVA protection in sunscreen products)

    Typical usage ratio

    • 1.5%–10% by weight, adjusted to achieve declared SPF/PFA levels and to meet regional maximum allowed concentrations

    Downstream process integration

    • Added at lipid/pre-emulsification stage or during phase mixing under controlled temperature (40–75°C)
    • Requires solubilization in oil phase or with polar solvents, then homogenized

    Final product types

    • Sun creams
    • Daily face/body moisturizers with UV protection
    • Dermatological sunblock products
    • High-SPF sprays and gels

    2. UV-Protective Coatings for Plastics (Technical Polymer Processing)

    Plastic processors use the ingredient for stabilizing polycarbonate, PET, PMMA, and polyolefin materials against UV degradation. Masterbatch preparation blends the additive into raw polymer granulates prior to extrusion, molding, and finishing. This enhances product resistance to color fading, surface cracking, and loss of mechanical properties from prolonged sunlight exposure. QC ensures product uniformity, migration resistance, and minimal impact on optical clarity for transparent applications.

    Industry compliance standards

    • REACH Regulation (EC) No 1907/2006
    • ISO 4892 (Plastics—Exposure to laboratory light sources)
    • UL 94 (flammability rating, as applicable)
    • RoHS Directive 2011/65/EU (for electronics housings)

    Typical usage ratio

    • 0.1%–0.5% by weight for clear films and sheets
    • Up to 1.0% in thick-walled or extreme outdoor-endurance applications based on UV exposure risk

    Downstream process integration

    • Pre-mixed with polymer resin during compounding
    • Extruded or injected together with pellets or masterbatch

    Final product types

    • Automotive headlamp lenses
    • Architectural glazing panels
    • Consumer electronics housings
    • Outdoor furniture and equipment parts

    3. Premium UV-Resistant Paints and Industrial Coatings

    Coatings manufacturers disperse the UV absorber into liquid paint systems for automotive, marine, and architectural applications. It is introduced into the formulation at the milling or pigment dispersion stage to ensure compatibility with solvent- and water-borne binders. The stabilizer extends film integrity and color vibrancy on exposed surfaces, especially in regions with high solar intensity. QC protocols include accelerated weathering and gloss retention analysis to validate protective performance before shipment to customers.

    Industry compliance standards

    • Directive 2004/42/EC (VOC content limits in paints)
    • ASTM D4587 (Standard practice for accelerated weathering of coatings)
    • EN 927-6 (Coating materials and exterior wood)
    • ISO 12944-6 (Corrosion protection of steel structures)

    Typical usage ratio

    • 0.5%–2.5% based on total formulation weight, tailored after pigment type and substrate sensitivity

    Downstream process integration

    • Blended with base resins and pigment dispersions during the main mixing cycle
    • Dispersed with high-shear or bead milling to achieve full dissolution

    Final product types

    • Automotive topcoats and clearcoats
    • Outdoor industrial paints
    • Marine coatings
    • Protective façade coatings

    4. UV-Shielding Additives for Adhesives and Sealants

    Producers of construction, packaging, and optoelectronic adhesives incorporate our UV stabilizer to prevent curing degradation and maintain bond strength under light exposure. The additive enters during the pre-polymer compounding stage, promoting longevity in products exposed to indoor or outdoor UV sources. Optimization addresses viscosity, set time, and mechanical performance to match target specifications. Final materials undergo photostability and bond strength validation according to industry protocols.

    Industry compliance standards

    • EN 204 (Classification of thermoplastic wood adhesives)
    • ASTM C920 (Elastomeric joint sealants)
    • REACH SVHC compliance
    • GHS Safety Data Sheet requirements

    Typical usage ratio

    • 0.3%–1.2% depending on adhesive chemistry, application method, and level of UV exposure in end-use environment

    Downstream process integration

    • Added to pre-polymer or main resin mix before crosslinker addition
    • Dispersed thoroughly under heat at 60–80°C for solventborne systems or with high-shear mixing for hotmelts

    Final product types

    • Construction sealants (windows, façade, curtain walls)
    • Electronic module and optoelectronic device adhesives
    • Flexible packaging lamination adhesives
    • Automotive weatherstrip bonding compounds

    Free Quote

    Competitive Bis-Ethylhexyloxyphenol Methoxyphenyl Triazine prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please contact us at +8615365186327 or mail to admin@ascent-chem.com.

    We will respond to you as soon as possible.

    Tel: +8615365186327

    Email: admin@ascent-chem.com

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    Certification & Compliance
    More Introduction

    Introducing Bis-Ethylhexyloxyphenol Methoxyphenyl Triazine: Insights from the Manufacturer

    Behind the Chemistry: Decades of Sun Protection R&D

    Years on the factory floor and in the lab have taught us that bringing a new UV filter to market requires more than a catchy name or a single impressive data point. Every day, our teams pilot batches of Bis-Ethylhexyloxyphenol Methoxyphenyl Triazine—also known by its cosmetic active name, BEMT. We scaled up this ingredient after careful review of its molecular resilience and practical feedback from formulation partners. The path from raw material to high-quality UV filter takes craftsmanship and a critical eye on scalability, purity, and global safety standards. Over time, we have fine-tuned our process chemistry so every drum or IBC leaving our gates meets the consistent level customers expect from a trusted manufacturer, not a trader or broker.

    Performance Factors that Guide Us

    BEMT changed the sunscreen landscape after regulators in Europe and Asia approved it. This molecule brings broad spectrum UV protection—absorbing both UVA and UVB rays—while holding up under sunlight and challenging formulation conditions. As the ones who synthesize it from start to finish, we spend time optimizing each step so Melting Point, Residue on Ignition, and Assay values are right where major cosmetic houses require them for clear gels, milks, and hybrid sunscreens. A steady eye on impurity profiles keeps every batch fit for both skin-contact applications and sensitive end markets.

    We do not rely on abstract purity claims. We use off-line and in-line analytical checks to confirm our product specifications meet what end users demand. In-house QC teams revisit batch records and stability data each month, closing any gap between our own standards and the benchmarks set by leading international regulations.

    Everyday Realities of Manufacturing BEMT

    Making BEMT at scale involves more than stirring a few pots. Our engineers have fine-tuned reaction times, separation methods, and environmental safeguards over years of trial and adjustment. We have learned that the temperature range and choice of solvents affect the formation of key intermediates and overall conversion rates. Minor changes in agitation or cooling can affect filter particle size—important when the product needs to stay transparent in delivery forms, from face creams to high-SPF sprays.

    Filtration and isolation at the tail end of production keep dust and extraneous particles out. Our regular protocol upgrades reflect the lessons from every production run. The feedback loop from plant operators to chemists to QC managers stays open, as only in bridging their experience do process improvements take hold.

    What Sets BEMT Apart from Other UV Filters?

    The market offers a whole ecosystem of UV filters. Each serves a purpose—from simple molecules like Octinoxate to legacy filters such as Oxybenzone. BEMT stands out for stability in both water- and oil-rich applications, lasting effectiveness without rapid photodegradation, and a chemical backbone that resists breakdown in light. This resilience meets the needs of formulators crafting long-wearing sunscreens or transparent skincare emulsions.

    Unlike some established filters, BEMT has a low risk for ingredient migration and minimal interaction with sensitive skin types. In head-to-head tests with Avobenzone or Ethylhexyl Methoxycinnamate, BEMT tends to hold a broader spectrum of UV wavelengths and keeps its active structure over three-to-four hours in direct sunlight. These outcomes grabbed the attention of labs and regulatory bodies looking for alternatives after safety and environmental impact questions touched legacy actives.

    As the actual producer, we handle the core chemistry—not just finishing, repacking, or blind mixing. We calibrate our equipment for each customer’s order, whether they want BEMT in microgranule, powder, or easy-to-disperse slurry. This flexibility comes only from long practice at scale and thorough documentation during every shift.

    Product Models and Specification Choices

    Through experience, we see trends emerge—Japanese, European, and Korean manufacturers all prefer subtle tweaks and custom specs. Some large cosmetic companies demand a particle size that disappears in water-based sprays, others adjust toward oil-based emulsions that still require uniform dispersion. In-house, we track values such as Main Substance Assay, Specific Gravity, Melting Point, Moisture Content, and Appearance.

    Our main BEMT offerings cover a purity range above 98.5 percent with strict controls for heavy metal content and residue removal. Customers turn to us for a pale-yellow fine powder, free-flowing, with dense batch control and flexible packing options. Request for particle modification or co-dispersant pre-mixes, and our compounding line pivots swiftly—an advantage of controlling every aspect of the process in one location. We do not outsource these steps, so quality stays under a single roof.

    Global Regulatory Demands: Why We Adapt Quickly

    Chemical manufacturers can’t hide behind wishful thinking or vague paperwork. Every new health guideline or regulatory protocol forces us to recalibrate, revise MSDS documents, and revise trace impurity logs. Our BEMT batches match REACH, EU Cosmetics, and Asia Pacific FDA standards. As stricter consumer safety rules emerge, our teams meet them head on, not by adding extra paperwork or marketing spin, but by checking real process data, cross-validating with international auditors, and raising the minimum bar for routine batch acceptability.

    Authorities from the US to the EU value traceability. We maintain lot trace logs, online chromatograms, and redundancy in lab equipment calibration. Customers rely on these transparent audits, whether they are multinational brand owners or specialist formulators seeking reliable, science-driven supply.

    Formulation Insights from Batch to Bottle

    Years spent working with BEMT up close have shown us that it plays well with other sunscreen filters—especially in hybrid blends seeking both broad spectrum and transparent finish. Formulators tell us our precisely milled BEMT helps them achieve clear or slightly tinted end products without visible streaks or loss of UV-A protection after exposure.

    Having a material that stays put in both water-proof and sweat-proof scenarios matters most to companies designing products for athletes, outdoor enthusiasts, or busy families. Particle size, shape, and purity levels set by manufacturers influence not only how the formulation wears but also how long it stays potent after packaging. Based on feedback from customers in over 30 countries, we keep refining granulometry and surface coating processes to suit next-generation sunscreen launches.

    Brands focused on 'reef-safe', low-allergen, and clean label demands benefit from BEMT’s chemical backbone, which has not been tied to coral bleaching and can be combined with non-nano mineral actives to widen the product portfolio. Internally, we run in-vitro and in-vivo compatibility tests to ensure even low-dose BEMT deploys its claimed SPF boost without an off-odor, sediment, or phase separation.

    Responsible Sourcing and Environmental Footprint

    It’s clear across the manufacturing sector—efficiency and environmental responsibility go hand in hand. We have retrofitted our plant utilities, switched to closed-loop solvent recovery on our triazine synthesis lines, and reduced our overall VOC emissions by half within three years. Real-world waste reduction, not just regulatory compliance, matters to our team. The shift to improved catalyst systems and continuous fines filtration has dropped our waste generation and improved energy input ratios batch over batch.

    Customers want to know their actives supplier values the same environmental commitments as they do. Few people outside this business realize how much raw solvent, energy, and resources these specialty molecules demand. Through better process controls and staff engagement, we now reclaim a significant portion of process water, reprocess off-spec intermediates back into earlier synthesis steps, and stick to a strict deliveries-to-market ratio, keeping stock fresh and storage time tight to cut energy use.

    Where BEMT Goes: Skincare, Sun Care, Hair and Beyond

    The most visible home for BEMT remains high-value sunscreens. Leading Asian beauty brands invested early in our product because of its photo-stable, broad spectrum protection that does not require heavy use of stabilizers or antioxidants. In North America and Europe, it pops up in everyday SPF moisturizers designed for sensitive-skinned users—often without any greasy afterfeel or white residue in finished blends.

    Some multinational personal care companies now put BEMT into hair care formulas, especially products designed for color-treated hair or leave-in sprays where UV damage threatens color longevity. We see a lift in demand from companies adding SPF claims to lip care, daily lotions, and even high-luxe facial serums. The ingredient holds up in both water-rich and anhydrous systems, offering a front-line defense without changing scent, spread, or viscosity.

    Formulators reach out to us directly when running high-SPF prototypes, sweat resistance tests, or dual-phase emulsions, asking for technical notes on particle wetting, dispersion, or possible interactions with other actives like Zinc Oxide or Titanium Dioxide. Decades in the business have shown that most innovation results from these honest discussions, not rigid, top-down specifications handed out with no room for adjustment.

    Anticipating Industry Trends and End-user Demands

    Working directly in chemical manufacturing puts us at the forefront of industry changes. With growing consumer scrutiny and more health-driven purchasing, customers want to trace every ingredient back to a source they understand. BEMT meets both demand for scientific rigor—supported by UV absorption graphs and published toxicology—and the softer expectations for safe, skin-compatible, environmentally mindful products.

    We have invested in an on-site applications lab, inviting partners to test blend their ideas with our latest powder and slurry batches. Stability, SPF testing, and microstructure studies happen on real-world prototypes, not just theoretical models drawn on a whiteboard. Often, project teams from top skincare houses send their chemists to trial pilot blends in our own processing bays, turning feedback into tweaks at the process level rather than after-the-fact fixes.

    Why Producers Matter More Than Resellers

    Our perspective as a chemical manufacturer cuts through the noise. Customers value direct purchase relationships because they know the origin and traceability of every batch. The shade, purity, and performance of BEMT depend not on a third-party’s claims, but on the engineering and compliance we maintain. With each campaign, investment in staff training and process analytics pays off through fewer rejections, higher repeat orders, and a product with performance and safety characteristics spelled out clearly for every market segment.

    We hear concerns about adulteration and cross-contamination in the global supply chain. Over the years, stories circulated of brokers mixing sub-par intermediates or passing off technical grades as cosmetic. As manufacturers, we control not only raw material selection but also how each tank, pump, and bagging line gets cleaned and maintained. On-site audits, repeat inspections, and robust supplier qualification all combine to keep our BEMT reliable and future-ready.

    The Value of Direct Technical Support

    Our technical staff works daily on process adjustment, regulatory questions, and product improvement. We stay grounded by troubleshooting live issues—be it a new stabilizer mixture that needs a tweak in BEMT’s solubility or an unusual color shift in a high SPF foundation blend. The questions we field often turn into process improvements, which flow straight back into the next manufacturing cycle. Our approach values feedback at every step, with teams regularly collaborating across process and application labs to raise performance for the next production run.

    Clients with specific end-use requirements—say, a transparent dry-touch sunscreen or a water-resistant facial moisturizer—rely on our firsthand knowledge built up over years. By providing real-world formulation data instead of only static datasheet numbers, we help brand owners avoid expensive, time-consuming reformulation headaches. We have seen firsthand how a tweak in particle coating or batch blending ratio turns a sticky, grainy prototype into a best-seller.

    Navigating Challenges: Adapting to Market and Regulatory Change

    The chemical landscape does not stand still. Regulatory authorities roll out new ingredient review cycles, sometimes directing attention straight to UV filters, residue levels, or potential allergens. As full-scale manufacturers, we adopt new test protocols quickly and bring on external auditors to cross-check our file on BEMT. We keep archives of every product change, down to altered filtration mesh or a revised drying cycle aimed at keeping dust and cross-contamination in check.

    Staying nimble means more than just adapting formulas. It also means keeping lines open with customers, surfacing issues early, and integrating market feedback straight into our process control documents. Our open-door policy with partners makes it easier to adjust order sizes, packaging, or particle forms ahead of new launches and seasonal spikes.

    Continuous Improvement and Future Goals

    The cycle of improvement never slows in chemical manufacturing. By marrying robust production analytics to daily plant walkthroughs, our teams maintain the knowledge and flexibility needed to stay at the top of the global BEMT market. This means balancing cost control with sustainability, innovating on particle size for formulation flexibility, and doubling down on safety standards that match or exceed global norms.

    Every day, as a team of chemical engineers, plant managers, and R&D staff, we dig into process data, customer feedback, and new research to keep BEMT a step ahead—whether it is in sun care, skincare, or topical health innovations still on the horizon. We do not settle for batch-to-batch variability or stagnant thinking. By investing in our own people and facilities, we strengthen the backbone of every finished product our BEMT finds its way into.

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