M-Cresyl Acetate

    • Product Name: M-Cresyl Acetate
    • Alias: m-cresyl_acetate
    • Einecs: 210-984-8
    • 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

    211541

    Chemical Name M-Cresyl Acetate
    Synonyms 3-Methylphenyl acetate
    Molecular Formula C9H10O2
    Molecular Weight 150.18 g/mol
    Cas Number 93-22-1
    Appearance Colorless to pale yellow liquid
    Boiling Point 235-237°C
    Melting Point -6°C
    Density 1.07 g/cm3 at 25°C
    Refractive Index 1.525-1.527 at 20°C
    Flash Point 103°C (closed cup)
    Solubility In Water Insoluble
    Odor Pleasant, fruity odor
    Purity Typically ≥98%
    Storage Conditions Store in a cool, dry, well-ventilated place away from ignition sources

    As an accredited M-Cresyl Acetate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 1 Kg of M-Cresyl Acetate supplied in a tightly sealed amber glass bottle with a screw cap, labeled with safety information.
    Shipping **M-Cresyl Acetate** should be shipped in tightly sealed containers, away from sources of ignition and incompatible materials. It must be labeled as a flammable liquid and handled according to local, national, and international regulations. Use appropriate protective packaging, and ensure proper ventilation during transport to prevent the buildup of vapors.
    Storage M-Cresyl Acetate should be stored in a tightly closed container in a cool, dry, well-ventilated area, away from heat, sparks, open flames, and incompatible substances such as strong oxidizing agents. Store at room temperature, protected from moisture and direct sunlight. Ensure proper labeling and keep the storage area equipped with spill containment and appropriate fire suppression systems.
    Application of M-Cresyl Acetate

    Applications of M-Cresyl Acetate in Industrial Manufacturing

    We supply M-Cresyl Acetate backed by consistent quality for integration into advanced manufacturing workflows. Major downstream sectors rely on its characteristic solvency, excellent volatility profile, and compatibility in both synthesis and formulation environments. Below, we outline precise industrial applications where M-Cresyl Acetate proves essential, detailing usage context, industry compliance, process positioning, and representative end-product classes.

    1. Industrial Solvent for Synthetic Resin and Coatings Production

    M-Cresyl Acetate functions as a high-performance solvent and diluent in the manufacture of specialty alkyd resins and phenolic-based coatings. Its use supports controlled drying times, efficient viscosity adjustment, and promotes superior dispersion of resins and pigments in industrial-grade paints, varnishes, and enamel systems. Manufacturers value its compatibility with chlorinated and aromatic resins, key for industrial surface finishes, protective coatings for machinery, and specialty wood treatments.

    Industry compliance standards

    • REACH Regulation (EC) No 1907/2006 for registration and safe handling
    • ISO 12944-1:2017 on corrosion protection of steel structures by protective paint systems
    • ASTM D1640 for drying, curing, and film formation testing
    • US EPA VOC Control Regulations for coatings formulation

    Typical usage ratio

    • Ranges from 8% to 22% by weight, depending on the resin system and target film thickness; higher ratios support faster solvent release in fast-drying industrial enamels.

    Downstream process integration

    • Directly dosed into resin synthesis or pigment dispersion stage; used during let-down and final mixing prior to canning or drum filling.

    Final product types

    • Heavy-duty industrial coatings
    • Architectural enamels
    • Protective anti-corrosion primers
    • Solvent-borne varnishes

    2. Fragrance and Flavor Ester Intermediate

    In aroma chemical manufacturing, factories utilize M-Cresyl Acetate as an intermediate for producing complex fragrance esters and fine flavor chemicals. Its methylcresol base structure allows targeted synthesis of nuanced aromatic compounds critical for high-value fragrances, used in perfumes, cosmetics, and flavorings. Analytical labs and QC departments monitor its precise transformation to ensure batch-to-batch consistency and regulatory compliance in consumer products.

    Industry compliance standards

    • IFRA (International Fragrance Association) Code of Practice
    • EU Regulation (EC) No 1223/2009 for cosmetic products
    • US FDA CFR 21 Part 172 for flavoring substances
    • ISO 9235:2013 for aromatic raw material definitions

    Typical usage ratio

    • Between 0.5% and 3% in intermediate synthesis, with adjustment based on target ester yield and olfactory intensity.

    Downstream process integration

    • Undergoes esterification with organic acids or alcohols in controlled batch reactors; integrated at the building-block stage prior to final blending or dilution.

    Final product types

    • Perfume composition bases
    • Flavor ingredient concentrates
    • Personal care fragrance additives
    • Toiletry scents and aroma blends

    3. Plasticizer Component in High-Performance Polymers

    M-Cresyl Acetate is adopted by polymer formulators as a plasticizer or co-monomer to improve flexibility and processability of specialty high-temperature engineering plastics and elastomers. Compounders utilize its aromatic-acetate structure for applications demanding resistance to chemicals and heat, such as seals, wires, and advanced connector systems. In QC, its migration and compatibility profile supports compliance with mechanical and electrical testing criteria.

    Industry compliance standards

    • UL 94: Flammability testing for plastics
    • RoHS Directive 2011/65/EU for hazardous substances restrictions
    • IEC 60216 for electrical insulation thermal endurance
    • ASTM D638 for tensile properties of plastics

    Typical usage ratio

    • Used at 1.5%–7% for plasticization or up to 12% where increased flexibility and impact resistance are required in custom formulations.

    Downstream process integration

    • Blended during the melt-compounding or extrusion stage with primary resin or copolymer, prior to pelletizing or molding.

    Final product types

    • High-performance molded electrical parts
    • Cable and wire insulation jackets
    • Flexible engineering hoses and seals
    • Custom polymer blends for industrial assemblies

    4. Chemical Intermediate in Agrochemical Synthesis

    Synthesis plants incorporate M-Cresyl Acetate as a downstream intermediate in fine chemical manufacture, particularly for selective herbicides and specialty fungicides. Its unique molecular structure offers controlled reactivity for targeted coupling or acylation reactions, producing agrochemical active ingredients with precise purity. Process teams monitor conversion efficiency, minimizing impurities to comply with crop protection and export regulations.

    Industry compliance standards

    • FAO/WHO JMPR Guidelines for pesticide specifications
    • EU Regulation No 1107/2009 concerning plant protection products
    • US EPA FIFRA Registration
    • ISO 9001:2015 Quality Management for chemical synthesis

    Typical usage ratio

    • Input concentration is process-specific, but typically 5%–15% of batch reactant, depending on the desired final agrochemical content and reaction pathway.

    Downstream process integration

    • Fed into the synthesis reaction vessel during the condensation or coupling stage; further processed through purification and formulation steps before packaging.

    Final product types

    • Selective herbicide actives
    • Systemic fungicidal intermediates
    • Finished crop protection concentrates
    • Active ingredient dispersions for field application

    5. Dye and Pigment Carrier in Specialty Colorant Manufacturing

    Producers of high-purity dyes and pigments leverage M-Cresyl Acetate as a carrier solvent that supports even distribution and controlled crystallization during colorant synthesis and granulation. Its solvency, miscibility with aromatic systems, and consistent evaporation rate help form stable pigment dispersions suited for inkjet inks, printing toners, and technical dye applications. Quality assurance protocols use its profile to satisfy rigorous color intensity and migration limits required by end-users in graphic and industrial printing.

    Industry compliance standards

    • EN 71-3:2019 for toy safety—migration of certain elements
    • ISO 2846-1 for color and transparency in printing inks
    • SGS-IECQ QC 080000 Hazardous Substance Process Management
    • REACH Annex XVII for pigment and dye applications

    Typical usage ratio

    • Typically used at 6%–18% by total colorant batch, varying by dye class and viscosity control requirements for each application platform.

    Downstream process integration

    • Added during pigment paste formulation and milling, or dye dissolution stages before filter pressing or spray drying into granules or powders.

    Final product types

    • Technical-grade organic pigments for printing
    • Dispersed dyes for synthetic fibers
    • Specialty inkjet and toner formulations
    • Industrial textile coloration agents
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    Certification & Compliance
    More Introduction

    M-Cresyl Acetate: Reliable Performance from the Source

    Understanding M-Cresyl Acetate in the Chemical Industry

    As a direct manufacturer of M-Cresyl Acetate, we understand the expectations and technical challenges that come with producing and using this compound. Our facility has been delivering this specialty chemical to industrial partners who rely on purity, consistent supply, and precise property control. M-Cresyl Acetate does not make headlines outside of chemistry circles, yet it plays a quietly essential role in many applied fields, from resin production and industrial coatings to electronics and functional fluids.

    Product Characteristics

    Our material, synthesized under tightly controlled conditions, features a colorless to pale yellow liquid profile with a high degree of chemical stability. The CAS number for M-Cresyl Acetate supports confident logistics and traceability, but what really matters for our customers is how the product performs in demanding processes and why it stands apart from similar aromatic esters or mixed-cresol derivatives.

    Typical purity for our commercial grades consistently ranges from 98% to 99%, verified by GC analysis at every production cycle. Residual water content remains below 0.2%, reducing risk of side reactions in moisture-sensitive formulations. Specific gravity sits close to 1.08 at 20°C, and the refractive index falls between 1.528 and 1.532, both of which we monitor during every batch to assure consistency.

    These parameters do more than satisfy checklists—they drive downstream process reliability. From an operator’s perspective, you know a starting material is only as good as the last shipment’s analytical results. When a downstream resin operation calls for precision, no one wants floating numbers or ambiguous traces of toluene or phenol residues.

    The Uses and Real-World Value of M-Cresyl Acetate

    M-Cresyl Acetate’s role reaches well beyond textbook applications. In our own experience working with manufacturers in the coatings and specialty chemical industries, this acetate has a unique advantage over other cresyl derivatives. Its aromatic structure gives it a place among strong polar aprotic solvents, but its acetate ester moiety imparts better solvency with less reactivity. Resin producers who need a reactive diluent or an intermediate with managed volatility often specify M-Cresyl Acetate because it balances solvency without contributing to unwanted side reactions during polymerization.

    Electronic materials firms use our M-Cresyl Acetate for its excellent compatibility with sensitive circuit board resins and insulation coatings. We have helped customers tune their process windows by delivering clean, low-chloride product to avoid trace conductivity issues. In comparison, crude or poorly specified alternatives sourced from lower-tier suppliers often contain enough mixed isomers and byproducts to sabotage a process, or fail to meet the reliability standards expected in electronics.

    Fragrance producers reach out for small-scale, ultra-high purity batches, relying on the particular character that our controlled synthesis brings to the ester profile. The same goes for niche applications in inks and lacquers, where flow, drying, and finish are affected by the acetate’s fine structural details. The feedback from users is clear: when the acetate’s quality wavers, downstream processes directly suffer. Thus, our operational focus is not simply on producing bulk volumes, but rather on holding tight control of compositional integrity batch after batch.

    Practical Differences from Other Cresyl Esters and Related Compounds

    Not all cresyl esters behave the same in high-precision industrial settings. M-Cresyl Acetate features a meta-positioned methyl group on the aromatic ring, which sets its polarity and boiling behavior apart from ortho- or para-cresyl cousins. In synthesis work, this matters: meta-cresyl esters tend to offer superior thermal stability over those from ortho-derivatives, due to reduced ring activation. Customers in electronic encapsulation report better process yields and lower residue with our meta-ester, minimizing scrap losses.

    Comparing M-Cresyl Acetate with phenyl acetates or methyl phenol isomers, the meta position provides a sweet spot for certain properties. It offers a stronger fragrance note than para-cresyl acetate, with less harshness than ortho variants. Its solvation power in alkyd and acrylic resins gives it a technical edge in both throughput and finished product stability. Manufacturers contend with a range of process choices, and the subtle differences in ester structure change everything from flow consistency to color stability in the end product.

    We have worked with clients shifting away from less refined cresol acetates, finding that many industrially available “mixed cresyl acetates” leave lingering odor or color in clearcoat films. Our separation and purification steps tackle these challenges, stripping off unwanted tars and heavy ends that commonly slip through in bulk-trade blends. A difference in a fraction of a percent impurity can shift entire process parameters, especially in products shipped to the electronics sector, where failure due to trace contaminants is not an option.

    Reliable Supply and Production Know-How

    Producing M-Cresyl Acetate in a modern facility has taught us key lessons about risk management and batch-to-batch consistency. We do not rely on off-the-shelf intermediates from the open market; instead, our approach centers on controlling raw materials from the first stage. The phenolic feedstocks undergo purification, and our esterification processes run at carefully controlled temperatures and pressures, monitored in real time with in-line analytics. When we see even the slightest creep in reaction kinetics, process engineers step in for adjustment. This discipline shields our customers from the inconsistencies common in externally sourced batches.

    Production volumes can flex from laboratory scale orders to full IBC consignments without any dip in quality. Every volume runs across the same purification and filtration setups, designed not just for throughput but for chemical cleanliness down to ppm impurity levels. Some customers in the electronics and specialty resin sectors order the same material for years, noting that staying with the source factory—rather than hopping between resellers—translates into fewer product failures and smoother audits.

    Safety Handling and Sustainability Notes

    Years spent in physical production halls have given us firsthand respect for M-Cresyl Acetate’s chemical behavior. The compound comes with sensible vapor pressure, but like any ester, it requires good airflow and operator care in transfers and tank storage. Pumps, valves, and gaskets selected for aromatic solvents have proven to reduce fugitive emissions, and our closed system minimizes operator exposure.

    Waste management forms a key part of daily operation. Saponification and downstream wastewater treatment handle spent process streams, and we recycle all possible organic fractions. The aim remains simple: keep resource use lean and emissions low. We use direct monitoring of discharge and VOC content, sharing quarterly reports with stakeholders to build trust across the supply chain. In the last five years, process improvements have cut liquid waste generation per ton of acetate by almost 25%. These numbers are not theoretical: routine audits, both from within our corporate group and our largest clients, confirm actual improvement based on analyzed data.

    Safe process design goes hand in hand with sustainability. Lines are kitted out with vapor recovery for distillation and loading stations, and all distillation slops are captured before reaching water streams or open drains. This kind of technical rigor reflects back in customer confidence and ongoing third-party certification compliance.

    Continuous Improvement: Process and Product Evolution

    As a production facility, we know that no process stands still. Even stable products like M-Cresyl Acetate change with evolving industry requirements and user input. Over the past decade, electronics and advanced coatings industries have pushed for lower trace chlorides and less ionic content in all intermediate chemicals. We responded by overhauling several purification columns, introducing ion-exchange stages that cut conductivity-raising impurities by 60%. These projects came from hands-on trouble reports by technical users—people who had to explain pinholes or voltage failures on customer audits due to minor acetate trace ions.

    We pay attention to batch records and customer feedback to improve sampling procedures, packaging, and even logistics. For example, we worked with end users to shift from standard steel drums to specialty lined containers for high-purity variants. This reduced oxidation side-products and helped preserve the performance demanded by our electronics segment clients. Lessons from these changes inform everything from tank truck cleaning cycles to analytical protocols on fresh and returnable packaging.

    Our lab team engages directly with customer R&D staff, running samples in actual formulations rather than simply relying on reference specs. Thirty-metric-ton runs of M-Cresyl Acetate for European coatings suppliers turned up subtle process residues that basic QC tests missed; we traced the sources, modified column sequencing, and fine-tuned distillation conditions. These root cause fixes stick with us as reminders: the best product comes from a two-way relationship between user and producer, not from generic batch runs or off-plant trading.

    Balanced Perspective: Market Pressures and End-User Reality

    Large-scale manufacturing gives us a clear view of market forces acting on specialty solvents like M-Cresyl Acetate. Raw material swings or regulatory shifts affect not just production cost, but product acceptance—especially in regions tightening VOC or residual aromatic solvent restrictions. Examples abound: sudden swings in phenol prices or acetic anhydride quotas hammer small producers who cannot buffer inventory. Our longer-term contracts and on-site storage allow steadier output, but keeping hold of direct customer communication is the real value.

    Technical buyers and plant managers alike ask for solution-driven support, not just product in drums. Some develop entirely new resin grades or circuit resists, only to find a subtle acetate impurity is stopping full-scale rollout by creating micro-defects or color shifts. Our technical staff visits customer lines, exchanging direct observations and side-by-side instrument runs, frequently uncovering process improvements for both sides. Sometimes specifications get updated on the fly, matching real-world performance over documentation.

    We have learned that solving these “small” issues, from streamlining deliveries for just-in-time blending to picking up returned drums for reprocessing, matters much more than list price alone. Open feedback loops, honest error sharing, and regular technical exchanges turn commodity-type chemicals into cornerstone ingredients customers depend on over the long term.

    Responsible Manufacturing and Regulatory Integrity

    Our team enforces stricter than required controls over every reaction, transfer, and shipment, not just because of internal requirements, but due to external certification scrutiny. This industry demands total documentation—from raw batch test data to material flow logs. Every shipment of M-Cresyl Acetate comes with traceable, verifiable records, ready for downstream audits or regulatory checks. Those who have experienced missed lot numbers or questionably labeled products know that such diligence matters.

    We align with recognized regional regulations, and when compliance targets tighten, we adapt formulations and storage solutions without delay. Customs clearance, local health, and environmental permitting often hinge on details. Over the years, several global customers introduced new supplier audits, focusing on things like occupational exposure monitoring or traceability in raw material chains. We worked through these procedures stepwise, learning each regulatory environment and educating our own crew—not by rote, but by addressing the direct impacts on worker health, customer product quality, and long-term market access.

    Why Direct Factory Sourcing Matters

    Across the years, we have fielded repeated requests for “white-label” or “private-brand” shipments, yet those who try new suppliers often return after inconsistent results. Those who use our M-Cresyl Acetate for tuned industrial applications, or for regulated sectors, describe the headaches caused by shifting blend quality or questionable documentation from unknown sources. Our position as the actual producer—not as a broker—means that accountability, paperwork, and chemical lineage are never separated or lost. If a technical user needs to chase down a root cause for a plant issue, the answer chain starts and ends at one factory, never with a distant procurement desk.

    Long-term partnerships develop because load after load, technical outcomes remain steady, and customers trust process reliability right down to raw feedstock. This commitment isn’t theoretical—it comes through in reduced line rejection rates, steadier downstream processing, and fewer recalls or supply interruptions.

    Customers who require regular samples for certification, post-shipment analytics, or process troubleshooting call on our technical support team, not a nameless hotline. Through this direct interaction, most challenges get solved before they become plant-scale headaches. The relationship strength and technical integration mean that every shipment carries more confidence than paperwork alone can offer.

    Looking Forward: The Future Role of M-Cresyl Acetate

    M-Cresyl Acetate might not carry the cachet of larger chemical families, but the years spent in its direct production have taught us its real-world significance. Market demand may wax and wane, yet the need for high-integrity process chemicals keeps rising, especially as more sectors tighten specs for both performance and sustainability. As new applications appear in advanced composites, bio-based resins, or next-gen electronics, the margin for error continues to shrink.

    Our experience with this molecule reflects a wider truth: direct manufacturing skills, patient process investment, and honest feedback cycles produce results that the broader market values long after trends move on. By respecting both customer and material, production teams build more than a commodity. They build reliability, innovation, and the confidence that only comes from decades of hands-on experience with the product itself.

    Our team stands ready to help partners old and new find new answers with M-Cresyl Acetate, building on a foundation of technical mastery, shared trust, and the lessons learned with every batch.

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