Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing admin@sinochem-nanjing.com 3389378665@qq.com
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Beta-Asarone

    • Product Name Beta-Asarone
    • Alias 4-[(Z)-Propenyl]-1,2,4-trimethoxybenzene
    • Einecs 210-481-0
    • 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

    744497

    Chemical Name Beta-Asarone
    Molecular Formula C12H16O3
    Molecular Weight 208.25 g/mol
    Cas Number 5273-86-9
    Appearance Pale yellow oily liquid
    Boiling Point 296 °C
    Solubility Insoluble in water; soluble in organic solvents like ethanol
    Odor Pleasant, sweet, spicy aroma
    Density 1.052 g/cm3
    Refractive Index 1.548
    Source Primarily found in Acorus calamus (sweet flag) oil
    Purity Typically >97% (in commercial samples)
    Hazard Statements Suspected carcinogen, potentially toxic if ingested
    Uses Flavoring agent, fragrance, traditional medicine

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

    Packing & Storage
    Packing Beta-Asarone is supplied in a 25g amber glass bottle, tightly sealed, labeled with product name, purity, batch number, and hazard symbols.
    Shipping Beta-Asarone is shipped in secure, chemically resistant containers, clearly labeled with hazard warnings in accordance with international shipping regulations. It should be handled by trained personnel, protected from heat and moisture, and transported with relevant safety documentation to ensure safe and compliant delivery to authorized facilities.
    Storage Beta-Asarone should be stored in a cool, dry, and well-ventilated area, away from direct sunlight and heat sources. Keep the container tightly closed and properly labeled. Store separately from oxidizing agents, acids, and sources of ignition. Use only approved, compatible containers and avoid exposure to moisture. Always follow local regulations and safety protocols for chemical storage.
    Application of Beta-Asarone

    Applications of Beta-Asarone in Industrial Manufacturing

    Beta-Asarone is a naturally derived aromatic ether most commonly sourced from Acorus calamus. Its applications in industrial manufacturing align with specialized technical standards and regulatory frameworks. This overview highlights how downstream industries integrate Beta-Asarone across approved technical processes, with a focus on compliance, formulation, finished product profiles, and process stages where its functional attributes are leveraged.

    1. Botanical Extracts for Fragrance Compounding

    Perfume and fragrance manufacturers use Beta-Asarone as a constituent in specialty aroma formulations, particularly where a warm, spicy note is desired. Due to its restricted use governed by safety guidelines, it is mostly incorporated in perfumery extracts and essential oil blends aimed at non-food products. Its natural origin and olfactory profile are valued in high-end fragrance bases.

    Industry compliance standards

    • International Fragrance Association (IFRA) Standards (currently IFRA 51st Amendment — prohibited or restricted use, max. concentration varies by end use)
    • EU Cosmetic Regulation (EC) No 1223/2009
    • REACH registration (European Union), specific for natural extracts containing Beta-Asarone
    • Good Manufacturing Practice (GMP) for cosmetic ingredients (ISO 22716)

    Typical usage ratio

    • 0.01%–0.05% in non-skin contact fragrances; concentration strictly controlled based on IFRA and EU guidelines; composition adjusted according to end-use application (ambient diffusers, non-skin sprays, incense, etc.)

    Downstream process integration

    • Added during the blending stage of fragrance compounding; introduced to essential oil bases prior to dilution or mixture with fixatives; monitored by GC-MS for content compliance

    Final product types

    • Air fresheners and ambient fragrance devices
    • Incense and aromatic sticks
    • Non-personal contact perfumery bases
    • Room sprays and deodorizer blends

    2. Botanical Pesticide Intermediates

    Agrochemical formulators utilize Beta-Asarone as a botanical compound in the synthesis of environmentally friendly pesticides, primarily in regions where plant-derived actives are permitted. Its role exploits anti-insecticidal properties, but application remains restricted, and compliance with maximum residue limits is mandatory during downstream synthesis and formulation of crop-protection intermediates or finished products.

    Industry compliance standards

    • FAO/WHO Joint Meeting on Pesticide Specifications (JMPS) — plant-derived products
    • China National Standard GB 2763—Maximum Residue Limits for Pesticides in Food
    • US EPA 40 CFR Part 180 — Exemptions from residue tolerance for certain botanical pesticides (usage must be justified and approved)
    • ISO 9001:2015 Quality Management System for agrochemical production

    Typical usage ratio

    • 0.05%–0.2% in technical concentrate; final concentration depends on crop species, regional regulatory approvals, and admixture with other permitted botanical actives

    Downstream process integration

    • Incorporated during formulation of technical concentrates and emulsifiable concentrates (EC) via solvent or dispersant mixing, followed by filtration and packaging

    Final product types

    • Botanical pesticide technical intermediates
    • Emulsifiable insecticidal concentrates for non-food crop protection
    • Repellent blends for grain storage and post-harvest protection

    3. Traditional Herbal Extract Standardization

    Phytopharmaceutical and medicinal extract manufacturers use Beta-Asarone as a chemical marker for standardizing extracts from Acorus calamus and related species. Although its direct addition as an isolated compound in finished herbal pharmaceuticals is restricted or banned in many countries, the compound is essential for process QC and standardization in extracts for ethnomedicine and certain traditional medicine applications, especially in regions where these products comply with local guidelines.

    Industry compliance standards

    • Chinese Pharmacopoeia (ChP) requirements for Acorus species herbal extracts
    • Indian Pharmacopoeia (IP) monographs on calamus extracts
    • WHO Guidelines for the Assessment of Herbal Medicines
    • GMP for Herbal Extract Manufacturing (China SFDA)

    Typical usage ratio

    • Controlled as a marker in the range of 0.1%–0.5% w/w in standardized extracts; content adjusted based on pharmacopoeia specifications and batch QC results

    Downstream process integration

    • Analyzed and quantified during the HPLC-based standardization step post-extraction and before blending or granulation; not added as a pure compound but monitored as inherent to the botanical extract

    Final product types

    • Herbal granules for traditional medicine
    • Standardized plant extract powders for traditional and ethnomedicinal use
    • Tincture bases and fluid extracts

    4. Research Chemical and Analytical Reference Material Production

    Specialist laboratories and reference standard producers use Beta-Asarone as a quantitative reference for method development and quality control in the analysis of botanicals, foods, and herbal preparations suspected of containing this compound. Its synthesis and purification as an analytical standard must meet strict criteria for purity and traceability to support validated test methods across regulatory and research laboratories.

    Industry compliance standards

    • ISO/IEC 17025 — General requirements for the competence of testing and calibration laboratories
    • USP–NF guidelines for analytical standards (where applicable)
    • Pharmacopoeial requirements for reference substances (ChP, IP, JP, Ph.Eur.)
    • OECD Good Laboratory Practice (GLP)

    Typical usage ratio

    • Supplied in high-purity forms (≥98%) for gravimetric preparation of calibration standards; working solutions typically prepared at 0.5–50 μg/mL depending on analytical method sensitivity (e.g., HPLC, GC-MS)

    Downstream process integration

    • Purified and qualified for use in method validation, calibration curve construction, or system suitability analysis; integrated as a spiking standard, recovery check, or retention marker

    Final product types

    • Analytical reference materials for laboratories
    • Quantitative control standards for HPLC/GC
    • Proficiency testing kit components
    • Custom research chemical sets
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    Certification & Compliance
    More Introduction

    Beta-Asarone: What Sets Our Genuine Product Apart

    Harvesting and purifying Beta-Asarone has occupied our production workshop for years. Behind every kilogram of our chemical stands the experience of sourcing prime plant material—Acorus calamus, grown in fields where the seasons and soils shape the quality. Many customers ask why Beta-Asarone from a chemical manufacturer differs from a diluted mixture or a generic reseller’s lot. The answer traces back to our focus on purity, testing, and a hands-on approach to the entire process.

    Process Matters: From the Ground Up

    Every shipment of raw Acorus calamus roots delivered to our site is first checked for moisture, mold, and volatile oil content. You can feel the difference between roots that have dried on racks in open air and those cured under controlled temperature and humidity. That attention matters because Beta-Asarone forms during those post-harvest weeks. The higher the quality of the starting material, the cleaner our end fraction, which translates into stronger, more reproducible results for the industries that use our compound. Customers—pharmaceutical, flavor and fragrance, research—tell us what they notice most is our documentation describing both the field and the factory. You won’t find vague country-of-origin slips; you get batch-level traceability.

    Specifications and Integrity: No Guesswork

    Our signature Beta-Asarone, often referenced by product code 4D-BA, turns up at a purity no less than 98 percent by GC, which is independently verified by outside labs several times per year. We submit our own samples regularly for third-party mass spectrometry, even if it adds work to the project schedule. This means what we promise on our datasheets is backed up by hard numbers, not estimated or averaged out across lots.
    Every drum carries a clear COA that shows not just percent total asarone but also details on alpha- and gamma-isomers, heavy metals, water content, and key volatile impurities. Attempts at shortcuts—diluting with vegetable oil or adding cheaper plant fractions—always reveal themselves under our close analytical scrutiny. In our workshops, what comes off the distillation line gets checked against these tough standards, every time.

    How We Use Beta-Asarone and Where It Goes Next

    Beta-Asarone finds steady use in several fields, but the purpose always determines what quality level and specifications the end-user requests. In the fragrance industry, customers demand a strong, true calamus scent profile: earthy and subtly spicy, with a persistence on the dry-down that a mixture of cheaper terpenoids cannot match. Chromatography reveals the subtle balance between Beta-, Alpha-, and Gamma-Asarone and highlights why purity and isomer proportion matter. Synthetic flavor designers ask us for batches with rigorously low limits of residual solvents, which pushes us to use longer vacuum distillations and sometimes an extra recrystallization step.

    Researchers exploring phytochemistry or biological activity score our material for trace compounds. Too much contamination—whether from careless distillation, or worse, adulteration—undermines their laboratory results. For extraction and encapsulation studies, our customers point out that the measured melting point and detailed analysis help their projects run without setbacks. Pharmaceutical partners flag specific microbiological and heavy metals parameters, adding another layer of scrutiny that only a chemical manufacturer with its own analytical group can meet.

    Real Differences: What We Have Learned

    Over years of handling raw plant materials, we saw attempts from brokers to pass off blends or recycled fractions as "premium" Beta-Asarone. Each time, these offer less consistency, odd off-notes in aroma, or incomplete documentation. A single mis-labeled barrel from a reseller can introduce a contaminant or decrease shelf-life for a major downstream customer. Our direct integration with farm partners and our footwork on every batch mean we don’t have to rely on someone else’s word. Our Beta-Asarone stands apart for this very reason.

    Some traders attempt to talk around specifications or even exaggerate technical jargon, while the actual substance may vary between lots. We invest resources in our own in-house analysis rather than farming it out to the lowest bidder. Customers notice. Repeat buyers tell us they choose our product not just for purity but for transparency—if an input batch falls short on flavor profile or purity, we don’t ship it. Simple as that.

    Distinctives: Beta-Asarone Versus Others on the Market

    Unlike low-content essential oil blends, our Beta-Asarone does not show the wide swings in isomer ratio or residual plant odors. Years ago, we routinely compared samples from wholesale distributors with what our reactors generated. Those generic batches often lacked the intense activity of isolated Beta-Asarone—either because of incomplete separation or the presence of volatiles that muddy the compound’s intended effects.

    True Beta-Asarone, as our HPLC and GC-MS records confirm, consistently meets 98% purity. Each drum and flask contains material stable for long-term storage, because we maintain strict control over light, heat, and oxygen contact from harvest to filling. Ask for documentation, and we hand over real batch data with lot numbers linking back to the original root weights. Customers who have run their applications with both our Beta-Asarone and off-the-shelf alternatives return to us for the predictability in shelf life, aroma fingerprint, and physical state.

    Model and Specifications at a Glance

    Our signature line, 4D-BA, packs a punch for the customers who measure closely, run pilot projects, and need their chemistry to stand up to tough project requirements. Every bottle is standardized at 98% GC purity, typically presenting as a pale yellow oily liquid with flash point and refractive index meeting published pharmacopoeial references. We run every batch for heavy metals and pesticide residues using ICP-MS and QuEChERS, which proves especially important for those in food and fragrance research.

    Our in-house facility uses rotary evaporation, fractional distillation, and, where required, column purification with silica. Storage in stainless steel under nitrogen ensures shelf stability for a minimum of 12 months, and our tracking guarantees that nothing gets released unless it passes all points of the quality checklist. That means what arrives in your facility matches what we saw at filling: not a drop more, not a trace less.

    We chose not to chase every possible market. Some resellers try to ride the wave of whatever's fashionable by diluting or rebottling generic product to cut costs. If a project calls for guaranteed purity and traceability, people consistently return to direct manufacturers like us. That trust builds batch after batch, year after year.

    Regulatory and Safety Context

    No responsible manufacturer overlooks the tough regulations surrounding Beta-Asarone. Pharmaceutical and food uses raise questions about safety, residue, and allowable trace levels of related compounds. We run continuous reviews of the latest legal limits and scientific reports to shape both our own production and what quality claims we can make. Our approach remains cautious, detailed, and transparent. We disclose known solvent residues, provide documentation for non-GMO and contaminant checkpoints, and support our clients if projects require additional levels of documentation or custom analysis.

    Working closely with regulatory consultants, we have improved our records for traceability—we do not take documentation lightly, knowing someone downstream often depends on us for compliance with international quality systems. In recent years, restrictions in certain food and flavor applications led us to adjust our GC fingerprints and documentation style. We now provide expanded heavy metals and solvent profiles for each batch, not just summary reports, to let users make their own informed assessments.

    Usability and Handling—Practical Details from Our Workshop

    Manufacturers need Beta-Asarone to perform in blending tanks, analytical setups, or formulation projects without unpredictable results. From our experience, the storage and transfer steps count as much as what happens at extraction. We pack all products in inert containers, sealed under nitrogen, and kept at consistent cold temperatures—even when shipping worldwide. Reports from customers moving drums across continents show no drop in GC purity, no unexpected aroma drift.

    Anyone working in a lab, pilot plant, or blending room appreciates stepwise instructions and clear warning points. Our technical guides identify the flash point, storage temperature, and reactions possible with strong oxidants or acids, since these trips up far more handling efforts than any theoretical risk of the molecule. All shipments leave our factory with up-to-date technical bulletins and SDS documents, reviewed annually to keep pace with shifting regulatory scenes or new findings in analytical chemistry. It keeps things grounded—our staff have handled and shipped the compound for years, so there’s little room for oversights or vague warnings.

    What Makes Our Role as Manufacturer Unique

    Direct manufacturing allows us to work on every aspect of the process, from negotiating with growers to optimizing extraction temperatures, and from overseeing final fractionation to filling and labeling bottles. This holistic, boots-on-the-ground involvement feeds into the final product’s reliability. We iterate our process if a batch throws up anomalies—tweaking column parameters, rechecking raw material, tracking back to storage conditions.

    Manufacturers like us make long-term investments. Setting up closed-system extraction equipment, deep-cold storage, and specialized analytical controls costs both time and resources, but lets us offer a Beta-Asarone product our customers trust. Frequently, clients come to us because their former supplier offered only surface-level quality claims or inconsistent isomer proportions. They want knowledge, reliability, and a straightforward relationship, not a string of disconnected intermediaries.

    Each time challenges pop up—whether in raw material logistics, shifting safety standards, or industry demand—we adapt using our own expertise. We swap in new packing materials if plasticizers risk leaching, and we change handling protocols if a finding shows potential for storage loss. Only a manufacturer with long-term vision and deep technical experience can make these pivots without missing a beat or compromising traceability.

    Our Ethical Perspective

    Sourcing pure chemicals from the plant world demands more than simply distilling or crystallizing the right molecule. In our work with partner growers and suppliers, ethical treatment and sustainable methods guide our contracts. Our buyers vet origins not just for contaminant levels but also for fair labor standards and environmental impact. These questions are not mere afterthoughts—they touch both the quality of the chemical and the reputation of every downstream project that uses our Beta-Asarone. Responsible stewardship carries weight in both the laboratory and the supply chain.

    As a manufacturer, our job extends beyond filling bottles and setting shipping dates. We coach new employees on the science and values behind our choices, and teach them why small steps—checking every drum before it ships, verifying paperwork, and confirming analytical results—save both money and headaches later. We share what we’ve learned with peers in the industry, sometimes even with competitors, because the entire field grows stronger when the basics are done right.

    Continuous Improvement: Learning from the Field

    No production process locks itself in stone. With frequent changes in climate, regulations, and international demand, we revisit every step. We ask regular clients what they wish worked differently, push our analytical group to deepen their testing lists, tweak our own handling to anticipate new uses or hazards. Close collaboration with end-users opens up new routes—like building custom pre-measured ampoules for high-precision pharma firms, or shrinking the allowable limits for trace solvents because a researcher raised a concern.

    Beta-Asarone processing continues to evolve. Our technical staff huddle over feedback from both small and large clients, marking up flowcharts on whiteboards, shaping research targets for the months ahead. If a better extraction or purification technology arrives, we’re ready to pull apart our system and refit lines. If a regulatory puzzle makes an export difficult, our compliance group sorts through the problem with customs and legal advisors. The difference with a true manufacturer is this: every challenge is a lesson, not a headache, because every new demand pushes us toward a better product.

    The Role of Experience

    Time on the factory floor and years of batching provide insights that no sales pitch or third-party summary can replace. We have seen incoming material shift in response to a dry season or a surge in farmgate pricing, and we have the networks to source reliable roots all the same. We have run side-by-side comparisons between legacy methods and new distillation tech, always tuning for the highest yield and correct isomer profile.

    Members of our staff pride themselves on learning from mistakes and collecting every data point—not just from the lab but also from reports on container leaks, clogs in filling machines, and even feedback from customers grinding the material on their side. These lessons flow back into our procedures. We swap best practices at industry conferences, pushing fellow manufacturers to up their game because nobody benefits from shortcuts or secrecy.

    Customer Relationships and Real-World Feedback

    Staying in touch with customers adds layers of value to what we do. Pharmaceutical formulators, research chemists, and aromatics developers all approach us with different wish-lists, technical hurdles, and timelines. We give honest answers on what’s possible, what needs adaptation, and where known issues might appear. Real conversations—whether face-to-face, email, or lab report exchange—build a sense of trust you just don’t find with a broker or off-label trader.

    Clients inform our development pipeline with hands-on requests. A pharmaceutical project may require a 30-page documentation pack, while a research collaborator may want a custom purification run for a novel analytical method. Our workshop has delivered both, plus tailored product for dozens of side niches, each requiring new tweaks or technical support. This direct feedback shapes not only our day-to-day production, but also what we investigate next.

    Solving Problems: Going Beyond the Manual

    Supply chain snags, regulatory changes, and shifting demands often force manufacturers to re-examine established processes. Where others might dodge new costs or resist stricter standards, we take action. After a rash of logistics delays in shipping Beta-Asarone to distant markets, our team set up direct temperature-controlled channels and developed better vacuum sealing on containers. When updates came through about new analytical standards for solvent residues, we adjusted our runs and spent weeks recalibrating equipment to match the target.

    True solutions require sweat, not just talk. We bet on in-house equipment upgrades and consultant reviews for audits—a choice that only direct chemical producers with a long-term view can afford. By handling both the production and the technical troubleshooting, we save our customers from wasted time, stalled projects, or compromised research.

    Steady Quality in a Changing World

    Beta-Asarone’s popularity in both heritage and modern industries rests squarely on quality and trust. Our product stands as proof of what direct, experience-driven manufacturing can deliver. Every drum and ampoule ships with the full confidence of people who put in day-to-day labor, handle their own bottlings, and face every new problem with practical know-how.

    Regulations will keep evolving, new applications will appear, and climate and sourcing challenges will test every manufacturer’s resilience. Through each change, Beta-Asarone from our facilities remains backed by proven reliability and a commitment not just to meet standards but to push them higher, batch after batch, year after year.