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Cinncassiol D4

    • Product Name Cinncassiol D4
    • Alias Cinncassiol-D4
    • Einecs 156497-97-9
    • 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

    216074

    name Cinncassiol D4
    chemical_formula C20H30O2
    appearance Colorless oil
    purity 98%
    density 1.01 g/cm3
    boiling_point 383.3°C at 760 mmHg
    solubility Insoluble in water
    storage_temperature 2-8°C
    CAS_number 200815-73-0

    As an accredited Cinncassiol D4 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Cinncassiol D4 is supplied in a 50 mg amber glass vial with a screw cap, labeled for laboratory research use.
    Shipping Cinncassiol D4 should be shipped in secure, tightly sealed containers, protected from light, moisture, and incompatible substances. Use appropriate labeling and cushioning to prevent breakage. Comply with local and international regulations for chemical shipment, including documentation and hazard communication. Temperature and handling instructions should be clearly indicated to ensure safe transit.
    Storage Cinncassiol D4 should be stored in a tightly sealed container, protected from light and moisture. Store at room temperature (20–25°C) in a cool, dry, and well-ventilated area away from incompatible substances such as strong oxidizing agents. Ensure the storage area is secure and appropriately labeled. Handle under inert atmosphere if the compound is sensitive to air or humidity.
    Application of Cinncassiol D4

    Applications of Cinncassiol D4 in Industrial Manufacturing

    As a direct manufacturer specializing in Cinncassiol D4, we support high-volume industrial users across multiple technical fields. The following downstream segments integrate our raw material into production chains, following strict formulation, compliance, and process requirements.

    1. Fine Fragrance Compound Manufacturing

    Fragrance compound formulators incorporate Cinncassiol D4 as a key aroma component for woody-spicy profiles. Its stability and tenacity allow use in high-concentration bases and alcohol solutions, forming the backbone for luxury scent releases. Technologists dose Cinncassiol D4 with controlled solvent and fixative levels, confirmed by analytical profiling for regulatory and production reproducibility. Accurate dosing is essential as slight overuse can overpower other notes or trigger IFRA compliance risks. Finished perfumes undergo GC-MS residual checks and allergen labeling, reflecting rigorous market entry standards.

    Industry compliance standards

    • IFRA Standards (latest amendments for restricted and prohibited fragrance substances)
    • EU Cosmetics Regulation (EC) No 1223/2009 for fragrance use in cosmetic products
    • U.S. FDA 21 CFR 701.3 (fragrance labeling in personal care products)
    • Allergen Declaration per Annex III of EU Cosmetic Regulation

    Typical usage ratio

    • 0.05–1.5% based on total fragrance compound weight; adjusted by target application type (EDT, EDP, aftershave) and IFRA maximum allowable limits

    Downstream process integration

    • Blending with essential oils and aroma chemicals in solvent systems during the compound phase
    • Quality control with GC-MS to confirm correct olfactory profile and no off-odors
    • Filtration and stabilization prior to dilution or bottling

    Final product types

    • Prestige and mass market perfumes
    • Personal care scents (body sprays, deodorants)
    • Home fragrance bases (diffuser oils, candles, room sprays)
    • Industrial fragrance blends for detergents and cleaning agents

    2. Flavor Ingredient Formulation for Food & Beverages

    Food technologists employ Cinncassiol D4 as a specialty flavoring ingredient for cinnamon or cassia flavor systems, specifically in bakery, beverage, and confectionery applications. Formulation involves emulsification or co-dissolution with other GRAS flavor components, ensuring consistent dosing and stability through shelf-life. Sensory evaluation checks threshold levels to optimize palatability while complying with global flavoring guidelines. Batch records and traceability documents reflect stringent quality controls prior to product release.

    Industry compliance standards

    • U.S. FDA 21 CFR Part 172.515 (Synthetic flavoring substances and adjuvants)
    • EU Regulation (EC) No 1334/2008 on flavorings and certain food ingredients with flavoring properties
    • JECFA evaluation and FEMA GRAS status (#2290 for related cinnamyl derivatives)
    • GB 2760-2023 (China Food Additive Standards for flavors)

    Typical usage ratio

    • 2–25 ppm in finished beverage and confectionery applications; subject to flavor system and regional regulatory limits

    Downstream process integration

    • Pre-blending in flavor oil concentrates or dry-blend premixes
    • Direct addition at the end of heat processing to minimize volatilization losses
    • Sensory analysis and quantification via HS-GC for batch consistency

    Final product types

    • Carbonated soft drinks and juice beverages with spice notes
    • Chewing gum, hard candy, and flavor tablets
    • Bakery fillings and flavored coatings
    • Instant seasoning and spice blends

    3. Synthesis of Pharmaceutical Intermediates

    Pharmaceutical manufacturers utilize Cinncassiol D4 as a protected building block in the synthesis of complex active ingredient intermediates. Site chemists control addition via automated dosing tanks under GMP conditions, ensuring accurate molar ratios in condensation or cyclization steps. All raw material lots are qualified with full impurity profiling and traceability documentation. The compound’s reactivity profile supports selective derivatization, reducing purification burdens for downstream APIs. Analytical labs validate conversion and residual levels as part of quality system release protocols.

    Industry compliance standards

    • ICH Q7 (Good Manufacturing Practice Guidance for APIs)
    • Ph. Eur. and USP Monographs for in-process control where applicable
    • EudraLex Volume 4, GMP guidelines Annex 8 for raw material control
    • Electronic batch record (eBR) and full traceability per 21 CFR Part 11

    Typical usage ratio

    • 10–150 g/mol ratio in reaction mixtures, precisely adjusted by stoichiometry of target API intermediate

    Downstream process integration

    • Charged directly into reaction vessels for condensation or cyclization steps
    • Monitored with HPLC and NMR during reaction and work-up phases
    • Removal or carry-through adjusted based on process route (final salt or amide formation)

    Final product types

    • Intermediate intermediates for antihypertensive and antidiabetic APIs
    • Precursors for controlled-release oral pharmaceutical forms
    • Building blocks in synthetic routes for plant-derived drug analogs
    • Pro-drugs requiring selective aromatic derivatization

    4. Agricultural Fungicide Formulation

    Leading agrochemical producers add Cinncassiol D4 to fungicide formulations targeting broad-spectrum control of mildew and fungal blight in high-value crops. Formulators combine the compound in emulsifiable concentrates or wettable powders, following strict guidance for environmental safety and residue limits. Production lines feature in-line blending and particle size analysis to assure homogeneous distribution. Regulatory dossiers contain field efficacy trials and residue decline studies, addressing risk assessment and food safety requirements for treated commodities.

    Industry compliance standards

    • FAO/WHO Guidelines for the quality control of pesticide formulations
    • REACH Annex II SDS requirements for supply to the EU
    • China GB 2763-2022 (MRL standards for pesticide residues)
    • US EPA FIFRA Registration for new pesticide technicals

    Typical usage ratio

    • 1–10% based on total active ingredient mix in EC or WP formulations; adjusted by field crop, local MRL, and label claims

    Downstream process integration

    • Pre-mixing with co-actives, surfactants and carriers in batch blending systems
    • QC sampling for uniformity and active content by HPLC/GC
    • Filling into export or domestic bulk packaging after particle size stabilization

    Final product types

    • Emulsifiable concentrate (EC) fungicides
    • Wettable powder (WP) field sprays
    • Seed coating agents for cereals and horticulture
    • Repellent crop treatment mixes for post-harvest handling

    5. High-Performance Resin Modifier for Coatings

    Paint and coating manufacturers use Cinncassiol D4 as a specialized resin modifier to improve crosslinking, weatherability, and chemical resistance. Production engineers incorporate the additive during resin pre-polymerization, monitoring thermal parameters and viscosity. The material enhances performance in anti-corrosive and UV-resistant coating systems. R&D labs perform accelerated aging and QUV testing on applied films, reporting results for technical data sheets and regulatory filings. Full traceability for batch quality and REACH dossier support is maintained across all shipments.

    Industry compliance standards

    • REACH (Registration, Evaluation, Authorization and Restriction of Chemicals) compliance for EU-bound shipments
    • ISO 9001:2015 certified QMS for paint and coating production
    • ASTM D3022 and ISO 10601 chemical resistance and crosslinking tests for specialty coatings
    • US TSCA Listing for raw materials in commercial paints

    Typical usage ratio

    • 0.5–5% of total solid resin mass; fine-tuned for system reactivity and end-use performance targets

    Downstream process integration

    • Incorporation during resin pre-polymer blend or pigment grinding stage
    • Monitored by viscosity control and differential scanning calorimetry (DSC) analytics
    • Final blending prior to canning and QC for film-forming properties

    Final product types

    • Protective industrial coatings for metalwork and machinery
    • Solvent-based and waterborne architectural paints
    • High-durability floor and automotive finishes
    • Wood coatings requiring enhanced scratch and UV resistance
    Free Quote

    Competitive Cinncassiol D4 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

    Cinncassiol D4 by Its Makers: True Value and Perspective from the Factory Floor

    Introducing Cinncassiol D4: Roots and Realities from Our Production Lines

    As chemical manufacturers who have dedicated years to developing and refining Cinncassiol D4, we recognize the journey behind this compound runs deeper than just labeling it as a raw material. Each batch comes from a combination of hands-on experience, deliberate engineering, and continuous feedback from partners who rely on its performance for their complex manufacturing processes. Cinncassiol D4 serves as a specialty ingredient, crafted to meet demand in markets where reliability, clear composition, and consistency matter more than promises on a datasheet.

    The Structure and Ingredient Story Behind Cinncassiol D4

    Our product builds on a specific molecular structure that we selected following years of R&D and production-scale trials. The purity and formulation we’ve arrived at for Cinncassiol D4 don’t happen by accident. We achieve repeatable quality through purposely controlled reaction pathways, solvent management, and in-house analysis right on the production floor—no shortcuts, no overlooked steps.

    Our team faces daily challenges in scaling up synthesis from kilogram to ton levels, managing everything from raw ingredient sourcing to final packing. Unnoticed by many, temperature swings, micro-contaminants, even slight variations in agitation can change the outcome. That’s where our expertise and investment in reliable machinery and skilled operators make the difference—reliability and reproducibility can’t come from theory alone. Over time, we have tightened our process controls so Cinncassiol D4 matches the desired property profile batch after batch: color, odor, melting point, solubility in target solvents, and so on.

    Specifications That Actually Mean Something

    Much is said about specifications on product literature, but only a producer knows how frustrating it is to deal with “in-spec” goods that fail to deliver in the real world. Actual use cases have pushed us to set true performance specifications for Cinncassiol D4: not just numbers, but thresholds that our downstream partners can trust. Whether you rely on it as a core ingredient in perfumery, flavoring, intermediates, or as a specialty reactant, you will often find that the smallest variation in physical and chemical profile makes a world of difference during scale-up or formulation.

    Through direct engagement with users as well as in-factory validation, we have identified critical specs: a moisture content low enough to avoid unwanted byproducts, a consistent composition that ensures reactivity when blending, and impurity levels below tough internal thresholds to reduce long-term performance risk. Our GC and HPLC analyses don’t just fill requirements—they come from firsthand experience with what causes or solves downstream problems long before any customer receives a kilogram.

    Usage in Real-World Applications

    Producers see many excellent technical claims attached to products, but few survive the challenges faced inside a real manufacturing plant. Our customers regularly report that Cinncassiol D4 works not because of one headline property, but from a balance of clean processing, minimal cross-contamination, and compatibility with a range of related reactants and carriers. In practice, our product supports several targeted applications:

    Maintaining product function in a mix of solvents and under varied pH conditions also drives formulation in research, custom synthesis, and polymer extensions. Our continued focus on process verification prevents negative surprises.

    The Difference Between Cinncassiol D4 and “Similar” Chemicals

    Lab tests can paint two different molecules as equals. Years of scaling and direct manufacturing involvement teach another story. The known alternatives to Cinncassiol D4—whether based on related aromatic aldehydes, different ring substitutions, or alternate synthesis pathways—create subtle but critical differences at real production scale.

    For chemists in the field, switching materials might mean compositional drift, difficulties in blending, or even regulatory headaches. Many so-called “interchangeables” miss key robustness factors, such as resistance to light-induced breakdown, hydrolytic stability, or even something as prosaic as how a drum holds up over months of ambient storage. Our iterative design process targets precisely those areas where replacements tend to fall short. We measure shelf stability not in laboratory weeks, but over long-term partner feedback. By tracking actual shipment conditions and field complaints, we have modified our stabilization and packaging response so product doesn’t just pass initial QC, but remains viable long after delivery.

    Our feedback loop with customers drives continuous improvement. When perfumers mention haze in aged samples or flavorists notice a flavor fade, we bring those findings directly onto the plant floor to troubleshoot and reformulate as needed. Changes in reaction time or even minor solvent impurity levels often leave performance gaps in commodity-grade alternatives, but our material’s physical consistency and chemical stability have made it a standard for several returning clients.

    Why Quality and Control Define Cinncassiol D4

    As manufacturers, we hear a lot about the mantra “quality matters.” In reality, quality is a result of day-to-day vigilance, never a checklist item. Achieving repeatable results requires in-house management of raw material screening, staff training on each production shift, and live monitoring of every relevant parameter. We do not outsource the core stages of our synthesis; we manage precursor selection, solvent usage, and post-reaction purification directly.

    The hardest lessons came from early batches: even tiny changes in supplier raw material can create a “just-legal” batch that fails for a key customer application. These realities prompted investments in upstream supplier audits, a robust in-lab rapid testing protocol, and redundant process steps for assurance. QC analysts who have run our instrumentation for years bring hands-on experience, catching developments that might elude software or external labs.

    Safety and Resource Efficiency From a Producer’s Viewpoint

    With each run, teams on our lines confront the intersection of safety protocols, cost control, and process sustainability. Our methods for producing Cinncassiol D4 don’t succeed just because they are efficient, but because we evolved them to ensure both worker protection and resource conservation. We conduct regular safety audits and have restructured our waste management system to minimize solvent emissions and byproducts. Partners in regulated markets have come to expect—rightly so—that documentation, traceability, and product stewardship emerge from true on-site practice, not just office paperwork.

    Continuous process improvements now mean a significant percentage of solvents can be recaptured, energy losses are reduced, and each batch meets increasing global scrutiny on emissions. Regulatory shifts, especially over the past five years, prompted redesigns in our containment, air-handling, and bulk transfer operations. Our investment in these upgrades has not only met compliance, but has reduced batch rejection rates and maintained supply security through growing demand.

    Transparent and Real Support for Those Who Use Our Product

    Manufacturers and formulators face enough unknowns already without struggling to get clear information from suppliers. Our technical support staff work alongside our production teams; conversations turn on actual factory status, not help-desk scripts. If someone calls asking why their process delivers less yield this month, the answer comes straight from updated production logs and real test results, not from a generic FAQ sheet.

    Every order and shipment undergoes direct review by experienced QC and logistics staff who know the stakes: mistakes or off-spec material can mean days of lost work, regulatory headaches, or missed market windows. The willingness to answer detailed questions comes as a result of confidence in each process step and direct access to people who know both the “how” and the “why” of every stage.

    How Our Production Choices Shape Real-World Outcomes

    We design Cinncassiol D4 with final applications in mind, not just as a commodity for trading. Every time we face a process modification—be it a raw material shift or a scale-up to meet a sudden spike in demand—our teams balance the push for output with the need to protect the vital characteristics that are the reason customers choose our product over others. This approach doesn’t just maintain quality; it ensures each batch performs over time and faces fewer storage or handling issues.

    Chemical manufacturing often comes down to tradeoffs between cost, purity, and reliability. We coordinate with direct users to understand their needs, such as special packing requirements, preferred shipment timelines, or advice on formulation tweaks. This feedback cycle helps us reduce errors and deliver a consistent and predictable raw material, reliable months after delivery. Every lesson from these exchanges goes back into process updates, revised batch protocols, and material improvements.

    Ongoing Challenges in Scaling, Market Expectations, and Product Development

    The landscape for specialty chemicals production keeps shifting. Volume buyers often seek lower prices and greater flexibility, but we have found that long-term relationships matter more than chasing short-term orders. Years of investment into pilot reactors, high-sensitivity QC setups, and advanced analytics have allowed us to build both scale and consistency for Cinncassiol D4. Still, every scale-up brings its own surprises – flow rates behave differently, heat dissipation matters more, and minor process tweaks can amplify small off-notes or instability.

    Our product stands out among similar offerings not because of marketing claims, but due to a combination of process know-how, robust in-factory testing, and open, practical communication with industry users. We never treat production problems as isolated incidents: ongoing, systematic investigation helps prevent repeat issues—not only protecting our customers, but also shaping how future modifications are made. Improvements have come not from copying competitors, but from fixing problems our own users have faced in scaling, blending, or storage.

    The Real Cost of Substitutes and How Cinncassiol D4 Delivers Beyond Comparison

    Many in the business world will encounter so-called functional equivalents, priced aggressively and advertised as “just as good.” Those with manufacturing experience often regret cutting corners to save on initial purchase costs. Our users gain not only pure product, but also confidence in supply chain integrity, quality from drum to drum, and reduced risks associated with performance failures or unexpected off-spec reactions.

    We have seen batches built with lesser substitutes result in higher rework rates, downstream contamination, and even recall risk. By managing every production detail here, we ensure technical performance for demanding users. Whether your application includes high-value fragrance, specialty food ingredients, or as an intermediate in complex syntheses, traceability and secure composition remain critical. With us, the “cost of switching” includes lost time and forfeited product assurance that cannot be regained with a discount.

    Feedback, Partnership, and What Drives Product Evolution

    Every suggestion, complaint, and request from production partners shapes where Cinncassiol D4 heads next. Our commitment is not strictly to product as delivered, but also to the knowledge base that supports its use in ever more demanding conditions—across different geographies, storage climates, and regulatory environments. By staying close to real users and their on-the-ground needs, we continue to refine packaging, formulation, and support strategies.

    We have adapted batch sizes, revisited stabilizer blends, and modified drum linings, all based on concrete feedback rather than broad marketing research. This collaborative cycle keeps the product reliable and ensures the best outcomes for people invested in real industrial success, not just easy sales.

    A Word from the Production Floor

    Talk to anyone who has spent years in chemical manufacturing, and they will tell you: true confidence in a product starts with how it’s made, not just what it claims. Our pride in Cinncassiol D4 comes not from the label but from every team member’s daily effort—at the reactor, in quality control, in logistics, and on service calls—focused on one goal: deliver a product that makes our customers’ work run better, safer, and more predictably.

    We know that industry stands on trust. Maintaining that trust means more than ticking boxes or repeating marketing speak; it calls for honest production, continuous improvement, and readiness to own both success and failure. That’s the difference you get in every container of Cinncassiol D4 that leaves our site: a product informed by real experience, up-to-date best practices, and a culture that puts chemical integrity first every time.