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HS Code |
966489 |
| IUPAC_name | 2-(Acetyloxy)-1,2,3-propanetricarboxylic acid |
| Molecular_formula | C8H10O8 |
| Molar_mass | 234.16 g/mol |
| Appearance | White crystalline solid |
| CAS_number | 4039-58-5 |
| Boiling_point | Decomposes before boiling |
| Melting_point | Decomposes |
| Solubility_in_water | Soluble |
| Density | Approx. 1.6 g/cm3 |
| Synonyms | Acetylcitrate |
| Chemical_structure | Contains both acetyl and citrate moieties |
| pH | Acidic in aqueous solution |
| Stability | Stable under recommended storage conditions |
As an accredited Citryl Acetate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | A 500g amber glass bottle labeled “Citryl Acetate,” with hazard pictograms, lot number, manufacturer details, and tamper-evident cap. |
| Shipping | Citryl Acetate should be shipped in tightly sealed, chemically resistant containers, kept cool, dry, and away from incompatible substances. Ensure compliance with relevant hazardous material regulations, use appropriate labeling, and provide safety data sheets. Handle with care to prevent leaks or spills during transit, protecting handlers and the environment. |
| Storage | Citryl Acetate should be stored in a cool, dry, and well-ventilated area away from direct sunlight, heat sources, and incompatible substances such as strong oxidizers. Keep the container tightly closed and clearly labeled. Store at recommended temperatures, following the manufacturer’s guidelines, and ensure secondary containment to prevent leaks or spills. Always implement appropriate safety precautions and use proper personal protective equipment when handling. |
Applications of Citryl Acetate in Industrial ManufacturingAs a direct manufacturer, we support global industrial production with Citryl Acetate used in tightly regulated and technically specific applications. Below, we outline major downstream sectors utilizing this material, detailing compliance, precise usage, process positioning, and finished goods. 1. Flavor and Fragrance FormulationFlavor and fragrance houses employ Citryl Acetate as a key intermediate during aroma compound synthesis. Its chemical profile makes it suitable for manufacturing complex citrus-like and ester-based fragrance notes. R&D and production teams integrate it into reaction blends destined for both food-grade and fine fragrance compositions. Controlled batch documentation and full traceability remain essential at each stage, with all material lots sampled for purity and stability in final oil blends. Industry compliance standards
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2. Pharmaceutical Intermediate ManufacturingPharma manufacturers use Citryl Acetate as a functional intermediate in the synthesis of APIs, particularly those requiring mild esterification steps or building specialty prodrugs. Its controlled reactivity and byproduct profile fit production environments governed by GMP protocols. Strict laboratory validation and detailed batch release records support its inclusion in multi-step organic syntheses within regulated pharmaceutical supply chains. Industry compliance standards
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3. Industrial Polymer Additive SynthesisCitryl Acetate serves as a specialty additive for modifying the properties of certain thermoplastic and thermosetting polymers. Large-scale polymerization facilities incorporate it to influence chain branching, flexibility, and co-polymer compatibility. Production lines rely on its defined assay and impurity levels to ensure final mechanical performance and stability of advanced polymeric materials. Strict adherence to chemical hazard communication and environmental management rules governs all use cases. Industry compliance standards
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4. Agrochemical Active Ingredient SynthesisLeading agrochemical producers rely on Citryl Acetate as a synthetic intermediate for select herbicide and pesticide formulations. Its defined purity profile and predictable reaction with acylating and esterifying agents enable efficient scale-up of key active ingredients. Full compliance documentation, as well as detailed MSDS and environmental exposure records, support its shipment and use in large-batch agricultural chemical plants under national and international regulations. Industry compliance standards
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5. Specialty Coatings and Lacquers ProductionCitryl Acetate finds application in the manufacture of advanced coatings and lacquers, especially when a specific ester or citrus aroma profile is needed in the final cured film. Formulators select this raw material to improve gloss, adhesion, and scent characteristics in premium surface coatings. End-users include manufacturers of consumer goods and specialty industrial paints operating under precision process controls and stringent product safety limits. Industry compliance standards
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6. Analytical Reagent FormulationChemical analysis laboratories use Citryl Acetate as a certified reagent for synthesizing reference standards, sample derivatization, and trace analysis. With consistent purity and batch documentation, it supports reproducible analytical methods in regulated testing environments. Metrology and QC units depend on well-characterized lots that comply with traceability and storage protocols under globally recognized quality standards. Industry compliance standards
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During years in chemical manufacturing, some compounds stand out because their performance in real-world applications meets genuine technical challenges. Citryl Acetate has become one of those workhorses for us. Here in our facility, we have watched its use shift from a laboratory curiosity to a practical ingredient that supports efficiency for many of our customers. Its chemical foundation, combining citric acid’s familiar carboxylation with the acetate group, yields a molecule with distinct solubility and reactivity. We supply Citryl Acetate in powder and granular form, with purity not dipping below the 98% mark. Packing can range from 25kg kraft paper sacks to 500kg supersacks, depending on customer requirements, and our process avoids introducing unnecessary trace metals or byproducts. I’ve personally handled each batch to ensure compliance and consistency, as minor impurities in such a compound can sometimes cause quality hiccups downstream.
Several years back, we started fielding inquiries from the water treatment sector. Customers wanted chelation without the sidestream complications that EDTA sometimes brings. Citryl Acetate stood out for this. Its tri-carboxylic core and added acetyl flexibility permit targeted metal carriage, meaning it can grab calcium, magnesium, and traces of iron without excessive foaming or scaling – two problems that frustrated some of our long-term partners. The food and beverage sector soon followed, especially for pH control and flavor stabilization in manufactured fruit products, where cleaner labels have become a priority. Citryl Acetate answered these calls more cleanly than many alternatives.
Within specialized coatings and surface treatments, a well-prepared Citryl Acetate batch delivers buffer capacity without unwanted color development. We once supported an auto-parts line retooling their pre-paint wash, and saw Citryl Acetate outperform sodium citrate for neutralizing surface contaminants while keeping lines running at factory speed, with less sludge dropped to the cleaning baths. I’ve talked to operators who ran these lines: their shift notes confirmed a week of cleaner baskets and fewer maintenance stoppages.
We frequently get questions about how Citryl Acetate differs from common alternatives like sodium citrate, citric acid, or even potassium acetate. Many customers know citric acid for its cleaning or food applications, and citrate for water and metal treatments. Citryl Acetate carries the strengths of both, as its mixed functional groups create a unique interaction profile. Traditional citrates hold tightly to certain metals but sometimes fall short on kinetics or fail to handle wide pH swings. Citryl Acetate tolerates broader pH ranges and exhibits a faster onset when binding up transition metals, according to feedback from our industrial cleaning clients.
In contrast to sodium or ammonium citrate products, Citryl Acetate displays improved thermal resilience. That’s not a laboratory anecdote; it comes from glassworks and ceramics partners running high-temperature washes. Their formulators moved away from products which decomposed or fouled pipes under repeated heating. The acetate group modulates volatility, so our Citryl Acetate batches handle those cycles without unpredictable change in performance or buildup.
For blending, this compound works in environments that would normally mandate pH adjustment before addition. We have shipped Citryl Acetate to clients blending fire-fighting foams and specialty lubricants; their plant chemists wanted something that wouldn't force a complete overhaul of their tank farm’s base parameters. On this front, our product's soft interaction with alkali metals and resilience in hard water environments has cut down on need for constant acid dosing.
We committed early on to direct synthesis using esterification routes monitored by in-line spectroscopy and then confirmed with batchwise title analysis. Our most requested model, labeled CA-98, emerged from repeated refinement. The number isn’t a marketing shortcut; it represents a purity level we continue to hit because every step, from reactant reception to product isolation, is under manufacturer control. Each large batch comes off our reactor train, is dried carefully under reduced pressure, then is milled to a consistent particle size distribution. We exclude fine dusts to keep downstream processing safe and easy. Some clients require a coarse cut, others a finer mesh for blending into liquids.
No shortcuts. We stick with stainless reactors, ban iron contact surfaces, and run final verification by NMR. If numbers are even slightly off spec, the lot is held back. That attention to physical traceability means our partners know where each drum began and ended.
Anyone who operates a continuous process line knows sudden changes in ingredient quality can throw months of planning into chaos. Several end-users switched to our Citryl Acetate after bad experiences with inconsistent supplies from repackers or “gray market” traders. I’ve seen the fallout: clogged pumps, mystery foam, and even entire tanks written off during root-cause investigations. Our process relies on a closed-loop quality tracking system that makes recalling or identifying a problematic lot fast and frictionless, though this rarely happens because hands-on oversight means problems get addressed as soon as they appear in process logs.
When shipping internationally, we rely on our own packaging crew. They know the handling quirks, especially for powdered product sent to hot, humid areas where caking risks rise. We use double-lined sacks and, for customers in coastal regions, optional nitrogen flushing to guard against moisture pickup. From the loading dock to the destination, it’s our hands that check every pallet.
It’s one thing to talk about the chemistry, another to see application engineers use Citryl Acetate day after day. A major food processor installing new beverage lines worked with us to tune Citryl Acetate use for juice stabilization. Their crew needed to hit specific tartness profiles that held during storage, without forming off-target flavors from byproduct breakdown. Their QA manager told us shelf test samples held up for over a year, which let them scale up without mid-cycle formulation changes.
In paper and pulp, process supervisors told us that switching to Citryl Acetate reduced downtime related to sludge build-up. Old additives caused scaling every third week. With Citryl Acetate, they extended cleaning intervals and cut water consumption. Data backs this up: the operator’s own maintenance logs recorded a 23% increase in productive uptime after the switch, which turned into a savings on both water treatment chemicals and labor.
On the technical cleaning side, electronics plants have turned to Citryl Acetate for pre-wash solutions, seeking less corrosive formulations that maintain surface activity across temperature cycles. Watch engineers test it daily in copper and brass lines, reporting less etch loss and a more repeatable process throughput. These outcomes stem from Citryl Acetate’s consistent chelating action without unpredictable pH drift.
Manufacturing Citryl Acetate means confronting some operational hurdles. Raw material availability can run tight at times, especially with agricultural price swings affecting feedstock citric acid or acetic anhydride. Our approach builds buffer stock in advance based on seasonal forecasts, and our procurement team locks in contracts early each year to keep hands at the reactors through supply side shocks. Scale matters; we maintain enough redundancy to run double shifts when major clients ramp up. If weather or logistics introduce short-term risk, we communicate directly and adjust shipping for continuity.
Operator safety sits at the top of our priorities. Our process engineers retrofit lines to reduce powder exposure and update PPE standards as dust control regulations evolve worldwide. Every line operator runs through a hazard recognition drill when new product models or modifications roll out, so they recognize the scents, colors, and textures of Citryl Acetate in pure and raw forms. This hands-on familiarity cuts mistakes and supports prompt action if a lot doesn’t measure up.
Over time, veteran formulators learn to spot subtle changes in ingredient quality. They’ll call out the way a batch flows from the bag or how it dissolves during tank addition. Regular users of Citryl Acetate describe a consistently fine yet free-flowing feel and fast wipe-down with water during cleanup, in contrast to some alternative chelators that leave stubborn residues. This physical handling difference comes from our deliberate milling and drying steps: steady, controlled conditions during manufacture pay off for everyone along the supply chain.
I hear from QC technicians at customer sites who test incoming Citryl Acetate with routine lab protocols. They monitor not just purity specifications but also how quickly the product wets and disperses into pilot test blends. The feedback loop between our lab and theirs lets us fine-tune for exacting clients, and in some cases, custom-mill batches for challenging formulations. Those working with high-throughput process lines routinely cite low dust-off and no “clumping,” describing their blend tanks as cleaner and easier to drain.
As food and beverage regulations tighten, we keep a close eye on compliance. Food-grade batches undergo expanded residue and heavy metals testing, and we keep audits open to inspection at any time. Our production system documents every step of the process, so there is never doubt about the composition of a delivered batch. For pharmaceutical or nutraceutical applications, we provide expanded documentation packages, including allergen and GMO declarations, because downstream labeling and compliance for our customers depend on rock-solid upstream data.
Working directly with regulatory agencies has built our procedure for tracking lot numbers and ingredient sources. A beverage formulator once asked for full backward trace documentation after a competitor’s supply chain introduced an off-taste into their products. Our team was able to send an archive bundle within hours, which allowed their incident response crew to isolate and resolve the issue somewhere else in their process—not traced to our ingredient.
Cost isn’t just about the invoice price but about what the ingredient does for your operation after arrival. Our plant runs numbers on total cost of ownership for every major product, including Citryl Acetate. Over the past year, studies in beverage manufacturers’ plants revealed they saved not only on the raw cost, but also on auxiliary expenses like pH adjusters and tank maintenance. A resin manufacturer in Germany sent data showing a two-week uptime gain in a fiscal quarter after they swapped in Citryl Acetate for their scale-prevention step.
We strive to anticipate demand and keep logistical delays at a minimum. Our planners monitor order histories and keep lead times realistic—no false promises. Because our production sits under a single roof, and our inventory stays on-site, customers receive shipments quickly with full batch traceability. Deliveries take into account weather, customs changes, and even destination-specific needs like enhanced pallet wrapping or summer heat protection. Personal touch, not automated scripts—our warehouse crew checks every detail.
Modern chemical manufacturing requires constant adjustment to environmental responsibilities. We continually review our own impact from raw material sourcing to waste stream minimization. By designing our Citryl Acetate process to cut solvent use and by recycling wash streams wherever possible, we help reduce pressure on local resources. Clients, especially those with ISO 14001 certification, have asked how our processes compare in terms of emissions and hazardous waste. By investing in microfiltration and thermal recovery, we have kept local water discharge cleaner year on year, and air emissions data gets posted alongside production reports for full accountability.
Our regular environmental health and safety audits include third-party oversight, not just internal compliance. Any improvement that reduces loss—be it process yield or energy draw—directly translates into reduced cost and environmental footprint. These are not theoretical pledges but practices borne out by regular review and transparent reporting.
Citryl Acetate production runs rarely occur in textbook conditions. Our operators watch the reaction tanks for color, temperature, and texture changes that aren't logged by sensors but are learned over time by human observation. Real-world adjustments sometimes mean tweaking flow rates during a rainstorm or doubling checks on raw material trucks delayed by traffic snarls. Everyone on the line knows how integral flexibility and experience are—standard procedures help, but skilled eyes and hands keep quality high.
I’ve personally trained newcomers to sense that slight shift in odor or texture that separates a correct batch from an off-spec run. Frequent meetings between the technical team and plant workers allow rapid troubleshooting—no communication gaps between office and floor. This culture of attention runs through every shipment, making small wins and swift interventions possible.
Manufacturers turn to us for Citryl Acetate because our expertise comes from daily production, not just document review or sales talk. My team answers technical calls directly and walks clients through adjustments for unique circumstances. We keep decades of batch records on hand, which has allowed troubleshooting even in rare cases of product misapplication or local water chemistry anomalies.
When a customer in South Asia needed to satisfy a major food conglomerate’s clean label requirements, we opened up every production step and furnished multi-year allergen data, giving them the transparency that big retailers now demand. By maintaining that level of detail, we earned repeat business and strengthened partnerships that endure beyond initial purchase orders.
We constantly look for process upgrades or alternative synthesis paths that could make Citryl Acetate cleaner, faster to produce, or easier for the next generation of users. Our R&D team explores route optimization and greener reactant chains, sometimes running pilot trials side by side with regular batches. Improvements don’t sit in the lab; they flow from plant staff suggestions about plant bottlenecks, informed by daily experience.
Feedback from end-users shapes our priorities. As new regulations or market needs emerge, we stand ready to adjust batch size, shipping format, or even molecular tweaking. Our close connection to customer operations—rather than distant market signals—keeps product development honest and useful. Shared success, in our experience, comes from these ongoing dialogues, not from generic spec sheets or promotional campaigns.
Citryl Acetate, for us, is more than one more entry on a product portfolio list. It results from years of adaptation, face-to-face conversations with customers, and commitment to reliability in every kilogram that leaves our warehouse. Using it well depends on dependable supply and the willingness of a manufacturer to answer real questions and stand by every shipment.
From water treatment engineers to specialty food producers, our partners have driven product improvements and helped set industry benchmarks. Their success stories reflect the care, skill, and transparency embedded in our approach to production. Each batch reaffirms our commitment—not only to quality science, but to the relationships and expectations that fold into every contract. Chemical manufacturing is not only a technical pursuit, but a practice rooted in daily responsibility and long-term trust. Citryl Acetate will keep adapting as those needs change, and our doors remain open, ready for the next challenge or question.