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HS Code |
786137 |
| Chemicalname | Acetic Acid Solution [10% < Content ≤80%] |
| Casnumber | 64-19-7 |
| Molecularformula | C2H4O2 |
| Physicalstate | Liquid |
| Color | Colorless to slightly yellow |
| Odor | Pungent, vinegar-like |
| Ph | 1.0 - 3.0 (depending on concentration) |
| Boilingpoint | 100°C - 118°C (depending on concentration) |
| Density | 1.01 - 1.07 g/cm3 |
| Solubilityinwater | Miscible |
| Flashpoint | 40°C - 60°C (depends on concentration) |
| Meltingpoint | Varies; generally below 16°C |
| Vaporpressure | 11 mmHg at 20°C (for 80% solution) |
| Refractiveindex | 1.350 - 1.370 |
| Unnumber | UN2790 |
As an accredited Acetic Acid Solution [10% < Content ≤80%] factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | 1-liter HDPE bottle with secure screw cap, labeled "Acetic Acid Solution 10–80%," hazard symbols, and batch information for laboratory use. |
| Shipping | Acetic Acid Solution (10% < Content ≤ 80%) must be shipped as a corrosive liquid in accordance with relevant regulations (e.g., UN2790, Class 8). Use appropriate packaging to prevent leaks or spills, provide hazard labels, and include proper documentation. Ensure containers are secure, upright, and separated from incompatible materials during transport. |
| Storage | Acetic Acid Solution [10% < Content ≤80%] should be stored in a cool, well-ventilated area away from heat and sources of ignition. Keep the container tightly closed and sealed, using corrosion-resistant materials. Store separately from incompatible substances such as strong oxidizers and bases. Protect from direct sunlight and moisture, and ensure suitable emergency eyewash and shower facilities are nearby. |
Applications of Acetic Acid Solution [10% < Content ≤80%] in Industrial ManufacturingAcetic acid solution with a concentration between 10% and 80% serves as a fundamental raw material across several industrial production sectors. As a direct manufacturer, we deliver consistent quality, controlled composition, and full compliance matching downstream requirements in diverse applications. Below, we detail specific sectors, technical requirements, process integration, and end-product types, based on real-world use. 1. Cellulose Acetate Resin ProductionProducers of cellulose acetate resins rely on acetic acid solutions, specifically within this content range, for acetylation of cellulose fibers. The controlled concentration allows for precise substitution and avoids excessive hydrolysis or side reactions. The solution typically enters after pulp dehydration and reacts with acetic anhydride under catalysis, forming high-purity cellulose acetate suitable for further downstream purification and shaping. Manufacturers can adjust the acid-to-pulp ratio according to the required degree of substitution and viscosity of the final resin for applications in films, plastics, and coatings. Industry compliance standards
Typical usage ratio
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2. Textile Dyeing and FinishingIn textile manufacturing, acetic acid solution (commonly 20–60%) controls bath pH for dyeing protein and polyamide fibers. Its buffering ability ensures color consistency, fiber softness, and prevents hydrolysis of acid-sensitive dyes. Textile processors dose the solution directly into dye baths or rinsing lines. They monitor pH dynamically, adjusting acid addition to maintain optimal fiber reactivity and dye fixation. This approach supports reliable production and compliance with global textile safety standards. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
3. Industrial Metal Surface TreatmentMetal finishing operations use acetic acid solution (15–70%) for pickling, deoxidizing, and pre-coating treatments. The acid selectively removes oxides, rust, and carbonate films without etching the metal substrate aggressively, allowing controlled preparation before electroplating, phosphating, or organic coating. Process engineers specify the necessary solution strength, immersion duration, and temperature to balance cleaning efficiency and substrate integrity across steel, zinc, and aluminum surfaces in automotive and hardware production lines. Industry compliance standards
Typical usage ratio
Downstream process integration
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4. Food Ingredient and Additive ManufacturingFood processors utilize food-grade acetic acid solution (10–80%) for production of acidulants, pickling agents, and flavoring preparations. It acts as a pH regulator in vinegar production, condiment blending, and edible preservative formulations. Strict control over concentration, purity, and possible trace impurities is critical for meeting regulatory and organoleptic specifications. Manufacturer QC integrates in-line analysis to maintain compliance with national food additive protocols and international food safety management systems. Industry compliance standards
Typical usage ratio
Downstream process integration
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5. Pharmaceutical and API SynthesisPharmaceutical producers incorporate acetic acid solution (15–60%) as a reagent and pH adjusting agent in synthesis of multiple active pharmaceutical ingredients (APIs). It facilitates acetylation in antibiotic, analgesic, and intermediate compound manufacturing, such as for aspirin or cephalosporin intermediates. Validated processes demand rigorous control of trace impurities, bioburden, and compliance with current pharmacopoeial requirements. Souce tanks feed validated lines under cGMP protocols to prevent cross-contamination in high-purity drug manufacturing environments. Industry compliance standards
Typical usage ratio
Downstream process integration
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Competitive Acetic Acid Solution [10% < Content ≤80%] prices that fit your budget—flexible terms and customized quotes for every order.
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Every batch of acetic acid solution we prepare in our facility starts as a story of care and accuracy. At concentrations between just above 10% and up to 80%, acetic acid keeps a consistent character, demonstrating its strength across many industries. Our solutions cover this entire content range, prepared in a controlled environment, so both concentration and purity remain reliable.
For many years, our plant engineers and chemists have worked directly with technicians in chemical synthesis, textile finishing, water treatment, and food processing. They explain how formulations with medium-to-high acetic acid content can solve challenges smaller molecules cannot. In our own halls, it’s routine for teams to check every drum and tote before dispatch—a diligence that brings peace of mind to buyers further down the supply line.
Some people compare acetic acid’s lower content solutions to supermarket vinegar, but there’s a world of difference in how both products behave. Where diluted acetic acid provides an everyday tang, solutions above 10% and up to 80% operate at an industrial level. We concentrate acetic acid using strict process control, cutting out impurities and adjusting to meet production needs for the most demanding environments. Our intermediate-grade options hold more punch than diluted store-bought acid and offer easier handling than glacial grades—all with traceable records.
We handle each batch in vessels made from corrosion-resistant alloys, protecting both purity and worker safety. Chemists measure acid strength and the water balance using calibrated instrumentation, cross-checking results to guarantee customers get what they expect. Our lots don’t leave the plant without batch-specific certificates, and the focus remains on measurable quality, not just labels on drums. Analysts look at small changes in humidity or temperature inside processing rooms, knowing these fine details can shift the acid’s strength.
Many clients order acetic acid solution [10% < Content ≤80%] for pH adjustment. Water treatment experts test each incoming lot with electrochemical probes. Their operators depend on the predictability and fast response of this acid concentration to neutralize alkaline water streams in breweries, textile dye houses, and municipal supply plants. At our facility, we’ve partnered with process managers who log every shift in pH after our solution is dosed, and they report that rapid, stable results save time and dosing agents, with fewer system upsets.
Laboratory teams use this same solution as an essential reagent for titrations. Its ability to give consistent results serves organic synthesis too. In fine chemical production, process chemists turn to acetic acid solution for key reactions, especially acetylation steps, where the right water to acid ratio speeds up conversion without over-diluting the system. Our production supervisors have spent many mornings talking to plant chemists, reviewing how subtle adjustments in acid content improve product yields. It’s the feedback from these users that helps us tailor our own manufacturing cycles.
Certain textile plants apply acetic acid solution [10% < Content ≤80%] to set dyes and adjust the final hand-feel of fabric. This same range sees use in some metal cleaning workshops—particularly where operators need a mild but reliable acid wash without the fumes of pure glacial acetic acid. In these fields, our liquid works as a balance: strong enough to condition tanks and machinery without compromising worker comfort.
Unlike glacial acetic acid, which can reach over 99% purity and poses higher handling risks, solutions capped at 80% balance reaction readiness with safer logistics. Workers in our facility use protective gear, but when shipping and storage are required, this solution needs less extreme containment. Our logistics team tracks all movement and conditions in real time, and the end users receive a solution that still performs at a high chemical level without the challenge of glacial volatility.
On the other end, vinegar-grade acetic acid, often at about 4-8%, is too weak for industrial processes. In our experience, operations that require reliable buffer preparation and strong, efficient pH control would see unnecessary waste and inconsistent results if they used very diluted acid. At our manufacturing site, we have tested this firsthand—using our own process water as a test bed. The mid-to-high concentration acetic acid handled tasks in minutes that diluted solutions needed triple the volume and time to match. Over decades of scale-up work, our engineers agree that this range means fewer barrels moved and steadier chemistry inside mixing vats.
Our acetic acid solution [10% < Content ≤80%] sits comfortably as a workhorse: more flexible than its more concentrated sibling but leagues above diluted versions in both strength and performance. The added water in this range actually helps blend the acid more predictably into batch and continuous process tanks, especially where direct addition of glacial acid would require extra cooling or specialized metering pumps.
Our background as a direct manufacturer—owning every part of the process from raw material intake to finished drum delivery—gives us a front-row seat to every challenge and discovery. Our lab teams run titrations on each blend, checking acetic strength just before drums are sealed for shipping. Plant operators track maintenance of the mixing tanks to avoid contamination or introducing off-odors. Even the water source matters: we have installed multi-stage filtration on our supply line to guarantee consistency in every batch, because local tap water variations once caused minor changes in acid strength readings.
Handling concentrated acids involves risk that only those who routinely work near chemical process lines truly appreciate. Our facility was designed with spill containment and continuous air quality monitoring. We train every team member on incident drills, and new hires carry digital wristbands linked to chemical alarm sensors in higher-concentration handling areas.
These manufacturing lessons translate to the field: many clients have learned through experience to review Material Safety Data Sheets, to keep emergency dilution tanks ready near industrial acid feeds, and to plan short tank washdowns between batch changes. We encourage users to inspect gaskets and pump seals regularly, because acetic vapors over time cause wear that will not be evident until failure. Our team stays in close contact with end users, sharing maintenance logs and practical field insights.
Consistency matters most—for us, that means batching and bottling under monitored conditions. Customers in the food and beverage sector rely on us to keep their flavor and pH adjustments repeatable. Food engineers from processing lines on three continents have toured our plant, verifying that every lot matches specification and shows no sign of cross-contamination, which can be deadly when allergens are involved. We have learned to document and freeze a sample from every day's production run, so traceability is never in question.
In the electronics and semiconductor industries, precise acetic acid dosing influences both product yield and device life. Production engineers ask us about trace metal contaminants; our Quality Assurance teams perform additional checks, running our solution through advanced spectrometers to ensure metals never creep above low parts-per-million. If ever a complaint arises, we invite clients’ own auditors to observe our process and review all retained samples. These open doors have led to deeper trust and often even process innovation on both sides.
We never ship batch-mixed acetic acid without detailed labeling and a chain of custody document that records every stop from plant to final user. Safety comes not just from packaging but from clarity; mixing mistakes cost time, product loss, and sometimes legal penalties. For years, our operators have shared best practices with downstream partners, reminding them to review container condition, to check lot numbers, and keep acids stored away from oxidizers and strong bases. We keep our formulation methods transparent, ready to answer any technical question that comes from safety managers around the globe.
Custom batch requests do come in, often at unusual volumes or specification points. Research teams developing new catalysts might require acetic acid solutions right at 24% or 67%, matched to their pilot lines, and we fill these orders with the chemist’s help, not just a computer system. Quality supervisors from our plant visit with their customer-side peers—sometimes standing shoulder-to-shoulder next to reactor controls, watching for foaming or exotherm during live acid additions. This constant feedback loop shapes both our standard product models and inspires improvements for future batches.
In certain markets, regulations limit maximum allowable acetic acid concentrations for public or consumer safety. Our compliance teams follow legal developments, updating production formats to align with those requirements. By keeping certifications current and materials traceable, we reduce risk for clients further down the chain—an approach that simplifies audits and helps keep both our operations and our partners’ in good legal standing.
A wide range of industries find value in this mid-to-high concentration acetic acid solution. Dyers in textile finishing rooms use it as a mordant and dye set; water treatment engineers use it for controlling alkalinity; chemists rely on precise molarity as a reagent; cleaning contractors select it for controlled acid washing. In-house, our staff handle these requests by reviewing process notes and, if necessary, adjusting shipping timelines around bottlenecked downstream demand.
Some end users work in food preservation, where diluted grades of our acetic acid solution become a base for pickling agents and flavor enhancers. For these users, it’s particularly important that no rogue byproducts or off-odors travel with the acid, so our teams double-inspect finished lots. This close attention to quality reminds us daily that every order supports someone else’s best work, whether that’s keeping drinking water palatable or textiles bright.
Polymers and plastics manufacturers turn to us for the same acetic acid solutions, where consistent downstream reaction rates mean fewer failed batches and higher product uniformity. Electroplaters occasionally require this grade to maintain smooth, rust-free finishes on sensitive metals. Each industry teaches us something new about acetic acid’s capabilities and challenges; our support teams adapt with every lesson learned.
Global supply chains challenge every manufacturer. Our teams track container news, customs changes, and transportation disruptions. We own and maintain our own on-site rail sidings, allowing direct transshipment to major partners. The goal is not just to deliver a drum or tote but to uphold predictable quality and honest lead times in the face of any disruption.
Since our founding, investments in equipment and training have kept our plant ahead of changes in both safety standards and process technology. Supervisors lead daily walkthroughs to check for line leaks or storage drum seal hiss—small signs that can prevent greater issues. If field reports raise any concern—for example, a batch seems slow to dissolve—we tap both plant and lab teams for root-cause reviews, adjusting protocols as needed. This approach avoids repeating mistakes, and our customers see the effect in product stability week after week.
Handling acetic acid requires both vigilance and respect for guidelines. Our plant routinely updates operating procedures to keep current with evolving health and environmental standards. Production crews receive regular refresher training, not just on the safe use of acid but on spill reporting and immediate neutralization. We've seen how small oversights can cause lasting impact, and that experience shapes our attitude toward both in-house and customer training.
We recommend every facility store acids away from oxidizers, open flames, and unventilated rooms. Our shipments include clear storage and handling instructions, revised whenever best practices emerge from our ongoing safety studies or external chemical industry findings. Distribution partners learn our routines, too—ensuring everyone in the chain approaches each drum or tote of acetic acid solution with the same respect and preparation as those who work our factory lines.
Manufacturers who survive and thrive listen more than they talk. Nearly every week, our technical support group gathers feedback—not just from major buyers but from small-batch users facing unique process snags. One food processor told us how switching to our acetic acid solution stabilized their batch fermentation, lowering product loss and improving shelf life. A plastics engineer pointed out how fine differences in water content altered their extrusion runs. We incorporate those lessons into both product refinement and into recommendations for new users.
We keep meticulous records, reviewing returns and complaints with the same seriousness as new orders. Our laboratory team studies each flagged sample for contamination, off-odor, or color shift. Over the years, this habit has sharpened our ability to predict customer needs before they arise—a true sign that strong experience sits at the core of our acetic acid solution production.
Supplying acetic acid solution [10% < Content ≤80%] is about more than blending acid with water. It’s a process rooted in technical skill, lived experience, and a dedication to meeting real-world industrial demands. Our team stands behind every lot shipped, knowing the acid we produce becomes part of countless products and processes across the globe. From our bench to your facility, we share both the responsibility and the drive to keep standards high—delivering more than just chemistry but a partnership built on trust, feedback, and continuous improvement.