Lead Acetate

    • Product Name: Lead Acetate
    • Alias: Sugar of Lead
    • Einecs: 206-104-4
    • Mininmum Order: 1 g
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
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    Specifications
    HS Code 195088
    Chemical Name Lead Acetate
    Chemical Formula Pb(C2H3O2)2
    Cas Number 301-04-2
    Molar Mass 325.29 g/mol
    Appearance White crystalline solid
    Melting Point 280 °C
    Solubility In Water 44.3 g/100 mL (20 °C)
    Odor Slight acetic acid odor
    Density 2.55 g/cm³
    Boiling Point Decomposes
    Toxicity Highly toxic
    Ph 7 (aqueous solution)
    Common Uses Laboratory reagent, hair dyes, textile printing

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

    Packing & Storage
    Packing White, opaque plastic bottle labeled "Lead Acetate, ACS Grade, 500g," with hazard symbols, manufacturer details, and secure screw cap.
    Shipping Lead Acetate should be shipped in tightly sealed containers, clearly labeled as toxic and hazardous. Transport must comply with local and international regulations for hazardous materials. Protect packages from moisture and physical damage, and ensure handling by trained personnel using appropriate personal protective equipment. Avoid shipping with incompatible substances.
    Storage Lead Acetate should be stored in a tightly closed, labeled container in a cool, dry, well-ventilated area away from incompatible materials such as strong oxidizers and acids. It must be kept out of direct sunlight and moisture. Store in a designated poison cabinet and ensure access is restricted to authorized, trained personnel. Use secondary containment to prevent leaks or spills.
    Application of Lead Acetate
    Purity 99%: Lead Acetate with 99% purity is used in electroplating processes, where it ensures uniform metal deposition and improved surface finish.Molecular Weight 325.29 g/mol: Lead Acetate with a molecular weight of 325.29 g/mol is used in laboratory analytical chemistry, where it provides accurate quantitative detection of sulfide ions.Melting Point 280°C: Lead Acetate with a melting point of 280°C is used in thermal decomposition studies, where it offers stability at elevated temperatures for reliable analytical results.Particle Size <75 microns: Lead Acetate with particle size below 75 microns is used in pigment manufacturing, where it enables fine dispersion in paint formulations.Aqueous Stability: Lead Acetate with enhanced aqueous stability is used in textile dyeing applications, where it maintains consistent color fixation performance.Reagent Grade: Lead Acetate of reagent grade is used in qualitative inorganic analysis, where it guarantees reproducible precipitation reactions.Technical Grade: Lead Acetate of technical grade is used in the production of lead soaps, where it contributes to uniform saponification and product consistency.Low Impurity Content: Lead Acetate with low impurity content is used in gold refining processes, where it prevents contamination and ensures high-purity gold yield.Hydration State Trihydrate: Lead Acetate trihydrate is used in laboratory reagent preparation, where it provides accurate stoichiometric calculations for solution preparation.Solubility 443 g/L at 20°C: Lead Acetate with solubility of 443 g/L at 20°C is used in acetate salt formation, where it offers rapid dissolution and process efficiency.
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    For samples, pricing, or more information, please contact us at +8615365186327 or mail to admin@ascent-chem.com.

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    Certification & Compliance
    More Introduction

    Lead Acetate: Direct from Producer to Professional

    What Sets Our Lead Acetate Apart

    Manufacturing chemicals gives us a straight line to quality. With every batch of Lead Acetate, our team sees the raw materials go from start to finish, letting us keep impurities low and consistency high. Most customers who buy it for industrial use need a material that won’t introduce unpredictable variables into their process. Paint and pigment makers have told us that even a small deviation in lead content or crystal quality changes their end-product performance. For them and others, repeatability isn’t a luxury—it’s essential. We have seen through careful analysis that keeping heavy metal impurities below the tightest benchmarks helps manufacturers avoid costly rework and regulatory headaches.

    This Lead Acetate comes in a trihydrate form, presenting as white crystalline solids, a predictable product our clients have worked with for years. Our production uses dedicated reactors for precursor synthesis. We never batch other compounds in those same lines—so there’s no risk of cross-contamination. Parameters such as pH, temperature, and filtration rate stay locked down throughout processing, based on controls developed over many years of hands-on operation. These tight controls mean you receive Lead Acetate that dissolves easily in water, with a reliable solubility profile crucial for analytical chemistry, textile dyeing, or pharmaceutical research.

    In labs and industrial applications, Lead Acetate shows up where clarity and accuracy matter. Analytical chemists use it because it forms distinct precipitates in the presence of certain ions, making qualitative analysis straightforward. Leather tanners and dye houses value it for its stable chemical behavior under the demanding conditions of their processes. In the manufacture of stabilizers for plastics or in gold extraction, users care about both the purity and the moisture content—too much water, and industrial reactions slow down; not enough, and the powder clumps or disperses unevenly. With our process, the hydrate content falls within the narrowest published tolerances.

    Some producers offer Lead Acetate grades with variable moisture levels or lax standards for trace elements. In our factory, every shipment meets pharmaceutical and industrial grades, verified by our in-house lab before it makes it out the door. The in-house approach isn’t just about passing tests—it allows us to support research customers with special requirements, or to work with textile clients who look for custom particle sizes. Whether you’re running daily wet-chemical analyses or scaling up for mass production, you avoid shipment-to-shipment surprises.

    Applications Rooted in Experience

    Over time, we’ve watched Lead Acetate migrate from basic chemistry classrooms to far more specialized environments. Its reputation comes down to practical results. Take gold mining—miners have used it to separate noble metals since the late nineteenth century, relying on precise interactions between the acetate and dissolved metal solutions. If Lead Acetate brings along sulfur or iron contamination, you’re more likely to face downstream problems in your gold recovery. Our plant team tests every ton for these contaminants, so downstream users don’t lose efficiency.

    In textile dyeing, consistency saves money. One of our oldest clients operates looms that produce over a kilometer of fabric a day. Dye uptake depends on every chemical used in the vat, lead salts included—so we keep granular control not only over the degree of hydration, but also on particle size and flow. Finer particle size ensures easy dissolution and even dispersal in dye baths. Operating as a manufacturer lets us tweak filters and dryers, responding directly to feedback from dye plants, rather than guessing at what end-users need from a distance.

    The analytical chemistry sector needs reliable reagents for qualitative spot tests or gravimetric analysis. Even graduate students can see confusing background signals if the lead salt carries traces of magnesium or zinc. We go through extra steps in recrystallization and filtration to make sure the Lead Acetate won’t introduce side reactions that governments and labs have flagged as persistent problems. Whether the customer comes from education, mining, or research, those details prevent wasted effort and unrepeatable results. Being hands-on with every part of the supply chain gives us the leverage to solve those small but crucial issues that traders or repackagers simply pass along.

    The medical field presents extra hurdles. Formulators who use Lead Acetate in research expect detailed purity reports because trace contaminants can change biological interactions or diagnostic outcomes. We’ve developed reporting protocols compatible with the strictest pharmaceutical audits. If a batch falls short on any indicator, it doesn’t get released. Years of back-and-forth with regulatory bodies have shaped how we monitor each production run, so medical chemistry clients can track every detail.

    Differences That Matter in Real Use

    A lot of buyers ask what’s different about sourced-from-manufacturer Lead Acetate compared to the bottles they see through traders or storefronts. We learned from experience that batch size, package type, and shelf life impact end-use more than any theoretical advantage. Our direct supply means large users can ask for 25 kg to 1000 kg runs in specialty-lined drums, sealed to block humidity. That approach keeps the product from caking, a common headache for high-humidity regions. Small packs for analytical labs come nitrogen-flushed to prolong shelf stability.

    We’ve worked through quality claims from new clients coming from re-packagers: caked solids, accelerated oxidization, or off-odors that spoil entire production lots. In our own plant, package handling gets just as much attention as chemical synthesis. Humidity and airborne dust both ruin fine chemicals. By packing within minutes of final drying, we can deliver Lead Acetate that opens clean, pours easily, and stays workable—no scraping out fused lumps, no wasting batches on poorly flowing stock.

    Our team receives raw material shipments straight from dedicated miners and refineries, helping us avoid tramp elements and recycled metals that other suppliers sometimes introduce. Refined lead gives us a head start in offering a product suited not just for bulk industrial scale but also for the strict demands of analytical testing and research. Traceability stays clear—every bag and drum can be backtracked to a specific day, process line, and even operator panel. When we talk about difference, it’s not just a marketing angle; it’s born from seeing what can go wrong without this kind of process control.

    Models and Specifications: Practical, Not Theoretical

    Several variants exist, but our core production line centers around Lead Acetate Trihydrate, due to its reliable handling properties. The trihydrate type meets analytical reagent grade requirements, with lead content over 99.5 percent and tight controls on arsenic, iron, copper, and other metallic traces. Particle size affects flow and dissolution speed; depending on application, we custom-mill for high-mix or low-mix needs. For customers in textiles and pigment processing, we suggest our finer, micro-crystalline batch. These grades flow freely and resist caking. Bulk mining and research clients often ask for larger granulates—easier to dose by the ton, and dust levels stay low in transfer.

    We once fielded a request from a university team exploring new colorants for organic cotton—they needed a batch with sharply reduced residual nitrate and potassium, which our technical team validated through extra rounds of ion-exchange and spectral analysis. This direct feedback loop helps us improve product standards for new market segments, instead of relying on third-party recommendations or lagging industry updates. Over sixty percent of our Lead Acetate now ships under specifications designed together with our clients, meeting exact test results on moisture, lead content, and trace minerals.

    Other materials—like sodium or calcium acetates—don’t match the chemical precision or reactivity profile of Lead Acetate. In analytical labs, sodium acetate simply fails to substitute: colorimetric and precipitation reactions depend on lead ions’ distinct reactivity. In textile and pigment manufacture, the wrong salt can cause uneven shades or lower yields due to different solubility or reaction rates. Our production team keeps a database of these performance differences, updated every year based on tracking returned goods and performance reports from partners.

    Chromate or nitrate grades of lead have much stricter handling requirements and often introduce regulatory scrutiny. Many users switch to Lead Acetate because it simplifies transport and storage as a stable, moderate-toxicity compound, without the extreme shipping rules that come with other lead salts. Our safety protocols cover everything from worker exposure on the line to best practices for downstream users. We work alongside clients on safe handling and disposal, to keep compliance on track—regulations change frequently, and we stay in sync by sending regular updates direct to site quality managers.

    Managing Risks and Supporting Responsible Use

    Lead-based chemicals require serious attention to safety. As a manufacturer, we can track every gram from sourcing through shipping, which offers a solid baseline for safe use. We only source lead from certified, ethical refiners, cutting out recycled sources that risk introducing radioactive or high-toxin residues. Every batch certificate covers not just the basics but anything our clients have flagged as a potential concern, from radionuclide content to phthalates picked up during bagging. We invite user audits because open doors build trust faster than certificates or data sheets.

    There’s public concern around heavy metals in industrial supply chains, and with good reason. Our plant puts hundreds of tons of material through wastewater and emissions controls each month. The process isn’t cheap, but catching and re-treating every drop and particle keeps us off the front pages for spills and violations. Factories without in-house water treatment push those costs onto the public, or customers through penalty fees and supply interruptions. We’d rather invest in permanent systems than patch up problems after the fact. Mistakes and negligence in heavy metals make headlines, and nobody wants their brand dragged into a recall or environmental suit.

    We keep staff trained and equipped for process emergencies—runoff, spills, or technical faults. Years ago, we partnered with local firefighting and environmental agencies for regular drills. These partnerships gave us a first-hand look at what happens when chemical plants cut corners or let tradition set the rules. Our operators know what to do when indicators spike or mechanical errors occur—not just because of manuals, but from working together every quarter in realistic scenarios.

    For customers, we go beyond leaflets. We run workshops on safe handling each year and have technical teams who troubleshoot on-site bottlenecks or accidents if needed. Our bulk clients often ask about secondary containment, air monitoring, and worker health tracking—topics that surface through genuine use, not abstract regulatory discussion. If a client changes their plant layout or upgrades storage, we share lessons learned, even if it means pausing shipments to double-check fit. Knowledge and transparency keep everyone in the loop, no matter the industry.

    Looking Ahead: Solutions Born from Direct Experience

    In chemical manufacturing, the only certainty lies in ongoing improvement. Lead Acetate is not immune to demands for safer, cleaner, more efficient products. Each year brings new regulatory targets from the EU, North America, and Asia—sometimes overlapping, often contradictory. Our in-house compliance team monitors these trends, preparing early to avoid sudden shocks. For new product lines, we often engage in environmental life-cycle analysis. This approach highlights areas for waste reduction and efficiency before bureaucrats make them law. It’s taken us years to reach a point where every waste stream and air sample gets traced, logged, and reviewed.

    The path forward includes both process and product shifts. On the process side, our team explores close-loop water use, on-site reagent recycling, and high-precision filtration to reduce chemical loss. New filtering media and scheduled batch breakdowns cut downtime and batch-to-batch contamination risk. As for product development, we’re working with a growing number of partners to test biobased alternatives or lower-toxicity stabilizers that could reduce reliance on legacy lead chemistry in certain end-uses.

    Automation, remote monitoring, and data-driven maintenance allow us to safeguard plant safety—responding faster to deviations, locking in the expected quality, and uncovering inefficiencies. More importantly, they free skilled hands to focus on high-level process tweaks and customer technical support. Automation won’t cure every problem, but over the years, we’ve seen it cut raw material waste, limit batch rejects, and improve our feedback speed when customers flag new needs.

    Customers care about how their sources handle risk and stay aligned with emerging standards. Direct, responsive manufacturing offers visibility—batch records, daily online updates, trusted field teams for audits. A trader can’t answer for a product’s history; a manufacturer stands in front of each outgoing shipment. That’s why our clients keep coming back when their compliance departments set tougher standards, or end-users demand product change.

    Lead Acetate fills a key slot in chemical industries: predictable, responsive, and tested at every step. By managing every link in the production chain, we support both innovation and safety, ensuring each drum or bottle that leaves our floor meets what industry asks for—today and in the shifts to come.

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