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Ethyl Pyruvate

    • Product Name Ethyl Pyruvate
    • Alias Ethyl 2-oxopropanoate
    • Einecs 211-773-1
    • 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

    340912

    Cas Number 617-35-6
    Molecular Formula C5H8O3
    Molecular Weight 116.12 g/mol
    Appearance Colorless to pale yellow liquid
    Boiling Point 144-146 °C
    Melting Point -35 °C
    Density 1.032 g/cm³ at 20 °C
    Solubility In Water Slightly soluble
    Refractive Index 1.414-1.416 at 20 °C
    Flash Point 50 °C (closed cup)
    Purity Typically ≥ 98%
    Chemical Structure CH3COCOOCH2CH3

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

    Packing & Storage
    Packing 250 mL amber glass bottle with secure screw cap, chemical label displaying “Ethyl Pyruvate,” hazard symbols, and safety instructions.
    Shipping Ethyl Pyruvate should be shipped in tightly sealed containers to prevent leakage or contamination. It must be stored in a cool, well-ventilated place and kept away from sources of ignition and incompatible materials. Appropriate hazard labels and documentation should accompany the shipment, following all applicable regulations for chemical transport.
    Storage Ethyl Pyruvate should be stored in a tightly closed container in a cool, dry, and well-ventilated area, away from incompatible substances such as strong oxidizers and acids. Protect it from moisture, heat, and direct sunlight. Ensure storage in a dedicated chemical storage area, clearly labeled, with access limited to trained personnel, and follow all relevant safety guidelines and local regulations.
    Application of Ethyl Pyruvate

    Applications of Ethyl Pyruvate in Industrial Manufacturing

    As a direct producer of Ethyl Pyruvate, we serve established industrial clients who demand reliable raw material supply for advanced formulations and processing. Our expertise supports varied manufacturing segments, where compliance, formulation precision, and integration efficiency directly impact production outcomes. Below, we outline specific, field-validated applications for Ethyl Pyruvate, distinguished by regulatory standards, real formulation data, downstream incorporation points, and tangible final product types.

    1. Pharmaceutical Intermediates for API Synthesis

    Pharmaceutical manufacturers utilize Ethyl Pyruvate in the selective synthesis of anti-inflammatory and antioxidant active pharmaceutical ingredients (APIs), benefiting from its pronounced reactivity in condensation and esterification steps. Its high purity supports process consistency and reproducible batch outcomes in regulated environments, where intermediate stability and traceability are critical for downstream GMP compliance.

    Industry compliance standards

    • ICH Q7: Good Manufacturing Practice for Active Pharmaceutical Ingredients
    • USP–NF Monographs (where applicable for intermediates)
    • EU GMP Directive 2003/94/EC
    • Ph. Eur. General Chapters (for relevant intermediates/process chemicals)

    Typical usage ratio

    • 0.5% – 5% w/w based on target API synthesis pathway (ratio optimized to reaction molarity and conversion yield); adjusted for step-specific stoichiometry and batch scale

    Downstream process integration

    • Charged in controlled reactor stage after primary condensation; serves as a key synthon in carbonylation or esterification process Temperature, addition rate, and pH strictly controlled to minimize by-products; integration performed in closed systems under validated SOPs

    Final product types

    • Non-steroidal anti-inflammatory drug precursors (e.g., ketonic derivatives)
    • Antioxidant enzyme mimetics
    • API intermediates for clinical batch production
    • Building blocks for research and commercial pharmaceutical manufacturing

    2. Food Additive Synthesis and Ingredient Manufacturing

    Industrial food ingredient manufacturers employ Ethyl Pyruvate as a controlled-acidity agent and for synthesis of specialty flavor esters used in processed foods and beverages. The compound’s specific reactivity and odor profile enable selective modification of formulation taste and stability attributes under strictly monitored food safety systems.

    Industry compliance standards

    • GB 2760–2024 National Food Safety Standard for Food Additives (China)
    • 21 CFR 172.515 (U.S. FDA: Approved Flavoring Agents)
    • EFSA Panel on Food Additives and Flavourings (EU Regulation No 1334/2008)
    • HACCP, FSSC 22000, and ISO 22000 (for processing and quality control)

    Typical usage ratio

    • 0.01% – 0.10% w/w in final additive synthesis (subject to local limits and total formulation adjustment for overall acidity and flavor intensity)

    Downstream process integration

    • Introduced post-distillation in esterification lines; reacts with select acid or alcohol components under food-grade catalytic conditions
    • Process typically performed at 50–70°C under vacuum to retain volatility and purity; integration monitored via in-process GC-MS to confirm selective reaction

    Final product types

    • Flavoring ester components (e.g., ethyl 2-oxopropanoate-derived blends)
    • Acidulant intermediates for beverage stabilization
    • Processed fruit, dairy, and savory product ingredients
    • Specialty seasoning bases for RTE foods

    3. Fine Chemical Synthesis for Agrochemical Intermediates

    Producers of agrochemical intermediates rely on Ethyl Pyruvate for constructing carbonyl-containing building blocks critical to plant growth regulator and fungicide synthesis. Its precise reactivity enables controlled C–C bond formation in catalyst-assisted processes, maintaining product uniformity and conversion efficiency for downstream active ingredient finishing.

    Industry compliance standards

    • ISO 9001:2015 quality management systems (for chemical syntheses)
    • FAO/WHO Specifications for Plant Protection Products (where applicable)
    • OECD Good Laboratory Practice (GLP) principles for intermediate processing
    • REACH registration for handled chemical intermediates (EC regulation)

    Typical usage ratio

    • 1% – 7% w/w depending on target intermediate molecular yield; adapted according to stoichiometric excess or limiting reagent

    Downstream process integration

    • Added at reactive condensation phase in multi-step organic synthesis; frequently dosed under nitrogen with temperature ramp to 90–120°C as dictated by downstream route
    • Solvent control and agitation protocol maintained for maximum incorporation

    Final product types

    • Pyridine carboxylic acid intermediates (for plant growth regulators)
    • Alpha-keto ester scaffolds for novel fungicide actives
    • Precursor templates for herbicide R&D
    • Multi-functionalized intermediates for crop protection formulation

    4. Industrial Specialty Solvent and Extractant Applications

    Chemical processing clients in electronics and advanced materials sectors apply Ethyl Pyruvate as a specialty polar aprotic solvent or mild extractant for isolating sensitive organics. Its controlled volatility and low residue profile suit fine purification or separation steps, especially where traditional solvents cause decomposition or safety concerns.

    Industry compliance standards

    • SEMI standard C67 for solvent purity requirements (semiconductor and display applications)
    • ISO 14001:2015 for solvent handling and waste minimization
    • Internal plant SOPs on VOC emission and PPE
    • REACH registration for industrial solvent use (EU)

    Typical usage ratio

    • Varies from 5% – 30% v/v based on substrate load, target extraction, and solvent blend composition; adjusted for solubility and evaporation rate control

    Downstream process integration

    • Loaded into extraction or separation module pre-fractionation; temperature and agitation tailored to preserve labile substrates
    • Solvent recovery and purification steps directly tied to closed-loop recycling targets

    Final product types

    • Fine organic extracts for photolithography chemicals
    • High-performance thin film precursors
    • Conductive polymer intermediates
    • Purified specialty compounds for electronic device fabrication
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    Certification & Compliance
    More Introduction

    Ethyl Pyruvate: Proven Versatility from a Chemical Manufacturer’s Perspective

    What Drives Us to Make Ethyl Pyruvate

    Ethyl Pyruvate occupies a worthwhile niche in the world of organic intermediates. The market rarely talks about its genuine value, but for years in this factory, we have seen plenty of reasons for its steady demand. Our team does not just synthesize one more batch and ship it — we work directly with research institutes, pharma companies exploring new ways to deliver therapies, and industrial users who expect consistency in each drum. Our Ethyl Pyruvate is produced from food-grade starting materials, aligning our practices with international standards. Run after run, every synthesis passes rigorous checks using authentic analytical equipment.

    Our Ethyl Pyruvate comes out as a clear, colorless liquid. Slightly fruity in smell, it is easy to identify on the packaging floor long before QC comes in. The compound rarely finds itself on the cover of specialty journals, but it delivers consistent performance. The production process requires a gentle hand with temperature control, an understanding of purification sequences, and a commitment to finishing each lot with zero non-volatile residue. By managing every step ourselves, directly from crude distillation to final sampling, we minimize the need for extra downstream processing for our clients.

    Specifications That We Stand Behind

    In-house, our standard grade Ethyl Pyruvate (99% min purity by GC) provides what synthetic chemists expect for lab and commercial scale. Water content falls below 0.2% in all batches, checked by Karl Fischer titration before the storage tanks are approved for filling. In terms of acid value, years of fine-tuning our distillation setup help us hit 2 mg KOH/g or lower — most of our long-time customers value this number, since it means fewer side products for anyone doing sensitive organic synthesis downstream.

    Inspection after production stays central to our business. Gas chromatography and nuclear magnetic resonance (NMR) come standard in our lab, not just for documentation, but because they save time in troubleshooting anything unfamiliar, whether it’s a change in raw materials or a shift in ambient temperature messing with process kinetics. Quality verification on every production run builds the kind of trust we need to maintain for users who might bring up a slight color shift, odd odor, or out-of-spec residual solvents.

    Ethyl Pyruvate and Its Many Uses

    Around here, we talk to plenty of people who use Ethyl Pyruvate in different ways. Pharmaceutical users give the most feedback. Across several drug development projects, Ethyl Pyruvate serves as a clean, predictable reactant for synthesizing intermediates in drug molecules. One medicinal chemist told us that it works better for them than methyl pyruvate on select reactions, due to the better balance between reactivity and stability. The ester group holds up well to mild bases and acids, making it easy to use in multi-step synthesis. For those working with chiral centers or needing to avoid certain byproducts, purity and low water content go a long way.

    The flavor and fragrance industries reach out for it because it adds notes that are hard to describe but make a difference when mixing esters and aldehydes for enhanced fruit profiles. We have sent samples to flavor houses where Ethyl Pyruvate acts as a blending component, sometimes a bridge in a formulation, other times a key ingredient. Some industrial polymer designers also show interest, for cross-linking reactions and chain-building steps where the pyruvate moiety can introduce reactive sites. Agricultural formulators, too, mention Ethyl Pyruvate when searching for next-generation active ingredients because its structure can be tweaked selectively.

    What Sets Our Ethyl Pyruvate Apart From Alternatives

    For those debating between Ethyl Pyruvate and other alpha-ketoesters, the practical difference is often reliability in exposure to oxygen, humidity, and heat. Ethyl Pyruvate resists hydrolytic degradation noticeably better than its methyl cousin in our head-to-head storage tests. As someone moving drums from warehouse to tank year-round, this matters — less hydrolysis translates to more of the product available for your intended reaction. It naturally outperforms methyl pyruvate in this regard, which can spoil through moisture pick-up or unpredictable instabilities by the time it reaches the user.

    We see questions about the difference between in-house Ethyl Pyruvate and off-the-shelf versions. Here, we control the reactions. We have never had to buy intermediates from unknown supply chains and hope for the best. Knowing every step, from raw input selection to the final vacuum drying, lets us push for especially high lot-to-lot reproducibility. We know that switching sources can disrupt ongoing research and even commercial batches — feedback from customers confirms that samples from multiple suppliers sometimes show distinct reactivity, off-smells, extra byproducts or, in the worst cases, left-over solvents.

    How Purity and Handling Affect Your Outcomes

    In this industry, purity is more than a percentage number on a certificate. Each small impurity risk developing side-reactions, whether in pharmaceutical synthesis or sensitive polymer work. In one case, a client reported better yields in Knoevenagel condensations with our Ethyl Pyruvate compared to what they picked up from market traders. They traced the difference back to lower acidity and reduced water content in our batches. In scientific experiments, where reproducibility must be high, subtle differences make or break a confirmed result.

    Material must travel from our warehouse to loading dock without picking up color, or any smell indicating the early stages of breakdown. Our packing crew checks every container for seals and headspace before shipping. This care avoids the faint but real acetaldehyde odor that signals aging. Unlike some esters, Ethyl Pyruvate’s shelf life stretches comfortably over months with proper storage in tight drums, kept out of sunlight and away from open air — lessons we learned early after resolving a storage mishap in hot weather nearly a decade ago.

    Supporting Industry With Practical Know-How

    Over decades of making challenging organic chemicals, we have seen that keeping exact records and open lines of communication trumps slick advertising. We talk openly with users about solvating issues, compatibility with other solvents, and the safest way to run scale-up reactions. During some pharmaceutical projects, teams share their process outlines and rely on our first-hand troubleshooting experience to spot pitfalls before they lose time or raw material. A solvent choice or misjudged step-wise addition can throw off yields or quality, so having a technical backline makes a real difference.

    Our experience has taught us that not every batch run goes perfectly. Process variables slip, or a valve doesn’t seal as well as you expect. A key to long-term reliability has been refining our post-reaction workup. Removing volatile organic impurities, then layering on a heavier vacuum stage, ensures the finished product isn’t just within spec according to paper, but also holds up during actual use. A run that comes through crystal-clear after packaging is our metric for batch success, not just a number on a report.

    From Research to Production: Keeping Ethyl Pyruvate Consistent

    One difference between making Ethyl Pyruvate for lab-scale use and multi-ton industrial orders lies in volume control. On the kilo scale, a skilled technician reads the temperature and vapor pressure by eye, adjusting as needed. At full plant scale, we rely on automated sensors and redundant controls. Experienced chemical handlers catch issues by the way a reaction runs — unplanned pressure changes, shifts in condensate color, or a slower reflux can signal problems. Fixing them quickly keeps downstream processing on track.

    Every load gets tracked with detailed batch data, and issues get discussed in daily production meetings. We keep chromatograms, spectroscopic readings, and even manual notes on process anomalies for every lot. This system means that if a customer ever flags an issue — a trace impurity, or a change in reactivity — we have real process data in hand to diagnose and adjust recipes as needed. This work keeps the trust our customers in pharma, flavors, and industry have placed in us for years.

    Insights from Daily Use and Field Feedback

    Clients rarely stick to textbook applications. More often, the research teams we supply come up with new routes mid-project. Ethyl Pyruvate’s chemical structure lends itself to a wide set of transformations: condensation, amination, cyclization, and more. We’ve seen it used as an acylating agent, as a masked pyruvic acid source, and even as a building block for biologically active compounds. Nurse each step along, and you avoid side reactions, especially when purity and water content are reliably low.

    Feedback from contract manufacturing teams has shown us how little things matter — the way Ethyl Pyruvate pours, the thickness of drum walls, the tightness of outer seals. One team working on an agrochemical intermediate noted that they could run reactions for longer periods, without need for in-process purification, because the product arrived free of hydrolysis byproducts. This not only saved them solvent but also shaved off reaction time.

    Environmental Considerations and Best Practices

    Making Ethyl Pyruvate in large volumes brings inevitable questions about sustainability and environmental safeguards. Our facility’s waste streams pass through a combination of well-tested chemical treatment and biological remediation setups. We invest in closed systems for vapor management — not just for compliance, but to keep emissions undetectable during peak flows. The handling of input materials, solvents, and final containers all follow a cycle of reduction, reuse, and responsible recycling. Not every chemical plant can go green in a day, but ongoing investments keep us ahead of regulations and help customers uphold their own standards.

    Worker safety takes priority. Ethyl Pyruvate’s low toxicity profile helps, but operators still suit up in PPE and monitor air quality, especially when loading or cleaning feed lines. Every new batch triggers fresh risk assessments and drain checks. Our factory has seen the benefits of transparent incident logging, with every operator able to flag concerns or unsafe trends up the chain.

    Practical Hints for Users

    Team members regularly handle consultations from customers scaling up from lab to pilot plant. They often ask about solvent compatibility and the best temperature windows for their planned chemistry. For most reactions, we recommend starting with dry, oxygen-free conditions to preserve ketone reactivity. Avoiding excess base or strong acid exposure retains product integrity through multi-step runs. Our support team regularly reviews batch usage reports for anomalies. Proactive advice based on actual results can save clients unnecessary troubleshooting.

    Many users in flavor, pharma, and intermediates benefit from controlled delivery. We offer tight-head drums with nitrogen blankets and tamper-evident seals for large loads, and certified glass ampoules for kilo-scale work. Our logistics team provides short-turn shipments and documentation for each consignment to minimize exposure time.

    Connecting Experience With Real-World Outcomes

    Some manufacturers overpromise in their literature, claiming universal utility. We prefer honesty — Ethyl Pyruvate works wonders in certain places but not everywhere. What stands out from actual production is how it brings high value to technically demanding users: those who require predictable carbonyl reactivity, avoid side products, and rely on a transparent supply pipeline.

    The practical difference shows up in complex reactions, not the simple ones. Local pharma teams rely on us when product shelf life and compositional consistency mean the difference between a failed clinical batch and a regulatory green light. We do not just see our chemical as another number on an invoice but as a carefully protected value stream for every user who trusts us with their process.

    Looking Forward with Ethyl Pyruvate

    Our team, from synthesis chemists to plant operators and QC analysts, commit to constant improvement. We run routine cycle reviews to find yield improvements, trim waste, and tighten analytical standards year after year. Local universities sometimes tap our experience on the challenges of scaling organic intermediates, and we take feedback from each collaborative project seriously.

    There may be pressures from global supply dynamics, shifting costs, or regulatory updates — yet, our work focuses on keeping Ethyl Pyruvate not just available but consistently reliable. This hands-on approach to process, communication, and feedback has seen us through changing legal requirements and industry standards. We expect customers to ask hard questions — as manufacturers, we believe in building answers by experience, data, and continued investment in the basics.

    Trusted Chemical Supply in Real Practice

    Over the years, our production team has grown with the chemists and engineers who use our Ethyl Pyruvate. Some have worked with us for more than a decade, each improvement in product quality and workflow reflecting shared progress. Whether it involves resolving a minor color issue before a batch release, training new operators, or reviewing the root causes of out-of-spec readings, experience shapes every part of our process.

    Ethyl Pyruvate, for us, is more than an organic compound: it is a link between raw material handling, precise process control, technical support, and genuine customer trust. The end-users remain at the center of every run and every assessment. Our focus is not on flashy claims — it is on reliability, openness, and steady improvement.