Iodoform

    • Product Name: Iodoform
    • Alias: Triform Tetraformylmethane
    • Einecs: 200-874-5
    • Mininmum Order: 1 g
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
    • CONTACT NOW
    Specifications

    HS Code

    235088

    Chemical Name Iodoform
    Chemical Formula CHI3
    Molar Mass 393.73 g/mol
    Appearance Yellow crystalline solid
    Odor Distinct antiseptic smell
    Melting Point 119°C
    Boiling Point Decomposes before boiling
    Solubility In Water Slightly soluble
    Density 4.008 g/cm³
    Cas Number 75-47-8

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

    Packing & Storage
    Packing Iodoform is packaged in a tightly sealed 50g amber glass bottle, featuring a chemical label with hazard warnings and handling instructions.
    Shipping Iodoform should be shipped in tightly sealed containers, away from light, heat, and incompatible substances such as strong oxidizers. Transport in compliance with local, national, and international regulations for hazardous materials. Ensure secondary containment, clear labeling, and documentation, and handle with care to prevent leaks, spills, or contamination during transit.
    Storage Iodoform should be stored in a tightly closed container, in a cool, dry, and well-ventilated area, away from light and incompatible substances such as strong oxidizers and acids. It should be kept away from heat and sources of ignition. Proper labeling is essential, and access should be restricted to trained personnel. Avoid prolonged exposure to air to prevent decomposition.
    Application of Iodoform

    Applications of Iodoform in Industrial Manufacturing

    As a direct manufacturer of iodoform, we supply material that plays a critical role in several specialized downstream industries. Our quality-focused production and process understanding enable us to support stable, compliant, and application-specific usage across regulated markets. Below we outline major industrial applications for iodoform, detailing regulatory standards, recommended inclusion rates, integration points within customer processes, and representative finished product types.

    1. Antiseptic Manufacturing for Healthcare and Veterinary Use

    Iodoform remains an established active ingredient in the manufacture of wound care powders, surgical dressings, and antiseptic pastes, particularly in regions where its safety and antimicrobial action support diverse clinical and veterinary settings. Consistent performance under stringent microbial control requirements makes iodoform suited for formulations in contact with skin, mucosa, or open tissue, particularly where slow iodine release is desired. Regulatory frameworks dictate compositional controls, precise blending protocols, and full traceability of source ingredients to guarantee finished batch compliance and predictable iodine bioavailability in medical devices or animal treatments.

    Industry compliance standards

    • United States Pharmacopeia (USP)/National Formulary (NF), latest edition monograph for Iodoform
    • European Pharmacopoeia (Ph. Eur.) entry for Iodoform
    • Good Manufacturing Practice (GMP) for Medicinal Products (EU GMP Volume 4)
    • FDA 21 CFR Part 211 – Finished Pharmaceuticals

    Typical usage ratio

    • 3–20% w/w as an active antiseptic; final loads vary by intended concentration of available iodine and local regulation
    • Lower inclusion (1–2%) in compounded topical creams or ointments for sensitivity-limited applications

    Downstream process integration

    • Introduced during the final blending stages under controlled humidity and low-light to prevent decomposition
    • Requires micro-milling for particle size consistency prior to incorporation into powders
    • Often combined with excipients (zinc oxide, base oils, polyethylene glycol) and sterilized before packaging

    Final product types

    • Antiseptic surgical dressings (impregnated gauze, pads, wound plasters)
    • Veterinary wound powders and packing strips
    • Topical medicated ointments for human and animal use
    • Compounded dental pastes for minor oral procedures (where local regulations approve)

    2. Pharmaceutical Raw Material for Dental Formulations

    Iodoform is a key raw component in pharmacy compounding of root canal fillings, temporary sealing pastes, and canal disinfectants, notably in endodontic procedures. Dental manufacturers and clinical laboratories rely on the material for its antibacterial activity and radiopacity, which are critical for safe and traceable medical interventions. Strict pharmacopoeial references and dental device regulatory requirements guide the permissible formulations and restrict variations in impurity profiles and granulation.

    Industry compliance standards

    • European Pharmacopoeia (Ph. Eur.), Iodoform monograph requirements
    • ISO 7405: Dentistry – Evaluation of biocompatibility of medical devices used in dentistry
    • ISO 10993-series for biological evaluation of medical devices
    • FDA 510(k) premarket notification (for US dental products containing iodoform)

    Typical usage ratio

    • 35–60% w/w in root canal filling pastes and sealing compounds
    • Lower ratio (10–25%) when combined with zinc oxide, calcium hydroxide, or corticoid antibiotics

    Downstream process integration

    • Fined-milled iodoform introduced during the compound mixing process for uniform dispersion
    • Blending under vacuum to minimize entrained air and preserve sterility
    • Integration with oil-based or resin matrices according to prescribed particle size for end-use application

    Final product types

    • Temporary and permanent dental root canal fillers
    • Endodontic cavity pastes
    • Zinc oxide-iodoform cement
    • Resin-based dental sealants for clinical direct application

    3. Disinfectant Additive in Industrial and Institutional Cleaners

    Industrial hygiene and institutional maintenance sectors incorporate iodoform as an iodine-release additive where persistent antimicrobial activity is required. Specialty cleaner manufacturers blend iodoform with surfactants and inert carriers to provide enhanced germicidal properties for use in sensitive high-risk environments such as hospitals, laboratories, and animal facilities. Material traceability and occupational safety compliance are critical at every formulation and handling step.

    Industry compliance standards

    • OSHA Hazard Communication Standard (29 CFR 1910.1200) for chemical safety information
    • REACH Regulation (EC) No 1907/2006 for industrial chemicals in the EU
    • Biocidal Products Regulation (BPR, EU Reg. 528/2012) for surface disinfectants
    • NIOSH/CDC guidelines for occupational chemical disinfectant exposure

    Typical usage ratio

    • 0.5–2% w/w in concentrate disinfectant formulations
    • Adjusted to higher end for sporicide blends or where extended residual activity is needed

    Downstream process integration

    • Dry-blending into powder disinfectant bases, or added as a micronized slurry to liquid concentrates
    • Staged addition after pH adjustment and prior to canning or bottling
    • Formulated with stabilizers to prevent premature iodine release during storage and shipping

    Final product types

    • Powdered surface disinfectants for medical and animal care settings
    • Hospital-grade cleaning sprays and wipes
    • Odor-control and sanitation boosters for institutional maintenance
    • Biohazard and laboratory cleaning agents

    4. Reagent and Intermediate for Chemical Synthesis

    Specialty chemical and fine chemical producers employ iodoform as a halogenating and methylating agent or as an intermediate for synthesizing pharmaceuticals and agrochemicals. Accurate dosing and high-purity supply are priorities to ensure reproducible conversion efficiency in batch and continuous process reactors. Downstream users demand analytical transparency and regulatory compliance due to the onward integration of iodoform-derived moieties in strictly regulated finished products.

    Industry compliance standards

    • ISO 9001:2015 quality management system standards for chemical manufacture
    • Good Manufacturing Practice (GMP) for active pharmaceutical ingredient (API) synthesis
    • EPA (40 CFR Part 721) requirements for new chemical processing substances
    • REACH registration for chemical intermediates in the European Union

    Typical usage ratio

    • 0.2–1.5 molar equivalents relative to target substrate in most halogenation or methylation syntheses
    • Usage determined case-by-case based on stoichiometric balance and yield targets

    Downstream process integration

    • Charged directly to reaction vessels as a solid or pre-dissolved reagent after solvent charging and substrate addition
    • Handled under nitrogen or argon to minimize decomposition and maintain process integrity
    • Integrated at controlled temperature and agitation parameters for precise reaction kinetics

    Final product types

    • Pharmaceutical intermediates (e.g., iodinated aromatics, methyl ketones)
    • Pesticide intermediates and fine agrochemical compounds
    • Specialty monomers and functionalized building blocks for polymer industries
    • Medicinal chemistry research compounds

    5. Specialty Use in Veterinary Hygiene Products

    Veterinary preparation companies utilize iodoform in hoof care solutions, inflamed tissue driers, and anti-infective dressings where durable iodine exposure supports infection control under field or farm conditions. The inclusion content, processing, and product labeling must satisfy both animal health regulations and quality assurance audits for the husbandry sector. Blend uniformity and prolonged shelf stability are essential due to variable storage and usage conditions on farms, clinics, and transport environments.

    Industry compliance standards

    • Pharmacopoeia of Veterinary Drugs (China, European, or US compendia as applicable)
    • Veterinary Medicines Directorate (UK), EMA, or FDA guidance for veterinary topical treatments
    • ISO 22716 (Cosmetic GMP) for veterinary external-use products
    • Regulations on labeling and packaging for veterinary medicinal products (EU Dir. 2001/82/EC)

    Typical usage ratio

    • 2–8% w/w in powdered hoof dressings and footbath additives
    • Adjustments based on product type (liquid concentrate vs. powder) and species/end-market requirements

    Downstream process integration

    • Dry mixing into base mineral powders or dispersing in stabilized aqueous solutions during late-stage batch blending
    • Screened to ensure particle size uniformity for dusting and direct surface contact
    • Subjected to quality checks for iodine content uniformity and impurity profile

    Final product types

    • Hoof care dusting powders for dairy and equine use
    • Tissue drying pads and anti-infective dressings for animal wound care
    • Topical disinfectant solutions for herd health management
    • Powders and pastes for application to minor animal injuries and abscesses

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    Certification & Compliance
    More Introduction

    Iodoform: Direct from the Manufacturer’s Floor

    What Gets Manufactured, Stays Transparent

    Our years in the chemical industry have taught us that no two products behave quite like iodoform. Its golden-yellow crystals catch attention not just for their appearance, but for the way they cut through the noise in specialty chemistry. Every kilogram that rolls off our line has a specific reason for being there. Iodoform, known by its CAS Number 75-47-8, brings a dense molecular structure that packs three iodine atoms around a single carbon, fostering reactivity that other simple organohalogens simply can’t match. For folks working in pharmaceutical synthesis, veterinary antiseptics, and niche medical procedures, these properties spell reliability under the hands of skilled professionals.

    Why Iodoform Earns Its Place in the Lab

    Chemists are always putting new compounds through their paces, but plain talk: nothing replaces a reagent that does exactly what you expect, every time, batch after batch. Our iodoform stems from a tightly controlled process, designed not with the trader’s inventory in mind, but with the experimentalist’s bench. Consistency in melting point and crystalline structure holds weight. Iodoform’s melting point, typically hovering around 119°C to 123°C, enables predictable purification and formulation. Professional hands—no matter if in a midsize pharma shop or a government lab—trust that structure to behave as a solid phase disinfectant or a substrate precursor.

    Physical Appearance, Purity, and How It Matters

    On our factory floors, iodoform doesn’t just pass through an assembly line. Each run gets eyes on it. Bright yellow, crystalline, with a faint but recognizable antiseptic smell—those features tell stories from wound care clinics to seasoned organic chemists’ journals. The careful worker running the crystallization columns can tell in a glance whether an off-color batch signals a need to adjust raw iodine or ethanol feedstocks. We target a purity exceeding 98%, following a rigid batch test protocol. This isn’t about chasing a number for marketing, it’s about making sure side products from reaction leftovers don’t cloud downstream work, including those vital pharmaceutical active intermediates or veterinary ointments.

    Batch Consistency and Its Real-World Impact

    Anyone who’s had their project derailed by a rough, impure batch knows that not all chemical supplies are cut from the same cloth. Traders talk about origin or storage, but only at the manufacturer’s end can you see the care poured into every filtration and drying cycle. Our technical team has tweaked solvent extraction strategies over decades to eliminate mechanical grit, insoluble matter, and residual iodine. The end result is a free-flowing product: granular enough to measure and transfer with standard spatulas, yet lump-free so not a single gram gets wasted. Not every marketplace option can claim that. Seasoned formulators end up with less mess, fewer filtration headaches downstream, and no halt in pilot scale runs because of unexpected clumping or contamination.

    What Sets Factory-Direct Iodoform Apart from the Pack

    Third-party handlers move product between pallets and warehouses, sometimes adding layers of handling that strip out the subtle cues important to regular users. Fresh iodoform doesn’t take kindly to rough storage or extended transit under sunlight, which is why we emphasize climate stability and local QA right on the floor. Plenty of customers report seeing caked clumps or faded yellow granules from older inventories—signs the supply chain bit into their freshness. Our shipments leave the dock soon after QA, every drum carefully sealed up to keep light and moisture out. For research houses and API manufacturers, that freshness translates to reproducible reaction yields. In wound care or antiseptic settings, it’s about knowing each dose performs without surprises: color, solubility, and odor speak volumes to skilled practitioners, and off-notes prompt phone calls.

    Practical Uses That Stay Steady Over Time

    We manufacture iodoform with an eye to usage spanning several industries. Old-school surgical clinics once favored it for deep wound packing, and that legacy still matters in markets lacking chillers or widespread antibiotics. Plenty of our product heads to veterinary customers relying on dusting powders for hoof rot, mange, or foot infections in cattle and sheep. Its persistent antiseptic effect comes from the slow release of iodine, soothing wounds while suppressing microbial growth. Another share makes for chemistry labs or research centers, where iodoform acts as an analytical reagent—a staple in classic tests, like the famous iodoform reaction for methyl ketones, a teaching tool and preparative trick all in one.

    On the synthetic side, iodoform stands out as a handy intermediate, feeding into the preparation of various organoiodine compounds. Old processes used to demand more labor-intensive purifications, but today’s higher-purity product keeps bench workers from re-doing fractionations. It’s also valued in select niche industries: some dental cement formulas still benefit from its slow release of free iodine, and preservative labs sometimes test its effects in long-term solution stability. Each of these uses grows out of particular strengths—high iodine content, slow hydrolysis, reliable solid state stability—that competitors like bromoform or chloroform simply don’t deliver.

    Cutting Out the Guesswork: Specification and Quality Control

    Technical sheets support what gets put in every drum, but experienced buyers know the real story comes from on-site control. Each production step, from raw iodine weighing to wet grinding with sodium hydroxide, passes through point checks and spectroscopic tests. Spot checks for melting range, high-performance liquid chromatography, and mass loss on drying spot trouble before the lot ever leaves the plant. Workers run titrimetric iodine estimations to catch residual unreacted material. We target parameters—not for spec sheet show, but because every gram added to a formulation or wound means something in practice. Unwanted side-products spell rework, not just inconvenience.

    Few product lines withstand scrutiny like iodoform. The sharp smell and bright color let even a junior chemist catch problems by eye and nose. Each drum’s certificate reflects not just numbers, but the outcome of local QA, and feedback from power users. If hospital or bulk wound care buyers request a smaller mesh for topical preparation, we listen and shift process screens. Custom runs for research partners with unique purity curves see tweaks enacted within weeks, not quarters. Producers downstream tell us this responsiveness matters—the closer the source, the quicker the fix.

    Handling, Storage, and Ground-Level Lessons

    In our factory, workers take storage as seriously as production. Solids parked too long under lights can yellow further or slow-release vapor, making the atmosphere thick in poorly ventilated storage rooms. For industrial labs and hospital pharmacies, that translates to a need for airtight drum seals and cool, dry racks away from reactive solvents. Transport teams know to work fast—getting the product from filling to customer shelves shortens exposure and upholds purity standards. Hospital or clinic staff often remark on freshness by the crispness of the yellow and the directness of the odor, which only lasts if the source places a premium on deliberate, quick handling.

    Spills draw attention, not just because of the staining, but also because mishandling exposes that heavy, distinctive vapor—a smell that lingers but quickly dissipates with proper air flow. Workers keep PPE close and never leave residue on unprotected surfaces. New staff pick up these habits fast; it’s part of our onboarding culture. Downstream, pharmacists and veterinarians tell us our clear labeling and batch codes help track open dates, reducing spoilage and mismatched treatments. Small everyday changes end up reinforcing the sense that a product’s journey matters as much as its chemical profile.

    Lessons Learned Over Years of Manufacturing

    While some buyers focus on sticker price or advertised specifications, the real value shows up over years of steady supply. Out on our filling line, operators know that a good batch means fewer follow-up questions, faster reordering, and regular repeat business. This focus on relationship—direct, responsive, anchored in real-world results—keeps customers from walking away to generic suppliers. Industrial chemists often ask for transparency: what went into the last lot, why certain impurities show up or don’t, which process tweaks produced improvements. We open our records when those questions come up because we know the weight a poor batch carries downstream.

    Comparing Iodoform to Its Chemical Relatives

    Some customers arrive asking whether bromoform or chloroform fill the same role in their protocols. In practice, the answer comes down to physical and chemical properties. Chloroform evaporates more quickly, brings less mass for the same therapeutic or analytical punch, and hasn’t got that reliable, visible color marker. Bromoform, with its higher density, loses out on iodoform’s easy storage and stability. Our on-the-ground experience with these related compounds taught us early that iodoform wins out for situations where antiseptic action and visible evidence of placement matter. This is why it stuck around in clinics and research protocols longer than its cousins.

    We don’t push bromoform or chloroform as straight swaps. Our process chemistry staff points to iodide’s heavier atom, slower volatilization, and shelf presence as game-changers—especially under field conditions where environmental controls are scarce. No two chemical tools work for all jobs, but those who stay with iodoform appreciate the batch-to-batch similarity, the unmistakable visual check, and the slow, reliable release of antiseptic power other halogenated organics never quite match. That’s experience, not advertising.

    Regulation, Warnings, and No-Nonsense Labeling

    Anyone working with pharmaceuticals, medical, or veterinary supplies expects regulatory scrutiny. Our operation complies with local and international standards—not as a box-ticking exercise, but because partners on the other end trust us to save them time explaining each batch’s origins. We print traceable batch codes and loss-on-drying values right on the drums, and feedback often leads to updates in how and where purity stats appear on labels. We started marking lot numbers in more visible colors after repeat customers flagged confusion at receiving, and now lost time on warehouse checks dropped sharply.

    We post clear warning icons for those new to iodoform—spill hazards, eye contact, and inhalation risks aren’t minor technicalities. Each worker learns to handle small volumes with scoopers, and to keep skin protected. Shipping manifests spell out handling tips in plain language, reflecting stuff we’ve learned in daily routine, not just theory. In hospital environments, pharmacists and nurses emphasize that easy-to-read hazard coding and QoL data matters more than a glossy brochure.

    Talking with the End User: Feedback from the Field

    The feedback we get from customers operating far from big urban cores points out practical realities that spec sheets miss. In rural clinics, iodoform stored in mason jars or amber bottles often needs a clear shelf life marker, as refrigeration isn’t always available. Technicians checking color and odor before use avoid dosing mistakes by following cues honed over generations. One large animal vet reported that our free-flowing powder was easier to dose and less wasteful than previous caked suppliers, cutting down on loss at point of application and reducing the time spent prepping bandages for large livestock herds.

    From research centers, the message is similar: when synthesizing test compounds, every uncertainty in melting point, color, or solubility throws off timelines and eats into grant cycles. The quicker a technician can trust their starting material, the sooner work pivots from replication and clean-up to new discovery. Direct conversations between manufacturing chemists and bench workers translate into real process improvements: less over-drying, better flow rates, and fewer complaints about residual organic impurities.

    Local distributorships sometimes ask for slight packaging tweaks—smaller drums or reinforced liners for humid regions—and this sort of feedback makes its way back to our production line. The investment isn’t about flash, but straightforward improvements that save trouble down the road. This open loop between the floor and the field builds trust and steers development, far more reliably than any annual trade show or marketing campaign.

    Lessons from Surprises and Close Calls

    Not everything proceeds without hitches in chemical manufacturing. A power blip on the crystallization centrifuges once led to a slightly wetter batch, and the outcome was clear: shipping delays to key hospital networks, a round of apologetic calls, and internal process reviews that shaped our current backup plans. We learned to double-check vacuum driers and monitor humidity more closely—small steps that became everyday practice after a single mistake. Field returns over discoloration, even those with minor off-yellow tints, led us to improve storage barrels and inspect sealing compounds.

    Veteran staff reference these snafus in training sessions, teaching newcomers why procedural shortcuts never pay. Distributors who tried substituting generic iodoform for our branded drums quickly found their clients requesting a return to prior sources after a few mishaps with batch-to-batch differences. Longstanding partners stress this history of learning from error as part of the value they see in dealing directly with the maker, not just an anonymous source. Our story is built by time, mistakes, fixes, and honest disclosure, not claims of perfection.

    The Ongoing Value of Manufacturer Perspective

    Operating as a direct producer, we see upstream and downstream realities up close. Every change in raw iodine sourcing, every tweak in filtration solvents, and even the shifts in drum liners have a ripple effect that resellers rarely see. Hospital partners, field veterinarians, chemists, and procurement managers come back to us with unique questions—and the trust built from steady supply, clear answers, and personal handling makes those partnerships long-lived.

    We understand iodoform’s place in a legacy of chemical solutions: from early surgical packs to modern research, from hoof care to dental innovation. These use cases aren’t relics—they remain active because the underlying chemistry works and because direct manufacturer care shows up batch by batch. No inventory shuffle can substitute for years of batch logs, operator memory, and local QA teams watching every step. It’s that attention—from source to delivery—that turns a basic yellow crystal into a cornerstone of real-world application.

    Direct Lines, No Guesswork

    Supplying iodoform isn’t about crowding catalogues or maximizing margin through layers of resellers. It’s about clarity of source and process. Each customer, whether buying a few kilos for research or a shipping container for institutional use, knows their questions meet direct answers supported by boots-on-the-ground knowledge. A fresh batch, consistent color, reliable odor, and clear documentation tell their own story. After years at the heart of the process, it’s easy to see: iodoform’s reputation is built at the manufacturer’s desk, earned by precision and open-door accountability.

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