Products

Caprylhydroxamic Acid

    • Product Name: Caprylhydroxamic Acid
    • Alias: Octanohydroxamic Acid
    • Einecs: 702-931-1
    • 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

    492969

    Inci Name Caprylhydroxamic Acid
    Cas Number 7377-03-9
    Chemical Formula C8H17NO2
    Molecular Weight 159.23 g/mol
    Appearance White to off-white crystalline powder
    Solubility Slightly soluble in water, soluble in alcohol
    Melting Point 78-82°C
    Ph Range 5.0-6.0 (1% solution)
    Function Chelating agent, preservative
    Odor Odorless or slight characteristic odor

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

    Packing & Storage
    Packing Caprylhydroxamic Acid is packaged in a white, sealed 1 kg HDPE plastic bottle with tamper-evident cap and clear labeling.
    Shipping Caprylhydroxamic Acid is typically shipped as a stable, non-volatile solid or solution, packaged in tightly sealed, chemical-resistant containers to prevent contamination and moisture absorption. It should be stored and transported in a cool, dry place away from heat and direct sunlight. Appropriate hazard labeling and documentation accompany each shipment.
    Storage Caprylhydroxamic Acid should be stored in a cool, dry, and well-ventilated area, away from moisture, heat, and direct sunlight. Keep the container tightly closed and protected from light to prevent degradation. Store separately from incompatible substances, such as strong oxidizing agents. Use only with appropriate chemical-resistant containers and always avoid prolonged exposure to air and humidity.
    Application of Caprylhydroxamic Acid

    Applications of Caprylhydroxamic Acid in Industrial Manufacturing

    Caprylhydroxamic Acid serves as a high-performance chelating agent and preservative alternative in several regulated industries, delivering anti-microbial stability and formulation reliability where conventional systems encounter compliance or safety constraints. As the direct manufacturer, we supply globally to B2B partners who integrate this specialty ingredient into high-value finished goods, optimizing product shelf life and meeting demanding regulatory requirements across selected end-markets.

    1. Leave-On Skin Care Formulations (Cosmetics & Personal Care)

    Caprylhydroxamic Acid is widely adopted as a primary or secondary preservative in premium skin care lotions, creams, and serums, especially for brands formulating without traditional parabens or formaldehyde donors. Manufacturers appreciate its anti-fungal and anti-bacterial actions in emulsions prone to contamination, as well as its suitability for sensitive skin claims, all while meeting the rigorous global harmonization standards for cosmetic preservatives.

    Industry compliance standards

    • EU Cosmetics Regulation (EC) No 1223/2009 Annex V (as permitted preservative)
    • U.S. FDA 21 CFR 700.3 for cosmetic safety
    • China Cosmetic Ingredient Safety Technical Standard (2021 Edition)
    • ISO 22716:2007 (GMP for Cosmetics Manufacturing)

    Typical usage ratio

    • 0.3%–1.0% by weight; optimized based on total preservative load and emulsion system (higher levels in low water activity formulations, lower in blends with complementary mild preservatives)

    Downstream process integration

    • Post-emulsification addition at 40–45°C during cooling phase to prevent high-temperature degradation
    • Homogenized with other sensitive actives and chelators prior to bulk filling

    Final product types

    • Anti-aging facial creams
    • Sensitive skin serums
    • Daily moisturizing lotions
    • Dermatologist-formulated leave-on treatments

    2. Hair Care Product Preservation (Shampoo, Conditioner, Styling Creams)

    Hair care manufacturers utilize this non-paraben preservative to maintain formula microbial purity over extended shelf periods, especially in natural and sulfate-free product ranges where reduced preservative systems are necessary. The ingredient’s chelating activity provides residual protection against gram-negative and gram-positive bacteria in aqueous surfactant environments without impacting foaming or sensory properties, supporting stricter international quality protocols.

    Industry compliance standards

    • ASEAN Cosmetic Directive Table VI (Permitted Preservatives List)
    • Health Canada Cosmetic Ingredient Hotlist
    • REACH Registration (Europe)
    • Good Manufacturing Practice (GMP) ISO 22716:2007

    Typical usage ratio

    • 0.2%–0.7% active, depending on surfactant type and water content (formulation trials to set threshold for broad-spectrum preservation with minimal impact on rheology)

    Downstream process integration

    • Incorporated post-surfactant blend and prior to fragrance addition, stabilized in batch under constant stirring to ensure even dispersion
    • Final reconciliation QA before drum or bottle filling

    Final product types

    • Shampoos for color-treated hair
    • Pump-pack hair conditioners
    • Leave-on hair styling creams and gels
    • No-rinse scalp treatments

    3. Wet Wipes and Hygiene Product Microbial Control

    Caprylhydroxamic Acid is incorporated by wet wipes and personal care fabric product manufacturers to achieve preservative efficacy under challenging high-water and pH-neutral environments. Its stability in non-ionic and amphoteric surfactant systems enables extended shelf life for both adult and baby hygiene segments, and it frequently replaces traditional isothiazolinone compounds to comply with sensitive use standards and allergen restrictions.

    Industry compliance standards

    • ISO 11930:2019 (Microbiological Challenge Test for Cosmetics)
    • EU Ecolabel criteria for rinse-off and leave-on hygiene products
    • GB/T 27728-2011 (Chinese Standard for Wet Wipes)
    • FDA 21 CFR 210/211 (Hygiene Product GMP)

    Typical usage ratio

    • 0.25%–0.6% by formula, adjusted to water content and wipe substrate absorption

    Downstream process integration

    • Added to the aqueous preservation solution before mixing with substrate material
    • Continuous soaking or spray application onto wipes prior to flow-pack sealing

    Final product types

    • Facial cleansing wipes
    • Baby care wet wipes
    • Alcohol-free sanitizing wipes
    • Intimate hygiene cloths

    4. Sunscreen and UV Filter Formulations

    Many global sunscreen manufacturers turn to Caprylhydroxamic Acid for reliable microbial management in high-SPF and mineral sunscreen lines, where other organic acids show solubility or pH compatibility limitations. Its proven performance in oil-in-water and water-in-oil emulsion systems helps formulators meet broad photostability and microbial challenge requirements required in high-transit and export markets.

    Industry compliance standards

    • U.S. FDA OTC Monograph M020 (Sunscreen Drug Products for Over-the-Counter Human Use)
    • EU Cosmetics Regulation (EC) No 1223/2009 (Annex VI for UV Filters, preservative rules in Annex V)
    • Colipa Guidelines for Sun Product Microbial Safety
    • Australia NICNAS Cosmetic Standard

    Typical usage ratio

    • 0.3%–0.8%; tailored to overall SPF system, UV filter load, and global regulatory maximums

    Downstream process integration

    • Added during emulsion cooling after UV filters dispersion and before viscosity adjustment
    • Monitored by in-process microbial challenge testing prior to packaging

    Final product types

    • Mineral-based SPF 30–50+ creams
    • Spray-on broad-spectrum sunscreens
    • Daily sunblock facial moisturizers
    • Children's and sensitive skin UV protection products

    5. High-End Color Cosmetics (Creams, Foundations, Mascara)

    Producers of color cosmetic formulations such as foundation, concealer, and high-water-content mascara utilize Caprylhydroxamic Acid to achieve broad-spectrum antimicrobial stability without the need for strong phenoxyethanol or parabens, targeting compliance in markets with heightened ingredient disclosure and low allergenicity demand. Its mild profile supports extended shelf life in high-pigment and high-awareness formulations, especially in airless and soft-pack delivery systems.

    Industry compliance standards

    • EU Regulation (EC) No 1223/2009 (Annex IV: Colorants, Annex V: Preservatives)
    • U.S. FDA Voluntary Cosmetic Registration Program (VCRP)
    • ISO 22716:2007 (GMP for manufactured make-up products)
    • Japan MHLW Pharmaceutical Affairs Law for Cosmetics

    Typical usage ratio

    • 0.1%–0.5%, fine-tuned based on total pigment load and oil/water phase balance (confirmed by challenge test on final product batch)

    Downstream process integration

    • Introduced into water phase after pigment mill dispersion and before final emulsification for creams and fluids
    • Integrated into mascara slime phase under controlled cooling

    Final product types

    • High-pigment liquid foundations
    • Cream concealers in stick format
    • Water-based mascaras and eyeliners
    • Pressed cream blushes

    Free Quote

    Competitive Caprylhydroxamic Acid prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please contact us at +8615365186327 or mail to admin@ascent-chem.com.

    We will respond to you as soon as possible.

    Tel: +8615365186327

    Email: admin@ascent-chem.com

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    Certification & Compliance
    More Introduction

    Caprylhydroxamic Acid: Our Best Experience as the Manufacturer

    Practical Understanding of Caprylhydroxamic Acid

    Every day in our plant, the production of Caprylhydroxamic Acid connects us directly to the changing expectations of formulators and consumers in personal care. Our chemists spend time analyzing feedback from those who blend this molecule into skincare, makeup, and hair care. As the people behind the reactors and purification step, we notice the shift: fewer customers want preservatives based on parabens or formaldehyde releasers. Many turn to Caprylhydroxamic Acid because it aligns with the values that both formulators and end-users expect. We listen to their questions about purity and trace impurities, and that open channel drives our ongoing quality conversations inside the factory.

    Caprylhydroxamic Acid, or CHA, presents an alternative to old-fashioned preservatives. Our team works directly with raw material vendors to ensure high-quality octanoic acid feeds into the process, and our model main product offers assay values that surpass 99%. That precision lowers the risk for downstream application and minimizes the potential for off-odors or instability in finished cosmetics. We understand exactly which analytical results matter to formulators, as many companies use Caprylhydroxamic Acid to safeguard natural and “clean beauty” label claims.

    Manufacturing Realities: Why We Focus on Purity

    Customers expect full documentation, but what matters most is the material itself. Quality in Caprylhydroxamic Acid starts long before it gets packed. Our operators oversee fermentation-derived intermediates, manage the amide formation with tightly controlled additions, and monitor the pH at every step. We choose this demanding process for one reason: the less you leave to chance, the greater the reliability in your end formula.

    People ask whether our Caprylhydroxamic Acid differs from versions sourced elsewhere. As direct manufacturers, we do not purchase and repack someone else’s powder. Instead, we select equipment and set purification targets that go beyond basic compliance. Routine use of HPLC and GC instrumentation uncovers any side-products at sub-percent levels. These extra controls build trust with brand owners who need consistent results with every batch.

    Our standard model, CHA-9801, leads with a fine, free-flowing white powder, maintaining moisture content below 0.5% and impurities below 0.2% (by HPLC). Users benefit by not seeing specks, clumps, or discoloration during dissolution or mixing into emulsion systems. By keeping heavy metals far below global regulatory thresholds, we support even the most sensitive product claims. Formulators know that high-purity material reduces analytical rework and mitigates supply headaches.

    Usage Knowledge from the Source

    We talk to formulators—from global cosmetic giants to boutique natural startups. Most professionals using Caprylhydroxamic Acid seek broad-spectrum antimicrobial activity without sacrificing their formula’s natural story. Many customers avoid single-use phenoxyethanol, methylparaben, or formaldehyde donors, either due to regulations or market demand. Caprylhydroxamic Acid, especially at our offered purities, enables that goal.

    Clients typically apply CHA at 0.2% to 1% depending on the system’s water content, pH, and blend of other ingredients. During our technical visits, we demonstrate the steps to dissolve it in the aqueous phase at room temperature. Each batch from our plant disperses quickly in most solvents, as we regularly test solubility and sedimentation during our quality checks.

    We observed that suppliers sometimes confuse customers by offering technical-grade Caprylhydroxamic Acid for cosmetic use, which brings headaches in finished products: color drift, odor, or even microbial instability. We developed our model CHA-9801 based on hands-on collaboration with chemists who run challenge testing, stability studies, and scale-up batches. With every drum and pail, we supply application guidance and answer process questions directly, not through layers of sales reps. This commitment prevents failures in the end use and matches formulators’ expectations for quick troubleshooting.

    Differences that Come from Manufacturing Control

    Some see powdered Caprylhydroxamic Acid as a commodity. That view misses the real challenges we deal with in production. The purity level, flow characteristics, and even taste and smell matter. Unlike simple repackaging, our investment in drying controls and air-handling makes clumping, yellowing, and surface oxidation rare in our material.

    Most commercial Caprylhydroxamic Acid originates from a handful of global producers. There are clear differences between lots that undergo minimal purification and lots from true direct manufacturers that invest in robust clean-room procedures. We know this because we have purchased global samples ourselves and compared odor intensity, dissolution rate, and color under identical lab conditions. Feedback from clients also helps us see when less refined products create hassle: slow dissolution, inconsistent color, or high residue left in tanks.

    By holding specifications tighter than what’s common, we see less variability across runs, and this matches what formulators want on the bench. Packing and storage matter, too. Moisture leaks through jars exposed for weeks in high humidity, and for this reason, we invest in double-layer bags and sealed drums. Regular in-process monitoring of humidity and ambient temperature reduces the risk of caking, especially for clients making large batches without dedicated dry rooms.

    Supporting Safe and Effective Beauty Products

    Safety remains a central concern. Formulators regularly share their challenges with “clean” preservatives. Many broad-spectrum solutions lose performance at lower pH or react with iron, leaching color into creams and gels. Our Caprylhydroxamic Acid maintains full activity at pH values from 4 to 8, which many botanical-based systems prefer. We tested this in real client formulations: body balms, lotions, sheet masks, and hair conditioners. Every time we support a client through a challenge study, we learn more and report those details back to our technical staff for continual improvement.

    Compared to old preservation systems, Caprylhydroxamic Acid works well even in systems high in oils, esters, or plant extracts. Unlike phenoxyethanol or benzyl alcohol, CHA will not drift the fragrance or turn cloudy when exposed to typical concentrations of surfactants or plant actives. In fact, many customers split out Caprylhydroxamic Acid from complex blends for precisely this versatility.

    Responsible Manufacturing Means Transparent Supply Chains

    Direct responsibility for every kilogram manufactured sets our commitment apart. Each week, our quality control team reviews raw material certificates, in-process readings, and finished sample analyses. We operate at a scale that allows us to reject batches that don’t fit our impurity profile. Few resellers can afford to set such thresholds since they manage price fluctuations and inventories, but not process innovation itself.

    Caprylhydroxamic Acid is more than an ingredient code in a data sheet, it’s a result of years advancing our process. In the early days, some material appeared with a mild odor or a hint of color. We identified trace aldehydes and changed our purification columns to reduce those by-products, investing in vacuum drying cycles and tighter filtration. This attention to off-notes remains central to our current QC checks. We keep detailed records to trace every lot, from raw acid source to packed pails headed out. Clients can ask about any lot and have a full answer within hours.

    Real Solutions for Formulation Challenges

    We hear concerns from both small and large brands: How will Caprylhydroxamic Acid interact with emulsifiers? Will it affect fragrance? Does packaging compatibility require change? Our technical advisors visit customers’ labs, monitor their pilot-scale mixes, and run bench-top compatibility checks. In hair masks and sunscreens, for instance, water activity may be low, and the risk of microbial growth may be subtle. Our product usage history and real-world case studies help anticipate these pitfalls.

    Some clients initially doubted whether Caprylhydroxamic Acid could handle fungal and bacterial risks in multi-phase, surfactant-rich formulas. By sharing sample challenge tests and by troubleshooting batches with unexpected cloudiness or viscosity shifts, we prove that CHA can meet expectations—when handled and dosed correctly. Clients learn best practices through regular feedback loops, giving us more insight into how to refine future production.

    Customers who combine Caprylhydroxamic Acid with glycols, such as pentylene glycol, often report improved microbial challenge test outcomes and extended shelf life. We have supported pilot lines and full-scale launches in Europe, North America, Southeast Asia, and other regions—with a record of helping teams move from pilot to production smoothly.

    Why Our Caprylhydroxamic Acid Performs Differently

    Field reports demonstrate that impurity content, particle size, and flow can impact formulation outcomes. We know of brands forced to recall products due to poorly characterized raw materials, with trace metals and off-odors leading to complaints. Our process improvements—from decolorization to final particle size classification—reduce these risks to the lowest practical level.

    Many users ask about storage and shelf-life. We validate every batch through ongoing stability checks, and our warehousing set-up ensures material stays dry, cool, and unexposed to sunlight. Every outbound drum gets time-stamped and lot-coded, with technical documentation ready, not as a formality but as a tool for traceability. Brands needing rapid scaling get confidence knowing our next batches will match the sample sent months before.

    Continuous Improvement Drives Competitive Advantage

    Our chemical engineers and production leads huddle every quarter to review process changes, updating controls based on regulatory movement and shifting industry requirements. The pressure for shorter supply chains and reproducible quality gets real-world answers from our focus on in-house process control. Caprylhydroxamic Acid production isn’t just a line item—it’s a demonstration of how investment in plant equipment and training eliminates waste, upholds safety, and reduces customer headaches.

    A few years ago, we installed higher-capacity filtration and air-handling. The investment lowered the odds of airborne particulate contamination. This led to fewer customer complaints and smoother processing for those who needed ultra-clear aqueous phases. We regularly recalibrate our monitoring tools and adapt the packing process to customer feedback, all to serve the next wave of preservation technologies.

    Supporting Regulatory and Sustainability Needs

    Our regulatory team keeps close tabs on emerging standards in North America, Asia, and the European Union. We built our documentation and quality standards to ease audits and review processes for clients. Whether it’s responding to new cosmetic ingredient review updates or regional guidelines on impurities, we adapt our process and tracking so brands can move through regulatory reviews quickly. Our technical support documents help major brands, but they also level the playing field for smaller innovators introducing new concepts.

    Sustainability matters more each year. Our raw material sourcing prioritizes renewable and traceable feedstocks. We upgraded parts of our process line to reduce energy and water use. Our main reactors now use recirculation cooling loops and vapor recovery, shrinking our environmental footprint compared to old open-batch processes from a decade ago. This lets clients incorporate Caprylhydroxamic Acid into products targeting stringent clean-label and natural certifications.

    Meeting Market Needs with Experience and Commitment

    Over years of production, our staff learned that the real measure of any specialty chemical comes from how it performs on the client side—not what a spec sheet shows. Formulators and product developers rely on us for reliability, transparency, and practical support. Our continued focus on manufacturing excellence means fewer batch failures, easier scale-up, and less time spent troubleshooting unanticipated issues with preservation.

    Today’s beauty, health, and personal care market demands more than just chemical ingredients; it demands confidence in supply, safety, and performance. We stake our reputation on Caprylhydroxamic Acid made within our own facility, not as a relabeler or repacker, but as actual manufacturers with boots-on-the-ground knowledge. By keeping in constant conversation with downstream users, and by building every run to the tightest specifications, we help the best product stories stay alive in a crowded market.

    Conclusion: Working with Caprylhydroxamic Acid as Actual Producers

    The journey from raw octanoic acid to finished Caprylhydroxamic Acid takes real commitment, skill, and constant re-evaluation. Every step, from raw procurement to final packing, gets guided by direct customer feedback. We pride ourselves on being true manufacturers with real experience—delivering confidence to every formulator and every brand that values both performance and long-term partnership. It is our job to make sure that every batch matches the needs of the most demanding cosmetic developers, today and for the next generation of clean and effective personal care products.

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