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HS Code |
491380 |
| Product Name | Amino Microemulsion |
| Type | Microemulsion |
| Appearance | Clear to slightly turbid liquid |
| Color | Pale yellow |
| Odor | Mild, characteristic |
| Ph | 5.0 - 7.0 |
| Solubility | Water soluble |
| Main Function | Amino acid delivery |
| Application | Cosmetic formulations |
| Storage Temperature | Room temperature |
| Shelf Life | 12 months |
| Density | 1.00 - 1.10 g/cm3 |
| Recommended Usage | 2-5% |
| Origin | Biotechnological synthesis |
| Preservatives | Paraben-free |
As an accredited Amino Microemulsion factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | The Amino Microemulsion is packaged in a sturdy 5-liter white plastic jerry can, featuring a secure screw cap and clear labeling. |
| Shipping | Amino Microemulsion is shipped in tightly sealed, chemically-resistant containers to prevent leaks and contamination. It should be stored and transported upright in a cool, dry place, away from direct sunlight and incompatible substances. Standard shipping includes appropriate hazard labeling and safety documentation as per regulatory requirements for chemical transport. |
| Storage | Amino Microemulsion should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area. Keep the product away from direct sunlight, heat sources, and incompatible substances. Avoid freezing. Store at temperatures between 5–30°C (41–86°F). Ensure the storage area is equipped to contain spills. Keep out of reach of children and unauthorized personnel. |
Applications of Amino Microemulsion in Industrial ManufacturingAmino microemulsion, formulated and produced by our advanced synthesis facility, is adopted as a key additive across several core industrial manufacturing processes. We supply high-grade microemulsions meeting stringent quality control parameters, supporting high-efficiency, compliance-driven production environments requiring reliable material performance. The following sections detail established downstream industrial application scenarios, with comprehensive compliance, formulation, processing, and end-use specifications. 1. Leather Finishing ChemicalsManufacturers specializing in premium leather finishing use amino microemulsion to enhance surface touch, abrasion resistance, and color vibrancy in final products. Integration in topcoat and basecoat formulations provides improved light-fastness and anti-yellowing, enabling production of goods demanded by the automotive, fashion, and upholstery segments. Process and formulation teams value its cationic structure for strong bonding with anionic components present in chrome-tanned and vegetable-tanned leathers. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
2. Textile Softener FormulationsTextile auxiliary manufacturers incorporate amino microemulsion into aqueous softener concentrates to impart durable hand feel and lubricity during finishing of cotton, polyester, and blended fabrics. The unique molecular structure delivers persistent softness while maintaining hydrophilicity required for further textile processing and finishing operations. Field applications demonstrate stable performance even after repeated industrial laundering or dyeing steps. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
3. Water-Based Industrial CoatingsFormulators in the coatings sector use amino microemulsion to boost adhesion, film integrity, and anti-blocking properties in waterborne coatings for metal, plastic, and wood substrates. The additive stabilizes pigment dispersions and improves cross-linking with resin backbones, supporting the development of robust multi-functional coatings with reduced VOC emissions, meeting strict environmental mandates in industrial painting and finishing lines. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
4. Silicone Oil Emulsion BlendingSilicone emulsion producers utilize amino microemulsion as a co-emulsifier and functional modifier for fine-tuning droplet stability and improving silicone phase dispersion. This method prevents creaming or phase separation in silicone emulsions destined for automotive care, rubber release, and molded article processing. Its cationic functional group increases affinity toward polar surfaces, supporting long-lasting release and gloss effects in applied formulations. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
5. Papermaking Surface Sizing AgentsPulp and paper chemical suppliers rely on amino microemulsion as a performance additive in water-based surface sizing formulations. By influencing interfiber bonding and printability, it assists papermakers in achieving high ink holdout and uniform surface strength for premium graphical and packaging papers. The approach benefits high-speed machines by minimizing foam generation and retaining sizing efficiency under dynamic wet-end conditions. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
6. Asphalt Emulsion Adhesion PromotersConstruction chemistry firms use amino microemulsion as an adhesion promoter in cationic asphalt emulsions, improving aggregate binding and stripping resistance required for advanced road surfacing and patch repair systems. The mechanism leverages ionic compatibility to fortify bitumen-mineral interfaces, producing stronger, water-resistant roadbeds under varied climate exposures. Industry compliance standards
Typical usage ratio
Downstream process integration
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Competitive Amino Microemulsion 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.
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Tel: +8615365186327
Email: admin@ascent-chem.com
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For years, our team kept looking for ways to tackle the stubborn challenges that face manufacturers in coatings, textiles, and personal care applications. We kept circling back to the same point: off-the-shelf emulsions didn’t deliver the stability or efficiency our partners wanted. Our answer? Amino Microemulsion, model ME–508. Born from hands-on experimentation and decades of refining emulsion chemistry, it solves headaches that come from phase separation, long mixing times, and lackluster performance.
Let’s unpack what defines ME–508. Its particle size lands reliably between 10–40 nanometers, an outcome we hit after optimizing the ratio between amino siloxane and selective surfactants. This gives the product a cloudless, translucent appearance instead of milky. By shifting the emulsion into the micro-scale, product formulators no longer deal with sedimentation or build-up, even in concentrated solutions.
Many ask how it stacks up to traditional amino-silicone emulsions or macroemulsions. One thing stands out: shelf stability. We see emulsions that clump after only weeks on the warehouse shelf. Microemulsions like ME–508 remain pourable and clear, even after six months at room temperature, with no need to stir before each use. Downtime drops, as operators spend less time unclogging pumps or skimming residues from tanks.
Some worry new materials might demand major changes or learning curves. Our plant team wanted something that slots right into batch reactors and blending systems you work with every day. Neither flow rates nor agitation speeds change from typical settings. The microemulsion disperses quickly, without waiting around for the emulsion to break and mix. It works in water-based, alcohol-based, and glycol-based formulas. Our partners in the textile finishing and automotive care sectors were among the first testers, reporting reductions in mixing times by as much as 40%. Technicians like being able to skip the extra dispersants and defoamers that thick, old-style emulsions require.
As a chemical manufacturer with our own pilot reactors and QC labs, we field requests for either higher slip, deeper gloss, or improved wash-off resistance on treated surfaces. Standard amino emulsions contain particles measured in the hundreds of nanometers or even microns. These tend to scatter light, leaving a haze or milkiness in the final formulation. End users, whether working with a wood finish or personal care product, keep asking for products that don’t dull the underlying surface or feel heavy to the touch. What our microemulsion delivers, based on surface energy tests, is a natural handfeel and less stickiness than older generation products.
We have run side-by-side durability trials for textile mills. Fabrics treated with the microemulsion outperformed legacy emulsions on softness and re-wetting by up to 30 wash cycles. While standard emulsions start to bead and film after repetitive abrasion, ME–508’s fine particle size penetrates fiber matrices and holds fast without buildup. This is especially relevant for companies targeting eco-labels or pursuing long-life textiles.
Another area where Amino Microemulsion shows value is drop size consistency. We use a batch-controlled process in our reactors, paired with particle size analysis via dynamic light scattering. This means each drum you receive contains the same distribution of nanodroplets. Where commodity emulsions drift batch-to-batch, ours gives reliable wetting, spreading, and gloss, no matter the season or shift.
We have worked closely with industrial partners seeking to boost the tactile qualities and longevity of their products. One manufacturer in the textile business faced customer complaints about stiffness after silicone finishes. After swapping in our amino microemulsion at 1.2% active by weight, they measured a 50% improvement in softness while maintaining tensile strength. No residue or chalking appeared after finishing or repeated laundering.
Another scenario involves waterborne coatings. Many of our clients aim for coatings that are self-leveling, glossy, and resistant to blocking. The microemulsion format eliminates minute pinholes and streaks often attributed to the larger particles in traditional amino emulsions. This results in even, lasting gloss on softwoods and thermoplastic panels, reducing return rates from finish defects.
In automotive care wipes and polishes, formulating with ME–508 helps give a deep, slick shine without greasy after-feel, thanks to its high surface slip combined with excellent water repellency. Our team has logged multiple customer studies confirming that polishes using this microemulsion require half as much product to achieve the same gloss as formulations based on older technology. In the lab, we see that treated surfaces hold up better under UV exposure and repeated cleaning with dilute detergent.
We have also seen a surge in personal care formulators using ME–508 as a key ingredient in hair serums and skin conditioners. The transparence and fine droplet profile mean the active ingredient layers evenly along the cuticle or skin without leaving residue. Test salons report reduced frizz in hair and increased smoothness, even at low concentrations.
Industry customers often want clear, practical comparisons. Macroemulsions—which dominated the market for decades—usually have particle sizes over 100 nanometers. In the lab, this size difference shows in how quickly a product filters through membranes, how it interacts with dyes and active ingredients, and how much overhead goes into keeping it in suspension. Our microemulsion doesn’t need constant agitation or stabilizers. You can leave a bucket on the plant floor; it won’t cream or separate.
Heat stability is a recurring problem for conventional emulsions. They tend to split if stored above 35°C. We have stress-tested ME–508 in factory conditions above 40°C with no change in appearance or active content. No phase separation, no increases in viscosity. In warm or tropical regions, this adds a measure of process security that lets buyers avoid costly rejects and shipment delays.
The ultimate difference boils down to functionality and economy. With finer particle size, customers achieve higher slip and surface activity with less product. Reduced dosage translates to savings in bulk chemical consumption and in shipping, storage, and disposal costs. Legacy emulsions need higher application volumes to chase the same performance. Environmental impact falls too, because less wash-off enters waste streams.
We know the value of data beyond promotional brochures. At our plant, every batch of ME–508 passes through viscosity checks, pH stability tests, and high-speed centrifugation to simulate transport and long-haul scenarios. Early batches exposed flaws—creaming after shaking, drops in pH during storage—that we addressed by adjusting the choice of surfactant and fine-tuning the siloxane fraction. Our goal: consistent results, tank to tank.
Our in-house team runs compatibility screening against over 30 common cosmetic, textile, and surface-active ingredients. Unlike older emulsions, the microemulsion doesn’t conflict or coagulate when emulsified side-by-side with cationic or anionic polymers. We’ve processed orders for manufacturers using cationic softeners and seen stable, clear formulations—no hazing or unexpected gelling.
Looking at long-term storage, we have tracked sample retention for up to 18 months in temperature-controlled and non-climate-controlled facilities. Results remain within spec, with no precipitation or color change. This kind of stability shifts the burden off customers' quality assurance teams while giving confidence during unpredictable transit periods.
Run-off and disposal get easier too. Disposal regulations keep tightening, so products with lower organic load and increased safety are in demand. Our microemulsion formula doesn’t deliver heavy oil residues or persist in wastewater the way old-style emulsions can. Independent wastewater tests conducted with customers have shown more than 80% reduction in persistent silicone content compared to regular macroemulsions.
We always strive to help customers meet environmental standards. Our microemulsion contains no formaldehyde, alkylphenol ethoxylates, or other restricted components. Screening with contracted labs verifies performance in fresh and recycled water circuits, supporting safe, compliant textile and industrial operations worldwide.
From the first drum shipment, our partners benefit from technical support rooted in hundreds of real troubleshooting sessions across batch and continuous lines. If problems arise—unexpected foaming, dosing errors, or off-results in the finished good—our technicians visit sites or connect directly with plant staff to diagnose and resolve issues. Many support calls center on process optimization: too much dosage, odd interaction with thickeners, uneven finish after drying. We walk customers step by step from sample blending through full industrial scale, offering formulation protocols grounded in thousands of production hours.
We drew on feedback from users facing highly mineralized water or tough mechanical mixing conditions. ME–508 consistently performed better than competitor emulsions, allowing stress-free production regardless of local water hardness or batch size. We log every case, tracking recurring pain points, to improve the product and speed future resolutions.
The needs of industrial formulators never stop shifting. We spend thousands of pilot hours per year with client partners embedding ME–508 in test products, from architectural coatings to water-repellent uniforms. Every year, we gather dozens of samples from customers running actual production lots, not just laboratory-scale tests. The product’s success owes a lot to honest, direct feedback from operators who know the real-world challenges of cleaning, prepping, and finishing at speed and scale.
We keep pushing the product’s limits, running ammonia and acid exposure tests, mechanical shock trials, and simulated shipping on vibrating pallets. The insights gained help refine both the base formula and the packaging that gets ME–508 from our tanks to yours without spoilage or surprises.
Each improvement we make reflects hands-on lessons from production lines, not just theorizing or marketing claims. This connection to day-to-day manufacturing builds trust and drives us to higher standards, always guided by practical needs and measurable results.
We invest heavily in education for clients. Whether advising on dosage, compatibility, or process tweaks, we back up every suggestion with practical lab results and case histories. We host workshops, both in-person and via webinars, training hundreds of operators and process engineers on the safe, efficient use of microemulsion technology in their own facilities.
As biobased and recyclable materials become the expectation, not the exception, ME–508 provides a bridge to high-performance but environmentally responsible chemistry. Our R&D group continues to innovate with greener emulsifier packages and lower energy process steps, ultimately making the entire microemulsion platform cleaner and more efficient.
The future favors solutions that blend performance, reliability, and sustainability without locking users into expensive or specialized infrastructure. Over the years, we have seen too many specialty chemicals stagnate because they couldn't scale or adapt with changing regulations. ME–508 avoids those pitfalls by offering practical improvements without hidden costs: less maintenance, lower dosing, and streamlined logistics.
Every batch shipped reflects our commitment not just to technical quality, but to supporting safer, more cost-effective, and environmentally-conscious production worldwide. The story of Amino Microemulsion ME–508 is, in the end, a story about what happens when manufacturers listen, adapt, and deliver real solutions that grow with you.