Products

Hydroxyethyl Sulfide

    • Product Name: Hydroxyethyl Sulfide
    • Alias: Thioethanol
    • Einecs: 211-937-4
    • 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 428088
    Cas Number 108-16-7
    Molecular Formula C2H6OS
    Molecular Weight 78.14 g/mol
    Iupac Name 2-Mercaptoethanol
    Appearance Clear colorless liquid
    Odor Strong, unpleasant odor
    Boiling Point 157 °C
    Melting Point -84 °C
    Density 1.113 g/cm3 at 20 °C
    Solubility In Water Miscible
    Flash Point 71 °C
    Refractive Index 1.453 at 20 °C

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

    Packing & Storage
    Packing Hydroxyethyl Sulfide is packaged in a 500 mL amber glass bottle, securely sealed, with clear hazard labeling and usage instructions.
    Shipping Hydroxyethyl Sulfide should be shipped in tightly sealed containers, stored in a cool, dry, well-ventilated area, and kept away from sources of ignition and incompatible substances. Ensure appropriate labeling and documentation according to local and international chemical transport regulations. Personal protective equipment is recommended for handling during shipping and receiving.
    Storage Hydroxyethyl Sulfide should be stored in a cool, dry, and well-ventilated area, away from sources of heat, ignition, and direct sunlight. Keep the container tightly closed and use appropriate chemical-resistant containers. Store separately from oxidizing agents, acids, and strong bases. Proper labeling and secondary containment are recommended to prevent leaks or accidental contact with incompatible substances.
    Application of Hydroxyethyl Sulfide

    Applications of Hydroxyethyl Sulfide in Industrial Manufacturing

    Hydroxyethyl sulfide serves as a critical intermediate and process aid in several highly specialized sectors. Manufacturers depend on its chemistry for precision-controlled synthesis, regulated process modifications, and to meet strict regulatory requirements across multiple industries. The following application sections detail real-world downstream use cases with compliance, usage, processing, and final product outputs specified for each segment.

    1. Pharmaceutical Intermediate for API Synthesis

    API producers select hydroxyethyl sulfide as a sulfur donor and etherifying agent when synthesizing thioether-based active pharmaceutical ingredients, especially in pipelines involving alkylation or sulfuration steps. Its purity level and batch consistency must support full traceability across multi-step syntheses. Process technicians introduce it after preliminary substrate activation, often under inert atmospheres to maximize yield and minimize side reactions. Documentation under cGMP guidelines controls every receipt, in-process blend, and waste stream. Final APIs undergo full ICH Q7 compliance QC before sale or formulation into finished dosage forms.

    Industry compliance standards

    Typical usage ratio

    Downstream process integration

    Final product types

    2. Refinery Process Additive in Petrochemical Desulfurization

    Downstream petrochemical refineries employ hydroxyethyl sulfide within hydrodesulfurization units to facilitate removal of organosulfur impurities from naphtha and diesel streams. Technicians inject controlled amounts into feed pre-treatment sections, where it acts as a scavenging agent, forming extractable complexes and promoting efficient catalyst operation. On-line sulfur analyzers validate process efficacy. Strict monitoring prevents overuse and ensures compliance with environmental specifications for fuels. Plant SOPs specify batch traceability and periodic review of additive performance on sulfur output targets.

    Industry compliance standards

    Typical usage ratio

    Downstream process integration

    Final product types

    3. Fine Chemical Synthesis for Dye Intermediates

    Manufacturers of sulfur-containing azo and cationic dyes utilize hydroxyethyl sulfide to enable selective sulfide bridge formation during dye precursor construction. It is introduced at precise stages of multi-step condensation reactions in pressurized reactors. Quality teams track both concentration and residuals to comply with EU and Asian chemical legislation. Dosing is optimized according to color yield and purity of the dye intermediate, requiring routine titrimetric analysis. Batch manufacturing records must demonstrate sourcing, use, and destruction under national environmental authority stipulations.

    Industry compliance standards

    Typical usage ratio

    Downstream process integration

    Final product types

    4. Polymer Modifier in Epoxy Resin Manufacturing

    Epoxy resin producers use hydroxyethyl sulfide to introduce controlled chain flexibility and to modify hydrophilicity in specialty thermoset systems. It is blended into the resin prepolymer mixture after partial epoxidation and before final crosslinking, ensuring proper incorporation and preventing phase separation. Formulators adjust loading based on gel time, viscosity metrics, and final tensile modulus. In finished products, audits confirm full reaction of the sulfide moiety to prevent emissions during composite use. Technical documentation details all handling under ISO 9001:2015-certified process direction, including dedicated mixing and cure monitoring procedures.

    Industry compliance standards

    Typical usage ratio

    Downstream process integration

    Final product types

    Free Quote

    Competitive Hydroxyethyl Sulfide 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

    Inquiry

    Get Free Quote of Ascent Petrochem Holdings Co., Limited

    Flexible payment, competitive price, premium service - Inquire now!

    Certification & Compliance
    More Introduction

    Introducing Hydroxyethyl Sulfide: A Manufacturer’s Perspective

    Building Quality Chemicals with Consistency

    Manufacturing chemical products like Hydroxyethyl Sulfide means living with high expectations from every client. In our plant, we have watched this compound develop from a niche specialty to a dependable workhorse for industries that require reliability over shortcuts. Let’s talk through Hydroxyethyl Sulfide as we see and produce it, building from raw materials to the final refined product you receive.

    The Heart of the Process: Hydroxyethyl Sulfide Production

    Daily plant operations revolve around precise extraction and purification steps. Raw thiol and ethylene oxide come together under pressure and temperature controls that only years of fine-tuning can hit every time. Every worker in the synthesis line knows how tight the window is—too little agitation and the product won’t reach full reaction, too much and you risk side products that gum up reactors.

    We produce a few grades of Hydroxyethyl Sulfide, but most orders end up as clear to pale yellow liquids, typically with purity above 99% by gas chromatography. Moisture content, acidity, and thiol by-products all get tracked to decimals most people never see. Our QC lab team pulls hourly samples and knows by scent and refractive index if anything’s off—sometimes before the mass spec gets results. That level of experience doesn’t come from textbooks.

    Hydroxyethyl Sulfide vs. Standard Sulfide Compounds

    Clients often ask why they can’t just use less-processed sulfide compounds. Hydroxyethyl Sulfide stands apart for both its reactivity and its lower odor profile, which makes handling much more pleasant for staff and neighbors alike. Lower volatility means less loss and safer operations, especially where systems involve venting or open transfer.

    Some competitors opt for dimethyl sulfide or simple mercaptans when cost-cutting, but that approach risks higher emissions and reactivity issues downstream. We’ve spent years working with partners in chemical synthesis, textile auxiliaries, and specialty coatings—Hydroxyethyl Sulfide wins out again and again when downstream compatibility and stability matter.

    Understanding Specifications Without the Guesswork

    Spec sheets and technical data mean nothing without the infrastructure and attitude that guarantee their numbers in every drum. Purity here is more than percent points—it is about controlling batches so closely that end users don’t have to tweak formulations on the fly. Pipelines flow clearer, filters clog less, and formulations develop smaller odor profiles. Our product contains minimal by-products like 2-hydroxyethyl disulfide or residual thiols, always contained below 0.1% due to stepwise distillation runs.

    We ship in stainless steel drums and IBCs designed to prevent contamination. Even the gaskets get reviewed, because any sulfur trace will turn old rubber leaky and unreliable. Tanker loads use nitrogen blanketing, blocking oxidation so the Hydroxyethyl Sulfide arrives as fresh as when it left our lines, not half-reacted after a week in storage.

    Reliability Beyond Standards: Practical Industry Input

    Many of our clients come from pharmaceutical intermediates or fine chemical manufacturing. They stake their own product integrity on the raw materials they buy. Hydroxyethyl Sulfide plays a central part in both nucleophilic substitution reactions and as a linking agent in specialty surfactants or polymer science. Small impurities can cascade, dragging down yields or introducing unpredictable odors. Being the manufacturer, we have standing arrangements to batch-retain product samples for up to two years, which helps us support troubleshooting even after months on the shelf.

    The supply chain can bring challenges—volatile global logistics, raw material scarcity, or new regulatory standards. Years ago, a bad ethylene oxide batch from an upstream supplier almost set us back. In response, we began running double-verification analytical checks, introducing backup supplier protocols, and more frequent raw material spot-tests. These practices have saved more than one customer from a costly halt due to off-spec raw materials.

    How Usage Ties Back to the Production Floor

    A lot of technical talk surrounds where Hydroxyethyl Sulfide ends up. For us, seeing batches go to water treatment developers or advanced epoxy hardener systems fills the team with pride. It’s not an anonymous solvent or an acid scavenger—it’s a key player in end-use formulations that demand high purity and low, controlled volatility.

    Hydroxyethyl Sulfide’s moderate boiling point and manageable reactivity means customers can heat, blend, or incorporate it without worrying about uncontrolled release. Spill containment here is simple: it bonds to activated carbon and the worst you’ll face is a manageable cleanup, not a hazmat event. Our technical staff works hand-in-hand with longtime buyers to adapt grades where industry trends shift: you’ll see this in custom batches for advanced organic synthesis or pilot-line surfactant trials.

    Comparing to Alternatives: Why Customers Come Back

    Every plant manager knows short-term savings can hurt long-term returns. Switching to Hydroxyethyl Sulfide from cheaper, off-the-shelf sulfides has streamlined customer production lines for years. Places that once struggled with batch inconsistency now report less downtime and better quality control after switching to our product.

    Other compounds in related families—methyl or ethyl mercaptan, diethyl sulfide—bring either higher hazard ratings or lower reactivity for certain processes. Hydroxyethyl Sulfide finds its niche right in between: strong enough to react with most electrophiles, gentle enough not to corrode steel or kill a batch if a process goes two hours longer than expected. It’s a balancing act that comes from millions of liters’ worth of feedback, experiment, and honest reporting from buyers who don’t just read spec sheets but watch drums unload in the plant yard.

    Manufacturing Focus: Clean Production, Reliable Supply

    Our plant runs closed-loop systems, containing any off-gassing and registering process deviations long before quality gets affected. Staff rotates between shifts, universally trained in odor recognition and minor troubleshooting. Unlike sites that rely on third-party bulkers, we control our logistics from tank loading to sealed outbound trucks. We partner with tank-cleaning vendors who understand that a thiol trace from a previous load will show up in the finished batch, risking cross-contamination that clients rightly refuse to tolerate.

    Hydroxyethyl Sulfide’s nature means careful engineering is vital. Vents route through activated carbon, solvents never get handled in open trays, and pH monitoring guards against degradation pathways. Our experience says that investment in early detection and daily continuous lab-plant communication pays off with zero recalls and near-perfect delivery acceptance every year. We don’t take those numbers for granted—they reflect work that starts before dawn and ends only after samples sit cleared by both our internal and third-party labs.

    Regulatory Alignment and Safety: From Plant to Storage

    Chemical regulations don’t get laxer over time. Every year brings new certifications or emission benchmarks. Our site sits under regional chemical registration—a process we approach with open access audits and full transparency for authorities and customers. That translates into unrestricted market access for users, cutting down paperwork and import clearance headaches.

    Sensitive clients, especially those in pharmaceutical or food-contact intermediate work, ask for traceability—batch numbers, origin verification, even access to plant audit reports. We encourage that scrutiny instead of avoiding it. Consistency in Hydroxyethyl Sulfide only comes with strict adherence to plant cleanliness, maintenance, and documentation.

    Our storage tanks sit in steel-bundled containment with double-level alarms. We train every batch operator on leak protocol—not just once but as part of routine drills. Old insulation gets replaced before it fails because sulfur-containing compounds will degrade even the best-wrapped lines. This is not theory; it’s plant-floor reality built from decades of practical problem-solving.

    Hydroxyethyl Sulfide in the Global Supply Chain

    The world rarely runs on local-only chemical contracts anymore. Export clients expect Hydroxyethyl Sulfide to leave our warehouse and land across borders within specification. Our documentation follows the batch, with COAs and SDS prepared in local language and submitted to both buyer and receiving port officials. Logistics teams plan not just trip time but seasonal impacts—summer shipping needs cooled containers, winter routes consider possible tanker line freezing.

    The challenge grows with industry change. More sectors demand higher purity and tolerance for trace metals drops every year. To stay ahead, we expanded lab equipment, adding more sensitive ICP-OES detectors and better chromatographic separation. Our staff communicates directly with R&D teams at client sites, so if a new industry request appears, we get to solving it with sample pilot runs and rapid feedback.

    We routinely invite feedback on performance and encourage developmental partnerships. Several of our improvements—lower total sulfur, improved shelf stability—come from day-to-day client collaboration. No chemical plant can afford the arrogance of believing last year’s production model will serve every new application. Our success depends on this ongoing, problem-solving relationship.

    Solutions from Experience: Reducing Waste and Improving Outcomes

    Waste reduction stands out as an area where Hydroxyethyl Sulfide shines for plants like ours. Better purity at the outset translates into cleaner reaction streams and fewer by-products requiring post-process separation. A few years ago, one of our industrial coating clients reported off-odor in cured films. Collaborative root-cause analysis led to a new filtration system at our site, removing micro-impurities that had flown under the radar previously. That client saw immediate results: improved product acceptance and less rework.

    Tracking market trends, we keep refining production technology. Continuous process monitoring means faster detection and removal of rogue by-product streams. Improved valve seals, better reactor mixing, and short-path distillation all play a part. Investments in these upgrades don’t just make the accountants happy—they cut product disruptions and build stronger reputation among buyers who have choices and high standards.

    What Makes Hydroxyethyl Sulfide a Modern Choice

    As chemistry advances and standards get tighter, end users care about more than claimed purity. Odor profile, stability, packaging resilience and supply chain traceability all play bigger roles in buying decisions. Our Hydroxyethyl Sulfide meets these criteria not because we publish them, but because on-site reality matches the certificate. Batches undergo aging tests and accelerated storage trials. Outbound shipments receive tamper-evident seals, and long-term clients gain direct access to technical staff if questions arise.

    We see increased demand for green chemistry and reduced hazardous emissions. Our team responded by optimizing solvent recovery and reworking stack treatment to minimize volatile loss on-site. That means a cleaner workplace, safer surroundings for local communities, and sharper compliance with environmental standards. As manufacturers, we know reputation builds from plant floor to product performance at the customer’s site—not the other way around.

    The Manufacturer’s Responsibility: Beyond the Lab Bench

    Making Hydroxyethyl Sulfide is not a solved game. Every new application, batch feedback, or quality challenge invites further improvement. We stay active in industry consortia, contributing field data on degradation patterns and best practices in handling. Our R&D team integrates customer feedback into process adjustments and new application guides.

    This compound supports value chains for pharma intermediates, specialty polymers, water treatment additives, and performance coatings. Its track record stems not just from chemical formula, but decades of uninterrupted production, process audits, and tailored plant upgrades. Outstanding batches don’t just satisfy current partners—they create the possibility for new applications and closer working ties as industry needs change.

    Every day, our staff walks through the production floor knowing that each drum carries not just product, but the weight of years of trust. The feedback, grit, and details matter, right down to the technician who double-checks a tank’s inert gas level. You can buy technical sheets from anyone—but you can only get built-from-the-floor quality from a manufacturer who lives with the product, day in and day out.

    Conclusion: Hydroxyethyl Sulfide Built on Practical Experience

    Today’s industry rewards suppliers who combine reliable quality, supply stability, and honest, open communication. We don’t trade in vague promises or spec sheet language; our reputation is measured by repeat customers who see the same product—batch to batch, year after year. Anyone can try to replicate Hydroxyethyl Sulfide, but it’s the manufacturing, logistics, and feedback loop that separates consistent chemical performance from the volatility of the open market. Our commitment is to keep learning, keep refining, and keep shipping quality Hydroxyethyl Sulfide that backs up every expectation, every time.

    Top