|
HS Code |
957181 |
| Chemical Name | Phenol |
| Chemical Formula | C6H5OH |
| Molecular Weight | 94.11 g/mol |
| Appearance | Colorless to pale pink crystalline solid |
| Odor | Sweet, tar-like |
| Melting Point | 40.5°C |
| Boiling Point | 181.7°C |
| Solubility In Water | 8.3 g/100 mL (20°C) |
| Ph | approximately 5.4 (1% solution) |
| Density | 1.07 g/cm³ (at 20°C) |
As an accredited Phenol PH factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Phenol PH is packaged in a 500 mL amber glass bottle with a secure screw cap, labeled with hazard warnings. |
| Shipping | Phenol PH should be shipped in tightly sealed, corrosion-resistant containers, clearly labeled according to UN1671 regulations. Transport vehicles must be well-ventilated and comply with hazardous material guidelines. Protect from heat, sparks, and moisture. Ensure the shipping documentation is complete and includes appropriate hazard warnings and emergency response information. |
| Storage | Phenol PH should be stored in tightly closed containers made of compatible materials, away from direct sunlight, heat sources, and ignition risks. Keep in a cool, well-ventilated area, separate from oxidizers, acids, and reactive substances. Appropriate safety signage and secondary containment are recommended. Ensure storage area is equipped with spill control and emergency wash facilities for safe handling. |
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Purity 99.5%: Phenol PH with purity 99.5% is used in pharmaceutical synthesis, where it ensures high-yield and contaminant-free production. Melting point 40.5°C: Phenol PH with a melting point of 40.5°C is used in resin manufacturing, where it enables efficient processing and uniform polymerization. Molecular weight 94.11 g/mol: Phenol PH with molecular weight 94.11 g/mol is used in chemical intermediates, where it guarantees precise stoichiometric reactions. Stability temperature 150°C: Phenol PH with a stability temperature of 150°C is used in high-temperature adhesives, where it maintains structural integrity during curing. Viscosity 25 mPa·s: Phenol PH with viscosity 25 mPa·s is used in industrial disinfectants, where it offers optimal dispersion and surface coverage. Particle size <10 µm: Phenol PH with particle size <10 µm is used in specialty coatings, where it provides smooth and consistent film formation. Water content <0.1%: Phenol PH with water content less than 0.1% is used in electronic chemicals, where it prevents hydrolysis and ensures product reliability. Color index 10 APHA: Phenol PH with color index 10 APHA is used in optical grade plastics, where it ensures product transparency and color consistency. Acidity 0.01 N: Phenol PH with acidity 0.01 N is used in laboratory reagents, where it supports accurate titration and quantitative analysis. Ash content <0.05%: Phenol PH with ash content below 0.05% is used in fine chemical synthesis, where it minimizes impurities for high-purity end products. |
Competitive Phenol PH prices that fit your budget—flexible terms and customized quotes for every order.
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In our daily process at the plant, the name Phenol PH means more than another stock item on a shelf. Crafting each batch demands consistency, knowing each drum carries the weight of decades of engineering choices and the trust of long-term partners in refinery, resin production, and pharmaceutical synthesis. For us, Phenol PH (model 99.8/PH) isn’t just a spec on paper; it is the centerpiece of more advanced synthesis chains. Every stage, from benzene alkylation to controlled oxidation, runs toward one goal: provide purity, stability, and reactivity that downstream processors rely on.
Our Phenol PH finds its roots in a fine-tuned cumene process, where each temperature hold, catalyst exposure, wash cycle, and pressure swing gets monitored by teams who’ve worked the same lines, sometimes for decades. We do not tinker with shortcuts — every filtration and distillation strip brings us closer to the benchmark purity of 99.8 percent. When we hit our color, clarity, and molecular profile, the team knows they have the batch those who make bisphenol-A, caprolactam, or salicylic acid expect.
What matters to us is consistency. Customers in resins and adhesives judge phenol by uncontaminated reactivity. Water uptake, halogen residuals, iron content — these numbers are not arbitrary. Over years, we have learned how even slight trace metallics can throw entire polymer chains into chaos. Products made with imprecise phenol end up short in mechanical performance, shelf stability, and workability. Time and effort spent at our end – sampling, titration, UV checks – are small compared to costs downstream of cleaning up a batch gone wrong.
Most who rely on pure phenol are not just looking for numbers on a certificate. The core of Phenol PH’s value lies in what it doesn’t bring – undetectable impurities, foreign contaminants, color variation, or batch-to-batch inconsistency. Our crews test for sulfur and chlorides not because they are trendy, but because they have seen phenolic resin makers struggle with stickiness and yellowing caused by those very culprits. Long-term partners know every new lot of our Phenol PH matches the last, letting their own plant operations predict behavior without random surprises.
In the past, we compared our runs directly against legacy phenol sample libraries in in-house QC labs. Each time we pulled a batch that veered off in color index or acidity, someone dug deep to find root causes — often outside typical published tolerances. These are the moments that matter; even a “minor” deviation can lead to a shipload of defective insulation boards or an entire reactor’s worth of sticky, low-quality adhesives. We remember those days in every improvement, every shift change briefing, and every batch release.
Major users of Phenol PH work at the crossroads of advanced materials and daily-use products. BPA production sets the tone, but the details ripple across formaldehyde resins, pharmaceuticals, and even cosmetics. Every day, shipments move out not just to the obvious giants but to niche players—those compounding custom polycarbonates or prepping flavor intermediates. From our side, we hear their feedback: they expect a product that does not fight their formulations.
These customers have run pilot lines and commercial-scale processes with raw materials from other places. Time and again, the same difference shows up: Phenol PH arrives as promised, free-flowing, colorless, and odor-neutral (excepting the signature phenolic note). No sticky residues, no crystallization, no off-grade potassium or sodium spike. We have seen how a single inconsistent load can set back production for days—no one wants to manage tank heaters, filter clogs, or re-blends just to process a basic feedstock.
On paper, phenol from several suppliers might look similar, but process step by process step, differences come into play. We ship Phenol PH in dedicated containers, tested for compatibility, and verified for seal tightness. Our facilities avoid cross-handling with tars and intermediates that cause off-color and aroma upsets. Customers who have taken generic phenols from regional traders often bring us their blending troubles or find strange profiles in GC and HPLC analysis. It is not hard to miss: trace organics, condensates from storage and handling, residue from old transfer lines.
In nearly every end-market, minor changes in purity, trace water, or metal content have enormous impact. Coatings makers face unpredictable cure times or opacity issues. High-purity polymer manufacturers risk chain scission, unreliable molecular weight, or defect-prone product. Even labs doing phenol-based chemical synthesis appreciate knowing their yield calculations will not have to factor in hidden losses or byproduct formation. This is why, for years, buyers have tracked our lots and batch histories right back to the day of production, sometimes even requesting plant data as part of their own ISO audits.
Working at volume, the realities of phenol safety become intimately familiar. We have walked the tanks, reset the refrigeration, and smelled the faint edge of phenolic vapor during transfers. In practice, our team never shortcuts on PPE and exposure protocols. At the same time, we choose packaging and shipment systems that the entire supply chain will find sensible: from secondary liners to vented drums to real-time temperature monitors in high-season shipments. Each decision traces back to a simple insight—no one in the delivery or usage chain wants to handle compromised drums or degraded contents.
On the customer end, we have seen how good material keeps better than bad. Our Phenol PH resists discoloration and preserves its reactive backbone in long-term storage, provided the drums are kept cool and sealed. Distributors and processors can focus on their own process safety rather than troubleshooting mystery odors or blocked lines—a situation every plant manager would rather avoid.
Phenol production earns its share of attention from the perspective of environmental responsibility. We face this every week. Steam balances and organic emissions, aquifer safeguards, and solid waste recovery are not just boardroom topics—they fill our shift briefings and engineering reviews. Real experience has shown it is not enough to claim “reduced waste;” every plant overhaul or DCS software upgrade must show numbers, not slogans.
In the last decade, a constant drive toward energy integration brought greater recovery rates for process byproducts like acetone and cumene. We turned waste heat and excess process steam into plant-wide utilities. Each improvement translates into tangible reductions in CO2 footprint and helps keep community air and water quality within tough regulatory targets. These are more than numbers on a report; they shape community trust and our license to operate.
Some customers, especially in the EU or Japan, have pressed us for supporting evidence around our overall GHG footprint and process recovery rates. We have responded by adjusting our plant analytics, joining industry LCAs, and even establishing traceable digital reporting that tracks each Phenol PH batch from raw stock to end user. Our workers know these efforts are not mere paperwork—they link directly to every job, every repeat order, and every opportunity to raise the bar.
Phenol production cannot rest on decades-old assumptions. Our R&D groups—made up of engineers who’ve cut their teeth in plant startups and line upgrades—stay focused on what matters most: reproducibility, safety, capacity, and margin. Some of the best feedback still comes from customers; tweaks that reduce batch variability, drive down sodium carryover, or sharpen endpoint detection tend to come out of long back-and-forth sessions with real-world users.
Many partners in the electronics or pharma supply chains have raised the bar repeatedly, asking not just for basic purity but for explicit absence of micro-traces that could impact sensitive reactions. As control technology advanced, we adopted online monitoring of process parameters, cut manual sampling lag, and tied lab analytics to our shipping release protocols. These adjustments are not done for marketing—they control the things that shape the work day in a real plant.
Relationships with our customers grow from patterns of reliability and openness. We solve problems side by side. We have taken calls at odd hours and walked lines in the middle of shutdowns, helping partners sort out root causes down to the last decimal. Our team shares the pressure to deliver, to avoid line stops, to ensure every incoming rail car will not upend a project. These are not contract terms or abstract assurances; with phenol, every hour and every drum counts.
We recognize receipt teams, QC managers, plant operators, and process chemists all see a phenol shipment in different ways, and their feedback helps us keep improving. Over the years, patterns emerge; lots that triggered deviation investigations, or new blends that earned extended trial runs. This cycle sharpens our own standards, informing future production orders and the next generation of Phenol PH.
Phenol PH delivers to dozens of ports and rail yards, but its manufacture remains grounded. Our facility draws on a community of operations experts, logistics planners, and process engineers who know what it means to ship across climates and continents. We lean on rail, barge, truck, and containerized options, mixing speed with caution to keep material in spec regardless of distance traveled. Even the best product can lose its value if handled wrong, so we work closely with each link in the chain—from plant loading to consignee offload.
There is pride in seeing our Phenol PH reach users in subtropical, polar, and high-altitude regions without losing quality to heat spikes or condensation. Our crews plan every transit step—adjusting shipment batch size or packaging, working within destination country norms, and always auditing for compliance and product protection. Lessons learned from every batch feed into our logistics improvements.
The chemical landscape never stays still. More users now demand not just technical documentation but transparent reporting—origin, environmental profile, and safety trail. Regulatory demands for phenol shipments tighten, with new directives on VOC threshold, labeling, and traceability. Our teams review changes and adapt—sometimes overhauling labeling practices, upgrading line containment, or investing in sensor technology so we can meet not just today’s regs but what will come next.
Several times, we have found ourselves in the middle of sudden regulatory or logistical change—natural disaster, shutdown of a regional competitor, shift in government code. Rather than hide these issues, we keep a line open to customers, sharing what’s happening and working out responsible alternatives. Keeping the business stable means owning challenges and working transparently, never gambling with quality or pushing risk to others down the chain.
Product names mean little without proof over time and scale. Our Phenol PH joins daily plant operations—not as a generic base chemical, but as the result of hands-on process control, shared learning, and practical, unvarnished feedback from hundreds of operators, engineers, and lab chemists. It reflects not only our technical standards but the things we have learned go wrong when shortcuts creep in or when communication breaks down.
Those who buy our Phenol PH for long-term use—whether in formaldehyde resins, plastics, fine chemicals, or pharma—know the value of predictability, reliability, and honesty. Our job is not just making a product run to spec but letting users get on with their own work, backed by a steadfast supply. That commitment has kept us focused for years, and it remains at the center of every batch we approve for shipment.