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HS Code |
215694 |
| Product Name | Rhubarb Phenol |
| Chemical Formula | C6H6O2 |
| Appearance | Light yellow to brownish powder |
| Odor | Characteristic phenolic odor |
| Solubility | Slightly soluble in water, soluble in alcohol |
| Molecular Weight | 110.11 g/mol |
| Melting Point | 40-43°C |
| Storage Conditions | Store in a cool, dry place, away from light |
| Ph Value | Acidic |
| Main Application | Used as a pharmaceutical intermediate |
| Source | Extracted from rhubarb plant |
| Hazard Classification | Irritant |
| Synonyms | Rhubarb phenolic compound |
As an accredited Rhubarb Phenol factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Rhubarb Phenol is supplied in a 100g amber glass bottle with a screw cap, labeled with hazard warnings and usage instructions. |
| Shipping | Rhubarb Phenol should be shipped in tightly sealed containers, protected from light and moisture. It must be labeled with appropriate hazard warnings and handled according to local and international regulations for hazardous chemicals. Shipping should be via an approved carrier specializing in chemical transport, ensuring temperature and environmental control throughout transit. |
| Storage | **Rhubarb Phenol** should be stored in a tightly sealed container, away from direct sunlight, moisture, and incompatible substances such as strong oxidizers. Keep it in a cool, dry, and well-ventilated area designated for chemicals. Properly label the storage container, and ensure access is limited to trained personnel. Store at room temperature and handle according to standard laboratory safety guidelines. |
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Purity 98%: Rhubarb Phenol with purity 98% is used in pharmaceutical synthesis, where high chemical purity ensures consistent bioactivity. Viscosity grade low: Rhubarb Phenol with low viscosity grade is used in topical formulations, where enhanced spreading properties improve absorption rates. Molecular weight 254 g/mol: Rhubarb Phenol at molecular weight 254 g/mol is used in analytical reference standards, where precise quantification and reproducibility are required. Melting point 210°C: Rhubarb Phenol with a melting point of 210°C is used in high-temperature extraction processes, where thermal stability reduces decomposition risk. Particle size <10 μm: Rhubarb Phenol with particle size below 10 μm is used in microencapsulation technology, where uniform dispersion increases bioavailability. Stability temperature 60°C: Rhubarb Phenol stable up to 60°C is used in cosmetic formulations, where shelf-life extension is critical under variable storage conditions. Water solubility 1 g/L: Rhubarb Phenol with water solubility of 1 g/L is used in injectable solutions, where moderate solubility enables precise dosing. pH tolerance 4-8: Rhubarb Phenol with pH tolerance 4-8 is used in dermatological gels, where formulary flexibility maintains product efficacy. Assay grade analytical: Rhubarb Phenol of assay grade analytical is used in laboratory calibration, where accurate standardization improves analytical results. Residual solvent <0.05%: Rhubarb Phenol with residual solvent below 0.05% is used in dietary supplements, where regulatory compliance and safety are guaranteed. |
Competitive Rhubarb Phenol 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
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In a market full of identical-sounding chemicals, not every phenol stands up to real expectations. At our facility, we make Rhubarb Phenol in a way that pays close attention to both purity and practicality. The work begins with selecting raw materials nobody overlooks. We do not take shortcuts because downstream users can spot impurities in their production lines faster than any analyst with a sample vial. Every step is traceable — we don’t believe in luck when it comes to consistent chemistry.
Our main production line centers around the Model RP-120, which results from not just laboratory work, but adjustments made after years of market feedback and industry testing. RP-120 offers a color and particle profile that manufacturing teams have said saves them time during checks and blending. With our spec, you won’t need extra stages of filtration or regret about clumping. The moisture level stays low, between 0.5% and 0.9%, because we run a controlled drying and storage sequence—never leaving product exposed to ambient air for long.
With a strict melting range, you know Rhubarb Phenol stays solid and handles well until you want it to do otherwise. That means no waste during transfer and no sticky clogs in feeders. Consistency from the first kilogram to the last is a core benchmark here. Particle size ranges mainly between 40 and 100 mesh; that wasn’t decided by guesswork but because teams on real production floors explained what works in their hoppers and mills.
Customers often tell us about their trouble with reactivity spikes—one batch too hot, the next too slow. We don’t see these swings in our own production, and our quality control data sheets back this up. Strict adherence to validated process controls keeps the active content above 99% by HPLC, tested in-house and cross-checked with customer labs. This high-active profile isn’t just a number. It limits off-odor, helps flavor or color additive formulations keep their integrity, and reduces batch failure for anyone relying on predictable ingredient chemistry.
Because our facility runs under continuous improvement from years of hands-on experience, we address issues early. Humidity level, cross-contaminants, and raw material trace ions all come under monitored ranges set tighter than generic pharmacopeial specs. As a chemical manufacturer, every minor improvement on the technical side makes a difference for users who rely on smooth, repeatable runs—especially in regulated environments.
Teams in extraction and synthesis lines have put Rhubarb Phenol to the test in contrasting processing environments—open kettles, pressurized vessels, and automated feeding systems. As they tell us, the benefit shows in handling. A granulated profile keeps dusting down, helping address both safety and batch accuracy. Technicians loading RP-120 into mixers report less flow interruption and lower cleaning frequency. These savings, seen on real plant shifts, don’t appear on certificates but matter to those who get the work done.
Rhubarb Phenol’s stable nature lets process chemists focus on yield and purity rather than on tracking down minor fluctuating inputs. In botanical extract applications, isolation treatments go smoother, solvent use can stretch further, and post-reaction cleanup spends less resources on unreacted side products. That efficiency isn’t written into any MSDS, but it takes years off scale-up headaches and project troubleshooting. Direct feedback from customer pilot sites shaped our final product’s bulk density, routine sieve checks, and shipping standards.
Plenty of phenolic products claim pharmaceutical or reagent-grade status on their paperwork, but daily plant work sorts fact from fiction. Many competitors blend from multiple sources or adjust moisture with high-heat drying that leaves behind trace decomposition signals. We invested in moderate-temperature vacuum drying early because we saw how overheated batches behave in subsequent processing—darkening, off-odor, and poor reactivity profiles.
A key difference with Rhubarb Phenol sits in batch design and documentation. Every single lot comes from an identified, date-traceable batch. You get transparency and a sample-retention system, so if a result ever strays, both sides can audit the controls and ingredients used. We don’t combine remnant stock into new drum lots, even during high-demand periods or when raw supply tightens. Fragmented supply chains wreck outcomes; we keep production vertically integrated right here, so small issues are sorted before they become big ones.
With environmental regulations tightening, we enforce an in-house waste minimization strategy by closing-loop nearly all off-gases and rinse cycles. We set a carbon filter process for vented air and designed non-contact transfer systems based on feedback from our shopfloor workers—who, by the way, average ten years of direct chemical handling experience. Safe handling on our floor translates into a safer product all the way down the supply chain.
Most operations find that better upstream controls lower the overall cost per kilogram, not just in materials, but in lower downtime, fewer customer complaints, and easier audits. We do not chase lowest cost, but focus on genuine value. Our experience tells us that plant operators prefer a product that simply works according to spec, without the fuss, complaints, or inventory write-offs so common with generic counterparts.
Customers come to us with real-world problems—gate valves jammed by fines, cleanroom monitoring flaring up after a problematic raw consignment, production campaigns delayed over an unexpected off-color. We have seen the way a subpar batch can knock down even the most robust production schedule. That’s why our quality release checks don’t only rely on lab values. We run test portions through simulated plant conditions before approving a lot—feeders with vibration, gravity drop, and pneumatic lines all see sampling so we understand not just the chemistry, but the practicality of our product. This hands-on approach means every batch gets checked as if it would run through our own line, which in a sense it does.
We don’t operate in a lab vacuum. Close collaboration with users, from R&D groups down to bulk handlers, helps us see what matters most—processability, safety, less dust, easy integration, and batch-to-batch trust. Quarterly reviews of customer input lead to small tweaks, whether that means tighter moisture control, improved anti-caking measures, or simpler packaging. Over time, these small efforts add up: plant managers have reported up to 20% lower downtime when converting from blended phenolic stocks to ours.
Experience convinces us that transparency matters as much as technical knowledge. Each lot ships with line-by-line production data, with true origin records—not just the manufacturer’s name rubber-stamped for regulatory compliance, but verifiable batch makeup. It’s not just a paper standard; it’s a way of working. Operators using our product rarely face unexplained process events, and in the small fraction of cases where troubleshooting is needed, we respond with full access, not stock answers.
Pharma teams often search for minimum impact on critical formulation attributes: no taste contamination, no unpredictable side reaction. Our low-trace contaminant management and gentle drying approach reduce batch rejections and post-process scrapping. Biotech processors rely on RP-120 for enzyme compatibility because it reproducibly meets the seldom-discussed parameter of low auto-oxidation, something missed unless you test each lot methodically.
Specialty chemical manufacturers often request custom sieving or moisture limits. With in-house granulation equipment, we provide these adjustments without extra lead time, based on our day-to-day manufacturing flexibility. Customers buying generic or imported lots often face delays and off-spec claims when their partners cannot adjust quickly; we solve this by building reserves of key grades, all made in the same controlled system, so backup lots are never a gamble.
Stackable, moisture-proof drums and semi-bulk liners have arisen out of user feedback, not focus groups. Chemical handlers—who know the impact of a leaking bag on a sticky morning—shaped our packaging upgrades. Protection from ambient humidity, stack robustness, and easy open-close design means less wasted labor and safer handling at every transfer step.
Over time, we have seen what happens when lots cannot be traced. Mix-ups lead to regulatory headaches, recalled batches, and, in the worst cases, damaged credibility. Every shipment of Rhubarb Phenol carries a batch record with source, drying date, and analytic summary. We keep a five-year sample archive and batch paperwork, so even years down the line, any anomaly can be explained down to the shift that made it. This practice does not grow from compliance but from having seen the real cost of sloppy recordkeeping in plants worldwide.
We are asked regularly about what makes our Rhubarb Phenol different. There’s no secret trick or proprietary additive. The answer is straightforward: persistent housekeeping, strict process logic, real-world trial, and consistent human oversight. We neither outsource critical steps nor dilute finished product with untested supply. Whenever a process presents a variable, we solve it without compromising consistency or safety. We believe the only sustainable advantage is trust, built over many production cycles.
Over the years, we have improved reading the needs of end-user teams because the feedback arrives through many channels. Some improvements come through a quick call reporting a handling hiccup; others come from annual audit reports or a plant manager’s walk-through. Practical design changes—stronger packaging seals, color-coded drums for different plant sites, and revised storage instructions—have made their way onto our production line thanks to real-world learning. We value this process as much as the actual synthesis, since it keeps us grounded in what the finished work achieves, not just what the lab intends.
Ultimately, Rhubarb Phenol stands as the outcome of dozens of incremental changes, measured by how reliably it meets the expectations of actual users, not just what it can clear on a test certificate. Our real test comes from user satisfaction, lower incident rates, and the ability for teams to report back that their process flows as planned. Our goal is not only to meet standards written by others, but to set a new standard of reliability and openness—one that removes the unknowns from your operation before they can start costing you production, safety, or reputation.