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HS Code |
394523 |
| Chemical Name | Benazolin |
| Iupac Name | 3-isopropyl-1H-benzoimidazol-2(3H)-one |
| Cas Number | 3813-05-6 |
| Molecular Formula | C9H9NO3S |
| Molecular Weight | 211.24 |
| Physical State | Solid |
| Color | White to light beige |
| Solubility | Slightly soluble in water |
| Usage | Herbicide |
| Mode Of Action | Inhibits photosynthesis |
| Target Weeds | Broadleaf weeds |
| Application Method | Post-emergence or pre-emergence spraying |
| Toxicity | Low to moderate for mammals |
| Boiling Point | Decomposes before boiling |
| Stability | Stable under normal storage conditions |
As an accredited Benazolin factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | The 100-gram Benazolin is supplied in a sealed, amber glass bottle with a secure screw cap, labeled with safety and product details. |
| Shipping | Benazolin should be shipped in accordance with local, national, and international regulations for hazardous chemicals. It must be packed securely in tightly sealed, labeled containers, protected from moisture and incompatible substances. Use suitable cushioning and secondary containment during transport. Ensure all necessary documentation and hazard warnings accompany the shipment for safe handling. |
| Storage | Benazolin should be stored in a cool, dry, and well-ventilated area, away from direct sunlight and sources of heat or ignition. Keep the container tightly closed and properly labeled. Store separately from strong oxidizing agents, acids, and bases. Ensure storage location is secure and inaccessible to unauthorized personnel, and follow local regulations for hazardous chemical storage to prevent contamination and environmental release. |
Applications of Benazolin in Industrial ManufacturingAs an established producer, we supply Benazolin as a reliable herbicidal active ingredient for critical downstream chemical processes. This product plays a specialized role in select industrial sectors. Below, we detail core application areas where Benazolin advances product quality and operational efficiency, reflecting decades of technical feedback from our customers. 1. Herbicide Formulation for Post-Emergence Weed Control in Oilseed RapeBenazolin serves as an active herbicide ingredient in the formulation of post-emergence sprays for oilseed rape cultivation. Its selectivity against broadleaf weeds supports consistent crop yields while minimizing phytotoxicity risk. Technical teams integrate it into emulsion concentrate (EC) and suspension concentrate (SC) systems, optimizing wetting, spreading, and leaf uptake properties. Rigorous batch QC ensures that the final formulated product meets market registration and label requirements of target geographies, specifically throughout Europe and Asia-Pacific. The material’s efficacy depends on precise emulsion stability and particle dispersion, coordinated with tailored adjuvant systems. Industry compliance standards
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2. Selective Herbicidal Premixes for CerealsDownstream producers incorporate Benazolin into specialized premix formulations targeting complex weed populations in barley and wheat. Integrated at precise loading levels, it enables multi-site control while protecting cereal crops against yield loss from competitive annual weeds. These premixes undergo pilot optimization to balance active compatibility and chemical stability over long-term storage. Application methods commonly involve low-volume spray systems, where physical compatibility with water hardness, adjuvants, and other actives is critical for customer acceptance. Industry compliance standards
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3. Integrated Herbicide-Seed Treatment SystemsSeed treatment manufacturers use Benazolin to prepare combination seed coatings that suppress early weed competition. Micro-dosed onto seeds with film coating technology, the material provides targeted plant protection without impacting germination rates. Its use in these applications follows strict lot traceability and contamination prevention protocols, mandated by leading seed quality assurance programs. This approach allows for enhanced early season establishment and a reduction in the need for initial field herbicide passes, supporting precision agriculture methodologies. Industry compliance standards
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4. Bulk Technical Supply to Crop Protection Ingredient ManufacturersLeading crop protection firms source technical grade Benazolin for manufacture of value-added, proprietary herbicidal preparations. These operations require precise analytical documentation, impurity profiling, and batch certification to ensure downstream compliance and bioactivity. Our supply in technical batches includes support for tailored milling, micronization, and crystal form modification according to customer’s proprietary process demands. Technical teams conduct full trace metal and residue analysis on each lot prior to shipment, and coordinate directly with client validation procedures across integrated product lines. Industry compliance standards
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Benazolin commands attention for its selective weed control, making tough agricultural tasks more manageable. Drawing from actual plant and processing lines, we recognize the journey required to bring Benazolin from raw materials through packaging, ensuring consistency at every checkpoint. Whether you handle rapeseed, cereals, or specialty crops, the interactions you see in the field — and throughout supply — owe much to solid, dependable chemistry and disciplined manufacturing.
Benazolin targets broadleaf weeds, sparing the main crop without undue risk of damage. Years standing on batch lines, working fermentation tanks, and conducting field visits taught us that details such as purity and formulation matter just as much as headline claims. Benazolin, in its widely-used methyl ester form (Benazolin-methyl), features a chemical backbone designed for rapid absorption by leaf tissue. That means when applied under reasonable weather conditions, weeds take up the active substance quickly enough to keep rainfall from washing it away, cutting down on re-dosing and worries over runoff.
Volume production brings its own demands, and every operator on a processing floor knows that a misstep in reaction control or filtration can cause impurities that affect crop safety later. We model Benazolin production tightly around its primary specification: high assay purity, usually not less than 98%, as verified by HPLC or gas chromatography. Consistency in melting point and color is no accident; it results from steady temperature control in crystallization, careful solvent choices, and rigorous final quality checks. The end product’s creamy white, free-flowing powder or granular form means easy handling at application.
Most herbicide buyers and extension officers look beyond glossy brochures, asking for history and context. Benazolin gained loyal use in Europe and parts of Asia because it helped growers solve the twin problem of controlling persistent weeds like cleavers, poppy, and charlock, without hurting valuable oilseed rape stands or wheat roots. That practical benefit filters down from the molecule’s specific selectivity—one discovered after years of field screening and post-emergence studies.
Standard formulations on our lines involve wettable powders and emulsifiable concentrates, each tailored through dozens of pilot runs and spray tests. Every operator who loads a drum or checks a batch knows the finished product will end up in weathered hands, mixed into sprayers that may not always get careful maintenance. That’s one reason we focus on flow rate, dispersibility, and mixer compatibility—usability matters as much as chemical detail. Benazolin’s rapid breakdown on soil and limited residual effect minimize downstream risk to following crops, easing the worries of both rotational planners and sustainable farming advocates.
On processing catwalks, you see every new wave of active ingredients come and go—sometimes promising more, sometimes missing on cost or crop safety. Triazines, sulfonylureas, and phenoxy herbicides all claim space in the weed control toolbox. They differ in how quickly they break down, their risk to non-target plants, and flexibility across climates. Our daily observations tell us Benazolin earns its place in post-emergent weed control, holding an edge in minimizing crop phytotoxicity, especially under slightly cool and damp conditions where other actives might slow down or leach.
Benazolin does not depend on soil moisture to activate, so it helps during years when cultivators face dry starts. Unlike some pre-emergent sprayables that sit on the soil surface and wait for rain, Benazolin acts on contact with leaf tissue, making its timing far less reliant on unpredictable weather. Users also report consistent performance even when early weeds get away—fast knockdown without repeated trips across the field saves machine hours and fuel.
Comparisons with older actives such as MCPB (4-(4-chloro-2-methylphenoxy)butyric acid) and MCPA (2-methyl-4-chlorophenoxyacetic acid) show Benazolin produces fewer visible crop symptoms at standard rates, even when sudden temperature dips or heavy dew threaten. These characteristics reflect the hard-won knowledge that formulation—particle size, surfactant mix, and crystal structure—changes field results, not just the chemical structure on paper.
We care about what happens from truck arrival to drum shipment, not simply what exists on a spec sheet. Starting materials for Benazolin production arrive under nitrogen flush to avoid moisture pickup, which would affect both reaction yield and final purity. After multi-step reactions—controlled for pH, temperature, and stirring rate—the crude product gets filtered, washed, and crystallized, then vacuum dried to meet moisture limits. Every worker in the drying bay understands that errors here affect the batch, the customer, and possibly whole growing seasons downstream.
Standard product grades require a low residue on ignition, showing only trace inorganic contamination. Users who apply Benazolin in high-value vegetable seedbeds or split-dosing row applications depend on this consistency. Typical batches run in kilogram to ton scale, and we routinely reserve a sample for shelf-life testing, putting lots in real-world temperature cycling. Problems here become evident quickly, so our on-site labs measure both active ingredient and relevant decomposition products, ruling out unwanted isomers and breakdown residues.
Most plant workers and field users want to hear concrete safety information, not platitudes. Benazolin ranks among low to moderate hazard actives: handlers report mild eye irritation from concentrate dust, making dust control more important during packing and loading. Personal experience showed good air handling in the drum line, closed transfer systems for emulsifiable forms, and frequent glove replacement cut down on complaints about irritation or skin dryness.
In storage, field operators want to stack drums or pails in ordinary farm sheds, so stability under high and low temperatures matters. Benazolin resists clumping and caking due to its carefully controlled crystal habit and drying step, keeping flow and dose accuracy intact for several months even under less-than-ideal warehouse conditions. We coat the active ingredient lightly in application-ready formulations to further minimize dust-off, an extra step added after feedback from mixed-crop operations.
Sustainable manufacturing gives long-term benefits. Benazolin earns attention for its relatively fast soil breakdown, driven by microbial action under typical field pH and temperature. Our backlog of soil test data shows half-lives under seventy-five days, so Benazolin performs with low risk of carryover into sensitive rotational crops. Manufacturing teams keep effluent and air emissions below regulatory levels, never skipping cyclonic and carbon filter checks, and we pride ourselves on reclaiming wash solvents or finding markets for non-conforming batches rather than using landfill disposal.
Concerns about off-target movement encourage careful product design. Staff chemists work closely with formulators, tweaking surfactant ratios and particle size. We run wind tunnel drift trials to simulate real field conditions, adjusting powder granularity to keep droplets from lifting off in a crosswind. Regulatory affairs tracks regional restrictions closely, making sure label rates align with local guidelines and stewardship.
No two growing seasons are the same, and no amount of lab testing matches what growers learn after putting boots in the dirt. Farmers using Benazolin share that its speed of action can surprise: if an applicator runs too high a rate or hits soft, stressed weeds, temporary leaf yellowing can occur, but such symptoms rarely translate to permanent crop effects. We adjusted concentration options to give users more flexibility, letting them dial in rates based on weed size and crop health.
Sprayer operators prefer Benazolin’s stable suspension and rapid tank cleanout, reporting fewer clogging issues and less residual smell compared to older herbicides. These practical aspects matter when everything rides on short weather windows and rising labor costs. Time after time, regular users point out higher success with follow-up crops, thanks to low soil residue and absence of secondary weed escapes. Seed producers in particular value this, since they cannot afford trace contamination that could inhibit specialized plantings or reduce seed quality premiums.
Markets keep evolving, and so does herbicide demand. Benazolin’s core molecule proves reliable, but we do not sit still; continuous improvement shapes our next advances. We invest in encapsulated granule technology to cut dust, lengthen shelf life, and reduce drift. Collaborations with application hardware manufacturers aim to let precision sprayers target weeds more accurately, lowering overall volume use and risk of resistance development.
Regulatory scrutiny grows sharper, and the need for traceable, audited production runs becomes standard. We took the step of digitizing batch logs and integrating early-warning analytics, catching minor deviations before they threaten entire runs. Staff craftsmanship still matters—no remote monitor or cloud database can spot a shift in solvent odor or a sudden color change as quickly as an attentive line worker, but combining experience with data-driven process control gives the best of both.
We see a strong push toward greener chemistry, and look for ways to isolate byproducts and minimize energy use during both synthesis and drying. Waste heat from exothermic reactions heats parts of our facility; spent filters and recovered solvents go through reprocessing loops. Workers in the environmental section collaborate with R&D, translating practical challenges from the plant floor into real R&D targets, closing the loop between innovation and production safety.
Crop profiles change as weather and markets shift. Our formulation teams work side by side with extension services, tweaking Benazolin’s surfactant mixes to suit new oilseed hybrids or shifting planting dates in primary regions. When growers report unusual weather, such as cool, wet springs or rapid drydowns, we run in-season spray test blocks, measuring uptake and leaf injury in side-by-side strips. That real-time feedback shows up quickly in batch tweaks and technical bulletins, supporting those who bet every season on a good crop.
Competition never rests. New actives and stacked formulations challenge the old standbys. We run ongoing weed resistance screens, tracking how chickweed, fool’s parsley, and other problem species respond over time. When weed shifts become apparent, we pursue additive trials, mixing Benazolin with compatible actives to boost spectrum without raising residue levels. Our aim is flexibility: tailored solutions that meet the different needs of precision row crop farms, conventional broadacre operations, and specialty seed producers.
This direct-from-manufacturer focus benefits those who need reliable, practical answers. Each drum and sack represents not just chemistry but the lived experience of everyone from plant operators to field reps. Our staff draws on repeated cycles of harvest, field trial, and processing batches to spot issues early and adapt solutions before they become bottlenecks.
Decades supplying Benazolin taught us that producers want proof backed by real crops and known faces, not just generic product summaries. We work with independent labs and farming partners to run third-party trials with complete transparency. Full audit trails show exactly how each lot was made, where raw materials came from, and how the production process unfolded. Our own field technicians share both success stories and challenges, using complaints as drivers for system change and further training.
Benazolin’s proven safety window, clear crop selectivity, and easy use profile enabled thousands of growers to reduce hand weeding, keep labor costs predictable, and move toward consistent yield improvement. New user education sessions include direct Q&A, demo plots, and hands-on calibration to share the lessons our team learned over years of mixing, spraying, and troubleshooting.
Benazolin stands out due to consistent quality and responsiveness shaped by direct experience all along the production and use chain. By focusing on raw material sourcing, batch integrity, nimble formulation, and hands-on grower relationships, we provide a product suited not only for today’s needs but those around the next bend. The right herbicide choice helps set the tone for sustainable, profitable agriculture—a fact we see every day both in the plant and out in the field.