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HS Code |
524551 |
| Chemical Name | Carbendazim |
| Cas Number | 10605-21-7 |
| Molecular Formula | C9H9N3O2 |
| Molar Mass | 191.19 g/mol |
| Appearance | White crystalline solid |
| Solubility In Water | 8 mg/L at 25°C |
| Melting Point | 302°C |
| Boiling Point | Undecomposed up to 350°C |
| Mode Of Action | Systemic fungicide |
| Toxicity Class | Class III (slightly hazardous) |
| Ph | Approximately 6-7 (1% solution) |
| Usage | Control of fungal diseases in crops |
| Stability | Stable under normal conditions |
| Odor | Odorless |
As an accredited Carbendazim factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | The Carbendazim packaging is a sturdy white plastic container, clearly labeled, containing 500 grams, with hazard warnings and safety instructions. |
| Shipping | Carbendazim should be shipped in tightly sealed containers, away from incompatible materials, and protected from moisture and direct sunlight. It must be clearly labeled and transported following local, national, and international regulations for hazardous chemicals, ensuring safety protocols are observed to prevent spills or environmental contamination during transit. |
| Storage | Carbendazim should be stored in a cool, dry, well-ventilated area away from direct sunlight, heat, and moisture. Keep the container tightly closed and clearly labeled. Store separately from food, feed, or incompatible substances such as strong oxidizers. Use corrosion-resistant shelving and ensure proper containment to prevent environmental contamination in the event of leaks or spills. |
Applications of Carbendazim in Industrial ManufacturingCarbendazim is a leading systemic fungicide produced for technical use across multiple regulated sectors. The following sections detail established downstream applications in industrial manufacturing, covering industry standards, process integration, and specific finished product pathways as mandated by each professional field. 1. Agricultural Fungicide FormulationsDownstream agrochemical manufacturers extensively apply carbendazim as an active ingredient in the formulation of suspension concentrates, wettable powders, and flowable concentrates for crop protection. This process demands strict process control of particle size, wet milling dispersion, and chemical stabilization, tailored to crop species and disease pressure. Companies must ensure regulated dose conformity and chemical stability throughout mixing, homogenization, and packaging. The resultant products directly target fungal infestations within cereal, fruit, vegetable, and ornamental crop supply chains under Good Agricultural Practice (GAP) protocols. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
2. Wood Preservation ChemicalsWood-processing industries integrate carbendazim as a fungicidal component in timber preservative systems designed for construction, utility poles, railway sleepers, and decorative surfaces. Industrial blenders dose the active ingredient into water- or solvent-based preservation baths, or formulate it with other biocides for extended antifungal protection. The method requires validation on retention rate and leaching, as dictated by application class and substrate porosity, ensuring treated wood meets durability and health regulations in outdoor and indoor environments. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
3. Industrial Paints and Coatings (Anti-Fungal)Manufacturers of industrial coatings include carbendazim to suppress fungal growth in architectural paints, marine topcoats, floor finishes, and specialty emulsions for high-moisture environments. The integrator disperses the ingredient into resin bases via high-speed mixers, ensuring controlled distribution and chemical compatibility with polymer matrices. Batch quality control confirms fungicidal persistence after drying and during shelf life, especially in formulations intended for medical facilities, food factories, and humid storage sites. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
4. Synthetic Rubber and Polymer AdditivesManufacturers in the synthetic rubber and molded polymer industries introduce carbendazim as an anti-microbial additive in the compounding stage to enhance finished product durability against fungal degradation. This measure is critical for products exposed to tropical or moist conditions, where biological decay reduces service life and safety. Production lines utilize automated feeders for accurate dosing into elastomer blends or plastic masterbatches, followed by mixing, extrusion, or molding under controlled temperature and shear profiles. Integrated QC verifies fungistatic effects without compromising polymer mechanical properties. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
5. Textile Finishing AgentsTextile finishing plants apply carbendazim in finishing baths or coatings as an anti-mildew treatment for technical fabrics exposed to humidity, water, and biological risk during end use or storage. The compound is blended with auxiliary agents during compounding, followed by padding, soaking, or spraying onto fibers or fabrics. Finishers calibrate application weight and curing processes to maximize residual effect and minimize impact on handle, color, or mechanical strength. Downstream partners validate treated textiles under accelerated aging and field durability testing protocols. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
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For decades, our chemical operation has focused on turning science into tools that make the world’s crops healthier and safer. Carbendazim remains one of the firmest solutions in our range, not just because of its role as a broad-spectrum systemic fungicide, but also thanks to our experience in tailoring each batch to the specific needs of end users.
We manufacture Carbendazim in several technical grades to address the real challenges our customers face. The technical content tops out at 98% pure, designed to deliver reliability on a large agricultural scale. Our most requested form, the wettable powder (WP), comes in concentrations from 50% all the way to 80%. Each variant supports different field treatment strategies and resistance management plans, reflecting conditions growers experience year in and year out.
While other suppliers often sacrifice stability for volume, our engineers stay focused on keeping every batch of Carbendazim free-flowing, moisture-stable, and easy to disperse in water. This helps growers achieve the coverage they need without clogging nozzles in the field – a problem that adds real and costly downtime. Our granule formulations handle well in larger-scale farm setups where dust reduction is a pressing concern, pairing consistently sized particles with a durable coating that keeps breakdown rates predictable even under humid storage.
Most buyers reach out to us with a simple need: stop diseases in fruits, vegetables, grains, oilseeds, and ornamentals before they threaten a whole season’s worth of effort. Carbendazim’s active principle interrupts cell division in fungal pathogens, so it prevents the spread of scab, powdery mildew, leaf spot, and fusarium head blight far more reliably than older, contact-only products. Unlike some narrow-spectrum fungicides, Carbendazim doesn’t back growers into a corner after heavy rains or shifting temperatures—systemic action means the product moves through the plant, handling infections too deep or widespread for surface treatments alone.
Our practical experience runs alongside the science. Crews apply Carbendazim rough terrain, high humidity, and through varying water sources. A formulation that cakes in storage or plugs the sprayer never makes it past our quality control, because we know sprayers rarely operate in laboratory conditions. Labor shortages have also made repeat applications difficult in many parts of the world, so getting strong residual control after a single correctly timed treatment means everything. Carbendazim, formulated and manufactured in our plant, delivers that performance where it matters most—in the field, under pressure.
Working directly with end-users puts us in a position to explain not just what Carbendazim does, but why it marks a difference from alternatives on the market. Carbendazim offers systemic protection, meaning that once plants absorb it, fungal pathogens struggle to find a foothold. Most contact fungicides can only touch what they cover. This is a crucial distinction, especially in rainy seasons or with dense foliage. Carbendazim persists in the plant for a longer interval, which leads to reduced weather sensitivity and, in practice, longer periods between necessary applications.
We’ve encountered comparisons with triazole and strobilurin compounds. Each has a place in fungicide programs, but we see Carbendazim’s multi-crop efficacy and affordable price point drive its continued popularity. The broad target range means farm managers don’t need large inventories of disease-specific products; this simplifies logistics, inventory management, and safety oversight at every step. Mixture trials on our own test plots continue to show Carbendazim’s compatibility with many other fungicides, which gives users options to slow the progression of resistance without complicated mixing procedures.
Another point that deserves mention: physical and analytical consistency. Crop protection chemicals, particularly those used over large acreage, only serve their purpose if active content stays within close tolerances and every batch dissolves the way the applicator expects. We control each process variable—from milling to blending to quality assurance checks—to ensure that growers get the same result whether they open a drum today or next month. This stability reduces the risk of unintentional under-dosing or crop burn, issues that regularly show up from third-party sources relying on remixing or inconsistent solvent systems.
In practice, users trust Carbendazim to handle a range of fungal threats across a wide geography. Rice producers in Southeast Asia value its control over sheath blight and blast, while fruit growers in temperate zones rely on it for apple scab and leaf spot. The ability to target both pre- and post-infection stages helps users maintain clean produce headed for export markets, where appearance and residue limits carry real financial consequences.
Application timing, spraying volume, and re-entry intervals hinge on formulation details. Our WP product, for example, disperses instantly in water. Farm staff can measure and pour directly into the tank, and we eliminate dust drift issues reported with older versions. Our granules, on the other hand, find a home in orchard operations and commercial nurseries where mechanical spreaders work best. Accurate mixing prevents overdosing and off-target effects, two prime complaints from operators using lower-quality imports in past years.
We worked long and hard with agricultural authorities to clarify maximum residue limits, worker safety requirements, and environmental protection rules. Protecting both the crop and the community matters as much to us as selling a batch—because our long-term relationships depend on it. Our laboratory teams test each batch for impurities and undesired by-products. This ensures that what leaves our plant fits both established regulatory frameworks and expectations from downstream users.
Staying ahead in Carbendazim manufacture means more than just repeating what worked in the past. Pathogens evolve. Weather patterns shift. Entry rules into major export markets get stricter every year. Our role as the actual producer puts us in a unique spot: we see every change up close, from raw material cost hikes to shifting safety standards to feedback from growers using our product in the toughest possible settings.
One of the ongoing challenges is resistance management. Overdependence on a single mode of action invites trouble, whether in monocultures or rotation systems. We’ve devoted a section of our technical team to educating large growers and cooperatives on alternating Carbendazim with other fungicide classes. On our end, every batch undergoes tests for off-type isomers and known degradation products, because these small differences sometimes drive a drop in field performance and a rise in resistance. Close ties with researchers and agronomists worldwide bring new intelligence to our production, so users get the most robust formulation science offers.
Another issue: counterfeit and substandard fungicides. These products erode confidence, damage crops, and, at times, lead regulators to restrict active ingredients without considering the difference between genuine, well-controlled products and what passes for them in the market. Because we handle sourcing, blending, and packing internally, our traceability protocols allow customers and inspectors to check provenance on every drum. In cases where field staff suspected a quality issue, our open-door approach meant sending samples for free analysis and, if necessary, helping end-users document claims for regulatory recourse.
Every decision in our facility, from raw chemical synthesis to final packing, weighs practical use. Growers need flexibility in application amounts, water-volumes, and integration with existing crop schedules. Distributors want clear labeling and batch data. Regulatory officers need transparent certificates and detailed impurity reports. By keeping control over each step, we avoid the pitfalls of outsourcing—variable quality, mismatched product, and gaps between label claims and field results.
We also respond quickly to customer feedback. After seeing a rise in reports of mixing issues in older WP carbendazim from the market, our engineers adjusted our process to reduce particle size deviations while improving antifoaming properties. This shifted repeat orders back our way and, more importantly, solved widespread tank cleaning complaints that had gone unanswered elsewhere. User frustration often leads to product changes, so real-time field input remains an irreplaceable tool.
Transport stability plays a large role in user satisfaction. Some agricultural regions face extreme heat and humidity or lack climate-controlled storage. We address this with batch-stability trials and moisture-protected packaging verified in both warehouse and field conditions. This extra attention earned recognition among long-haul distributors who, in the past, lost product value before it even reached remote buyers.
Large-scale agriculture demands trust, and trust flows from clarity. Generics using the Carbendazim name often flood the market with variable results. The difference starts at synthesis: our advanced purification stages reduce off-color residues and guarantee that micro-contaminants fall well below accepted international thresholds. We dedicate specific reactor lines to Carbendazim, eliminating cross-contamination from unrelated chemistries and ensuring product consistency regardless of order volume or season.
On top of quality, regulatory compliance makes or breaks a crop’s entry into overseas markets. By staying current with international residue limits and local inert ingredient rules, we make it easier for large growers to export their harvests. Some overseas buyers struggle to move produce because manufacturers cut corners with solvents or dispersants; we document every component, an approach shaped by unsuccessful import attempts traced back to non-compliant batches from less meticulous sources.
Our technical staff spend real time following both trial results and recall notices on competing Carbendazim batches globally. This view into the broader market—backed by decades in chemical engineering and several patent-protected improvements—tells us where to focus R&D dollars. For example, complaints about phytotoxicity in some competitor products led us years ago to alter our manufacturing line, filtering out minor by-products linked to leaf burn in warmer climates. The end result is peace of mind for commercial growers that each application will be as safe as it is effective.
Now and then, broad agricultural shifts change the fungicide landscape, whether from evolving pathogens, tighter regulations, or new sustainability programs. We monitor these movements not just in the literature, but by visiting customer operations, gathering input on what works and what stalls, and feeding this back into plant operations. Our R&D group runs regular trials on site and in grower fields, checking for drift potential, residue levels, and disease control against new fungal strains. When new country-level use rules emerge, we’re often out in the field with local experts, gathering data and advising on field rates, re-entry times, and safe harvesting schedules.
Many of our improvement ideas stem straight from user needs, not abstract lab plans. One classic example: as more smaller growers diversified into high-value crops, we launched a lower-concentration wettable powder with improved short-interval pre-harvest use, giving high turnover greenhouse operations everything they needed on schedule without slowing harvest cycles. Our ongoing review committee constantly evaluates batches, launching small-proof programs ahead of major seasonal swings.
Running a chemical plant carries responsibility far beyond selling pallets. We’ve witnessed increased scrutiny over runoff, residue buildup, and human safety exposure. Our process innovations target reduced production emissions, better spent solvent recovery, and safer inert carrier compounds. Field safety teams audit application routines both at home and in partner facilities, working through any off-label use patterns that creep in over time. We often field calls from regional safety officials looking to clarify reentry or harvest intervals, and we keep all information transparent for auditors checking our process records.
On the user side, we equip partners with storage, use, and cleanup guidance based on real accident reports, not just what appears in authority handbooks. This stems from dealing directly with cases where mishandling—spillages, mis-mixing, or application without proper protection—led to avoidable risks. Our willingness to rework packaging for better measurement and dosing isn’t a one-off improvement. We want the final customer to experience both safety and value throughout the product’s life cycle, seeing the human impact of good chemical stewardship reflected across all facets of our business.
Carbendazim’s continued importance in global agriculture depends on responsible manufacturing and active customer support at every phase of use. As the actual manufacturer, not a broker or reseller, we take ownership from the earliest ingredient right through to post-sale field support. Rejecting subpar inputs, tracking batch lots for full traceability, and supporting customers through audits and trouble-shooting build the trust that’s earned us repeat customers across four decades.
Today, users expect more than a chemical in a drum; they look for solutions that keep crops healthy, comply with changing international standards, and adapt to the real challenges of modern agriculture. Our hands-on approach—rooted in experience, practical know-how, and a commitment to innovation—ensures each batch of Carbendazim stands for more than its name: it testifies to the accountability and care we invest in every step, from our facility to your farm.