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HS Code |
714878 |
| chemical_name | Sodium Dinitro-O-Cresolate |
| other_names | Sodium 6-methyl-2,4-dinitrophenolate |
| molecular_formula | C7H5N2NaO5 |
| molar_mass | 224.11 g/mol |
| appearance | Yellow to brown powder |
| solubility_in_water | Highly soluble |
| melting_point | Decomposes above 300°C |
| main_use | Herbicide |
| toxicity | Toxic if ingested or inhaled |
| CAS_number | 2390-59-2 |
As an accredited Sodium Dinitro-O-Cresolate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | The packaging is a sealed amber glass bottle containing 100 grams of Sodium Dinitro-O-Cresolate, labeled with hazard and safety information. |
| Shipping | Sodium Dinitro-O-Cresolate should be shipped in tightly sealed, corrosion-resistant containers, separated from acids and foodstuffs. It must be clearly labeled and protected from moisture. Transport should comply with relevant hazardous materials regulations (e.g., DOT, IMDG). Ensure proper documentation, and emergency procedures should be in place for spills or leaks during transit. |
| Storage | Sodium Dinitro-O-Cresolate should be stored in a tightly closed, clearly labeled container, in a cool, dry, and well-ventilated area away from incompatible substances such as acids and strong oxidizers. Protect the storage location from moisture, direct sunlight, and sources of ignition. Store at room temperature, and ensure appropriate spill containment and emergency procedures are available nearby. |
Applications of Sodium Dinitro-O-Cresolate in Industrial ManufacturingAs a dedicated producer of Sodium Dinitro-O-Cresolate, we supply this specialist compound for established industrial sectors where reliability, consistency, and compliance drive performance and crop protection value. Our application knowledge directly supports formulation, upscaling, and process control in key downstream manufacturing fields. Explore the major industrial uses below, each demonstrating clear compliance priorities, technical integration, and finished product outcomes. 1. Selective Contact Herbicide Formulation in Agrochemical ProductionMany large-scale agrochemical producers employ this material for designing selective post-emergent herbicides primarily targeting annual and perennial weeds in orchard, plantation, and industrial site management. Its function relies on rapid tissue desiccation and cell disruption, delivering reliable control of challenging weed biotypes without systemic action, which supports integrated weed management programs. Addition occurs during the blending stage of liquid or wettable powder herbicide production lines, where strict batch traceability systems and residue testing protocols must align with diverse global agricultural standards. Industry compliance standards
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2. Industrial Vegetation Control Paint and Coating AdditivesCertain industrial maintenance chemical manufacturers incorporate this compound as an active ingredient in specialized paints and anti-vegetation coatings designed for railway infrastructure, electric substations, warehouse lots, and roadside hardscape. Here, the additive provides long-lasting weed suppression directly from the painted or coated surface, reducing dependence on repeated manual or mechanical clearing. This use demands stringent environmental discharge and occupational health standards because of treated surfaces’ proximity to public spaces and waterways. Industry compliance standards
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3. Sugarcane Ripener and Harvest Aid Additive ManufacturingLeading crop-input manufacturers employ this active in certain sugarcane ripener and defoliant products to accelerate crop uniformity and readiness for mechanical harvesting, optimizing sugar yield and post-harvest processing. This application leverages the material's rapid action to halt growth and facilitate easier leaf drop, creating a more efficient harvest window. Product composition, safety auditing, and residue monitoring are required to fully meet health, export, and food processing standards across both field and refinery stages. Industry compliance standards
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4. Industrial Biocide and Algaecide Preparations for Water ManagementIn certain non-potable water management applications, including cooling towers and industrial reservoirs, process chemical formulators use this compound for targeted control of algae and nuisance aquatic vegetation. Its mode of action curtails photosynthetic activity, supporting long-run water flow efficiency in settings with strict biofouling residues and safety monitoring. This application segment enforces tight production controls and compliance with environmental and occupational hazard standards due to ecological sensitivity and possible worker exposure during system treatment cycles. Industry compliance standards
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At our factory, talk about Sodium Dinitro-O-Cresolate isn’t limited to what’s written on shipping manifests or safety labels. This material has shaped our daily operations and helped us build enduring partnerships with large farms and public health authorities. The technical name might seem a mouthful, but for those of us who have watched trucks loaded with its yellow crystals rolling out into the field season after season, it’s much more—a tool with real weight in our workday.
Chemists began turning to Sodium Dinitro-O-Cresolate almost a century ago for its strong selective action on weeds and fungi. Over time, our expertise in producing this compound has deepened. The crystals themselves offer substantial convenience, dissolving quickly and cleanly in water, making mixing straightforward for end users. We supply this product in a range of purities to suit different applications, but the standard offering boasts a consistently high assay—carefully controlled at each batch step with our analytical equipment on-site.
Years of production have shown us the importance of batch integrity. Even minor variations in particle size or moisture content can shift user experience. We run constant particle analysis throughout grinding and drying, and our people—many on the team for decades—know how to spot the subtle shifts that a sensor can miss. Because of this, farmers and pest control professionals come back each season complaining less about clumping or poor dispersal when they use granules from our line.
As a herbicide and fungicide, Sodium Dinitro-O-Cresolate fills roles that other actives can’t quite match. This isn’t just talk; we’ve witnessed first-hand how the compound helps manage difficult invasive species in rice and cereal crops. Some of our larger agriculture customers have switched to our grades after struggling for years with resistant weeds. Applications in orchards and vineyards have expanded as well, because the short soil half-life means less carryover between seasons—a feature that customers learned to appreciate and which guides our technical advice.
In municipal settings, public health authorities buy from us to help manage mosquito populations. We provide it for use in breeding ponds and standing water. Our clients value the way sodium dinitro-o-cresolate persists just long enough to act without leaving residues that interfere with water quality monitoring. This kind of feedback comes from decades of close work with field technicians and procurement officers, not just claims from the literature.
Ask anyone in the plant, and they’ll say the most noticeable feature is the bright yellow-orange color that tells you you’re looking at the right product. Over the years, trace impurities were found to cause product darkening or baking in storage, so we’ve tweaked the crystallization stages until we could hit tighter color targets batch after batch. Our standard granule size falls around 1 to 2 millimeters, which flows well through application equipment and resists dusting—something that only steady, physical testing in the packaging area could confirm.
Moisture is another concern in real-world handling. Even though laboratory sheets might quote a low moisture percentage, anyone working in a humid climate knows the difference a fraction of a percent makes over weeks in storage or transit. We review drying logs daily and adjust sweep-air temperature and time on the fly—sometimes a necessary step that isn’t captured in a standard spec sheet.
Discussions about weed and pest control tend to involve long lists of available actives. In the market, sodium dinitro-o-cresolate gets compared to older substances like sodium chlorate and newer glyphosate formulations. What stands out in use is the compound’s stubborn persistence on treated leaf surfaces; it binds tenaciously, supporting effective burn-down results without repeated passes. Oral and dermal toxicity profiles require thorough safety handling as all potent agents do, so we walk with customers through both federal guidelines and best handling practices—based on lessons learned in-plant during minor spills and routine maintenance.
Unlike some products that strip micronutrients or cause long-term residual buildup, sodium dinitro-o-cresolate provides seasons of dependable weed control without causing fatigue in soils. Some broad-spectrum herbicides stress not just weeds but non-target plants and soil life. Field trials run at our local university partners indicated that after one to two months, breakdown was complete, with soils returning to baseline microbial activity. This has eased concerns among organic-integrated growers and green space managers who sometimes call for our input before placing an order.
All production starts with carefully checked raw materials—dinitro-cresol and sodium hydroxide—handled in dedicated reactors separated from unrelated product lines to prevent trace contamination. By controlling batch temperature ramps, agitation speed, and cooling rates tightly—measured with calibrated sensors and verified by operator inspection—we produce consistent crystals. Years of hands-on maintenance have shown us where to look for leaks or cross-contamination risks, and we never shortcut end-of-run cleaning steps.
As shift supervisors can tell you, quality doesn’t end at synthesis. We monitor post-synthesis washing to prevent product-caking later in storage, and refine our moisture analysis protocols using feedback from both the warehouse floor and long-term storage studies. Every bag is date-coded and tracked, because storage time affects downstream dispersion—experience picked up through direct customer calls more than any manual or textbook.
We learned some of our most valuable lessons not inside the lab, but in muddy fields, dusty storerooms, and over the phone with long-time customers. Application teams cited issues with old-style packaging; we then developed lined, sealed bags and rotated stock more strictly, reducing incidents of clumping and shelf loss. When a large agricultural buyer flagged recurring pump blockage, we worked directly with their maintenance staff, adjusting granule size and coating to reduce sticking. Small changes like these keep our product usable in a range of climate zones from tropical rain to northern autumn—proof that listening to users pays dividends.
As international regulations grow stricter, we keep documentation open—showing every test, every batch log, and every chain-of-custody worksheet. Certification bodies perform random on-site sweeps at our invitation. Building that kind of trust with both buyers and regulators took decades; shortcuts or obfuscation would never have worked.
Manufacturing a substance with such strong biological activity comes with big responsibilities. Local authorities require us to track waste streams and emissions even more closely. From day one, we invested in separating mother liquor and neutralizing exhaust gases, and installed containment basins around reactors long before it became mandatory. These steps come from knowing the real impact of a spill or uncontrolled vent—not because of a government notice, but because we’ve seen up close what a poorly designed process can do to neighboring streams and wildlife.
We employ staff with hands-on spill response training, equipped to spot issues before they escalate. Plant managers report in plain terms—not just to inspectors but to their own crews, in routine briefings. Because of that, we’ve avoided the production upsets and environmental fines that have closed down so many competitors in the last two decades.
Years of practical manufacturing experience have taught us that knowledge stays sharp only when shared. We’ve worked hand-in-hand with extension services, agronomists, and researchers seeking better application techniques and improved worker safety. Annual clinics held on-site let local farmers see the process, ask questions, and understand how we control product quality. Feedback is not just welcomed, it shapes next year's production cycle. We’ve sent material, chemists, and field support to trial sites as far as across the country, to foster real-world learning.
It's also important to acknowledge the public scrutiny that follows chemicals like sodium dinitro-o-cresolate. Rather than shy away from these conversations, our technical team holds information days and runs live demonstrations for community councils. Fieldwork has shown us most concerns boil down to lack of access to real, experience-backed information. Putting data, test records, and staff expertise on the table—without marketing spin or sales scripts—builds more trust than a thousand PR statements ever could.
Innovation in our shop does not chase trends; it grows directly from repeated practical challenges. Lab improvements, such as faster filtration steps or gentler drying, came as a result of production stoppages that cost us hours or led to inconsistent product quality. Adjusting our process controls has made major differences for customers dealing with aging spray equipment; a seemingly minor shift in product dustiness can prevent entire batches from going to waste in the field.
We keep active partnerships not just with agricultural suppliers, but with universities and professional groups seeking new and safer uses. Several years ago, our team collaborated on developing a granule formulation with reduced drift potential, directly answering feedback from landscape contractors battling urban wind conditions. It’s these stepwise adjustments—born out of daily operations—that keep us ahead, not splashy one-off product launches.
Over the last several growing seasons, climate shifts introduced longer periods of rain and unexpected drought. This affects product uptake in target weeds and run-off risk—a reality that safety sheets don’t often address. We share our weather-adjusted application findings in user newsletters and provide technical support tailored to changing patterns. Our commitment is rooted in keeping both the fields and the factory sustainable, as nothing is achieved unless real-world outcomes stay positive across time.
Regulatory bodies have started to review legacy pesticide registrations and hazard classes, including sodium dinitro-o-cresolate among others. As we anticipate and respond to these changes, we invest in alternative synthesis routes with lower energy demand and lower effluent output. While these shifts take resources and planning, our long-term stability as a manufacturer comes from readiness and openness; we don’t wait until we are forced to adapt.
Our daily focus remains consistent: deliver sodium dinitro-o-cresolate in a form that users trust, at the highest purity and reliability that decades of manufacturing wisdom can provide. The lessons we’ve gathered on the shop floor, in customer fields, and through constant feedback cycles have set our product apart from off-the-shelf alternatives. For us, every order isn’t just a shipping manifest—it’s an opportunity to solve problems, improve outcomes, and preserve the reputation built by generations of dedicated chemists and technicians.
We continue to push for improvements each season, knowing that changing technologies, shifting climate, and evolving best practices mean no solution stays perfect forever. Still, our track record with sodium dinitro-o-cresolate stands on real-world results and hard-earned experience—something no spec sheet or generic product listing can match.