|
HS Code |
987777 |
| Chemical Name | Dichloroacetamide |
| Cas Number | 1668-10-6 |
| Molecular Formula | C2H3Cl2NO |
| Molecular Weight | 144.96 g/mol |
| Appearance | White to off-white crystalline solid |
| Melting Point | 97-100 °C |
| Solubility In Water | Soluble |
| Density | 1.57 g/cm³ (approximate) |
| Odor | Odorless |
| Inchi | InChI=1S/C2H3Cl2NO/c3-1(4)2(5)6/h(H2,5,6) |
| Smiles | C(=O)(N)C(Cl)Cl |
| Storage Conditions | Store in a cool, dry, well-ventilated area away from incompatible substances |
| Stability | Stable under recommended storage conditions |
As an accredited Dichloroacetamide factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Dichloroacetamide is packaged in a 500g amber glass bottle with a tamper-evident cap and chemical-resistant labeling for safety. |
| Shipping | Dichloroacetamide should be shipped in tightly sealed containers, clearly labeled, and protected from physical damage. It must be transported according to applicable regulatory requirements, such as those provided by the UN, DOT, or IATA. Ensure storage in a cool, dry, well-ventilated area, away from incompatible substances and ignition sources during shipping. |
| Storage | Dichloroacetamide should be stored in a tightly closed container, in a cool, dry, and well-ventilated area. Keep away from incompatible substances such as strong oxidizers. Store at room temperature and protect from light and moisture. Ensure proper labeling and keep away from food and drink. Use appropriate containment to prevent environmental contamination in case of leaks or spills. |
Applications of Dichloroacetamide in Industrial ManufacturingDichloroacetamide serves as a critical synthetic intermediate and processing aid in specialized chemical manufacturing sectors. Below, we detail verified industrial applications, addressing compliance, usage ratios, process integration, and final product types sourced directly from downstream factory experience. 1. Selective Herbicide Formulation in AgrochemicalsAgrochemical formulators use dichloroacetamide as a herbicide safener, particularly in pre-emergence and selective weed control products. It plays a key role in enabling crop selectivity by modulating herbicide uptake and mitigating phytotoxicity to target plants. Manufacturers incorporate it during emulsification or blending stages with active ingredients and adjuvants, following strict quality controls to ensure field safety and product consistency. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
2. Pharmaceutical Intermediate for API SynthesisThe pharmaceutical industry relies on dichloroacetamide as an intermediate in select active pharmaceutical ingredient (API) synthesis lines, especially for APIs requiring dichloroacetyl moieties as building blocks. Integrated GMP manufacturing requires precise addition during amidation or acetylation stages, with comprehensive in-process controls for purity and residual content, ensuring compliance with pharmacopeia standards. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
3. Polymer Industry: Processing Modifier for Vinyl ResinsManufacturers in the polymer sector employ dichloroacetamide as a processing modifier to improve thermal stability and dispersion of vinyl resin systems, especially in PVC and PVDC copolymer lines. By introducing this additive during melt blending or solution polymerization, downstream factories achieve specific melt viscosities and control plasticization without compromising film clarity or end-use mechanical properties. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
4. Specialty Chemical Synthesis: Halogenated Intermediate in Fine ChemicalsSpecialty fine chemical producers use dichloroacetamide as a halogenated acyl source in custom synthesis contracts, targeting agro-intermediates, dyes, and selective catalysts. The compound enters multi-step synthetic sequences, aiding introduction of dichloroacetyl groups and enabling further derivatization necessary for end-use performance in advanced organic synthesis. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
5. Laboratory Reagent for Analytical Testing and Method DevelopmentCertified laboratories, including those at major industrial plants and research institutes, use dichloroacetamide as a reliable test reagent for method validation and calibration when developing new analytical protocols or stability indicating assays. It is applied to establish detection limits, system suitability, and method robustness when analyzing trace contaminants, pesticide residues, or active residues in complex matrices. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
|
Competitive Dichloroacetamide prices that fit your budget—flexible terms and customized quotes for every order.
For samples, pricing, or more information, please call us at +8615371019725 or mail to admin@sinochem-nanjing.com.
We will respond to you as soon as possible.
Tel: +8615371019725
Email: admin@sinochem-nanjing.com
Flexible payment, competitive price, premium service - Inquire now!
Dichloroacetamide has gained its place within the chemical sector for very specific reasons rooted in reliability, performance, and flexibility. As a manufacturer directly engaged with this compound from raw input to finished product, I can speak to its practical advantages, the reasons customers come back to it, and the ways it’s set apart from other options on today’s market.
Day in and out, our process teams handle the technical aspects, but what matters in daily production is consistency and predictability—Dichloroacetamide brings both. Our model for this compound, whether serving regional agrochemical partners or specialty polymer operations, aims for clear standards in purity and particle size. For context, batches target a minimum purity of 99% (GC), and our granule distribution matches most current industry expectations for downstream process integration. The formula C2H3Cl2NO sets the baseline, but behind that is a sequence of controls to secure a homogeneous product lot every time.
People ask, “What exactly does Dichloroacetamide do differently from other acetamides?” From a technical point of view, its real strength lies in selective application—most often as a herbicide safener, but increasingly as a process intermediate for polymers and pharmaceuticals. The unique reactivity of Dichloroacetamide, owing to its electron-withdrawing chloro groups, means that the molecule stands up well when blended in herbicide formulations. For operators in the agrochemical business, it acts as a stabilizer, protecting crops from unintentional injury and allowing targeted action against undesired weeds.
Down our own line, batches destined for herbicide markets must pass a strict analysis. Impurities above 0.2% don’t make the cut. We’ve spent over a decade tuning the crystallization and distillation streams so customers receive material that runs reliably in their downstream mixers, controls foaming, and blends without surprise precipitation. Speaking from the shop floor, staff work closely to log every variance in incoming raw materials and document the time-temperature curves that keep Dichloroacetamide within its tightest specification window. The goal is always to reduce disruption at the next stage—usually, that means no downtime for the formulator, no stuck lines, and no variegated performance in the field.
In the chemistry space, there are plenty of options—mono-, tri-, and tetrachloro analogs, as well as acetochlor and metolachlor themselves. If you want a low-toxicity, readily handled intermediate that doesn’t risk excessive volatility or off-target environmental movement, the dichloro variety carries the advantage. What our plant crews see in day-to-day handling is a nearly colorless, stable powder—easy to manage and limiting worker exposure compared with some precursor or byproduct streams.
Dichloroacetamide doesn’t possess the low flash point of chlorinated solvents, nor does it require heavy-duty personal protective equipment beyond the standard chem-plant kit. We train staff to respect its moderate reactivity, but as manufacturers, we value how it holds up in bulk storage without notable hydrolysis or decomposition for months on end, presuming the warehouse team seals the drum and keeps humidity controlled.
Scaling up production often reveals the weaknesses in chemical supply chains. Early on, we confronted setbacks with purity drift during continuous runs. Unusual spikes in chloride content forced us to overhaul section valves and review the temperature profiles. Through process reviews and lab feedback loops, we tightened up not only the main production line but also our side operations—mainly waste neutralization and solvent recovery. The experience demonstrated that quality in Dichloroacetamide doesn’t come down solely to the purity figure on a certificate; it’s anchored in minute-by-minute control.
Smaller-run competitors sometimes struggle with batch-to-batch consistency. As a manufacturer, we built regular feedback with our key customers into every account. If they report a solubility blip or yield drop, we revisit historical plant data and, if necessary, rerun a sample from retained inventory. One year, a client’s polymer extruder jammed during a formulation change. After a week-long investigation, we traced the issue to a subtle difference in particle morphology of an overlapping batch—lessons like these drive incremental specification checks that prevent headaches for both the producer and end-user.
Environmental regulations and worker safety standards have only become stricter with each passing year. As a producer, we track the chemical’s environmental profile. Dichloroacetamide lacks some of the mobility in soil that troubles more volatile or persistent compounds, yet its breakdown products call for care. We install water filtration and mediate effluent release on-site rather than shift the burden to municipal treatment. Staff participate in semiannual hazard training. Bulk shipping containers meet not only shipping law but internal standards that we’ve set higher. It’s part of the cost of operating as a fully integrated producer, but pays dividends in the trust we hold with long-term partners.
Global disruptions, from abrupt feedstock shortages to logistical bottlenecks, have taught us every shortcut comes at a price. Several years ago, a halting chlorine supply upstream forced us to recalibrate usage projections and compelled closer collaboration between procurement and production planning. As a direct manufacturer—not a broker or distributor—we retain end-to-end visibility, allowing us to prioritize batches, pivot to in-house stocks, and keep finished material flowing to contract customers. There is no reliance on spot-market intermediaries, which tends to keep delivered product in a reliable cost range, despite pressure from market shocks.
Having a team involved in the chemical’s actual synthesis means we regularly feed operating insights back into process development. Material that appears visually pure could still underperform due to micro-level contaminants influencing reactivity or shelf life—an issue that often escapes third-party resellers who don’t operate reactors themselves. By constantly sampling batches at each stage, from crystallizer to drying, plant technicians recognize trends in purity and can intervene before lower-quality material even leaves the site, minimizing scrap and costly troubleshooting for downstream clients.
There are clear differences between Dichloroacetamide and alternatives such as N,N-dimethylacetamide, other haloacetamides, or unchlorinated analogs. For herbicide applications, the dichloro structure maintains its position because of its predictable crop-tolerance profile and low risk of non-target phytotoxicity. Non-chlorinated amides lack that narrow spectrum, and tri- or tetra-chlorinated versions can escalate environmental persistence or introduce regulatory barriers.
Parts of the pharmaceutical sector have experimented with related compounds as peptide synthesis intermediates. Dichloroacetamide’s two chlorine atoms provide just enough electron withdrawal to activate desired transformations while limiting unwanted side reactions. Colleagues in synthesis labs report higher yields and fewer byproduct complications using our material than with broader-spectrum analogs.
Direct resellers often overlook such subtle distinctions, but at the manufacturing level, these molecular traits translate into real-world performance: tight quality yields in agrochemical blending rooms, reduced vapor emissions on plant floors, and less off-spec material requiring expensive disposal or reworking.
From the perspective of the manufacturer, our relationship with the customer extends well beyond the initial order. Fielding calls about batch compatibility in sensitive herbicide mixes, sharing chromatographic profiles to assure consistent reactivity, and engaging in site audits upon request creates a collaborative cycle rarely experienced with indirect suppliers. We build and retain in-depth technical documentation, ranging from MSDS registrations to batch reaction logs, so customers can verify every step of our process. Traceability and transparency go hand-in-hand with E-E-A-T principles—experience, expertise, authoritativeness, and trust are not marketing slogans in our shop, but operational habits.
Occasionally, regulatory shifts prompt ingredient reformulations. For instance, we’ve coordinated reformulation trials involving lower residual solvent levels and adjusted downstream blending to meet stricter local and international chemical safety regulations. Updates don’t simply mean swapping one bag for another; our staff prepare samples, work with end-user labs to optimize blending sequences, and sometimes tour customer facilities to provide on-site troubleshooting. That kind of partnership has set the groundwork for continuous supply, as well as rapid issue resolution—something that’s become especially valued as regulatory and environmental scrutiny increase.
Partnerships with downstream formulators and logistics teams lead to practical improvements. For example, when one of our agricultural partners sought greater batch traceability, we adapted every drum label and shipment document to align with their lot coding system, not just our own. The net outcome was better recall potential, fewer supply hiccups, and smoother audits under tightening supply chain oversight.
A manufacturer’s success with specialty chemicals like Dichloroacetamide depends on real engagement with every batch and an ongoing focus on the evolving needs of science, agriculture, and environmental compliance. Feedback loops remain strong. We monitor not just short-term batch outcomes, but long-term storage, compatibility, and user feedback beyond the initial point of sale.
Handling Dichloroacetamide means meeting the expectations of farmers, process engineers, and product safety teams alike. Our support goes all the way from the drum to the final application—be it in a cornfield bolstered against herbicide stress or a pharmaceutical plant driving a new route to synthesis. Over years of hands-on manufacturing, every process improvement and every quality control shift has led to higher performance in the field. What sets our product apart is not just the molecular structure but the rigorous discipline built into every step of production, and the carried-over knowledge from problem to solution, year after year.
Staying rooted in the chemistry, maintaining honesty about material strengths and limits, and directly engaging technical feedback keep Dichloroacetamide at the sharp edge of specialty chemicals. That’s not something a distributor or third-party can replicate. Commitment at this end means less risk for customers, safer handling for users, and better results where the chemical really gets to work.
Manufacturing Dichloroacetamide today increasingly means doing it responsibly. We’ve transitioned plant energy sources toward lower-emission systems and actively research new water and air treatment setups. Year-on-year, we invest in automation to minimize manual handling and reduce potential exposure risks for operators. Sustainability isn’t a buzzword in our plant; it’s a deliverable that shows up in every audit and every signed certificate—reflected in improved emissions statistics, reduced off-spec output, and a smaller raw material footprint per kilogram delivered.
The broader chemical market will continue shifting, making single-use solutions or lowest-cost approaches less viable. Our investments in process safety, environmental management, and customer-centric solutions give long-term partners practical certainty, not just on price or specs, but in operational reliability. Looking forward, we expect regulation to intensify, emphasizing full supply chain scrutiny and greener product portfolios. Those challenges don’t need outsourcing or standard template solutions—they respond to local, hands-on expertise and the kind of technical rigor that only primary manufacturers bring.
Every insight on Dichloroacetamide shared on this page reflects not just product familiarity, but the lived experience of people who run the reactors, maintain the lines, sample the batches, tweak the process, and work year-round to ensure real-world results. Through constant adaptation, transparent quality-sharing, and open technical partnership, this chemistry remains relevant and safe—and for those of us in production, an ongoing source of learning and pride.