Discover premium-grade chemical formulations engineered to satisfy rigorous international benchmarks and diverse manufacturing requests.
Hydrazine Hydrate Anhydrous (CAS No. 10217-52-4 for monohydrate, CAS No. 302-01-2 for anhydrous hydrazine) represents one of the most critical reactive bases utilized in the modern chemical process industries. Known for its strong reducing capabilities, high energy density, and structural versatility, it functions as a primary building block in rocket monopropellants, aerospace engineering, corrosion inhibitors, pharmaceutical synthesis, and advanced agricultural formulations.
As global industries focus on increasing efficiency and minimizing structural waste, securing a reliable, high-purity wholesale supplier of Hydrazine Hydrate Anhydrous has transitioned from a routine transactional operation to a core strategic component. Modern manufacturing mandates exact concentrations, stable raw material pricing, and strict adherence to global safety and ecological legislation.
Anhydrous Hydrazine (N2H4) is a highly polar, nitrogenous compound containing a single nitrogen-nitrogen covalent bond. Unlike its hydrated state, the anhydrous form possesses significant energy potential and presents exceptional reducing properties, making it invaluable for advanced applications requiring zero water content.
Hydrazine Hydrate pricing fluctuates based on global ammonia feedstocks, energy surcharges, environmental safety compliance overheads, and logistics constraints. Our direct-factory model limits downstream volatility, ensuring stable pricing indicators for enterprise-level procurement.
Handling and transporting Hydrazine Hydrate requires rigorous dangerous goods (DG) logistics management. Our facility complies with IMDG Class 8 (Corrosive) and Class 6.1 (Toxic) regulations, protecting shipment integrity across international ports.
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Exploring the synthesis pathways, specialized dehydration techniques, and future technical advancements governing industrial manufacturing.
Industrial production relies primarily on the Ketazine process, reacting ammonia (or urea) with sodium hypochlorite (or hydrogen peroxide in the Olin Raschig and peroxide variants). The peroxide route eliminates chlorine byproducts, maximizing eco-efficiency.
Because hydrazine and water form an azeotrope at 68% concentration, preparing anhydrous hydrazine requires extractive azeotropic distillation. The system utilizes entraining agents (e.g., aniline) to alter relative volatility and isolate pure anhydrous hydrazine.
R&D efforts target green propulsion alternatives, electrochemical synthesis from nitrogen gas, and solid-state hydrazine storage systems. These innovations aim to reduce transport hazards while maintaining chemical activity.
| Analytical Parameter | Industrial Grade (Hydrazine Hydrate) | Anhydrous Hydrazine Specification | Standard Testing Methods |
|---|---|---|---|
| Assay (N2H4·H2O / N2H4) | ≥ 80.0% / ≥ 64.0% | ≥ 98.5% | Iodometric Titration |
| Appearance | Colorless, clear liquid | Colorless, fuming liquid | Visual Inspection |
| Non-Volatile Residue | ≤ 0.01% | ≤ 0.005% | Gravimetric Analysis |
| Chloride (Cl-) | ≤ 0.001% | ≤ 0.0005% | Turbidimetric Method |
| Heavy Metals (as Pb) | ≤ 0.0005% | ≤ 0.0002% | Atomic Absorption Spectrophotometry |
| Iron (Fe) | ≤ 0.0002% | ≤ 0.0001% | Spectrophotometric Analysis |
How global sectors implement Hydrazine Hydrate Anhydrous to achieve performance, safety, and synthetic efficiency.
In high-pressure power generation loops, Hydrazine Hydrate acts as an oxygen scavenger, reducing dissolved O2 levels to near-zero. This action protects steel pipes and boiler systems from oxidation, preventing magnetite passivation breakdown.
Serves as a key precursor for heterocyclic compounds, such as pyrazoles and triazoles. It facilitates the synthesis of active pharmaceutical ingredients (APIs) for tuberculosis treatments, anti-inflammatory drugs, and oncological agents.
Acts as an intermediate in producing high-efficiency herbicides, fungicides, and plant growth regulators. It enables targeted chemical syntheses that maximize crop protection while minimizing soil persistence.
Anhydrous hydrazine's high heat of formation and catalytic decomposition make it a primary choice for satellite thrusters and orbital maneuvering systems. It provides reliable thrust through spontaneous catalytic breakdown.
Used to synthesize azodicarbonamide (ADC) and other organic blowing agents. These chemicals release nitrogen gas at controlled temperatures, creating uniform cellular structures in rubbers and plastics.
Functions as a liquid reducing agent in electroless plating processes, depositing thin metallic films on glass, plastics, and ceramics for the electronics and semiconductor industries.
Our manufacturing partners operate state-of-the-art Distributed Control Systems (DCS) linked with real-time Safety Instrumented Systems (SIS). These systems monitor critical variables—such as pressure, temperature, and feeding velocity—minimizing human error and ensuring consistent product quality.
Located near key regional logistics hubs, our factory maintains raw material pipelines for liquid ammonia and hydrogen peroxide. This integrated supply structure insulates production schedules from raw material fluctuations, enabling reliable delivery of bulk cargo.
In the chemical sector, supply chain resilience is critical. At Yanxatech System Industries Limited (YANXA), we leverage advanced domestic chemical infrastructure to provide dependable, long-term procurement options.
By integrating automation, waste recycling systems, and strict safety controls, our production partner facilities achieve high output efficiency while meeting environmental regulations (Zero Liquid Discharge). This structural advantage translates directly into consistent pricing and supply reliability for global buyers.
Direct connectivity to Qingdao, Tianjin, and Shanghai ports allows us to process customs documentation efficiently and secure container space, reducing transit times for global shipments.
Navigating the regulatory landscape of hazardous chemical imports with expert support and compliance documentation.
We supply necessary documentation for EU REACH, US TSCA, and regional regulatory frameworks. Our compliance team verifies that all imports meet local chemical registry requirements.
We package Hydrazine Hydrate in UN-approved HDPE drums, IBC tanks, or specialized ISO tanks. This packaging is designed to withstand long ocean journeys and comply with international shipping safety codes.
Every shipment is accompanied by detailed Safety Data Sheets (SDS) in the destination language, conforming to the Globally Harmonized System (GHS) of Classification and Labelling of Chemicals.
Yanxatech System Industries Limited (YANXA) is an established supplier in the field of specialty materials in China. Starting as a small business unit in 2008, YANXA has grown through a focus on developing international markets for chemical and mechanical industry products.
Through sustained development and cooperation with key domestic manufacturers and research institutes, YANXA has expanded its capabilities to supply specialty materials, including liquid rubber, nitrates, and metal/metal alloyed powders.
Quality, safety, and efficiency are core values of our business. We work to address our customers' general requirements as well as specific needs for new chemical applications in a timely manner. We adhere to technical specifications to ensure that deliveries match product requirements.
Chemical operations involve significant safety considerations. We handle all activities involving chemical products in accordance with safety standards to protect human health and the environment. Our affiliated manufacturing sites hold ISO9001 certifications, reflecting our focus on process and product consistency.
Direct factory access and technical descriptions for our primary product lines.
Colorless liquid, easily polymerized, readily soluble in water, alcohol, and ether. Supplied as formalin (37-50% formaldehyde solution with methanol inhibitor).
White crystalline powder (HMTA, CAS 100-97-0) produced via formaldehyde-ammonia condensation. Used in plastics, pharmaceuticals, and rubber processing.
White powdery solid with a characteristic formaldehyde odor. High-purity linear polymer of formaldehyde with low formic acid content (≤0.05%).
Atomized spherical aluminum-magnesium alloy powder. Ideal for metallurgy, pyrotechnics, and advanced composite materials manufacturing.
High-purity electronic gas utilized in semiconductor etching, low-temperature refrigerant applications, and gaseous insulation.
Industrial-grade tricalcium phosphate. Used as an anti-caking agent, food additive intermediate, and mineral supplement component.
Detailed information regarding our chemical supply services, order specifications, and delivery processes.
Our pricing terms are structured to accommodate fluctuations in global raw material costs (ammonia and hydrogen peroxide) and energy surcharges. When you contact our sales team, we will send an updated pricelist based on your purchase volume, concentration specifications, and chosen shipping terms (FOB, CIF, or CFR).
Yes, because Hydrazine Hydrate is classified as a hazardous substance (Class 8 / 6.1 Dangerous Goods), we require an ongoing minimum order quantity for international sea shipments. This allows us to optimize shipping safety and container compliance. Please contact our sales team to discuss specific arrangements for your trial orders.
Yes, we supply a complete set of documentation for each shipment, including the Certificate of Analysis (COA), Certificate of Conformance, MSDS/SDS sheets, export licenses, packaging certificates, and Certificate of Origin (CO) to facilitate customs clearance at destination ports.
Typical lead times for standard samples are approximately 7 days, subject to international hazardous materials courier regulations. For bulk production and delivery to shipping ports, lead times generally range between 20 and 30 days after receipt of deposit payment and final technical approval. If your production schedule requires faster delivery, our sales managers can coordinate with production to identify workable shipping options.
We accept payments via bank transfer (Telegraphic Transfer, T/T) and Letter of Credit (L/C). Our standard terms are a 30% deposit in advance, with the remaining 70% balance paid against the copy of the Bill of Lading (B/L) by T/T, or via an irrevocable L/C at sight.
All hazardous shipments are packed in UN-certified containers to comply with IMDG codes. We work with certified hazardous material carriers to manage ocean transport. Shipping costs vary based on volume, weight, and destination port. We provide estimated freight rates once your order details are confirmed.
We warrant that all delivered materials conform to the specifications detailed on the Certificate of Analysis (COA). If any quality variations are identified upon receipt, our technical support team will work with you to resolve the issue in accordance with our quality assurance procedures.
Explore our additional product lines, including high-purity gases and specialty metal powders.