Premium OEM/ODM solutions engineered by China’s leading High-Tech water chemistry laboratory for municipal, industrial, and agricultural filtration systems.
High molecular weight polymer ideal for rapid sludge dewatering, municipal wastewater treatment, and organic industrial effluent purification.
Tailored charge density solutions engineered to optimize particle aggregation and settlement speed in chemical processing.
Prevents crystalline precipitation on reverse osmosis membranes, dramatically extending lifespan and lowering operating costs.
High-grade external carbon source critical for biological denitrification processes in advanced modern sewage installations.
Chelating polymer that binds and precipitates trace heavy metals from mining effluent and plating industrial rinse waters.
Highly linear non-ionic polymer providing excellent flocculation efficiency in acidic mineral slurries and textile sizing processes.
Engineered with precise ionic percentages to guarantee low dosages and high cake solids in belt filter press applications.
Green chemistry solution targeting cooling towers, mitigating scale without contributing to eutrophication in surrounding waters.
The global water treatment industry is undergoing a structural transition. Environmental authorities worldwide, including the EPA in the United States and the European Chemicals Agency (ECHA) under REACH regulations, are enforcing increasingly strict compliance limits. The demands on industrial biocides, coagulants, and scale inhibitors have shifted from basic microbiological control to complex, eco-compliant, high-performance molecular chemistry.
Modern cooling systems, reverse osmosis membranes, and biological wastewater reactors face severe scaling, microbiological fouling, and nitrogen/phosphorus overload. As a result, procurement officers are transitioning away from commodity chemicals toward specialized, multi-functional agent matrices. These systems demand biocides and polymers that degrade safely into non-toxic compounds while retaining their high disinfecting or flocculating potency at minimal dosage levels.
Global regulatory push to mitigate environmental eutrophication has catalyzed the switch from traditional phosphate-based inhibitors to advanced organic, biodegradable carboxylate/sulfonate copolymers.
Industrial giants now prioritize procurement of custom-tailored polymers with specific charge density configurations rather than purchasing generic water filtration compounds.
Transitioning to multi-mechanism microbicides that target bacterial cell membranes directly without causing antimicrobial resistance in cooling tower water loops.
Providing custom chemical synthesis, advanced engineering consultancies, and supply-chain reassurance to global wastewater enterprises.
Established in 2011, Smedic Technology Co., Ltd. has evolved into a comprehensive solution provider in environmental protection chemistry. Our focus encompasses the complete cycle of research and development, synthesis, localized logistics, and process engineering technical services. We manufacture and supply high-performance biocides, advanced organic/inorganic coagulants, and polyacrylamide matrices.
Headquartered in Beijing, China, our industrial reach extends across several domestic chemical corridors. We run wholly-owned production bases in Hebei, Guizhou, and Shanxi, backed by over ten dedicated OEM manufacturing partners and strategic distribution warehouses in Shandong, Shanxi, Anhui, Guangxi, and Sichuan. This distributed footprint secures prompt raw-material procurement and robust product delivery schedules for local and international markets.
Today, our chemicals serve over 600 municipal sewage treatment facilities and more than 1,000 corporate industrial wastewater accounts. The total combined water treatment capacity supported by Smedic Technology products exceeds 20 million tons per day, marking our brand as a key player in the high-end industrial water treatment market.
Combining automated raw material handling, real-time chemical process monitoring, and ISO-compliant quality checks to deliver consistent quality.
The production of advanced biocides, heavy metal removal chelators, and polyacrylamide polymers requires precise temperature control and molecular synthesis pathways. Smedic's production facilities integrate Industry 4.0 automation. Fully closed-loop computerized reaction chambers monitor raw material input, agitation rates, and polymerization temperatures in real time.
By automating critical synthesis loops, we eliminate the variations common to batch-processed chemicals. This ensures that every shipment of Cationic Polyacrylamide (CPAM) or Fluoride Removal Agent meets the molecular weight distribution and charge density specifications requested by our global customers.
Managing logistics for large volumes of municipal and industrial water treatment reagents requires a robust distribution network. Smedic leverages multiple domestic production plants and warehousing bases near major Chinese maritime ports. This setup enables quick distribution to regions including Southeast Asia, Europe, South America, and the Middle East.
Our products are packaged to maintain integrity during long-distance maritime transport. Solid polymers are shipped in double-layered moisture-proof bags, while liquid agents utilize reinforced, DOT-compliant IBC totes. This ensures our chemicals arrive at your site ready for immediate doser integration.
Smedic Technology runs a robust R&D platform centered around one academy, three research institutes, and five production test bases. Our specialized scientific team features senior industrial chemists, environmental engineers, and material scientists. We work in strategic partnerships with China's leading academic institutions, including Tsinghua University Association of Senior Scientists and Technicians, Shandong University, and Beijing University of Technology.
These collaborative efforts have led to significant product innovations. Our proprietary Inorganic-Organic Covalent Bond Flocculant and Advanced Water Purification Technology won the prestigious 22nd China Patent Award and the First Prize for Technological Invention from the China Petrochemical Industry Association.
We maintain over sixty active Chinese patents (including forty invention patents) and have led the drafting of over 10 national and industry standards for composite coagulants, sodium acetate, and biological denitrifying agents. In recognition of our quality-first culture, we have been certified as a National Specialized, Refined, Unique and Innovative "Little Giant" Enterprise and a Hebei Province Green Factory.
A history of scaling production, earning national engineering awards, and expanding global delivery capabilities.
Established corporate headquarters in Beijing, initiating dedicated research into industrial wastewater treatment polymers and advanced biocides.
Launched a complete product portfolio of specialized municipal wastewater treatment agents, solidifying distribution relationships with regional water utilities.
Completed the construction of a large-scale environmental agent production base in Guiyang, enhancing services to mining and municipal facilities in Southwest China.
Completed expansions across our Hebei, Shandong, and Guizhou production lines, raising Smedic's total annual capacity past the 1-million-ton threshold.
Officially recognized as a National Specialized, Refined, Unique and Innovative "Little Giant" Enterprise in recognition of our independent tech developments.
Co-founded the Hebei Advanced Water Treatment Chemicals Technology Innovation Center to accelerate the research of zero-phosphate inhibitors.
Established a joint venture with the Chengdu Institute of Mineral Comprehensive Utilization, China Geological Survey, to synthesize highly customized mining flotation agents and eco-biocides.
Delivering high-efficiency biological control, scale prevention, and rapid sedimentation across diverse sectors.
Providing high-molecular-weight Cationic Polyacrylamide (CPAM) and pure solid Sodium Acetate to optimize activated sludge processes. Smedic agents accelerate flocculation, lower sludge moisture content, and provide consistent organic carbon sources for complete denitrification.
Mitigating scale buildup and bacterial biofilms in heavy-duty cooling towers. Our non-oxidizing biocides combine with phosphate-free corrosion inhibitors to protect heat exchangers, reducing maintenance downtime while meeting stringent environmental discharge guidelines.
Formulating membrane-compatible antiscalants that prevent calcium carbonate, barium sulfate, and silica scaling. This technology maintains stable permeate flow rates and lowers operating pressures in brackish and seawater desalination plants.
Expert answers to guide procurement managers on chemical specifications, application optimization, and global logistics standards.
CPAM selection depends on the properties of the sludge. Key parameters include the organic content, pH, ionic demand, and the type of dewatering equipment used. Belt filter presses typically require high-molecular-weight polymers with moderate charge densities to form durable flocs that release water under shear force. Centrifuges benefit from high-charge-density polymers that generate tight, shear-resistant microflocs. Smedic offers customized laboratory jar testing to determine the precise molecular weight and charge configuration for your facility's feed sludge.
Phosphate discharges from industrial cooling towers can lead to eutrophication in local waterways, causing algae blooms that deplete dissolved oxygen and harm aquatic life. Smedic's phosphate-free scale inhibitors utilize biodegradable polymers (such as polyaspartic acid derivatives and carboxylate-sulfonate copolymers). These formulations prevent calcium carbonate and zinc deposition in high-cycle cooling loops without adding nutrient loads to the surrounding environment.
With an annual production capacity exceeding one million tons and multiple wholly-owned synthesis bases across three Chinese provinces, Smedic maintains direct control over production schedules and raw material procurement. We mitigate raw material price fluctuations through strategic sourcing agreements and maintain product safety stocks at our regional distribution centers. This infrastructure allows us to offer stable pricing structures and reliable shipping schedules to our international clients.
Yes. Industrial mining and smelting wastewater often contains complex chemical complexes and high ionic strength that render standard coagulants ineffective. Through our joint research programs with organizations like the Chengdu Institute of Mineral Comprehensive Utilization, Smedic designs customized heavy metal chelators and fluoride adsorption agents. These formulations are optimized to target specific heavy metals and fluoride complexes in wastewater, enabling compliance with strict industrial discharge limits.
Explore our high-performance polyaluminum chlorides, polyferric sulfates, and high-efficiency chemical agents for global export.
Spray-dried powder with high Al2O3 content. Designed for drinking water purification and industrial wastewater treatment.
Flocculants optimized to accelerate solid-liquid separation in mineral processing and industrial slurry clarification.
Prevents scale formation in heat exchangers and cooling systems, helping to maintain system efficiency.
A specialized agent designed to remove dissolved fluorides from semiconductor effluent and glass manufacturing rinse waters.
High-molecular-weight polymer designed to accelerate sedimentation in coal washing and aggregate processing.
A polymeric iron coagulant designed for turbidity removal, phosphorus precipitation, and sludge conditioning.
Engineered for rapid flock formation and settlement in industrial raw water intake systems.
A water-soluble polymer designed for soil stabilization, mineral processing, and tailored industrial applications.