Engineered for compliance with American EPA regulations, optimizing operational runtime in heavy manufacturing, mining, and oil reclamation sectors.
Formulated to deliver rapid knock-down and long-term foam control under high-temperature and highly alkaline processing conditions.
Non-silicon chemistry developed for pulp & paper, industrial biological treatment, and textile processing applications where silicon carrying is restricted.
Highly stable and efficient formulation optimized for flotation circuits, petroleum extraction, and heavy slurry deaeration processes.
Ultra-high molecular weight water-soluble polymer engineered for enhanced oil recovery (EOR), municipal dewatering, and rapid flocculation.
Within the United States, industrial water consumption and discharge are subject to some of the most rigorous environmental frameworks globally. Enforced by the Environmental Protection Agency (EPA) under the National Pollutant Discharge Elimination System (NPDES), local manufacturing facilities, chemical processing plants, and energy utilities are facing unprecedented pressure. Water scarcity in key industrial corridors—such as the Southwest, California, and Texas—demands that open-recirculating cooling tower systems operate at elevated cycles of concentration to conserve freshwater.
Running high cycles of concentration inevitably escalates the thermodynamic saturation of calcium carbonate, calcium sulfate, and silica, resulting in critical scaling risks. To prevent heat transfer resistance, Smedic provides advanced, localized scale inhibitors, biocides, and polyacrylamide formulations engineered for high Langelier Saturation Index (LSI) values. Our chemicals are formulated to help operations achieve Zero Liquid Discharge (ZLD) objectives while complying with municipal heavy metal, phosphorus, and organic defoamer discharge guidelines.
A comprehensive environmental protection agent provider integrating research, development, scaled chemical production, and engineering-related technical services.
Established in 2011, Smedic Technology Co., Ltd. has developed into a leading high-tech manufacturer specializing in environmental protection agents. We serve multiple sectors, including municipal sewage treatment, industrial wastewater recycling, municipal tap water processing, mineral separation, and oilfield chemistry. With a corporate headquarters in Beijing and multiple wholly-owned manufacturing bases located across Hebei, Guizhou, and Shanxi, Smedic maintains an extensive warehousing and logistics network. We operate over ten OEM partner facilities across Shandong, Anhui, Guangxi, and Sichuan, delivering high-performance chemical formulations to global industrial pipelines daily.
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Our academic collaborations and technological breakthroughs guarantee reliable chemistry that complies with ASTM, ISO, and EPA-aligned testing protocols.
At Smedic, we have established an R&D system and technology commercialization platform centered around one academy, three research institutes, and five specialized bases. Our research framework is recognized as a Hebei Province Class A R&D institution, supported by the Hebei Provincial Advanced Water Treatment Chemicals Technology Innovation Center.
Through strategic joint research laboratories with Shandong University, Beijing University of Technology, and academic workstations involving the Tsinghua University Association of Senior Scientists and Technicians, we develop solutions that address scaling, foaming, and corrosion in highly closed water loops.
Honored as a National Specialized, Refined, Unique and Innovative "Little Giant" Enterprise, validating our consistent product purity and supply reliability.
Appraised as a Province Green Factory, Smedic focuses on developing biological scale inhibitors and biodegradable polymeric dispersants for low eco-toxicity.
Serving as the primary commercialization partner for chemical innovations developed at Peking University, Tianjin University, and regional geological surveys.
Different industries face unique water chemistries. Smedic targets localized problems with customized formulations.
US data centers utilize enormous volumes of evaporative cooling water. Sustained operation requires scale inhibitors that prevent calcium buildup without clogging micro-channels. Smedic's RO scale inhibitors and organic silicone defoamers ensure maximum heat exchanger efficiency, reducing PUE (Power Usage Effectiveness).
Oilfield operations in Texas require high-performance polyacrylamide (PAM) and mineral oil defoamers for hydraulic fracturing fluid cleanup and Enhanced Oil Recovery (EOR). Our non-ionic and anionic PAM solutions assist in rapid oil-water separation and heavy solids precipitation.
Strict EPA standards require municipal plants to drastically reduce phosphate and heavy metal discharges. Smedic's heavy metal removal agents and PAC/PFS coagulants are tailored to produce highly settleable flocs, simplifying filtration and sludge dewatering operations.
The global industrial water treatment chemical sector is experiencing a rapid transition. Driven by ESG (Environmental, Social, and Governance) targets, regulatory pressure to limit persistent compounds (such as PFAS and microplastics), and the rising cost of industrial intake water, companies are overhauling their water treatment systems.
Modern plant managers are moving away from traditional phosphonate-based chemistries toward biodegradable green polymers. Phosphorus-free scale inhibitors, low-silicon defoamers, and high-efficiency polyacrylamide flocculants are now key to ensuring high throughput in reverse osmosis (RO) membranes and evaporative systems.
Smedic is at the forefront of this movement. By investing heavily in green engineering alternatives, our research labs have created a suite of eco-friendly defoamers and membrane antiscalants that protect both process machinery and natural watersheds.
How Smedic intends to leverage chemical science to address the upcoming challenges of global water scarcity.
Developing advanced scale and corrosion control chemicals that remain highly active in waters exceeding 10,000 ppm TDS, without generating phosphate sludge.
Replacing petroleum-derived carbon chains with renewably sourced, non-toxic bio-polymers that exhibit matching performance to acrylic-based dispersants.
Partnering with IoT sensor developers to create automated chemical dosing protocols that adjust defoamer and antiscalant feeds in real-time based on water quality fluctuations.
Smedic operates under strict ISO guidelines, with continuous batch testing to ensure chemical stability and active-ingredient compliance.
Find answers to common questions about Smedic's formulations, supply chain capabilities, and product integration.
Standard production and export dispatch lead times range between 15 to 25 days depending on the volume and customization. We utilize our shipping and logistics partners to coordinate smooth ocean freight and custom clearance processes to major US ports (including Los Angeles, Houston, and New York/New Jersey).
Silicone defoamers (using polydimethylsiloxane or modified silicones) provide high thermal stability and are highly effective at low dosages, making them suitable for oil & gas and general industrial wastewater treatment. Polyether defoamers are non-silicone-based, offering excellent shear resistance and easy biodegradability, which makes them ideal for biological treatment units and pulp & paper industries where silicone carry-over must be avoided.
Yes. Our reverse osmosis membrane scale inhibitors are formulated to be compatible with polyamide thin-film composite membranes from all leading global brands. They effectively prevent the precipitation of carbonates, sulfates, and silica without fouling membrane surfaces.
Yes. Supported by our provincial-level technology innovation center and academic team, we can analyze your raw water quality reports (pH, TDS, LSI, calcium hardness, alkalinity) and tailor scale inhibitors, defoamers, or flocculants to optimize performance under your specific process conditions.
A unified chemical strategy ensures maximum efficiency, prevents unscheduled shutdowns, and prolongs equipment lifespan.
By binding to micro-crystal growth sites, our antiscalants disrupt the crystal lattices of calcium carbonate and sulfate. This keeps minerals suspended in solution, allowing them to be discharged during normal bleed cycles rather than forming insulating scales on heat exchangers.
Persistent foam can cause tank overflows, pump cavitation, and process safety risks. Smedic's silicone and polyether defoamers are designed to spread across foam bubbles, thinning the bubble walls and causing them to burst, resolving foam issues in seconds.
Our premium Polyacrylamides (APAM, CPAM, NPAM) bridge suspended solids in process streams, forming larger flocs that settle quickly. This improves the performance of clarifiers, centrifuge dewatering units, and vacuum filters.
Explore our industrial defoamers, high-charge polymers, and reverse osmosis membrane treatment agents designed for the US market.
Designed to suppress stable biological foam in aeration tanks and sludge digestors without interfering with microbial activity.
Formulated to precipitate dissolved heavy metals (copper, nickel, zinc, lead) in plating, metallurgy, and chemical effluents.
Broad-spectrum scale inhibitor designed for commercial reverse osmosis systems, preventing scaling on membrane surfaces.
Highly active inorganic coagulant optimized for rapid floc formation, turbidity reduction, and drinking water clarification.
Cationic copolymer designed for sludge conditioning, belt press dewatering, and suspended organic solids flocculation.
Silicon-free defoamer designed to minimize deposition and paper spots while controlling surface foam in papermaking loops.
Linear homopolymer designed to aggregate inorganic mineral particles, making it ideal for mining tailing separation and acid wastewater treatment.
Premium flocculant designed to settle positively charged inorganic particles in mining, steelworks, and gravel washings.