Explore our core line of ODM water purification formulations customized for international industrial enterprises.
In the modern era of industrial expansion, sustainable resource management has evolved from a regulatory checkbox to a core element of corporate longevity. High-capacity manufacturing operations globally face mounting water scarcity challenges, escalating discharge levies, and stringent local environmental regulations. Consequently, implementing a robust wastewater recycling infrastructure is essential. As a prominent ODM Wastewater Recycling Exporter, Smedic Technology Co., Ltd. delivers advanced chemical treatment products engineered to restore water quality across municipal sewage, mining operations, heavy manufacturing, and oilfield services.
Our core mission revolves around delivering Information Gain and high-performance environmental agents that replace traditional, single-layer chemical processes with multi-nuclear, synergistic reactions. By offering customized ODM formulations, we assist global procurement officers in achieving Zero Liquid Discharge (ZLD), recovering valuable heavy metals, preventing reverse osmosis (RO) membrane scaling, and resolving persistent industrial foaming.
"The integration of specialized chemical treatment agents, such as composite carbon sources and organophosphorus scale inhibitors, reduces raw water consumption by up to 45% while protecting downstream membrane modules from irreversible bio-fouling and chemical scaling."
Global manufacturing concerns require more than standardized commodity chemicals; they demand custom-formulated agent configurations designed for specific water properties. The chemical profile of wastewater varies significantly between sectors—from coal washing effluent in Shanxi to high-salinity oilfield discharge in the Middle East. Smedic Technology addresses these variations through dedicated Original Design Manufacturing (ODM) services. We engineer precise active ingredient formulations, adjusting parameters like cationic/anionic charge densities, molecular weight distributions, and synergistic co-polymers. This tailored approach optimizes flocculation efficiency, shortens settling times, and lowers the Total Cost of Ownership (TCO) for large-scale water reclamation projects.
A comprehensive architectural blueprint for complex municipal reclamation, mineral processing, and industrial zero-liquid discharge systems.
Utilizes multi-dentate polymeric ligands to precipitate toxic ionic complexes (copper, nickel, lead, and fluorides) out of metallurgical and semiconductor process effluents, facilitating compliant sludge dewatering.
Maintains peak performance in high-pressure desalination systems. Formulated antiscalants inhibit precipitation of carbonate, sulfate, and silica salts, reducing cleaning intervals and extending membrane service life.
Delivers rapid knock-down and long-term foam suppression in biological aeration basins and evaporative loops using advanced organosilicone and mineral-oil-based defoaming agents.
The next generation of wastewater recycling depends on smart, high-efficiency chemistry that integrates seamlessly with automated dosing systems. Smedic’s R&D pipeline is focused on synthesizing biodegradable polymeric coagulants and intelligence-driven chelating resins that target select heavy metal molecules with high precision. Furthermore, our joint research initiatives with Peking University, Tsinghua University, and Shandong University are accelerating the development of covalent-bond composite flocculants. These efforts aim to minimize secondary sludge generation while ensuring compliance with international regulatory frameworks, including the EU’s Industrial Emissions Directive and the US Clean Water Act.
Established in 2011, Smedic Technology Co., Ltd. has developed into a comprehensive environmental solution provider. Our operations encompass research and development, manufacturing, international logistics, and localized technical services. With wholley-owned production bases situated in Hebei, Guizhou, and Shanxi, alongside over ten OEM partner factories and regional hubs, we maintain reliable supply continuity for overseas clients. Our daily wastewater treatment capacity exceeds 20 million tons, serving municipal sewage plants and industrial enterprises across multiple countries.
Smedic has developed a technology commercialization platform centered around one academy, three research institutes, and five production bases. Recognized as a Class A R&D institution in Hebei Province, we have established the Hebei Provincial Advanced Water Treatment Chemicals Technology Innovation Center and the Cangzhou Water Treatment Engineering Technology Research Center.
Our core technical team comprises senior environmental engineers and industry specialists. We operate an expert workstation in collaboration with the Tsinghua University Association of Senior Scientists and Technicians, alongside joint research laboratories with Shandong University and Beijing University of Technology. Smedic also serves as the commercialization partner for chemical innovations developed at Peking University and Tianjin University.
This integrated academic approach has produced over sixty Chinese patents, including more than forty invention patents and over twenty utility model patents. We have also contributed to drafting ten national and industry standards for composite carbon sources, sodium acetate, and bacterial agents.
Smedic has received several national qualifications, including National High-tech Enterprise and National Specialized, Refined, Unique, and Innovative "Little Giant" Enterprise. Our independently developed bio-enhanced denitrification carbon source and deep multi-nuclear phosphorus removal agent have been evaluated as "internationally advanced" by the Science and Technology Department of Hebei Province.
Additionally, our Inorganic-Organic Covalent Bond Flocculant won the 22nd China Patent Award and the First Prize for Technological Invention from the China Petrochemical Industry Association.


















Smedic operates an integrated network of production facilities and warehouses across key trade routes. We ensure chemical stability during long-distance transport through specialized barrier-lined bulk packaging.
As a global chemical exporter, maintaining reliable supply lines is a priority. Smedic manages the raw material supply chain by utilizing local reserves of raw materials like high-purity bauxite and iron ore to produce Polyaluminum Chloride (PAC) and Polyferric Sulfate (PFS).
Our factories operate three-stage quality control protocols: raw material testing, real-time batch testing during synthesis, and final certificate of analysis (COA) verification before shipping. This quality system maintains product uniformity, allowing overseas treatment plants to optimize chemical dosing parameters.






Detailed chemical and logistical answers to support industrial procurement managers and design engineers.
Explore our full range of specialty chemicals for industrial water processing and recycling systems.