Our Project
Water Treatment System
We provide integrated Water Treatment Plant (WTP), Wastewater Treatment Plant (WWTP), and Water Reuse Treatment Plant (RTP) solutions for a wide range of industrial applications. Our project experience covers challenging water and wastewater conditions where stringent water quality, complex contaminants, high recovery requirements, and stable operation are critical to production.
From ultrapure water for precision manufacturing to difficult-to-treat industrial wastewater and advanced water reuse, each system is engineered according to actual water characteristics, required product water quality, treatment capacity, discharge standards, recovery targets, and site conditions.
Proven Experience in Complex Water Treatment💧 Ultrapure & High-Purity Water
Delivered systems for production processes requiring extremely low levels of dissolved ions, silica, TOC, particles, microorganisms, and other trace contaminants. Achieving and maintaining stable water quality requires carefully integrated pretreatment, membrane separation, ion removal, polishing, and final filtration processes.
💧 Complex Industrial Wastewater
Experience with wastewater containing combinations of high COD, oil, suspended solids, ammonia, fluoride, heavy metals, acids, alkalis, salts, and other process-specific contaminants. Large fluctuations in flow, pH, concentration, and composition require customized integration of physicochemical, biological, membrane, and advanced treatment processes.
💧 Advanced Water Reuse & Recycling
Implemented systems that further treat wastewater for reuse in production, cooling, utilities, and other industrial applications. These systems require stringent control of residual organics, dissolved salts, hardness, silica, microorganisms, and fouling or scaling potential while maintaining stable reclaimed water quality and recovery.
💧 Integrated WTP – WWTP – RTP Engineering
Proven experience across the complete industrial water cycle, from raw water and process water production to wastewater treatment and reclaimed water reuse. Systems are engineered to maintain reliable operation despite variations in influent water quality, production loads, wastewater characteristics, and operating conditions. Treatment technologies are selected and combined according to each project, including physicochemical treatment, biological treatment, membrane filtration, reverse osmosis, ion exchange, polishing, and advanced treatment processes.
💦 Automotive and motorcycle manufacturing
💦 Electronics and semiconductor manufacturing
💦 Textile and dyeing industries
💦 Energy and power facilities
💦 Industrial parks and centralized manufacturing zones
💦 Centralized industrial water supply systems
💦 Centralized industrial wastewater treatment plants
💦 Ultrapure and high-purity process water production
💦 Complex industrial wastewater treatment
💦 Treated wastewater recycling and reuse
💦 Water conservation and wastewater discharge reduction

Industrial Evaporator Systems
Industrial evaporation systems remove water from highly concentrated wastewater to reduce liquid volume, recover reusable water, and enable valuable material recovery. Depending on wastewater characteristics, recovery targets, required product form, and available utilities, the system can be designed for concentration, vacuum drying, or crystallization using evaporating concentrators, vacuum dryer evaporators, or crystallizers. We support the achievement of the SDGs by challenging the perception that evaporation requires high energy consumption and promoting a 3R, decarbonized society through our innovative energy-saving technologies.
Key Benefits💦 Reduces wastewater volume and disposal costs
💦 Recovers reusable water and valuable materials
💦 Saves energy through heat recovery
💦 Flexible for concentration, drying, and crystallization
💦 Treats high-concentration and high-salinity wastewater
💦 Supports resource recovery and Zero Liquid Discharge (ZLD)
💦 Proven in automotive and electronics manufacturing
💦 TMAH, acid, and solvent recovery
💦 High-concentration wastewater treatment
💦 Water reuse and material recovery
💦 Evaporative crystallization and ZLD
💦 Electronics, semiconductor, lithium battery, and automotive industries
💦 Chemical, pharmaceutical, food, and beverage industries

Industrial Exhaust Gas Treatment
Our industrial exhaust gas treatment solutions are designed to control odors, harmful gases, and airborne pollutants generated from industrial facilities and wastewater treatment processes. Depending on gas composition, pollutant concentration, exhaust flow rate, operating conditions, and treatment targets, suitable technologies may include chemical scrubbers, activated carbon adsorption, biofilters, mist separators, and deodorant spraying systems.
Key Benefits💦 Effective removal of hydrogen sulfide, ammonia, mercaptans, amines, solvents, and other odor-causing compounds
💦 Flexible treatment configuration based on gas characteristics and site conditions
💦 Reliable odor control and air emission treatment
💦 Optimized operating and chemical consumption costs
💦 Suitable for both industrial facilities and wastewater treatment plants
💦 Supports environmental compliance and improved workplace conditions
💦 Stable long-term operation with proper system design and maintenance
💦 Industrial factories and production facilities
💦 Wastewater treatment plants
💦 Sludge treatment and dewatering areas
💦 Chemical and pharmaceutical facilities
💦 Food and beverage processing plants
💦 Hotels and commercial buildings
💦 Pumping stations, tanks, and enclosed wastewater treatment areas
💦 Processes generating H₂S, NH₃, VOCs, and other odorous gases

Industrial Waste Incineration – Waste Reduction & Resource Recovery
Industrial waste incineration systems are designed for the controlled thermal treatment of sludge, production waste, non-recyclable materials, and other combustible industrial waste. In addition to significantly reducing waste volume, incineration can also serve as a pretreatment step for recovering valuable materials, including precious metals, from suitable waste streams.
Key Benefits💦 Significant reduction of waste volume and final disposal requirements
💦 Effective treatment of industrial sludge and combustible waste
💦 Controlled high-temperature treatment for stable and reliable operation
💦 Supports recovery of precious metals and other valuable materials from selected waste streams
💦 Integrated exhaust gas treatment for dust, odor, and pollutant control
💦 Reduced reliance on off-site waste disposal
💦 Supports resource circulation and circular economy initiatives
💦 Industrial sludge and production waste
💦 Precious-metal-containing sludge and solid waste
💦 Electronic and semiconductor manufacturing waste
💦 Plating and surface treatment residues
💦 Chemical and process waste
💦 Non-recyclable combustible industrial waste
💦 Pretreatment for precious metal and valuable material recovery
💦 Waste streams requiring significant volume reduction before final treatment


