Equipment Sales
Our main products are skid-mounted water treatment equipment: domestic sewage treatment, small and medium-sized and large-scale water purification, automatic dosing devices, rare earth disk/magnetic coagulation separation equipment, and variable frequency constant pressure water supply equipment, suitable for domestic, industrial and water supply scenarios.
Product Introduction
The system adopts a fully integrated process chain: pretreatment → single-stage/multi-stage membrane concentration and desalination → EDI deep desalination → polishing mixed bed. With "membrane concentration + EDI" as the core technology system:
- The pretreatment unit specifically addresses impurities in raw water such as suspended solids, colloids, residual chlorine, and organic matter, ensuring stable operation of subsequent membrane and EDI systems.
- The membrane concentration and desalination unit achieves efficient preliminary desalination, significantly reducing the salt content of the raw water.
- The EDI deep desalination unit enables deep desalination without the need for acid/alkali regeneration, avoiding the use of chemical reagents and waste liquid discharge.
- Finally, the polishing mixed bed provides fine treatment to ensure that the effluent meets ultrapure water standards. The entire process is green, environmentally friendly, highly efficient, and stable.
1. Ultra-high effluent quality meeting high-end demands: Stably produces ultrapure water with resistivity ≥18 MΩ·cm and TOC ≤50 ppb. Some customized solutions can achieve resistivity >18 MΩ·cm, fully meeting the water quality standards for high-end applications such as electronic semiconductor cleaning, laboratory precision testing, and biopharmaceutical preparation, with stable and consistent water quality.
2. Flexible influent requirements and strong adaptability: Can directly treat municipal tap water or softened water (TDS 50–500 mg/L). For project sites, no additional raw water pretreatment system is required—direct connection to the municipal water supply is sufficient, significantly reducing initial infrastructure investment.
3. Small footprint, suitable for space-limited sites: Utilizes a skid-mounted integrated design that highly consolidates multiple treatment units into a compact structure, reducing the footprint by more than 50% compared to traditional ultrapure water equipment. It can be flexibly placed in equipment rooms or laboratory areas of project sites without requiring large dedicated spaces.
4. Extremely short installation cycle, aligning with project timelines: The equipment is fully pre-assembled and tested at the factory. On-site installation only requires water and electrical connections and pipeline hookups, with completion and commissioning within 1–2 weeks, quickly meeting the high-end water demands of project sites without delaying the overall schedule.
5. Very low operating cost, green and environmentally friendly: The EDI module requires no acid/alkali regeneration, resulting in zero chemical costs. The modular energy-saving design achieves energy consumption per ton of water far lower than that of traditional equipment. Fully automated operation reduces manual monitoring costs, keeping overall operation and maintenance expenses可控. Additionally, the equipment produces no acid/alkali waste liquid—only a small amount of concentrated water that can be recycled—fully aligning with the principles of green construction and environmentally friendly production.
6. Convenient operation and maintenance, robust technical support: All equipment components are standardized with a regular structure, making routine maintenance and part replacement easy. Supports remote fault diagnosis and real-time operation monitoring. Staff can monitor equipment status and promptly troubleshoot issues via online systems, lowering the threshold for on-site operation and maintenance.
7. High degree of customization, adapting to all requirements: The process scheme can be adjusted based on actual ultrapure water quality requirements (resistivity, TOC, etc.). Equipment dimensions and treatment capacity can be flexibly tailored to actual water consumption. The maximum treatment capacity of a single unit reaches 240 m³/day, and multiple units can be combined to meet large-volume demands.
Ultrapure water preparation for laboratory precision research, precision cleaning of electronic semiconductor equipment, biopharmaceutical supporting water, precision chemical manufacturing process water, new energy battery supporting water, power plant reclaimed water treatment, and other high-end water use scenarios.
Product Application
1. Ultrapure water supply for precision cleaning of equipment in electronic semiconductor factories
2. Ultrapure water preparation for precision experiments in scientific research laboratories and testing institutions
3. Water for drug preparation and medical device cleaning in biopharmaceutical companies
4. High-purity process water supply for precision chemical manufacturing
5. Ultrapure water supply for new energy battery production (lithium batteries, photovoltaic cells)
6. Deep purification treatment of recycled water in power plants and new energy power stations
7. High-purity water supply for production workshops in high-end manufacturing
8. Centralized ultrapure water supply for large laboratory clusters and scientific research parks
1. Electronic semiconductor manufacturing industry
2. Biopharmaceutical and medical device industry
3. Precision chemical and new materials industry
4. New energy battery (lithium battery, photovoltaic) industry
5. Power (thermal power, hydropower, new energy power station) industry
6. Scientific research and testing services industry
7. High-end equipment manufacturing industry
Classic Cases
1. Ultrapure Water Supporting Project for an Electronic Semiconductor Factory: Equipping a large-scale electronic semiconductor factory with a skid-mounted water purification system (50-100 m³/d capacity) to stably produce ultrapure water with a resistivity ≥18 MΩ·cm. This meets the water requirements for core processes such as semiconductor chip cleaning and packaging. The integrated design adapts to workshop space limitations, and installation and commissioning were completed within one week.
2. Purified Water Project for a Biopharmaceutical Company: Customizing ultrapure water solutions for biopharmaceutical companies, with a capacity of 30-80 m³/d. Utilizing EDI deep desalination technology, there is no acid or alkali wastewater discharge. The effluent TOC ≤50 ppb meets pharmaceutical GMP standards. The entire process is automated, reducing manual maintenance costs.
3. Water Supply Project for New Energy Lithium Battery Production: Providing a lithium battery production base with multiple 100-240 m³/d large-scale water purification units. Combined operation meets high-volume ultrapure water requirements, removing heavy metals, impurities, and organic matter from the water to ensure the quality of lithium battery electrodes and electrolytes. This project is compatible with the project's timeline requirements.
4. Centralized Ultrapure Water Supply Project for a Research Park: A centralized ultrapure water supply system was built for a provincial-level research park. Each unit has a processing capacity of 80 m³/d, simultaneously meeting the precision experimental water needs of multiple laboratories and R&D centers within the park. It supports remote monitoring and fault diagnosis, and is convenient and efficient to operate and maintain.
5. Deep Purification Project for Reclaimed Water from a Power Plant: A large-scale skid-mounted water purification system was provided to a thermal power plant to treat its reclaimed water. Through a fully integrated process, the reclaimed water is purified to ultrapure water standards for use in boiler feedwater and equipment cleaning, achieving water resource recycling and reducing the company's water costs.
FAQ
Q1: What scenarios are suitable for large-scale water purification equipment, and what is its processing capacity range?
The processing capacity covers 50-500 tons/hour, primarily suitable for large factories, industrial parks, centralized urban water supply, large communities, and centralized water supply in mining areas. It can meet large-scale centralized water demand, supports multi-unit parallel operation, and flexibly adapts to water volume fluctuations.
Q2: Can large-scale equipment treat highly complex raw water, and what are the standards?
It can treat complex raw water with high turbidity, high hardness, high heavy metals, and high organic matter. It is equipped with a multi-stage pretreatment + dual-stage reverse osmosis/ultrafiltration combination process. The effluent meets industrial production water and urban drinking water standards, and some can be customized to meet the high-purity water standards of the electronics and pharmaceutical industries.
Q3: Does large-scale equipment require dedicated personnel for operation, and what is its energy consumption?
Equipped with a PLC intelligent central control system, it supports fully automated operation and remote monitoring, requiring only 1-2 maintenance personnel for regular inspections. It adopts energy-saving pumps and valves and frequency converter control, with power consumption per ton of water lower than the industry average, offering even greater energy-saving advantages for large-scale operation.
Q4: How long is the installation period for large-scale water purification equipment, and is civil engineering required?
The skid-mounted modular design means the equipment is pre-installed and commissioned in the factory. On-site installation only requires connecting the inlet and outlet water pipes and power supply. The installation period is 7-15 days. No complex civil engineering is needed; only site leveling and hardening and equipment foundation preparation are required, significantly shortening the project timeline.
Q5: What is the replacement cycle and maintenance cost of the membrane modules for large-scale water purification equipment?
The core membrane modules are replaced every 12-24 months, depending on water quality and operating load. Internationally recognized brand membrane modules are used, with original manufacturer consumables supplied. Bulk replacement is supported, maintenance costs are transparent, and annual maintenance packages are available to reduce operational burden.
Wastewater treatment equipment service
Pre-sales service
We provide global clients with free full-process technical consultation and customized solutions, responding to your needs within 24 hours. Our senior professional engineers will provide complete technical solutions, process flow diagrams, equipment parameter lists, and detailed quotations in both Chinese and English, based on your water treatment volume, influent water quality, local discharge standards, and site conditions.
Sales service
Once the order is confirmed, we will organize production strictly according to international quality standards. All equipment will be pre-installed and fully debugged in the factory to ensure that it meets the standards upon leaving the factory. We support all mainstream international trade terms such as FOB and CIF, and provide export standard fumigation packaging, special container/bulk cargo ship large-item transportation solutions, and issue commercial invoices, fumigation certificates and other customs clearance documents. Production and logistics progress are synchronized throughout the process. Urgent orders can be given priority in production, and the delivery cycle is 30% shorter than the industry average. We can issue bank performance guarantees and advance payment guarantees as needed.
After-sales service
We have established a global after-sales support system, providing 24/7 remote technical support in English, and can assist with installation, commissioning, operation training and acceptance. Core spare parts are sourced from Chinese or internationally recognized brands. The whole machine is guaranteed for one year, and we provide lifetime cost-based maintenance and equipment upgrade services. We are gradually establishing authorized service centers in Southeast Asia, the Middle East and Africa to ensure stable operation of the equipment throughout its entire life cycle.
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