CN

Product Center

Green Innovation · Scientific and Technological Development · Industrial Responsibility · Joint Construction of Civilized Ecology

Electrolytic Chlorine Dioxide Generator

Widely used in municipal water supply disinfection, village drinking water disinfection, wastewater treatment plant tail water disinfection, hospital sewage disinfection, food processing water disinfection, aquaculture wastewater disinfection, industrial circulating water disinfection, landscape water disinfection, as well as emergency water supply disinfection, remote area drinking water safety protection and other scenarios, it can effectively kill bacteria, viruses, algae and harmful microorganisms in water, remove odors, adapt to various water quality disinfection needs, especially suitable for scenarios with high safety requirements and inconvenient raw material procurement.

National Service Hotline:400-611-6861
Product Introduction

The electrolytic chlorine dioxide generator is a specialized disinfection equipment for on-site preparation of disinfectants. It uses sodium chloride (salt) as a single raw material and electrolyzes a saturated sodium chloride aqueous solution to generate composite disinfectants such as chlorine dioxide, chlorine gas, ozone, hydrogen peroxide, etc. on site, achieving efficient disinfection of water. The equipment consists of an electrolytic power supply, an electrolytic cell, electrodes, an electrolytic diaphragm, an electrolyte circulation system, a molten salt system, and an intelligent control system. It has high integration and easy operation, and can realize the immediate production and use of disinfectants, completely avoiding the safety risks of hazardous chemical transportation and storage. The disinfection effect is stable and can effectively reduce disinfection by-products, adapting to disinfection scenarios of different scales and water quality.

Technical Advantage
Safe and reliable, without any risks or hidden dangers
Using only table salt as raw material, there is no need to use or store hazardous chemicals such as chlorate and hydrochloric acid, which avoids safety accidents during the transportation and storage of raw materials. The operation is simple, and even if accidentally operated, there will be no danger.
Excellent disinfection effect, broad-spectrum and efficient
The generated composite disinfectant has a synergistic effect, strong bactericidal ability, and can quickly kill various harmful microorganisms such as bacteria, viruses, algae, etc. in water. The disinfection effect far exceeds that of a single disinfectant, and can reduce carcinogenic disinfection by-products such as trihalomethanes.
Cost efficient operation and easy maintenance
The source of raw materials is extensive, the price is low, the procurement is convenient without special approval, and the operation only consumes salt and electricity. Compared with traditional chemical disinfection methods, the operating cost is significantly reduced; The core components have a long lifespan, simple maintenance, and do not require frequent acid washing or replacement of vulnerable parts.
Intelligent and controllable, with strong adaptability
Equipped with an intelligent control system that can monitor disinfectant production and electrolysis parameters in real time, automatically adjust operating status, and achieve unmanned operation; Modular design allows for flexible adjustment of specifications based on water treatment capacity, suitable for various scenarios ranging from small-scale drinking water disinfection to large-scale sewage disinfection.
Process Selection

1. Integrated electrolysis process: The electrolytic cell is integrated with the control system, with a compact structure, small footprint, and easy installation, suitable for small and medium-sized disinfection scenarios, such as drinking water in villages and towns, small sewage treatment stations, and emergency disinfection.

2. Split type electrolysis process: The electrolysis cell and control system are arranged separately, which has good heat dissipation effect and is easy to maintain and repair. It is suitable for large-scale disinfection scenarios, such as municipal sewage treatment plants and large-scale industrial circulating water disinfection.

3. Membrane separation electrolysis process: using dedicated electrolysis membranes to improve electrolysis efficiency and disinfectant purity, reduce by-product generation, suitable for scenarios with high requirements for disinfection water quality, such as disinfection of drinking water and food processing water.

4. Circulating electrolysis process: adopting electrolyte circulation method, optimizing electrolysis parameters, reducing energy consumption and salt consumption, improving equipment operation stability, suitable for long-term continuous operation disinfection scenarios.

Equipment Selection

1. Selection of core components: The electrodes are coated with titanium based ruthenium iridium, titanium based platinum, and other materials, which are corrosion-resistant, have a long lifespan, and do not require frequent replacement; The electrolytic membrane adopts high-performance ion exchange membrane to improve electrolysis efficiency and reduce energy consumption.

2. Specification adaptation and selection: Determine the effective chlorine production of the equipment based on the treatment water volume and disinfection requirements, ensure that the disinfectant dosage meets the water quality disinfection standards, and adapt to disinfection needs of different scales.

3. Material selection: Corrosion resistant materials such as titanium alloy are used for electrolytic cells and pipelines PVC、 Fiberglass and other materials are suitable for electrolytic environments to prevent corrosion damage and extend the service life of equipment.

4. Control selection: Configure an intelligent control cabinet that supports automatic start stop, parameter adjustment, and fault warning. It can achieve precise control of disinfectant production, and some can be connected to remote monitoring systems to improve operation and maintenance convenience.

5. Auxiliary configuration selection: Equipped with a molten salt system, electrolyte circulation pump, disinfection dosing device, and optional water quality online monitoring device to achieve real-time monitoring of disinfection effectiveness and ensure that disinfection meets standards.