13% Ion-Exchange Membrane Electrolysis Technology Drinking Water Plant

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  • 13% Ion-Exchange Membrane Electrolysis Technology Drinking Water Plant
  • 13% Ion-Exchange Membrane Electrolysis Technology Drinking Water Plant
  • 13% Ion-Exchange Membrane Electrolysis Technology Drinking Water Plant
  • 13% Ion-Exchange Membrane Electrolysis Technology Drinking Water Plant
  • 13% Ion-Exchange Membrane Electrolysis Technology Drinking Water Plant
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  • Overview
  • Product Overview
  • Core Advantages
  • Main Features
  • Working Principle
  • Application Scenarios
  • Company Profile
Overview

Basic Info.

Model NO.
BSHH-200
Application
Industry
Voltage
380V
Disinfection Method
Chlorination
Transport Package
Container
Specification
1880×1260×2285
Trademark
Chlory
Origin
China

Product Description

Product Overview
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The BSHH-200 Industrial Sodium Hypochlorite Generator is a high-performance, fully automated water treatment equipment engineered by Zhengzhou Chlory Technology Co., Ltd. Designed for industrial-scale applications, this skid-mounted integrated system efficiently produces sodium hypochlorite (NaClO)—a powerful, eco-friendly disinfectant—with stable output and intelligent control. Boasting a chlorine output of 1 kg/h and 10% NaClO output of 10 kg/h, it meets the rigorous disinfection needs of various industries while ensuring easy installation, low maintenance, and 24/7 reliable operation. Originating from China, the generator is offered at US$38,000.00 per set with a minimum order quantity (MOQ) of 1 set, providing cost-effective and safe disinfection solutions for global industrial clients.
Core Advantages
1. High Efficiency & Stable Output
2. Intelligent PLC Automation & Uninterrupted Operation
* Delivers consistent chlorine output of 1 kg/h and 10% NaClO output of 10 kg/h, ensuring sufficient disinfectant supply for industrial-scale water treatment demands.
* Optimized electrolysis technology minimizes energy and salt consumption (1.8 kg/h salt consumption, 2.3 kW·h DC power consumption), reducing operational costs while maintaining high disinfection efficiency.
* Equipped with PLC + Distributed IO control system, paired with redundant PLC design to guarantee 24/7 continuous operation without downtime, critical for industrial production continuity.
* Supports remote monitoring and control via mobile devices or PCs, enabling real-time access to operating data, parameter adjustments, and fault alerts—simplifying management and reducing on-site supervision requirements.
3. Easy Installation & Low On-Site Labor
4. Reliable Performance & Wide Adaptability
* Adopts skid-mounted integrated design, integrating all core components into a single skid for seamless on-site installation within 24 hours. This significantly reduces on-site assembly work, shortens commissioning time, and lowers labor costs.
* Operates stably under harsh industrial conditions (0-40ºC operating temperature, ≤85% relative humidity), adapting to diverse environmental requirements across different regions and industries.
* Produces non-toxic, residue-free sodium hypochlorite, avoiding secondary pollution compared to chemical disinfectants, and aligns with modern environmental protection standards.
Main Features
Skid-Mounted Integration: 
Intelligent Control Panel: 
Redundant Design for Continuity: 
Compact, integrated structure saves installation space, simplifies transportation, and ensures quick deployment on-site.
PLC-based control system automates key processes (salt dissolving, electrolysis, output regulation, and safety protection), reducing human error and operational complexity.
Redundant PLC configuration eliminates single-point failures, ensuring uninterrupted disinfection even in extreme operating scenarios.
Energy-Saving & Cost-Efficient: 
Safety Protection Mechanisms: 
Low Maintenance Requirement: 
Optimized power and salt utilization rates lower long-term operational expenses, delivering higher return on investment for clients.
Built-in over-temperature, over-pressure, and low-liquid-level protection functions to prevent equipment damage and ensure operator safety.
High-quality core components and modular design simplify routine maintenance, reducing downtime and extending service life.
Working Principle
13% Ion-Exchange Membrane Electrolysis Technology Drinking Water Plant
The BSHH-200 Sodium Hypochlorite Generator operates based on the electrolysis of saltwater (NaClO solution):
1. Salt Dissolution: Solid salt is automatically dissolved into a standardized brine solution (sodium chloride solution) within the integrated system, ensuring consistent raw material concentration for stable electrolysis.
2. Electrolysis Process: The brine is pumped into the electrolytic cell, where an electric current (powered by the 2.3 kW·h DC system) initiates electrolysis. Under the action of the electric field:Anode: Chloride ions (Cl-) are oxidized to generate chlorine gas (Cl2).
Cathode: Water molecules are reduced to produce hydrogen gas (H2) and hydroxide ions (OH-).
3. Disinfectant Formation: Chlorine gas (Cl2) reacts with hydroxide ions (OH-) in the solution to form sodium hypochlorite (NaClO)—the active disinfectant component.
4. Output & Regulation: The generated 10% concentration sodium hypochlorite is stored in a dedicated tank and delivered to the target water system on demand. The PLC control system dynamically adjusts electrolysis parameters (current, voltage, brine flow) to maintain stable output and concentration.
5. Safety Handling: Hydrogen gas produced during electrolysis is safely vented or treated to avoid accumulation, ensuring operational safety.
Application Scenarios
13% Ion-Exchange Membrane Electrolysis Technology Drinking Water Plant
13% Ion-Exchange Membrane Electrolysis Technology Drinking Water Plant
13% Ion-Exchange Membrane Electrolysis Technology Drinking Water Plant
Food & Beverage Industry: 
Pharmaceutical & Healthcare Industry:
Power Plants: 
Disinfection of production water, equipment cleaning, and processing environment sterilization to meet food safety standards.
Sterilization of medical wastewater, cleanroom cleaning, and disinfection of process water to comply with GMP (Good Manufacturing Practices) requirements.
Disinfection of circulating cooling water in thermal power, nuclear power, or hydropower plants to prevent biofouling and corrosion of pipelines and equipment.
13% Ion-Exchange Membrane Electrolysis Technology Drinking Water Plant
13% Ion-Exchange Membrane Electrolysis Technology Drinking Water Plant
13% Ion-Exchange Membrane Electrolysis Technology Drinking Water Plant
Petrochemical & Chemical Industry: 
Agriculture & Aquaculture: 
Public Facilities: 
Disinfection of industrial water systems, cooling tower water treatment, and prevention of microbial growth in process pipelines.
Disinfection of irrigation water, aquaculture pond water, and livestock drinking water to improve production safety and product quality.
Disinfection of swimming pool water, water supply systems in commercial buildings, and sewage treatment in schools, hospitals, or industrial parks.
Company Profile
13% Ion-Exchange Membrane Electrolysis Technology Drinking Water Plant
Chlory Technology Company
With 20+ years of experience in chlorination system manufacturing, Chlory  is a certified (ISO 9001, ISO 14001, ISO 18001) original equipment manufacturer (OEM) specializing in water treatment solutions. We offer: 
1. Customized package design (AutoCAD, SolidWorks-supported engineering).
2. After-sales services: On-site inspection, electrolyzer refurbishment, and capacity upgrades.
3. Membership in China's Chlorine Committee, ensuring compliance with global industry standards.

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