Educational Environmental & Water Treatment Pilot Plants
Electrochemical Water Treatment Educational Unit Operations Pilot Plant
Item Number : LPK-CEWT
Price varies based on specs and customizations
- Electrochemical Control Modes
- Constant Voltage, Constant Current, Reverse Polarity
- Wetted Material
- Corrosion-resistant PVC
- Data Interface
- 15.6-inch Touchscreen with 5G/Bluetooth Connectivity
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Introduction

The Electrochemical Water Treatment Educational Unit Operations Pilot Plant is designed for higher education laboratories to bridge the gap between theoretical electrochemistry and industrial wastewater treatment. This pilot-scale system allows students to study and perform electrolytic treatment of high-salinity wastewater, demonstrating the removal of dissolved salts and impurities through controlled electrochemical reactions. By scaling down industrial-grade wastewater processing into a safe and manageable laboratory format, the plant helps engineering students understand practical transport phenomena, chemical kinetics, and process safety.
Adaptable Engineering and Customization
To support diverse engineering curricula and varying laboratory layouts, this system is engineered with modular flexibility. LABPARK offers comprehensive customization options across both the hardware configurations and the software interfaces. This allows university departments to modify physical component layouts, sensor integration, or digital control parameters to align with their specific teaching objectives and research requirements.
Key Teaching Functions and Advantages
- Multi-Mode Electrochemical Control: Supports operation under constant voltage, constant current, and reverse polarity modes. This allows students to analyze how different electrical parameters affect treatment efficiency and energy consumption.
- Corrosion-Resistant Industrial Materials: Built with robust, leak-resistant PVC materials engineered to withstand high-salinity wastewater, demonstrating proper material selection for corrosive process environments.
- Student-Focused Safety Design: Incorporates low-voltage (24V) electrical components such as electric ball valves, alongside an accessible physical emergency stop button, ensuring a secure teaching environment.
- Modern Data Acquisition: Equipped with a 15.6-inch touchscreen interface featuring wireless connectivity (5G/Bluetooth) for real-time monitoring, data visualization, and secure cloud storage to facilitate post-experiment analysis.
Detail & Parts




Curriculum Integration and Technical Specifications
To assist instructors in mapping laboratory sessions to academic standards, the table below outlines the core experimental modules, technical parameters, and their direct connection to foundational engineering textbooks.
| Experimental Module | Key Technical Parameters | Academic & Textbook Integration |
|---|---|---|
| Electrochemical Separation & Salt Removal | • Multiple power modes (Constant V, Constant I, Reverse Polarity) • High-salinity resistance |
Textbook: Unit Operations of Chemical Engineering Core Concepts: Electrochemical separation processes, mass transfer in electrolyte solutions, and polarization curves. |
| Electrolytic Reactor Characterization | • Optimized electrolytic cell design • Real-time voltage & current monitoring |
Textbook: Chemical Engineering Design Core Concepts: Reactor sizing, materials selection for corrosive environments, process safety, and instrumentation diagrams. |
| Fluid Flow and Ion Transport | • Controlled fluid delivery • Integrated 24V electric ball valves |
Textbook: Transport Processes and Unit Operations Core Concepts: Fluid dynamics in closed conduits, ion transport under electrical fields, and convective mass transfer. |
Engineering Scalability and Software Adaptation
To ensure the equipment remains a valuable asset as academic technologies advance, the platform's software and hardware components are designed for long-term scalability. Instructors can request tailor-made updates to the control software to introduce new process variables, or adjust the physical layout of the process lines to accommodate emerging research in green chemical engineering. This adaptability makes the pilot plant a highly versatile foundation for undergraduate teaching and advanced student projects alike.
About LABPARK
LABPARK has been serving the higher education sector for over 20 years, focusing on delivering specialized laboratory solutions across six key domains: chemistry, chemical engineering, biology, food science, pharmaceuticals, and environmental engineering.
The company operates from a dedicated 49,000-square-meter production and research base. Backed by 209 technical patents, LABPARK has collaborated with more than 289 universities worldwide, helping academic departments establish safe, modern, and curriculum-aligned engineering laboratories.
Trusted by Industry Leaders
Product Datasheet
Electrochemical Water Treatment Educational Unit Operations Pilot Plant
Category Catalog
Educational Environmental & Water Treatment Pilot Plants
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