
Lab Membrane Bio Reactor Test Skid
The Lab Membrane Bio Reactor (MBR) Test Skid is a compact and versatile unit designed for research, pilot testing, and process development in wastewater and industrial effluent treatment. This lab-scale system combines biological treatment and membrane filtration in a single, integrated setup, enabling users to study process performance, optimize parameters, and evaluate membrane efficiency under controlled laboratory conditions.

Full Scale Pilot Membrane Bio Reactor
The Full-Scale Pilot Membrane Bio Reactor (MBR) System is a robust and fully integrated solution for pilot-scale wastewater treatment studies. Designed for industrial and municipal applications, this system combines biological treatment with advanced membrane filtration, providing high-quality effluent with reduced footprint. It is ideal for process optimization, feasibility studies, and scale-up analysis before full commercial deployment.

Lab Membrane Bio Reactor Test Skid with DAQ
The Lab Membrane Bio Reactor (MBR) Test Skid with DAQ System is an advanced, compact unit engineered for laboratory-scale research, performance testing, and process development in wastewater treatment applications. This system integrates biological treatment and membrane separation with a real-time data acquisition (DAQ) system, allowing precise monitoring, recording, and analysis of operational parameters for enhanced process understanding and optimization.

Pilot scale Membrane Bio Reactor
The Pilot-Scale Membrane Bio Reactor (MBR) System is designed for intermediate-scale wastewater treatment testing and process optimization. Combining biological treatment with membrane filtration, it allows users to evaluate system performance under real-world conditions before committing to full-scale deployment. This skid is ideal for R&D, pilot testing, and feasibility studies across industrial and municipal applications.

Transparent Membrane Bio Reactor Test Skid
The Transparent Membrane Bio Reactor (MBR) Test Skid is a lab-scale system designed for research, process development, and educational purposes. The transparent construction provides visual observation of biological and membrane processes, allowing users to study sludge behavior, aeration patterns, and membrane filtration in real-time. This system is ideal for optimizing MBR operations and understanding process dynamics without interrupting experiments.

