EziLab COD Reactor EZL-C10 handles controlled digestion of water samples during COD testing across environmental monitoring, wastewater treatment, and academic laboratory applications. Temperature control ranges from room temperature up to 180C with 0.1C accuracy for consistent water quality tester sample preparation, while four-sample parallel processing supports efficient batch workflows. Stable temperature control maintains digestion consistency across cycles, and compact portable design runs on low-power DC for lab bench or field use. Fast sample preparation reduces turnaround time across routine and high-volume testing environments. EziLab's Lab Equipment and water quality analyzers bring together the complete water quality tester and COD digestion reactor range for environmental and laboratory use.



Quantity:
$2450
Capacity 4
Temperature Control Range Room temperature to 180˚C
Temperature Control Accuracy ± 0.1˚C
Temperature Tolerance ± 1˚C
Digestion Temperature 50˚C to 180˚C
Power Supply DC 12V/ 10A
Dimension 110 × 170 × 125mm
Weight 918g
  • Low maintenance requirement

  • Durable build quality

  • Quick heating system

  • Easy sample handling

  • Simple operation process

  • COD Reactor EZL-C10 is widely used in environmental monitoring, industrial wastewater treatment, and academic research for quick and reliable sample digestion. It is  ideal for both laboratory and on-site water quality testing.

Frequently Asked Questions

The COD Reactor EZL-C10 allows simultaneous digestion of multiple water samples, which significantly reduces testing time compared to single-sample methods. The system’s sealed micro-flow digestion ensures consistent and reliable results. By handling several indicators like COD, total nitrogen, and phosphorus at once, it enhances laboratory productivity. This efficiency makes it especially valuable for environmental monitoring agencies and wastewater treatment plants where quick turnaround is crucial.

Our COD Reactor EZL-C10 incorporates a sealed digestion method that minimizes the risk of contamination or accidental exposure. Its stable heating system ensures controlled operation, reducing the likelihood of overheating. The design prioritizes safe sample handling, even when working with potentially hazardous wastewater. These features together provide peace of mind for users working in both academic and industrial laboratories.

Our COD Reactor EZL-C10 is designed for easy maintenance, requiring only routine cleaning and proper care of its vials and heating chamber. The sealed design reduces residue buildup, which simplifies post-use cleaning. Users should also periodically check connections and seals to maintain consistent digestion performance. With regular upkeep, the reactor delivers reliable service for many years of operation.

Ezilab’s COD Reactor EZL-C10 is designed with simplicity and ease of use in mind, making it highly user-friendly for both beginners and experienced professionals. Its intuitive operation minimizes the need for extensive training, allowing users to quickly become confident in handling the equipment. The straightforward setup reduces the chance of errors during sample preparation and digestion, ensuring reliable and accurate results even in busy lab environments. This combination of ease and adaptability makes it a practical choice for industrial facilities, and on-site environmental studies.

The COD Reactor EZL-C10 uses a sealed micro-flow digestion method that minimizes contamination and ensures consistent heating of all samples. By maintaining stable conditions, it reduces variability between tests and improves reproducibility. This accuracy is particularly important when monitoring pollutants where regulatory compliance is required. Laboratories can trust its results for both research and routine analysis, supporting reliable decision-making.

Our COD Reactor EZL-C10 enables the simultaneous digestion of multiple samples, which significantly reduces the turnaround time for water testing. This feature supports high-throughput workflows in busy labs, where time and resources are critical. Its reliable performance minimizes the need for repeat testing, ensuring consistent results. Overall, it helps laboratories increase productivity without compromising on quality.