High-temperature catalytic oxidation can efficiently oxidize difficult-to-digest organic carbon, making the product easy to analyze high-concentration TOC samples;
Rapid analysis (1-4 minutes);
Higher safety, the combustion furnace heating adopts multiple protections, and the overheating protection circuit is independent of the temperature control system. Overheating can automatically cut off the heating to ensure product safety;
Real-time flow monitoring to maintain flow stability and ensure data reliability;
The pipeline can be cleaned and purged in all directions. The internal circuit can be cleaned according to the needs and operating requirements, which greatly reduces the failure rate and instrument maintenance time;
The instrument automatically discharges waste, automatically discharges and feeds acid, and the acid inlet amount is controlled stably;
Less sample and reagent consumption, each measurement requires 0.5μL of high-purity water, 2ml of acid reagent (for IC testing), and about 2000ml of high-purity oxygen (under standard conditions, flow rate 100ml/min, ventilation time 20min.);
The CO₂ detection of the NDIR detector has good linearity and high accuracy. The CO₂ signal is converted into a peak curve, and then the built-in data processor calculates the TOC value (the difference between TC and IC);
The catalytic combustion oxidation method has strong oxidation ability and can oxidize almost all organic matter with stable performance. The 680℃ combustion method is almost below the melting point of all salts, which can extend the life of the catalyst and combustion tube, which is especially important when the measurement object is a water sample containing salt;
The instrument uses a high-resolution 7-inch touch wide screen and adopts an intelligent system for easy operation.