Expert in Water Quality Measurement and Water Treatment Project Since 2007
Product Overview
Here are five summarized points regarding the "New Online COD Analyzer Wastewater" product from BOQU Instrument:
Product Features
**Product Overview**: The BOQU online COD analyzer is designed for continuous monitoring and analysis of chemical oxygen demand (COD) in wastewater. It emphasizes quality and reliability and is applicable across various industries to ensure effective wastewater management.
Product Value
**Product Features**: This analyzer employs advanced flow injection analysis technology and includes a unique automatic enrichment function, allowing for a wide measuring range from 0.05 mg/L to 1500 mg/L. The use of non-toxic reagents simplifies operation as they can be easily prepared with diluted NaOH and distilled water. It has a patented gas-liquid separator that reduces the need for extensive pre-treatment and cleaning.
Product Advantages
**Product Value**: The NHNG-3010 online ammonia nitrogen meter component of the product features automatic operation, calibration, and minimal maintenance. This ensures a high degree of efficiency and reliability in monitoring ammonia nitrogen concentrations in wastewater, with a measurement accuracy of ±10% for samples over 0.2 mg/L.
Application Scenarios
**Product Advantages**: Shanghai Boqu Instrument Co., Ltd. prides itself on its research and production capabilities, backed by a dedicated customer service team. This support enhances user experience and product reliability. The analyzer’s simplified design and operation reduce both the time and resources needed for effective wastewater testing.
**Application Scenarios**: The online COD analyzer is ideal for a range of industrial applications, including municipal wastewater treatment facilities, chemical manufacturing, and environmental monitoring. Its ability to continuously monitor wastewater quality makes it essential for compliance with environmental regulations and improving overall operational efficiency in water treatment processes.