Fixed Platform for Online Automatic Ecological Monitoring on Water

Conventional water quality parameters

Nutrient parameters

Pollutant parameters

Hydrological parameters

Meteorological parameters

Detailed

The fixed platform for online automatic ecological monitoring on water is based on a large fixed platform built on the water surface, with online water quality multi-parameter analyzers, nutrient analyzers, meteorological instruments, and other advanced technologies such as modern sensor technology, automatic control, and the Internet of Things, combined with specialized data management and analysis software, to form an offshore online ecological automatic monitoring system suitable for large water bodies.


Monitoring parameters:

Conventional water quality parameters: water temperature, conductivity, salinity, pH/ORP, turbidity, dissolved oxygen, chlorophyll a, blue-green algae, fDOM (fluorescence dissolved organic matter), etc

Nutrient parameters: ammonia nitrogen, nitrate nitrogen, nitrite nitrogen, nitrate, total phosphorus, total nitrogen

Pollutant parameters: COD, TOC, DOC, UV254, TSS, chromaticity, spectral fingerprint, and spectral alarm, etc

Hydrological parameters: water level, flow velocity, flow direction, waves, etc

Meteorological parameters: wind speed, direction, temperature, relative humidity, rainfall, visibility, radiation, etc


Platform Features:

(1) A fixed platform on water, a permanent building with large space, multiple monitoring parameters, and strong scalability, provides greater convenience and better on-site experimental conditions for conducting various in-situ experiments on water.

(2) Long term stability, low maintenance volume, and overall low operation and maintenance costs.

(3) Continuously, timely, and accurately monitor the changes in the hydrological, water quality, meteorological, and other ecological environments of the target water area. Display and alarm when the monitoring parameters exceed the standard or the system status is abnormal.

(4) Multiple optional wireless communication methods can remotely transmit data, allowing real-time monitoring data to be obtained anytime and anywhere.

(5) Automatic operation, power outage protection, automatic recovery of incoming calls.

(6) Utilize green power supply systems such as solar and wind energy.

(7) It is possible to install a high-definition video monitoring system to monitor the real-time situation of the platform and nearby waters.

(8) Truly unmanned.


产品资料:气象水文监测平台(图1)泽铭科技-水上监测平台.pdf