Shandong Fengtu IOT Technology Co., Ltd
Sales Manager:Ms. Emily Wang
Cel,Whatsapp,Wechat:+86 15898932201
Email:info@fengtutec.com
Add:No. 155 Optoelectronic Industry Accelerator, Gaoxin District, Weifang, Shandong, China
Sales Manager:Ms. Emily Wang
Cel,Whatsapp,Wechat:+86 15898932201
Email:info@fengtutec.com
Add:No. 155 Optoelectronic Industry Accelerator, Gaoxin District, Weifang, Shandong, China
time:2025-07-11 09:10:17 source:Weather Station viewed:106 time
The quality of water resources is directly related to human survival and ecological balance. Fengtu's online water quality detection equipment is fully functional. For example, the online pH tester (FT-ZS3) can quickly and accurately record the pH value of water bodies. It also supports the expansion of multi-parameter sensors for water quality, such as dissolved oxygen, conductivity, turbidity, temperature, and ammonia nitrogen. These sensors can be flexibly configured according to actual needs, making it suitable for long-term online monitoring of various water environments. The equipment has the function of storing historical monitoring data and alarm records, supports data export, and can realize data transmission with other devices through the RS485 interface. Its high reliability, flexibility, and portability enable it to adapt to complex environments such as the wild. It can also monitor parameters such as chlorophyll and suspended solids, comprehensively reflecting the quality of water bodies.
Tracing the source of surface water pollution is of great significance. Wastewater discharged from different pollution sources has unique water quality characteristics, namely "water quality fingerprints". Three-dimensional fluorescence spectroscopy technology can identify the source of pollution by constructing a "fingerprint" database and comparing and analyzing the "fingerprints" of known pollution sources with those of the water body to be traced. This technology can qualitatively distinguish pollution sources, determine the degree of water pollution, and quantitatively calculate the proportion of each pollution source, providing a scientific basis for pollution control.
Real-time control of water quality is a necessary measure to ensure water resource safety. With Fengtu's Water Quality Monitoring System, real-time monitoring can be carried out on surface water (rivers, lakes, reservoirs, seawater), groundwater, domestic sewage, etc. By building a comprehensive water quality management system, deploying online monitoring points in the monitoring area, and implementing 24-hour real-time monitoring of key water quality indicators, combined with a strict quality management system and data processing and analysis technology, it can predict the changing trend of water quality, adjust relevant process parameters in advance, and ensure that water quality stably meets the standards.
The COD Analyzer is an instrument used to monitor the Chemical Oxygen Demand (COD) in water bodies. It plays an extremely important role in fields such as environmental protection, water resource management, and industrial wastewater treatment. COD is a key indicator for measuring reducing substance...
It is feasible to use soil moisture monitoring system to guide agricultural irrigation. Soil moisture monitoring systems can monitor soil moisture, temperature, conductivity and other parameters in real time to help farmers understand the soil condition of farmland in time and provide scientific bas...
As an important means of flood and drought disaster early warning, the automatic monitoring system of water and rain is of great significance to the realization of water resources security. Like the automatic weather station, it has the functions of data collection, analysis, processing and early wa...
In the protracted battle of preventing and controlling air pollution, accurately monitoring pollution sources and grasping the dynamic change trends of pollution are important prerequisites for implementing effective governance. The Air Quality Micro-station launched by Fengtu is a key instrument in...