Industry News

The "Touchstone" of Water Health: Demystifying pH Sensors
The safety and health of our daily drinking water, rivers and lakes, and even swimming pools are closely tied to a crucial indicator—pH level. Today, let's uncover the mystery of the pH sensor, understanding this "invisible sentinel" guarding water quality safety.

Blue - Green Algae Sensor: Accurately Addressing Blue - Green Algae Proliferation in Ponds, A New Tool for Safeguarding Aquatic Ecosystems
Blue - Green Algae Bloom in Ponds: Ecological Threats and Monitoring Needs
In the ecosystems of aquaculture ponds and landscape ponds, the massive proliferation of blue - green algae has become a frequent and tricky problem. In terms of causes, eutrophication is the core driver. Agricultural non - point source pollution (such as fertilizers flowing in with rainwater), aquaculture tailwater discharge (excessive feeding leading to nitrogen and phosphorus enrichment), and domestic sewage leakage continuously input nutrients like nitrogen and phosphorus into the water body. When the water temperature is in the range of 25 - 35℃ and the water body has poor fluidity (such as low frequency of pond water exchange and insufficient water power), blue -green algae will take advantage of these "nutrients" and suitable environments to enter a stage of explosive growth.

Oil in Water Sensors: A Comprehensive Analysis of Working Principles and Operation Techniques
In today's era with increasingly stringent requirements for water quality, Oil In Water Sensor, as key devices for monitoring the content of oil substances in water, play an indispensable role in many fields such as environmental protection, industrial production, and water quality monitoring. A deep understanding of their working principles and operation techniques is of great significance for ensuring their efficient and accurate operation.

Water Quality Monitoring Parameters in Recirculating Aquaculture Systems
In recirculating aquaculture systems (RAS), the stability and controllability of water quality are core elements to ensure the healthy growth of cultured organisms and improve aquaculture efficiency. Scientific and effective water quality monitoring relies on precise control of key parameters. The following details the key water quality parameters that need to be monitored in recirculating aquaculture systems.

Safeguarding Our Waters: Key Parameters to Monitor in Wastewater Treatment Effluent
In the process of wastewater treatment, monitoring effluents is a key link to protect the ecological environment and public health. By monitoring specific parameters, we can timely grasp the effect of wastewater treatment and ensure that the quality of the discharged water meets relevant standards. The following are the key effluent parameters that should be monitored in wastewater treatment:

Analysis of the Relationship Between Dissolved Oxygen Concentration and Saturation in Water
Dissolved oxygen in water plays a crucial role in the survival of aquatic organisms and the balance of the entire aquatic ecosystem. As two key indicators for measuring the state of dissolved oxygen in water, dissolved oxygen concentration and saturation are closely and complexly related. A deep understanding of this relationship is of great significance for water resource protection and water environment monitoring.

What apparatus is used for drinking water testing?
Drinking water laboratory equipment is mainly used for testing the quality of drinking water. Tap water laboratory equipment can be divided according to the different types of water quality parameters tested, including microbial indicators, toxicological indicators, sensory properties and general chemical indicators, radioactivity indicators, disinfectant indicators and requirements.

What method is used to determine dissolved oxygen in water?
The testing method standards in our country include: "Determination of dissolved oxygen in water - Iodometric method" (GB7489-1987), "Determination of dissolved oxygen in water - Electrochemical probe method" (HJ506-2009), and American ASTM standard (D888-05). The first two are national and industry standard methods in China, and the latter is a standard method recognized by the US Environmental Protection Agency.

Impact of Marine Biofouling on Water Quality Sensors and Solutions - Analysis of Dissolved Oxygen Fluorescence Sensor by Qingdao Luminsens Marine Technology Company
In the global field of marine ecological monitoring and water environment management, biofouling-induced sensor failure has become a recognized technical bottleneck. Qingdao LUMINSENS Marine Technology Co., Ltd. has successfully developed a dissolved oxygen (DO) fluorescence sensor with revolutionary antibacterial performance through industry-university-research integration, surpassing international counterparts in core technical indicators and providing full-cycle reliable monitoring solutions for marine ranching, wastewater treatment, ecological research, and other scenarios.

What are the water quality testing items for tap water?
The Hygienic Standards for Drinking Water (GB 5749-2006) cover 106 water quality indicators, including 20 sensory and general physicochemical indicators, 21 inorganic toxicity indicators, 53 organic toxicity indicators, 4 disinfectant indicators, 6 microbial indicators, and 2 radioactive indicators.
















