LoRaWAN water quality magnesium ion sensor is an intelligent device that integrates low-power wide area communication and high-precision detection technology, designed specifically for monitoring magnesium ion concentration in water bodies. Equipped with professional ion selective electrodes, the measurement range is 0.01-1000mg/L, with an accuracy of ± 0.1mg/L, resistant to coexisting ion interference, and accurate and traceable data. Relying on LoRaWAN technology, the wireless transmission distance is 2-10km, and data can be collected remotely without wiring. Adopting IP68 fully sealed structure and corrosion-resistant materials, it can operate underwater for a long time and withstand complex environments such as industrial wastewater and seawater. Ultra low power design supports 3-5 years of maintenance free operation and is suitable for unmanned scenarios. Support access to mainstream IoT platforms for real-time monitoring and over limit alarms, widely used in fields such as seawater desalination, aquaculture, industrial water treatment, and environmental monitoring, providing efficient and stable magnesium ion monitoring solutions.
Model No.:
LW110D-MGUse:
Monitor Magnesium Ion contentPower Supply:
DC12/24VLoRaWAN Mode:
OTAA Class A/CCertificates:
CE,ROHS,FCC,ISO and 11 patents certificationsCustomized Support:
OEM, ODMWarranty:
1 YearZONEWU LoRaWAN Water - Enabled Magnesium Ion Sensor
ZONEWU LoRaWAN Water - Enabled Magnesium Ion Sensor:
The device outputs relative fluorescence units, which facilitates the analysis of the relationship between fluorescence intensity and chlorophyll concentration based on actual conditions.Supports LoRa TDMA networking and standard LoRaWAN protocol.
LoRaWAN Magnesium Ion Sensor: Key Applications & Use Cases
1. Industrial Water Treatment
Boiler & Cooling Water Systems:Monitor magnesium ion concentration to prevent scale formation (magnesium carbonate/hydroxide deposits) on heat exchangers, pipes, and boiler tubes. Scale buildup reduces heat transfer efficiency, increases energy consumption, and causes equipment corrosion—critical for power plants, chemical factories, and manufacturing facilities.
Wastewater Treatment Plants:Track magnesium levels in influent/effluent to ensure compliance with environmental regulations (e.g., EPA standards in the US, EU Water Framework Directive). Magnesium overabundance can affect sludge dewatering and biological treatment processes.
2. Agriculture & Irrigation
Precision Irrigation Management:Measure magnesium ions in irrigation water and soil leachate. Magnesium is a key macronutrient for plant growth (critical for chlorophyll synthesis and nutrient uptake). Optimal levels improve crop yield (e.g., fruits, vegetables, grains) and prevent magnesium deficiency (yellowing leaves, stunted growth).
Greenhouse & Hydroponics:Maintain balanced nutrient solutions in hydroponic systems by real-time magnesium monitoring—ensures consistent plant health and high-quality produce for commercial growers.
3. Aquaculture & Aquariums
Fish Farming (Freshwater/Saltwater):Magnesium ions regulate osmoregulation in fish, shrimp, and shellfish. Too low or high levels cause stress, disease, or mortality. LoRaWAN sensors enable remote monitoring of ponds, tanks, or recirculating aquaculture systems (RAS), supporting large-scale, data-driven aquaculture operations.
Public Aquariums & Ornamental Fish Tanks:Maintain stable water chemistry for sensitive aquatic species (e.g., coral reefs, tropical fish) by continuous magnesium tracking—prevents sudden water parameter fluctuations.
4. Environmental Monitoring
Surface Water & Groundwater Surveys:Track magnesium levels in lakes, rivers, reservoirs, and groundwater to assess water quality. Elevated magnesium may indicate industrial runoff, mineral leaching, or pollution—supports environmental protection agencies (EPAs) and research institutions.
Mining & Construction Site Runoff:Monitor magnesium-rich runoff from mining operations (e.g., magnesite mines) or construction sites to prevent water contamination and comply with regulatory requirements.
LoRaWAN parameters:
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Power Specifications
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Rated Voltage:12VDC,Scope:DC10~28V |
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Rated input current: 500mA |
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Interface specification: DC 5.5mm × 2.1mm (positive inside and negative outside) |
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Range and Resolution |
0~1000.0mg/L |
0.1mg/L,0.1℃ |
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Accuracy |
Read the numbers± 10% or ± 1mg/L of reading, ± 0.5 ℃ |
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Minimum Detection Limit |
0.1 |
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Temperature Compensation |
Automatic temperature compensation (Pt1000) |
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Working Conditions |
0~40℃,≤0.2MPa,pH:4~10 |
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Electrode Usage Cycle |
1 year |
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Transmitter Line length |
Default 5m (other lengths can be customized) |
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Frequency |
CN470/IN865/EU868/RU864/US915/AU915/KR920/AS923-1&2&3&4 |
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Mode |
OTAA Class A/C(Default ) |
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Reporting cycle |
10min(Default ) |
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Communication Protocol |
LoRaWAN,LoRa TDMA Networking |
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Equipment information (Reference) |
AppEUI:331341E186891989 DevEUI:aaaa202404150001 AppKey:5572404c696e6b4c6f526132330313823 MAC Version: LoRaWAN 1.0.3 |
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Packaging:
Single gross weight: 1.200 KG
Single package size: 37X26X5 cm
Product Description:
Magnesium Ion Sensor (Physical Structure & Specifications):
Overall Dimensions: Total length 211mm; main body diameter 30mm; bottom section diameter 21mm
Water Lock Line: Square-shaped external line (note: Do not twist this part)
Docking Structure: Threaded docking nut (twist here to enable plugging/unplugging the sensor)
Connection Port: NPT3/4 (for installation)
Ion Responsive Membrane: Located at the bottom; remove the protective cover before use
Cable: Default length 5m (custom lengths available)
Wiring Definition:
Brown: VCC
Black: GND
Yellow: RS485-A
Blue: RS485-B
Customer on-site examples:
Application:
LoRaWAN magnesium ion water quality sensor is a wireless sensor designed to monitor magnesium ion concentration in water. As a specialized water quality monitoring device, it supports long-term online tracking of magnesium levels—ideal for scenarios (e.g., industrial water treatment, agriculture, aquaculture) where magnesium ion stability directly impacts equipment anti-scale performance, crop nutrient uptake, and aquatic organism osmoregulation.
Certifications:
Integrate with LoRaWAN gateways and cloud platforms (e.g., AWS IoT, Azure IoT) to monitor hundreds of sensors simultaneously—suitable for enterprise-level applications.Cost-Effective:Eliminates manual sampling and labor costs, enabling proactive maintenance and compliance.
Why LoRaWAN for Magnesium Ion Monitoring?
Remote & Real-Time Data:Transmit data over long distances (up to 10+ km in rural areas) without wiring, ideal for large-scale or hard-to-reach locations (e.g., remote farms, offshore aquaculture).
Low Power Consumption:Battery-powered sensors operate for years, reducing maintenance costs and downtime.
Production Process:
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