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Portable Digital Ammonia Nitrogen (NH4+) Analyzer for Water Quality Monitoring - China Suppliers & Factory

The Ammonia Nitrogen (NH4+) Analyzer is a top-tier solution for on-site water quality monitoring, offering laboratory-grade precision across various environments. This analyzer, constructed from eco-friendly and corrosion-resistant polymer plastic, guarantees durability and reliability in challenging conditions such as industrial wastewater, outdoor reservoirs, and municipal treatment facilities. With its isolated 9-24VDC power supply system, it effectively minimizes electromagnetic interference, ensuring a remarkable accuracy of ±5% full-scale, even in noisy industrial settings, Designed for versatility, this analyzer supports custom calibration through adjustable forward and reverse curves, allowing for tailored measurement profiles suited to specific applications. Its compact dimensions of 31mm×200mm and RS-485 MODBUS output facilitate easy integration into existing monitoring networks, Ideal for analyzing surface water, sewage, drinking water, and industrial effluent, this pollution-resistant sensor significantly reduces maintenance efforts and operational costs. As a leading product from top suppliers in China, our factory is committed to delivering exceptional quality and performance, making the Ammonia Nitrogen Analyzer a reliable choice for your water quality monitoring needs

    Product Parameters
    Product Name Ammonia Nitrogen Analyzer
    Measurement Method Ionic Electrode
    Range 0 ~ 1000 mg/L
    Accuracy ±5% F.S.
    Power 9–24 VDC (Recommended: 12 VDC)
    Material Polymer Plastic
    Size 31 mm × 200 mm
    Working Temperature 0–50 ℃
    Cable Length 5 m, extendable per user requirements
    Sensor Interface RS-485, MODBUS Protocol
    Product Features
    Industrial-Grade Durability

    Constructed from high-strength polymer plastic, the analyzer resists chemical corrosion (e.g., acids, alkalis) and mechanical wear, ensuring reliable operation in wastewater treatment plants or marine environments.

    Adaptive Calibration System

    Supports standard solution calibration with configurable forward/reverse curve algorithms, enabling precision tuning for specialized applications like aquaculture or pharmaceutical wastewater.

    Electromagnetic Immunity

    Isolated power supply design with built-in surge protection minimizes signal distortion, ensuring stable data transmission in complex industrial electromagnetic fields.

    Multi-Environment Adaptability

    Designed for direct installation in surface water monitoring stations, sewage treatment lines, potable water distribution networks, and chemical plant effluent systems.

    Low-TCO Design

    Compact structure and anti-fouling surface reduce cleaning frequency, while plug-and-play integration lowers deployment costs for large-scale monitoring networks.

    Applications
    1 Municipal Wastewater Treatment

    Real-time NH₄⁺ monitoring to optimize biological treatment processes and ensure compliance with discharge standards (e.g., EPA, EU regulations).

    2 Environmental Resource Protection

    Continuous tracking of ammonia nitrogen in rivers/lakes to identify pollution sources and support ecosystem restoration projects.

    3 Industrial Process Control

    In-line monitoring of NH₄⁺ in chemical manufacturing, food processing, and metal plating effluents to ensure regulatory compliance.

    4 Drinking Water Safety Management

    Early detection of ammonia nitrogen in source water to prevent nitrogenous contaminant buildup in potable water systems.

    5 Aquaculture Production

    Maintain optimal NH₄⁺ concentrations in fish farms to promote aquatic health and maximize yields.

    6 Agricultural Water Management

    Assessment of nutrient runoff from farmlands to support sustainable irrigation practices and water body protection.

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    Digital RS485 Water Quality Sensors Technical Data
    No. Picture Product Name Model Range Accuracy Resolution
    1 DO sensor LMS-DO10B DO Sensor LMS-DO10B 0–20 mg/L, 0–60 ℃ ±0.1–0.3 mg/L 0.01 mg/L
    2 DO sensor LMS-DO10C DO Sensor LMS-DO10C 0–20 mg/L, 0–60 ℃ ±0.3 mg/L 0.01 mg/L
    3 Trace DO sensor LMS-TDO100 Trace DO Sensor LMS-TDO100 0–2000 ppb, 0–50 ℃ ±1 ppb 1 ppb
    4 PH sensor LMS-PH100 pH Sensor LMS-PH100 0–14 pH ±0.02 pH 0.01 pH
    5 ORP sensor LMS-ORP100 ORP Sensor LMS-ORP100 ±1000.0 mV ±0.2 mV 0.1 mV
    6 EC/TDS sensor LMS-TDS102 EC/TDS Sensor LMS-TDS102 CT: 0–9999 µS/cm; 0–100 mS/cm
    TDS: 0–10000 ppm
    ±2.5% FS 1 µS/cm, 0.01 mS/cm, 1 ppm
    7 Salinity/EC/TDS sensor LMS-SAL104 Salinity/EC/TDS Sensor LMS-SAL104 Conductivity: 0.1–500 mS/cm
    TDS: 0–60000 ppm
    Salinity: 0–500.00 ppt
    ±1.5% FS 1 µS/cm, 0.01 mS/cm, 1 ppm, 0.01 ppt
    8 COD sensor LMS-COD100 COD Sensor LMS-COD100 COD: 0.1–1500 mg/L
    TOC: 0.1–750 mg/L
    BOD: 0.1–900 mg/L
    Turbidity: 0.1–4000 NTU
    Temp: 0–50 ℃
    ±5% equiv. KHP
    Temp: ±0.5 ℃
    0.01 mg/L equiv. KHP
    9 TSS sensor LMS-TSS100 TSS Sensor LMS-TSS100 0–50000 mg/L / 0–120000 mg/L ±10% FS or 10 mg/L 0.1 mg/L or 1 mg/L
    10 Turbidity sensor LMS-TUR10L Turbidity Sensor LMS-TUR10L 0–100 NTU ±10% FS or 0.3 NTU 0.01 NTU
    11 Turbidity sensor LMS-TUR10H Turbidity Sensor LMS-TUR10H 0–3000 NTU ±10% FS or 0.3 NTU 0.01 NTU
    12 CO2 sensor LMS-CO2100 CO₂ Sensor LMS-CO2100 2000 / 10000 / 50000 PPM ±5% FS 1 ppm
    13 Ammonia Nitrogen sensor LMS-NH4100 Ammonia Nitrogen Sensor LMS-NH4100 0–1000 mg/L ±5% FS
    14 Ion Selective sensor LMS-ION100 Ion Selective Sensor LMS-ION100 0–1000 mg/L ±5% FS
    15 Oil in Water sensor LMS-OIL100 Oil in Water Sensor LMS-OIL100 0–50 mg/L; 0–5 mg/L ±3% FS 0.01 ppm
    16 Chlorophyll sensor LMS-CHL100 Chlorophyll Sensor LMS-CHL100 0–500 µg/L ±3% FS 0.1 µg/L
    17 Blue-Green Algae sensor LMS-BGA100 Blue-Green Algae Sensor LMS-BGA100 0–2,000,000 cells/mL ±3% FS
    18 Residual Chlorine sensor LMS-HCLO100 Residual Chlorine Sensor LMS-HCLO100 0–20.00 ppm ±5% FS 0.001 / 0.01 ppm
    19 Marine Current sensor LMS-Current100 Marine Current Sensor LMS-Current100 Temp: -3–45 ℃
    Velocity: 0–500 cm/s
    Direction: 0–359.9°
    ±0.05 ℃
    ±1 cm/s or ±2%
    ±2°
    Temp: 0.001 ℃
    Velocity: 0.1 cm/s
    Direction: 0.1°
    Water Quality Analyzer Equipment
    No. Picture Product Name Model Size Power Display Output
    20 Portable DO Analyzer LMS-PA100 Portable DO Analyzer LMS-PA100 100 mm × 204 mm < 0.5 W, 7.5 V, 5 batteries LCD Display
    21 Multi-parameter Portable Water Analyzer LMS-PA100P Multi-parameter Portable Water Analyzer LMS-PA100P 220 mm × 120 mm × 100 mm Rechargeable lithium battery with 220 V DC charging adapter LCD Display
    22 Multi-parameter Touch-screen Online Analyzer LMS-OA200T Multi-parameter Touch-screen Online Analyzer LMS-OA200T 180 mm × 230 mm × 100 mm AC 220 VAC 7-inch Touch Screen
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    Frequently Asked Questions
    Q What measurement method does the Ammonia Nitrogen Analyzer use, and how accurate is it?
    The analyzer uses an ionic electrode method to detect ammonium ions (NH₄⁺) directly in water. It offers a measurement accuracy of ±5% F.S. across a range of 0–1000 mg/L, making it suitable for both low-concentration environmental monitoring and high-concentration industrial effluent applications.
    Q What communication protocol does the sensor support, and how can it integrate with existing systems?
    The sensor supports RS-485 communication with MODBUS protocol, which is widely compatible with industrial PLCs, data loggers, SCADA systems, and online water quality monitoring platforms, enabling seamless plug-and-play integration into existing infrastructure.
    Q Can the cable length be customized for deep-water or remote installation sites?
    Yes. The standard cable length is 5 meters, but it can be extended according to the user's requirements to accommodate deep-water monitoring stations, remote pipelines, or large-scale environmental monitoring networks.
    Q Is the sensor suitable for use in harsh industrial environments or marine applications?
    Absolutely. The analyzer is constructed from high-strength polymer plastic that resists chemical corrosion from acids and alkalis, as well as mechanical wear. Its isolated power supply with surge protection also ensures stable performance in environments with strong electromagnetic interference, such as industrial plants and marine monitoring systems.
    Q How often does the Ammonia Nitrogen Analyzer need to be calibrated or cleaned?
    The sensor features an anti-fouling surface design that significantly reduces the frequency of manual cleaning. Calibration is performed using standard solutions and supports configurable forward/reverse curve algorithms. For most applications, periodic calibration intervals can be set based on water quality conditions and regulatory requirements.
    Q What types of water environments is this analyzer designed to monitor?
    The Ammonia Nitrogen Analyzer is designed for a wide range of water quality monitoring scenarios, including municipal wastewater treatment plants, rivers and lakes for environmental protection, industrial process effluents (chemical, food processing, metal plating), drinking water source monitoring, aquaculture ponds, and agricultural irrigation water management.

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