LabTech LabICP1000 ICP-OES

The LabICP1000 inductively coupled plasma optical emission spectrometer (ICP-OES) features extremely high resolution, allowing complete separation of even highly complex spectral lines of rare earth elements, avoiding spectral interferences. It is particularly suitable for analysis of rare earth elements and rare earth permanent magnet materials. Additionally, it can be widely applied in fields such as food, environmental monitoring, geology and mining, and non-ferrous metal smelting.

Key Features

◆ Extremely high resolution – Even highly complex spectral lines of rare earth elements can be fully separated, avoiding spectral interferences and ensuring the accuracy of analytical data.

◆ Closed-loop controlled RF generator high-voltage supply – Compared with traditional high-voltage systems using step-up transformers and high-frequency choke coils, the power control precision is improved to better than 0.1%.

◆ High-precision spectroscopic system:

        Reflective spectroscopic design avoids introducing additional chromatic aberration.

        Mechanical control precision ensures accurate spectral positioning.

        High-resolution long-focus optical path design achieves excellent signal-to-noise ratio and minimal matrix effects.

◆ Thermostatically controlled optical chamber – Enhances measurement stability; after purging with argon, high-precision measurement of S (180 nm) and Sn (190 nm) is possible.

◆ Dynamic linear range of 5–6 orders of magnitude – Suitable for elemental analysis from trace to major concentrations.

◆ Measurement accuracy and detection limits – Achieves ppb-level sensitivity.

Protection systems – Includes cooling water protection, argon protection, over-voltage protection, over-current protection, and arc-extinguishing protection.

Environmental
For determining metal elements in environmental samples such as water, soil, sediments, and airborne particulates.
Food & Beverage
For measuring trace and ultra-trace metal elements in food and beverage samples, such as fruits, vegetables, grains, dairy products, and drinking water.
Pharmaceutical & Medical
For analyzing pharmaceuticals, raw materials, preparations, and biological samples (e.g., blood and urine) to determine harmful metal impurities or essential trace elements.
Semiconductor Analysis
For detecting metal contamination in ultrapure chemicals and process water used in semiconductor manufacturing.
Disease Control
For biomonitoring metal content in blood, urine, and tissue samples for public health and disease surveillance purposes.
Geology & Mining
For determining metal elements in rocks, ores, soils, and sediments for geochemical analysis.
Forensics
For analyzing evidence such as glass, metals, and paint to determine metal content for identification or investigation purposes.
Industrial Materials
For measuring metal elements in industrial materials, including alloys, metal products, and coatings, for quality control.
Energy & Chemicals
For analyzing petroleum, fuels, lubricating oils, and other chemical samples to determine trace metal elements for process optimization and quality assurance.
Nuclear
For determining metal impurities in nuclear materials and radioactive samples to support fuel processing and safety monitoring.
Environmental
Food & Beverage
Pharmaceutical & Medical
Semiconductor Analysis
Disease Control
Geology & Mining
Forensics
Industrial Materials
Energy & Chemicals
Nuclear

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