Inductively Coupled Plasma Emission Spectroscopy (ICP-OES) – ToronICP™ 900T (Full Spectrum, Direct Reading)

Inductively Coupled Plasma Emission Spectroscopy (ICP-OES) – ToronICP™ 900T is a highperformance inductively coupled plasma spectrophotometer engineered for full-spectrum, directreading elemental analysis in advanced laboratory environments. The system generates a stable, high-temperature inductively coupled plasma that excites atoms and ions in liquid samples, producing element-specific emission signals used to accurately determine elemental composition across a broad concentration range.

This advanced inductively coupled plasma emission spectroscopy platform supports qualitative, semi-quantitative, and highly precise quantitative analysis of major, minor, and trace elements at parts-per-billion sensitivity. Featuring a refined optical system, intelligent analytical software, and research-grade detection technology, the ToronICP™ 900T delivers fast analysis speed, excellent stability, and reproducible results, making it well suited for high-throughput laboratories with demanding analytical requirements.

Inductively Coupled Plasma Emission Spectroscopy (ICP-OES) – ToronICP™ 900T (Full Spectrum, Direct Reading)

Applications

The Inductively Coupled Plasma Emission Spectroscopy – ToronICP™ 900T is suitable for a wide range of analytical applications, including:

  • Environmental monitoring, including water, soil, and air particulate analysis
  • Food safety testing, for trace and contaminant element detection
  • Geology and mineral resources, including ore and raw material analysis
  • Metallurgy and non-ferrous metals, for alloy composition and impurity control
  • Rare earth element analysis, supporting research and industrial processing
  • Chemical engineering laboratories, for process and product evaluation
  • Petroleum and petrochemical testing, including fuels and additives
  • Semiconductor and electronic materials analysis
  • Agricultural and biological research laboratories
Inductively Coupled Plasma Emission Spectroscopy – ToronICP™ 900T (Full Spectrum, Direct Reading)
Inductively Coupled Plasma Emission Spectroscopy – ToronICP™ 900T (Full Spectrum, Direct Reading)
Inductively Coupled Plasma Emission Spectroscopy – ToronICP™ 900T (Full Spectrum, Direct Reading)
Inductively Coupled Plasma Emission Spectroscopy – ToronICP™ 900T (Full Spectrum, Direct Reading)
Inductively Coupled Plasma Emission Spectroscopy – ToronICP™ 900T (Full Spectrum, Direct Reading)
Inductively Coupled Plasma Emission Spectroscopy – ToronICP™ 900T (Full Spectrum, Direct Reading)
Inductively Coupled Plasma Emission Spectroscopy – ToronICP™ 900T (Full Spectrum, Direct Reading)
Inductively Coupled Plasma Emission Spectroscopy – ToronICP™ 900T (Full Spectrum, Direct Reading)

Inductively Coupled Plasma Emission Spectroscopy – ToronICP™ 900T (Full Spectrum, Direct Reading) Key Features

  • Inductively Coupled Plasma Emission Spectroscopy (ICP-OES) for accurate multielement detection
  • Full spectrum, direct-reading optical system, enabling simultaneous measurement of all elements
  • Multi-element capability, supporting analysis of more than 70 elements in a single run
  • Fast analysis speed, with high sample throughput for routine and research applications
  • Low detection limits, achieving ppb-level sensitivity for most elements
  • Wide linear dynamic range, up to six orders of magnitude without frequent recalibration
  • Low chemical interference, improving result accuracy and repeatability
  • Qualitative analysis software, allowing identification of unknown elements without reference standards
  • Split injection and mist chamber design, reducing temperature and vapor interference
  • Research-grade large-format CID detector, providing full wavelength coverage and simultaneous detection

Theory

Inductively Coupled Plasma (ICP) is a high-temperature ionized gas used as an energy source for elemental analysis. In inductively coupled plasma emission spectroscopy (ICP-OES), argon gas is energized by a radio-frequency electromagnetic field to generate a stable plasma without electrodes.

Liquid samples are converted into a fine aerosol and introduced into the plasma, where temperatures can exceed 10,000 K. At this temperature, elements in the sample become excited and emit light at element-specific wavelengths. An inductively coupled plasma spectrophotometer detects this emitted light to identify and quantify multiple elements simultaneously.

ICP-OES provides fast, accurate multi-element analysis with high sensitivity, low chemical interference, and a wide linear measurement range. This makes it a reliable technique for environmental testing, metals analysis, industrial quality control, and scientific research.

Inductively Coupled Plasma Emission Spectroscopy – ToronICP™ 900T (Full Spectrum, Direct Reading) Technical Specifications

ModelToronICP™ 900T
Analytical TechniqueInductively Coupled Plasma Emission Spectroscopy (ICP-OES)
Instrument TypeInductively Coupled Plasma Spectrophotometer
Optical ModeFull spectrum, direct reading
Element CoverageMore than 70 elements
Detection LimitDown to ppb level (solution samples)
Analysis ModeSimultaneous multi-element analysis
Linear Dynamic RangeUp to 6 orders of magnitude
Detector TypeLarge-format CID detector
Wavelength RangeApproximately 165–900 nm
Injection SystemSplit injection with advanced mist chamber
Interference ControlReduced chemical and vapor interference
Software FunctionsQualitative, semi-quantitative, and quantitative analysis
Application FieldsEnvironmental, metallurgical, chemical, petrochemical, geological, research labs

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