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ICP Composition Analysis

ICP Composition Analysis-Chemical Testing-

ICP IngredientsAnalysis Introduction

Inductively Coupled Plasma Atomic Emission Spectrometry, the full English name is Inductively Coupled Plasma Atomic Emission Spectrometry, generally referred to as the ICP method. ICP component analysis technology came into being in the 1960s and has a history of 60 years. It has been widely used due to its many advantages such as low detection limit, small matrix effect, high precision, high sensitivity, wide linear range and simultaneous analysis of multiple elements. It has developed into a quite mature element analysis and detection method. It has gradually replaced flame atomic absorption spectrometry and spectrophotometry in many international, domestic and industry standards for element analysis. Inductively coupled plasma emission spectrometer has become one of the conventional analytical instruments in the laboratory.
Zhongke Testing provides ICP component analysis services, which can provide professional component analysis services such as silicon content, manganese content, phosphorus content, and nickel content for products such as food, resin, copper, and copper products.

ICP IngredientsScale of analysis

Iron and steel, food, resin, copper and copper products, sodium hydroxide water quality, inorganic chemical products, lead and lead alloys, precious metal alloys, electronic and electrical products, etc.

ICP IngredientsAnalysis Item

ICP composition analysis, silicon content, manganese content, phosphorus content, nickel content, chromium content, molybdenum content, copper content, vanadium content, cobalt content, titanium and aluminum content, trace element content, metal ion content, non-metal ion content, impurity element content, precious metal content, lead content, mercury content, cadmium content, chromium content, bromine content, etc.

ICP IngredientsAnalysis Criteria

JIS G1258-1-2007 Iron and steel. Inductively coupled plasma (ICP) atomic emission spectrometry. Part 1: Determination of silicon, manganese, phosphorus, nickel, chromium, molybdenum, copper, vanadium, cobalt, titanium and aluminum. Decomposition in acid and melting in potassium sulfate
DIN EN 15111-2007 Food Determination of trace elements Determination of iodine content by inductively coupled plasma mass spectrometry (ICP-MS)
HG/T 3944-2007 Polyvinyl chloride resin Determination of metal ion content ICP method
SN/T 1863-2007 Determination of copper content in copper and copper products Rapid electrolysis ICP-AES complementary method
HG/T 3942-2007 Sodium hydroxide for industrial use Determination of metal and non-metal ion content ICP method
DIN EN ISO 17294-1-2007 Water quality Application of inductively coupled plasma mass spectrometry (ICP-MS) Part 1: General guidance
GB/T 30903-2014 Inorganic chemical products Determination of impurity elements Inductively coupled plasma mass spectrometry (ICP-MS)
ISO 16796-2004 Nuclear energy Inductively coupled plasma source atomic radiation spectrometry (ICP-AES) determination of gadolinium trioxide content in gadolinium fuel mixtures and gadolinium fuel pellets
ENV 14138-2001 Lead and lead alloys After separation by co-precipitation method, flame atomic absorption spectrometry (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES) is used for analysis.
GB/T 21198.3-2007 Determination of precious metal content in precious metal alloy jewelry ICP spectrometry Part 3: Palladium alloy jewelry Determination of palladium content Using yttrium as the internal standard
0SN/T 2004.5-2006 Determination of lead, mercury, cadmium, chromium and bromine in electronic and electrical products Part 5: Inductively coupled plasma mass spectrometry (ICP-MS)
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