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E-mail
china2008_tony@163.com
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Phone
13910258076
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Address
Room 3-209, No. 55 Majiabao Road, Fengtai District, Beijing
Beijing Feistek Technology Co., Ltd
china2008_tony@163.com
13910258076
Room 3-209, No. 55 Majiabao Road, Fengtai District, Beijing
NEX CG II 3D fully polarized monochrome EDXRF multi-element analyzer
SH/T6043 Gasoline Iron, Manganese, and Lead AnalyzerThe main advantages and features of NEX CGII are that it is a powerful second-generation energy dispersive X-ray fluorescence spectrometer that can quickly qualitatively and quantitatively determine the primary and secondary atomic elements in various sample types, from oils and liquids to solids, metals, polymers, powders, slurries, coatings, and films.
Non destructive elemental analysis from sodium (11Na) to uranium (92U)
Elemental analysis of solids, liquids, powders, coatings, and films
Secondary excitation to achieve extremely low detection limit
High power 50KV, 50W X-ray tube
Large area high-throughput silicon drift detector (SDD)
Analyze the atmosphere: air, helium, or vacuum
A powerful and easy-to-use QuantEZ with a multilingual user interface
software
RPF-SQX Basic Parameter Method Software
Multi specification automatic sample changer
NEX CG II 3D Full Polarization Monochromatic EDXRF Multi Element Analyzer Product Overview:
NEX CG II is built upon NEX CG and utilizes Cartesian geometry and secondary targets to achieve trace level sensitivity. NEX CG II has a unique three-dimensional (3D) tightly coupled Cartesian geometric optical core, which can significantly improve the peak to background ratio, enabling the spectrometer to perform trace element analysis - even in challenging sample types. Unlike traditional EDXRF spectrometers, NEX CG II is an indirect excitation system that uses a secondary target instead of a filter. The monochromatic and polarized excitation from secondary targets greatly improves the detection limit of elements in high scattering matrices such as water, hydrocarbons, and biomaterials. The secondary target excitation of 90 ° Cartesian geometry eliminates background noise. Therefore, NEX CG II brings a new level of analytical sensitivity to XRF technology. Even in challenging sample types, users can measure concentrations of ultra-low and trace elements. The NEX CG II achieves this superior analytical capability through a 50KV 50W end window X-ray tube, five secondary targets covering the full range of sodium uranium (Na-U) elements, and a large-area high-throughput silicon drift detector (SDD).
NEX CG II 3D Cartesian Geometry X-ray optics features a highly sensitive 3D Cartesian geometry X-ray optical system: when the X-ray tube, secondary target, sample, and detector are aligned in a 90 ° Cartesian geometry, the measurement background is low.
SH/T6043 Gasoline Iron, Manganese, and Lead AnalyzerApplication fields:
SH/T6043 gasoline, diesel, kerosene, naphtha, petroleum coke, catalysts, etc;
Analysis of additive and wear metal element content in lubricating oil;
Analysis of additive and wear metal element content in lubricating grease;
Analysis of sulfur, chlorine, iron, nickel, vanadium and other elements in crude oil and marine fuel oil;
Catalysts: palladium, platinum, rhodium, ruthenium, etc;
Terephthalic acid (TPA): cobalt, manganese, iron, etc;
Dimethyl terephthalate (DMT): heavy metal.
In recent years, with the rapid growth of China's automobile ownership, the impact of automobile exhaust emissions on the atmospheric environment has become increasingly serious. It is imperative to improve gasoline quality and control the content of harmful elements in gasoline. Pb, Fe, and Mn are common metal elements in gasoline. Some metal organic compounds containing Pb, Fe, and Mn can improve the anti knock performance and octane rating of gasoline and are added to gasoline. The presence of Pb, Fe, and Mn elements not only causes engine catalytic system poisoning and affects the safety of motor vehicles, but also pollutes the environment and endangers human health with exhaust emissions into the atmosphere. Therefore, it is of practical significance to quickly, accurately, and sensitively detect the content of Pb, Fe, and Mn in gasoline.