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Shanghai Yizhen Analytical Instrument Co., Ltd
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Shanghai Yizhen Analytical Instrument Co., Ltd

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    4th Floor, Building 88, Zhihuiyuan, No. 1199 Qinzhou North Road, Xuhui District, Shanghai

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Mid infrared fuel analyzer

NegotiableUpdate on 05/06
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Overview

MINISCAN IR Vision mid infrared fuel analyzer can automatically detect over a hundred parameters such as gasoline and diesel. Adopting PLS technology and full spectrum analysis, it complies with multiple international standards and is widely used for fuel blending, quality inspection, and rapid compliance verification.

Product Details

MINISCAN IR VisionMid infrared fuel analyzerIt is an efficient, compact, and durable productMid infrared fuel analyzerIt can automatically and comprehensively detect more than 100 fuel parameters of gasoline, aviation fuel, diesel and other oil products, and is widely used in scenarios such as fuel blending, quality inspection, and rapid verification of fuel specification compliance at sales points.

Product Features:

  • Portable gasoline, diesel, aviation fuel, and bio blend fuel analyzer

  • Pollution detection: fully automated analysis of spectral distances

  • 10 inch full-color industrial touch screen

  • Intelligent 2+1 sample pool design

  • Laser control system

  • Excellent full spectrum PLS analysis and processing capability

  • Beam splitter: KBr coated Ge

  • Bubble free and robust metal injection system

  • Thermoelectric temperature regulation system: injection system, density meter sample cell

  • Remote access anytime, anywhere

Product Description: How to Translate

MINISCAN IR VisionMid infrared fuel analyzer Accurate analysis of key fuel indicators based on multiple international and national standards: oxygen content is determined according to ASTM D5845 standard, benzene content is determined according to ASTM D6277 and EN 238 (SH/T 0797) standards, and biodiesel mixture content is analyzed according to EN 14078 (GB/T 23801) standard; At the same time, the content of typical unconventional additives such as formaldehyde, dimethyl carbonate, sec butyl acetate, and aniline in automotive gasoline can be detected according to the GB/T 33648-2017 standard.

The instrument is equipped with a density meter with temperature adjustment function, which can accurately and stably measure fuel density. The equipment complies with ASTM E1655 standard and GB/T 29858 "General rules for multivariate calibration quantitative analysis of molecular spectra". Partial least squares (PLS) analysis technology and advanced chemical stoichiometry models are used to achieve higher prediction accuracy by collecting full infrared spectra of samples. The instrument can automatically measure the octane number, cetane number, distillation performance, vapor pressure, and other performance indicators of fuel.

Compliant with standards:

ASTM D56 Standard Test Method for Determining Flash Point with Tiger Closed Cup Flash Point Tester

ASTM D86 Standard Test Method for Distillation of Petroleum Products at Atmospheric Pressure

ASTM D323 Test Method for Vapor Pressure of Petroleum Products (Reid Method)

ASTM D445 Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquids (including Calculation of Dynamic Viscosity)

ASTM D613 Standard Test Method for Cetane Number of Diesel Fuel

ASTM D975 Diesel Fuel Standard Specification

ASTM D976 Standard Test Method for Calculating the Hexadecane Index of Distillate Fuels

ASTM D1319 Standard Test Method for Determination of Hydrocarbons in Liquid Petroleum Products by Fluorescent Indicator Adsorption

ASTM D1322 Standard Test Method for Smoke Point of Kerosene and Aviation Turbine Fuel

ASTM D1840 Test Method for Determination of Cycloalkanes in Aviation Turbine Fuel by Ultraviolet Spectrophotometry

ASTM D2386 Standard Test Method for Freezing Point of Aviation Fuel

ASTM D2699 Spark Ignition Engine Fuel Research Method Octane Number Test Method

ASTM D2700 Standard Test Method for Octane Number of Spark Ignition Engine Fuel Motor

ASTM D3948 Standard Test Method for Water Separation Characteristics of Aviation Turbine Fuel Using Portable Separators

ASTM D4814 Automotive Spark Plug Ignition Engine Fuel

ASTM D5191 Standard Test Method for Vapor Pressure of Petroleum Products (Trace Method)

ASTM D5845 Standard Test Method for Determination of MTBE, ETBE, TAME, DIPE, Methanol, Ethanol, and tert butanol in Gasoline by Infrared Spectroscopy

Standard Test Method for Determination of Benzene Content in Spark Ignition Engine Fuel by Infrared Spectrometer in ASTM D6277

ASTM D6371 Test Method for Blockage Points of Diesel and Heated Fuel Cooling Filters

ASTM D6378 Standard Test Method for Determining Vapor Pressure of Petroleum Products, Hydrocarbons, and Hydrocarbon Oxidant Mixtures (VPX) (Third Expansion Method)

ASTM D6379 Test Method for Aromatic Hydrocarbons in Aviation Fuel and Petroleum Distillates by High Performance Liquid Chromatography with Refractive Index Detection

ASTM D7153 Standard Test Method for Freezing Point of Aviation Fuel (Automatic Laser Method)

ASTM D7170 Test Method for Determining the Lag Period and Derived Cetane Number (DCN) of Diesel Fuel Oil by Isothermal Chamber Combustion

ASTM D7344 Standard Test Method for Distillation of Petroleum Products and Liquid Fuels at Atmospheric Pressure (Trace Method)

ASTM D7777 Test Method for Determining Liquid Petroleum Density, Relative Density, or API Gravity Using a Portable Digital Density Meter

ASTM D7806 Standard Test Method for Determination of Fatty Acid Methyl Ester (FAME) Content in Biodiesel and Petroleum Based Diesel Mixtures by Mid Infrared Spectroscopy

ASTM E1655 Standard Practice for Infrared Multivariate Quantitative Analysis