InfraLum FT - 02 FT (Mid)IR Spectrometer CERTIFICATION FOURIER TRANSFORM SPECTROPHOTOMETER.

Slides:



Advertisements
Similar presentations
FT-IR Instrument 1. 2 i)Dispersive spectrometers or ii)Fourier transform spectrometers. Most commercial instruments separate and measure IR radiation.
Advertisements

Measurements in Chemistry
AP Chemistry Chapter 3 Chemical Quantities (The Mole)
1 Copyright © 2011, Elsevier Inc. All rights Reserved. Size Analysis and Identification of Particles Chapter 4 Roger W. Welker.
HKCEE Chemistry Volumetric Analysis &
LABORATORY ACTIVITIES FOR REGENTS CHEMISTRY. Many laboratory activities require measurements. Science uses the S.I. (Metric System) of measurements.
Unit 4 – The Mole Honors Chemistry Part 1.
Progress in water vapour spectroscopy at RAL Dr Robert McPheat CAVIAR Annual Meeting Imperial College, 16/12/2008.
Leicester lab study CAVIAR spectroscopy meeting at UCL 30 th April 2010 Stephen Ball & Mark Watkins.
Analytical Services Laboratory R.T. Vanderbilt Company, Inc.
Also available on our internet site INFORMATIVE.
An introduction to Ultraviolet/Visible Absorption Spectroscopy
Molar mass, percent composition, empirical and molecular formulas
© TDL Sensors Ltd 2012 Tunable Laser Gas Monitoring.
Sensor Operating Theory
InfraLum FT - 10 NEAR-IR FT SPECTROMETER Near Infrared Analyzer CERTIFICATION.
All Roads Lead to the Mole
Training at Stockholm University ( ) Martynas Lelis.
Quantitative determination of surface area of silica gel particles by near infrared spectroscopy and chemometrics ALFRED A. CHRISTY Department of Mathematics.
The YL2000 FTIR.
FOURIER TRANSFORM INFRARED SPECTROSCOPY
Chapter 16 Infrared Absorption Spectroscopy An IR spectrum contains information about the functional groups in a molecule, and this is used to uniquely.
In this contribution we present a new automatic procedure for background correction that, for the first time, can be successfully applied in both isocratic.
Light Source: Globar Silicon Carbide Rod (5mm diameter, 50 mm long) Heated electrically to 1300 – 1500 K Positive temperature coefficient of resistance.
Chem. 133 – 4/1 Lecture. Announcements I Lab –Returning Term Project Proposals (I expect to be getting boxes of supplies ready) –Returning Set 2 Period.
CAVIAR water vapour laboratory FTS measurements Dr Robert McPheat CAVIAR Meeting Cosners’ House, 15/12/2009.
Infrared Radiation 780 nm m Near, Mid and Far
FT-IR Instrument. Components Source Michelson Interferometer Sample Detector.
Introduction to Infrared Spectrometry Chap 16. Quantum Mechanical Treatment of Vibrations Required to include quantized nature of E From solving the wave.
Fourier Transform IR Spectroscopy Saptarshi Basu.
Lecture 3 INFRARED SPECTROMETRY
Multipurpose analysis: soil, plant tissue, wood, fruits, oils. Benchtop, portable Validation in-built, ISO compliant Little or no sample preparation. Rapid.
IR – Infrared Spectroscopy. What is IR Spectroscopy? Infrared spectroscopy is the analysis of infrared light interacting with a molecule. IR spectroscopy.
10/11/ ENGINEERING RESEARCH CENTER FOR S TRUCTURED O RGANIC P ARTICULATE S YSTEMS RUTGERS UNIVERSITY PURDUE UNIVERSITY NEW JERSEY INSTITUTE OF TECHNOLOGY.
5.4 Notes.
1 University of Petra Faculty of Science & Arts Department of Chemistry Seminar I.R Spectroscopy By Firas Al-ouzeh Supervisor : Nuha I. Swidan Summer 2007.
Chapter 6 - Chromatography
Pharmacy 325 Infrared (IR) Spectroscopy Dr. David Wishart Rm Ph Hours: anytime after 4 pm.
1.1 Introduction Energy of IR photon Near IR 12, cm -1 Mid IR cm -1 Far IR cm -1 Energy of IR photons insufficient to cause.
Advanced Spectroscopy 3. Infrared Spectroscopy. Revision 1.What molecular or structural features give rise to absorption of infrared (IR) radiation? covalent.
PORTABLE HIGH-SPEED GAS CHROMATOGRAPH
Infrared Spectroscopy Department of Natural Sciences UM-Dearborn Written by Bette Kreuz Produced by Ruth Dusenbery 2000.
UV-Vis Absorption Spectroscopy
Simple Double Beam Spectrometer
 a mathematical procedure developed by a French mathematician by the name of Fourier  converts complex waveforms into a combination of sine waves, which.
A Raman spectrum gives a unique chemical signature of a specimen The Raman microscopy is used extensively in the following applications: Pharmaceuticals.
Interfacing Gas Chromatography with Mass Spectroscopy and Infra Red Spectroscopy Is this a large expensive detector…. Or a separation prior to analysis….
(IR spectroscopy) is the subset of spectroscopy that deals with the infrared region of the electromagnetic spectrum. spectroscopy infraredelectromagnetic.
Spectrophotometer.
This basic spectrophotometer training session should enable you to know: Basics of how a Spec’ Works What the Individual Components Actually Do Commonly.
Centaurµs Centaurus Technical Review. Centaurµs Centaurus Standard Features Transmission Reflection A single aperture before the sample –Targeting Manual.
For 3 rd year students- Biophysics Department – Faculty of Science – Cairo University Prepared by: Dr. Heba Mohamed Fahmy and Dr. Alaa Mamdouh.
3.3.6 Organic Analysis. NameFunctional groupTestResult UnsaturationC=CAdd bromine water and shakeDecolourises Carboxylic acidRCOOH Add a metal hydrogencarbonate.
Infrared Microspectroscopy A training guide for using light microscopy and infrared spectroscopy to analyze materials.
Instrumentation. Chromatography Chromatography is the collective term for a set of laboratory techniques for the separation of mixtures. It involves.
FTIR: Fourier Transform Infrared Spectroscopy
 FT-IR stands for Fourier Transform Infrared, the preferred method of infrared spectroscopy. In infrared spectroscopy, IR radiation is passed through.
SCANNING LIDAR FLUOROSENSOR FOR REMOTE DIAGNOSTIC OF SURFACES Luisa Caneve F. Colao, R. Fantoni, L. Fiorani, A. Palucci ENEA - UTAPRAD Technical Unit Development.
Fourier Transform IR (FTIR)
UV/VIS SPECTROSCOPY.
Research stoichiometric of heterogeneity of lithium niobate crystals by IR spectroscopy Paranin V.D., Pantelei E.
Spectroscopy Techniques
Spectrophotometer Dr . S. Jayakumar.
SPECTROPHOTOMETER UV 2080 PLUS DOUBLE BEAM
Infrared absorption sepctroscopy (FT-IR)
SPECTROPHOTOMETRY Applied Chemistry.
A Very Brief Introduction to Infrared Spectroscopy
Instrumentation.
Presentation transcript:

InfraLum FT - 02 FT (Mid)IR Spectrometer CERTIFICATION FOURIER TRANSFORM SPECTROPHOTOMETER

DEVICE LAYOUT Light Source Interferometer Focusing Optics Sample Compartment Detector

PRINCIPLE OF OPERATION Permanently aligned “Double Cats Eye” interferometer ensures stability and durability. 1 – Light source 2 – Heat shield 3-4 – Focusing spherical mirrors 5 – Diaphragm 6 – “Double Cats Eye” interferometer 7 – Flat mirror 8, 9,11 – Toric mirrors 10 – Sample Compartment 12 – Detector

ADVANTAGES  high throughput  high photometric accuracy  high selectivity  simultaneous analysis of several components  variability of accessories

ROUTINE MEASUREMENT Take a Sample Fill a Cell Place the Cell Measure Complete a Report Condition the Sample

ROUTINE MEASUREMENT Take a Sample Fill a Cell Place the Cell Measure Complete a Report Condition the Sample

ROUTINE MEASUREMENT Take a Sample Fill a Cell Place the Cell Measure Complete a Report Condition the Sample

ROUTINE MEASUREMENT Take a Sample Fill a Cell Place the Cell Measure Complete a Report Condition the Sample Calcium gluconate transmission spectrum

ROUTINE MEASUREMENT Take a Sample Fill a Cell Place the Cell Measure Complete a Report Condition the Sample Comparison with the standard spectrum

MAIN APPLICATIONS  Functional group analysis  Unknown substance identification  Pharmaceuticals identification (RF Pharmacopoeia)  Oil content in water and in soil (DIN)  Oil-in-water pollutant source identification

MAIN APPLICATIONS Environmental Monitoring  Air and emission measurement  Determination of water oil polluters  Detection of the presence of ozone- destructing substance  Concentration of oil in water measurement Petrochemistry  Fractional composition of oils  Oil-type analysis  Benzene content in gasoline  Octane number, cetane number  Determination of gas composition  Testing the composition of polymer films and coatings Industry Pharmacology  Determination of the authenticity of medicine preparations using IR reference standards  Quality control of medicine preparations using IR reference standards  Quality assurance of organic raw materials Forensic investigations  At expert laboratories for qualitative analysis: drugs, medicine, pigments, gas and etc. sample identification

AIR POLLUTANTS CONTROL PollutantDetection limit, mg/m 3 Carbon monoxide0,11 Carbon dioxide0,034 Water0,18 Hydrogen chloride0,11 Ammonia0,033 Sulfur dioxide0,25 Multi-component analysis of typical industrial air pollutants. Multi-pass gas cell, L = 2,1 m.

OIL CONTENT IN WATER AND IN SOIL DIN H18 and Certificate of validation M Measured content range: from to 50 mg/l Automatic calculation based on absorption peaks , 3055 cm -1 Quartz cell, L = 4 cm

OIL POLLUTANT IDENTIFICATION Identification of oil-in-water pollution source by Department of Ecology rule No 241 Automatic calculation based on 12 absorption peaks (1600, 1375, 1310, 1170, 1030, 970, 870, 810, 770, 750, 720, 695 cm -1 ). Sealed Cell, NaCl, L= mm

HHC IDENTIFICATION Comparison of the measured spectrum with the prohibited halogenated hydrocarbons database using Euclidian distance. Sample: C 2 F 4 Br 2 Gas cell, KBr, L=10 cm

PHARMACEUTICALS IDENTIFICATION Comparison of the measured spectrum with the RF Pharmacopoeia database using Euclidian distance. Sample: Calcium Gluconate Demountable cell, Nujol Suspension.

PERFUME RAW MATERIALS QC Determination of contaminant in perfume raw materials. Sample: CH 3 -(CH 2 ) 10 - (CH 2 -CH 2 O) 2 -OSO 3 Na Demountable cell, CaF 2, L=0.05 cm. Black - a standard sample Red - a contaminated sample.

HARDWEAR ParameterSpecification Optical SystemSingle Beam Optics Interferometer Proprietary “Double Cats Eye” interferometer, Sealed and Desiccated Beam SplitterMulti-layer Coated KBr plate Light SourceHigh Temperature Ceramic DetectorPyroelectric (LiTaO 3 or DTGS) Scanning speed1.6; 2; 3.2; 5 mm/sec

HARDWEAR ParameterSpecification Size580х515х295 mm Weight37 kg Power Requirements~ 110/220 V, 50/60 Hz Operating Conditions Temperature: 10 o C to 35 o C, Humidity: Below 80% Typical analysis time60 sec Data acquisition and processing PC data station, Laptop

SPECIFICATIONS ParameterSpecification Spectral resolution 0.5, 1, 2, 4, 8, 16 cm -1 Spectral range  350 cm -1 Wavenumber accuracy± 0.02 cm -1 Noise level of 100% transmission line (spectral range: 2000  50 cm -1 ; resolution: 4 cm -1 ) < 0.08 %