Agilent GC/MSD Instructions

Similar documents
Agilent MassHunter Workstation Software 7200 Accurate-Mass Quadrupole Time of Flight GC/MS

GC-MS ChemStation Reference Guide. Last Updated July 2014

Getting low-resolution GC-MS data on the JEOL GCMate Introduction

How to Run the CASPiE GCMS

Agilent G2070BA GC ChemStation

Manual HPLC-4 Alliance-UV

Operating Manual. High Performance Liquid Chromatograph. Scientific Equipment Center, Prince Of Songkla University

Steps for LCMS-8040 Triple Quadrupole

Samples Preparing the GC to run samples Running samples - Manual Injection Running samples - GC ALS or Valve Injection

Agilent 7890 Series Gas Chromatograph

Agilent Intuvo 9000 Gas Chromatograph

Agilent G1732AA MSD Security ChemStation

Detailed procedures, operation instructions, maintenance, and emergency contact information list is attached.

The Agilent 5975 inert MSD: New Tools for the Forensic Analyst

ChromQuest 5.0 Quick Reference Guide

3 Starting the chiral HPLC and logging into LC Real Time Analysis.

Standard Operating Procedure for the HPLC-ICP-MS System By Celina Dozier Fall 2017

Retention Time Locking with the MSD Productivity ChemStation. Technical Overview. Introduction. When Should I Lock My Methods?

Agilent G1701DA MSD ChemStation

Getting Started. Environmental Analysis Software

Agilent G2727AA LC/MS Data Browser Quick Start

Aqueous GPC Instructions - Detailed

NMR Users Guide Organic Chemistry Laboratory

Fatty Acid Methyl Ester (FAME) RTL Databases for GC and GC/MS

Customer Information. Service Engineer s Responsibilities. Additional Instruction Notes. System Information. Agilent Technologies

Agilent GC, MS, and ALS

Agilent 6100 Series Quad LC/MS System

TraceFinder Analysis Quick Reference Guide

Equipment Overview: Safety:

Agilent G1732BA MSD Security ChemStation

Agilent G1732AA MSD Security ChemStation

HITACHI LACHROM ELITE

Agilent 7890GC. Firmware Bulletin. Revision B and A External use only

Automated Fraction Re-Analysis Does it really make sense?

Retention Time Locking Operation

CTC Sampler Implementation in the GC/MSD ChemStation. Technical Overview. Introduction

Chromatography Software Training Materials. Contents

OpenLynx User's Guide

MICRO GC FUSION Micro GC Fusion 3/17/2014 1

Agilent MassHunter Drug Analysis Mode Using Quantitative Analysis Workflow Guide

Agilent MassHunter GCMS Data Acquisition for the 5977 Series MSD System

Operation of the Kratos Profile Mass Spectrometers Table of Contents

Agilent G1701DA GC/MSD ChemStation

Toxicology Gas Chromatography-Mass Spectrometry (GC-MS)

5975 inert MSD. Chris Sandy European GC-MS Product Specialist Agilent Technologies

Agilent G1701DA GC/MSD ChemStation

Bio Compatibility Kit

Quick Setup Instructions for the Knauer HPLC-System. Quick Setup Instructions for the Knauer HPLC-System For windows XP (using CHANCE vers. 2.

Automated Submission for Analysis Processing (ASAP) Operator s Guide Dionex Corporation

Data Acquisition with 3400/3600 GC Control

Agilent 7820A Gas Chromatograph

Agilent 7890B Gas Chromatograph

DESCRIPTION. DataApex Clarity 32bit multi instrument chromatography station for Windows

Chromeleon software orientation

5973 Network Mass Selective Detectors

EZ IQ. Chromatography Software PN P1A

UniPoint System Software User s Guide

Supporting Information for Efficient Two-Step Synthesis of Biodiesel from Greases

Agilent 5977 MSD Overview

Agilent OpenLAB CDS. Version 2.2. Release Notes. OpenLAB CDS Release Notes 1

Quick Guide to the Star Bar

Soprane II Documentation

MassLynx 4.2 SCN 989 Release Notes

For additional information, see these documents on the Breeze 2 software DVD:

Customers should provide all necessary operating supplies upon request of the engineer.

PerkinElmer Series 200 HPLC: Operating Procedure

Standard Operating Procedure for the Beckman PA/CE MDQ Electrophoresis System. Last Modified October 19, 2012

Data Acquisition with CP-2002/2003 Micro-GC Control

IONSCAN -LS. Quick Start Guide. Revision A, April 2005 Part Number USA

What s New in Empower 3

EZChrom Elite Compact. What s New in EZChrom Elite Compact Service Pack 2

eprep Sample Preparation Workstation

Configuring and optimizing an IC-MS system using a compact IC and a single quadrupole mass spectrometer

A. About this Manual

NOTICE: This document contains references to Varian. Please note that Varian, Inc. is now part of Agilent Technologies. For more information, go to

FractionLynx Software

Clarity. Clarity Demo. Code/Rev.: M003/60A Date: Fax: Petrzilkova 2583/ Prague 5

5973N and 5973 inert Mass Selective Detector

Building Agilent GC/MSD Deconvolution Reporting Libraries for Any Application Technical Overview

TraceFinder Administrator Quick Reference Guide

Agilent G6855AA MassHunter Personal

MC Lot A MW

Dionex AS-AP Sample Conductivity and ph Accessory Setup and Operation Guide

R e p o r t E d i t o r M a n u a l

SIM Direct Inlet Probe. Agilent 5975 MSD. Agilent 7000 Triple Quadrupole

Partner; Democritus University of Thrace (UTHR.DEE.APL) Workpackage; WP 4 and WP 1

Agilent G1978B Multimode Source for 6100 Series Single Quad LC/MS

Agilent Max-Light Cartridge Cell Information for G4212A/B DAD and G7117A/B DAD

ACQUITY UPLC Systems with 2D Technology Capabilities Guide

Jasco 4700 FTIR. Laser Spectroscopy Labs. Jasco 4700 FTIR. Operation instructions. Laser Spectroscopy Labs, UCI

Thermo Xcalibur Getting Started (Quantitative Analysis)

Thermo Scientific Dionex ICS-1600 Ion Chromatography System

Galaxie Workstation Configuration Manager

Supplement of Quantifying environmental stress-induced emissions of algal isoprene and monoterpenes using laboratory measurements

TraceFinder Analysis Quick Reference Guide

Nicolet is50 FTIR User s Booklet

NMR INSTRUMENT INSTRUCTIONS: Safety and Sample Preparation

Thermo Scientific Dionex Aquion Ion Chromatography System

DFS High Resolution GC/MS High Performance Magnetic Sector GC/MS

Data Acquisition with 3800 GC Control

Transcription:

Agilent GC/MSD Instructions GC/MS SAMPLE PREPARATION: Sample Components to Avoid Completely: The following should never be injected: metals, strong acids or bases, salts, oligomeric and polymeric material. These classes of compounds are unsuitable for gas chromatography, and can damage the GC column. Solvents: Hexane, acetone, and methanol are the recommended solvents for sample preparation. Other acceptable options are benzene, ethers, and methylene chloride. Do not dissolve samples in water, DMSO, or DMF. Concentration: Mass spectrometry is several orders of magnitude more sensitive than NMR, so please do not use the same samples you have prepared for NMR analysis for MS analysis. The upper limit of concentration needed is 100 ppm. If you introduce a more concentrated sample, you will damage the EI filament. WHEN IN DOUBT, DILUTE! STARTUP PROCEDURE: Open the Agilent software that controls the GC, by clicking on the Instrument #1 icon. When prompted, enter: manager as both the login name and password. Check solvent bottle is filled with the appropriate solvent and the waste bottle is in the appropriate location on the autosampler carousel. Check the He pressure is at least 500 psi on the main gauge. If not call Massimo X58016. Figure 1. Instrument Control View.

METHOD DEVELOPING AND EDITING: Under the View tab make sure the software is in the Instrument Control view. Under the File tab, click on Load Method. In order to create a new method use the following default method: MPEDIT. Edit the instrument parameters by clicking on the individual icon to vary specific experimental conditions. Figure 2. Method Editing. Under the Injector icon, set the injection volume (1.0 µl) and set the conditions for pre and post injection syringe washes. Under the Inlet icon, set the Split or Splitless Modes, the Split Ratio and Flow, make sure the Heater, Pressure and Total flow are checked and input the setpoints. Make sure the GasSaver is turned on at 20.0 ml/min @ 2.00 min. Figure 3. Inlet Editing. Under the Column icon note the manufacturer s specifications. Only Column 1 is installed in the front inlet. Constant flow mode is appropriate for most experiments, but the mode can be altered to other settings as desired. The Detector used is MSD. Helium flow should be set to 7.64 psi and Average velocity to 36 cm/sec. 2

Under the Oven icon, the temperature can be set by setting up temperature ramps by inputting the Rate ( C/min), the Temperature desired and Time to hold the set temperature. The Run time will be automatically calculated. Under the Signal icon, the Data Rate and Minimum Peak Width can be set for detection. Under the Aux icon, check the Thermal Aux #2 and Heater and set point to 280 C. Type is MSD. SEQUENCE DEVELOPING AND EDITING: Select Sequence Task icon. Either Load Sequence or create a new sequence by editing the default sequence: MPEDIT. Enter information for your first vial in the sample table. Enter the sample Type (Sample/Calibration/Control), the Vial number based on its position in the autosampler, the Sample name, the Method, Data file and Comments. Consider including in the sequence a solvent blank run in the sequence. Also you should always include a last item in the sequence, which will load the Standy method. Click OK when all changes have been made. Save the sequence in Save Sequence As. Figure 4. Sequence Editing. In order to start the sequence click on the Run Sequence icon, or access the command from the toolbar. Enter the sequence Comment, Operator name and Data file directory, then click on Run Sequence. In order to run a single sample: o Load the desired method. o Under file click on the Run Method and input the Data information, Operator Name, Vial # and Sample name and Information. Click on OK. o Click on Run Method to begin the run. 3

Figure 5. Start Run Window. You can monitor the data collection on the screen in the Total Ion and Spectrum windows. A standard report will print automatically once the run is complete. DATA ANALYSIS: Under the View tab, switch to Instrument Data and Analysis, when prompted input manager as the login name and password. Under the File tab, click on Open Chromatogram and select the data set of interest. The chromatogram will be displayed and available for reprocessing. In order to integrate peaks, click on the Integration icon and adjust the x and y scale. Alternatively, click on Autointegrate in order to integrate all peaks above set threshold. The toolbar will allow to alter Integration events by adjusting Area Reject and Height Reject. Figure 6. Integration Event Set-up. In order to obtain the Mass Spectrum for a certain peak, just right-click on the desired peak. 4

In order to print a report, under File click on Print and select the desired report. The TIC & Spectrum option will generate a standard report with the Mass Spectrum and Chromatogram as well as peak integration information. FINISH: Figure 7. Chromatogram and Mass Spectrum. Once done with the experiment, always load the Standby Method. Go back to the View tab and select Instrument Control view. Under Method, click on Load Method and select Standby. This will minimize gas consumption and instrument wear will the GC/MS is inactive. 5