Application Notes
- Full Method Validation of Polycyclic Aromatic Hydrocarbons (PAHs) In Waters Using the Anatune Robotic DiLLME Analyser
- Methanolic Extraction of Soils by Automated Selected Ion Flow Tube Mass Spectrometry (SIFT-MS)
- Method Validation of Volatile Organic Compounds (VOCs) in Water Using the Anatune Robotic VOC Analyser
- Automated SIFT-MS – Static Headspace Analysis
- Automated Weighing Option: Proving the Accuracy of Automated Sample Prep
- Fully Automated System for Preparing and Analysing Samples for NDMA in Potable Water Using GC-QQQ
- Analysis of a Range of Polymers by Automated Pyrolysis GC-MS Using the GERSTEL Pyro
- Dispersive Liquid-Liquid MicroExtraction Compendium
- Automated Solutions Using Small Scale SPE to Solve Challenging Applications
- Automated Sample Preparation Methods for Mixing and Centrifugation
- Determination of Trace (pg/L) Levels of Cypermethrin in Water Using Stir Bar Sorptive Extraction
- Rapid Analysis of BTEX in Water Using Automated SIFT-MS
- Real-Time Speciation of Ethylbenzene from the Xylenes Using SIFT-MS
- Rapid Analysis of Organochlorine Compounds in Water Using Automated SIFT-MS
- Method Validation of the Analysis of Organochlorine Pesticides and Polychlorinated Biphenyls Using DiLLME and GC-MS/MS
- Automated Method for the Extraction and Derivatisation of Alkylphenols, Ethoxylates and Bisphenol A in Water
- Automated Thermal Desorption Tube Spiking of Volatile Organic Compounds (VOCS) Using GERSTEL Dynamic Headspace Sampler
- Initial Work for Automation of a BSTFA Derivatisation for Phenolic Compounds in Water
- An Evaluation of the GERSTEL Basic Filtration Option for the MPS Robotic Pro
- Analysis of Formaldehyde Scavenging Compound Using Selected Ion Flow Tube Mass Spectrometry (SIFT-MS)
- Initial Development Work for the Automated Derivatisation of Glyphosate and Aminomethylphosphonic Acid in Water Followed by LC-QQQ Analysis
- Automated Extraction of Polycyclic Aromatic Hydrocarbons from Soils
- Comparison of the Agilent 5977B MSD with High Efficiency Source and 7250 Q-TOF for Analysis Using Dispersive Liquid-Liquid MicroExtraction of Semi Volatile Organic Compounds
- High-Speed Formaldehyde Analysis for the Process-Line and Laboratory: SIFT-MS
- High-Throughput Formaldehyde Analysis in Air Using Direct Mass Spectrometry
- Optimisation of a Large Volume Injection (LVI) Method for Organic Contaminants in Water Using Design of Experiments (DoE)
- The Power of Low Energy EI Ionisation in GC/Q-TOF MS
- Automated Liquid-Liquid Extraction of Epichlorohydrin Using GC-MS
- Further Development of Spiking Thermal Desorption Tubes Using GERSTEL Tube Spiking System and TD3.5+
- A Fully Automated Approach to the Analysis of NDMA in Water
- Automated Solution for Spiking Thermal Desorption Tubes Using GERSTEL Tube Spiking System and TD3.5+
- Investigation of the Agilent 5977B with High Efficiency Source (HES) to Enable Electron Impact (EI) Analysis of Phenolic Compounds in Water
- Automated Selected Ion Flow Tube Mass Spectrometry (SIFT-MS)
- Initial GC/Q-TOF Work for Trace Analysis of Organochlorine Pesticides Using NCI
- Preliminary Investigation of a Range of Selected Ion Flow Tube Mass Spectrometry (SIFT-MS) Applications
- Automated Online Desorption and Analysis of DNPH Derivatives of Formaldehyde, Acetaldehyde and Related Carbonyl Compounds Using a New Robotic Autosampler
- Large Volume Injection of Flame Retardants Using the CIS-4 Inlet
- Offline Automated Extraction of Non-Polar Pesticides in Water with Analysis by GC-MS
- PrepAhead: How to Master Your Time with GERSTEL Maestro Software
- Automatic Liner Exchange (ALEX) to Deal with Dirty Matrices Using the GC/Q-TOF
- Initial Work on Automating Dispersive Liquid-Liquid MicroExtraction (DiLLME) for EPA 8270
- Rapid Determination of Formaldehyde in Shampoo Samples Using SIFT-MS
- Automated Preparation of Stock Standards and Calibrators for LC-MS
- NS30 and Stability Tests Using the New Anatune VOC Analyser
- Fully Automated Liquid-Liquid Extraction on Low Level Trichloranisole Using GERSTEL Robotic
- The MultiFlex GC/Q-TOF as a Tool for the Investigation of Taste and Odour in Drinking Water
- Determination of Hydrocarbons in Fungi Growing Media by Twister TDU-GC/Q-TOF
- Determination of Acetaldehyde in Water from Plastic Bottles Using Hot Injection Trapping (HIT) Technique on GC-MS
- Automated Liquid-Liquid Extraction of Geosmin in Water by GC-MS/MS
- Fully Automated Liquid-Liquid Extraction Method Using a GERSTEL Dual Head Robotic with Robotic Pro of Organochlorine Pesticides and Polychlorinated Biphenyls in Water
- Welcoming the Thermal Desorption 3.5 Unit at Anatune
- A Fully Automated Liquid-Liquid Extraction for 2-Methylisoborneol and Geosmin in Water
- Use of the SIFT-MS for a Selection of Health and Safety Applications (Visit to HSL)
- A Fully Automated Offline Solution for the Analysis of Amino Acids by GC-MS
- Automating the Accurate Transfer of Highly Volatile to Highly Viscous Liquids Using a Bench-top Workstation
- Use of SPE and Twister (SBSE) to Enrich Heptachlor and Heptachlor Epoxide From Water with a GC/Q-TOF in NCI
- Initial Work for Automation of Polycyclic Aromatic Hydrocarbons in Water
- On-line Monitor for Metaldehyde in Surface and Ground Water
- Initial Work for Automation of Organochlorine Pesticides and Polychlorinated Biphenyls in Water
- Automated Phospholipid Fatty Acid (PLFA) Analysis Using MIDI’s Sherlock PLFA Analysis Software
- Offline Sample Preparation of Acid Herbicide Samples for LC-MS Analysis Using a Dual Head MultiPurpose Sampler
- Use of SBSE for Clean-up of QuEChERS Extracts From Complex Matrices
- Automated Approach for Determination of BTEX in Soil
- Optimisation and Validation of an ITSP Method for the Determination of Taste and Odour Compounds in Water
- Fully Automated Solution for the Extraction of Non-Polar Pesticides by GC
- Analysis of Formaldehyde from a Wax Candle Flame Using SIFT-MS
- Initial Work for the Determination of Taste, Odour and Phenolic Compounds in Water Using ITSP on the New Agilent GC-QQQ 7010
- A Fully Automated and Quantitative Method for Metaldehyde in Water Using GC-QQQ
- Trace Level Enrichment of Malodour Analytes in Water Using Twister Technology
- Analysis of Formaldehyde and Acetaldehyde Using Automated DNPH Derivatisation
- Automating DNPH Derivatisation for Aldehyde and Ketone Analysis
- Determination of VOCs in Water Using the New Anatune VOC Analyser
- What Compounds Can Be Analysed with SIFT-MS?
- Voice200Ultra
- Automated Online Desorption and Analysis of DNPH Derivatives of Airborne Aldehydes and Ketones
- The On-Line Measurement of VOCs in Flowing Water
- Trace Analysis of Polycyclic Aromatic Hydrocarbons (PAHs) in Water Using Twister SBSE Technology
Blog Posts
- Method Development With Camilla Liscio
- The problem with recycled plastics – a discussion with Unilever and Anatune
- Testing Water Shouldn’t Cost (or Taste Like) the Earth
- When The World Zags, Zig
- RIP Windows 7
- 4 Predictions for 2019: A recap
- Merry Christmas!
- Not All Vials Are Created Equally
- Metaldehyde in Water
- Autumnal Changes at Anatune
- We Have an LC-MS!
- Some Further Reading for DiLLME on Tour
- What You Might Have Missed at the 2019 SIFT-MS Interest Group Meeting
- DiLLME on Tour
- The CF200 Robotic Centrifuge Certified Solvent Safe
- 2019 SIFT-MS Interest Group Meeting: Day 2 Round-Up
- 2019 SIFT-MS Interest Group Meeting: Day 1 Round-Up
- Pharmaceutical Production: From Batch to Continuous Manufacturing
- How Accurate and Precise are SIFT-MS Measurements?
- 14 Reasons Why You Should be Using SIFT-MS
- SIFT-MS, The MultiPort Inlet and Processes Monitoring – The Ideal Partnership
- Introducing Adam Gladwin to the Anatune Team
- Training at Anatune
- Seven Speakers Confirmed for the SIFT-MS Interest Group Meeting
- Anatune in County Westmeath – Save the Date
- SIFT-MS Interest Group Meeting
- My Pyrolysis Polymer Bible
- The New Agilent 8890 Gas Chromatograph
- Extractable and Leachable Test Protocols – Innovation through Collaboration
- CHROMacademy Giveaway
- Portsmouth Paper with Reference to Anatune’s Metaldehyde Solution
- Banning Metaldehyde – An Opportunity to Reset
- Analytical Chemistry – 4 Predictions for 2019
- CHRISTMAS CLOSURES AND EMERGENCY CONTACT INFO
- Introducing Joe Perkins-Hall to the Anatune Team
- Second Guest Speaker Confirmed for the Watermation Workshop
- WWEM 2018 – Free VIP Registration
- South East Water – the route to validation for automated liquid-liquid extraction method for Organochloro Pesticides
- Introducing Colin Hastie to the Anatune Team
- Watermation Workshop – An Afternoon in the Anatune Lab
- 7250 GC/Q-TOF: The Quickest Way to Your Molecular Ion
- Future Technology Protecting the Past
- Why Dispersive Liquid Liquid Micro Extraction? Why Now?
- Upcoming Webinar on Automated Environmental Sample Analysis
- Watermation Workshop – Large Volume Injection in High-throughput Environments
- What We’re Looking Forward to at BMSS 39
- Are you coming to BMSS 2018 in Cambridge?
- Water Analysis – Changes are on the Way
- Comparing Chemcatchers, Online Process Monitoring and Traditional Laboratory Measurements
What automated sample preparation can do for you
- Get more work done, better and with the same number of staff
- With our help, develop methods faster
- Real-time control of water treatment
Manual Sample Preparation is costly, error prone and tedious to do. Everyone hates it!
You don’t have to put up with it any more. Mass Spectrometers now have enough sensitivity, that you can work with smaller samples – making automated sample preparation a realistic option for every method you have to run.
We can give you all the help you need to make this happen.
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"If you want to improve your data quality, reduce your costs per sample and get more done, then speak to me, because I can help you automate your sample preparation and reduce the amount of manual work needed".
Phine Banks
Water and Environmental Industry Specialist