Analytical Quality Control

Our team of experts can help you achieve accurate and dependable results to ensure outstanding filtration performance

Quality Control in Laboratories

Reliable Results & Proven Performance

Quality Control Laboratories play a crucial role in identifying contamination and product issues before final release.  The data generated by these QC labs helps guide critical decisions.  The reliability of these results are demonstrated by Pall’s proven performance analyzing samples from 150 mL to less than 25 µL. 

 

Protect What Really Matters with Pall Laboratory Syringe Filter Technology 

 

Syringe filters perform sample clean-up and preparation, ensuring the purest samples are analyzed in liquid chromatography, mass spectrometry, and ion chromatography applications. Reliable results depend upon accurate data, achieved by the low extractables and high particulate retention of our syringe filters. 

 

Our High-Quality Laboratory Filters Meet the Unique Requirements of Every Lab We Serve

 

We continue to revolutionize the industry with new products and solutions to meet your laboratory’s ever-changing needs. We have a wide variety of Analytical QC membranes including our new wwPTFE membrane “the next generation in universal membrane filtration”, along with our Nylon, PVDF, hydrophobic PTFE membranes and more.  

 

  • HPLC & UHPLC Sample Preparation
  • LCMS Sample Preparation
  • IC Sample Preparation
  • High Throughput Sample Preparation
  • Mobile Phase Filtration
 

Featured New Products

 

 

The Pall Laboratory wwPTFE Membrane: 

 

Our newest wwPTFE membrane comes in a variety of sizes to accommodate sample volumes from 25 µL up to 150 mL.  Providing your laboratory with the ability to process single samples with the new Pall Laboratory Acrodisc One™ syringe filter, small volumes with the Nanosep® spin device or up to ninety-six samples with the Acroprep™ Advance filter plate

 

  • Extend column life up to 52 times
  • Reduce contamination with up to 24% less filter extractables than the competition
  • Process single samples or up to ninety-six samples at once
  • Simplify your sample preparation, saving time and money
 

 

Effects of filters on HPLC column life following injections of unfiltered and filtered 0.05% latex sphere suspensions. With unfiltered samples, the column failed due to plugging after 19 injections. Samples passed through Competitor filters plugged the columns after 500 injections. No increase in backpressure was observed after 1000 injections of samples filtered with Pall Acrodisc One syringe filters.

Fill out the form below to request a sample of our new Acrodisc One™ syringe filter, Nanosep® spin device or Acroprep™ Advance filter plate with wwPTFE membrane

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Literature Library

  • Science Brief: Efficient Protein Purification Strategies Using Multi-Well Filter Plates

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Acrodisc One Technical Guide

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HPLC & UHPLC Sample Preparation

A filter for HPLC applications is designed to increase accuracy by removing unwanted particles. However, the wrong filter can be a source of contaminants in the form of extractables that elute into the sample from the filter device. These undesired artefacts can jeopardize analytical results. Some extractable concerns include coelution, false quantitation, and extraneous peaks
A filter for HPLC applications is designed to increase accuracy by removing unwanted particles. However, the wrong filter can be a source of contaminants in the form of extractables that elute into the sample from the filter device. These undesired artefacts can jeopardize analytical results. Some extractable concerns include coelution, false quantitation, and extraneous peaks
Read more

LCMS Sample Preparation

In analytical sample preparation, extraction and leaching of chemical compounds from filters are major concerns, particularly when using liquid chromatography mass spectrometry (LCMS) for analysis. LCMS has gained popularity due to its versatility and superior sensitivity for both qualitative and quantitative analyses.
In analytical sample preparation, extraction and leaching of chemical compounds from filters are major concerns, particularly when using liquid chromatography mass spectrometry (LCMS) for analysis. LCMS has gained popularity due to its versatility and superior sensitivity for both qualitative and quantitative analyses.
Read more

IC Sample Preparation

We certify our Ion Chromatography (IC) Acrodisc syringe filters have been tested using a highly sensitive IC protocol to monitor inorganic extractables. For ion chromatography applications, only the IC Acrodisc (PES) syringe filter is certified for low levels of inorganic extractables. Actual background levels of filter extractables are typically less than 20 ppb for chloride, 6 ppb for nitrate, 1 ppb for phosphate, and 10 ppb for sulfate.
We certify our Ion Chromatography (IC) Acrodisc syringe filters have been tested using a highly sensitive IC protocol to monitor inorganic extractables. For ion chromatography applications, only the IC Acrodisc (PES) syringe filter is certified for low levels of inorganic extractables. Actual background levels of filter extractables are typically less than 20 ppb for chloride, 6 ppb for nitrate, 1 ppb for phosphate, and 10 ppb for sulfate.
Read more

High Throughput Sample Preparation

As increased sample processing becomes a greater requirement we offer our next generation 96-well filter plates. AcroPrep™ Advance Filter Plates are designed to provide superior performance in a multitude of sample prep applications. These multi-well filter plates have been optimized to support the stringent requirements of high throughput applications.
As increased sample processing becomes a greater requirement we offer our next generation 96-well filter plates. AcroPrep™ Advance Filter Plates are designed to provide superior performance in a multitude of sample prep applications. These multi-well filter plates have been optimized to support the stringent requirements of high throughput applications.
Read more

Mobile Phase Filtration

By filtering mobile phase, analysts can reduce debris capable of plugging the sinker and column frits, causing contamination, damaging pump valves, blocking capillaries, causing poor peak performance, and contributing extra peaks and excessive chromatographic noise.
By filtering mobile phase, analysts can reduce debris capable of plugging the sinker and column frits, causing contamination, damaging pump valves, blocking capillaries, causing poor peak performance, and contributing extra peaks and excessive chromatographic noise.
Read more