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Fabric Phase Sorptive Extraction: Principles, Applications and Potentials covers a new preparation technique that combines the extraction mechanisms of two major sample preparation techniques-solid phase extraction (governed by exhaustive extraction) and solid phase microextraction (governed by equilibrium-based extraction)-into a single sample preparation platform. In addition, FPSE allows researchers to utilize all the extraction phases available for both solid phase extraction and solid phase microextraction. Edited by the inventor of Fabric Phase Sorptive Extraction (FPSE), this book educates on the role of sample preparation in modern separation science and approaches that can be used to simplify and greenify this important step.
Sample preparation remains a matter of great concern and interest among academics, researchers and scientists as it is undoubtedly a major source of error and the most time-consuming step in the analytical/bioanalytical workflow, and the lack of harmonization among different sample preparation technologies inherently creates disparity in the data quality.
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Fabric Phase Sorptive Extraction: Principles, Applications and Potentials covers a new preparation technique that combines the extraction mechanisms of two major sample preparation techniques-solid phase extraction (governed by exhaustive extraction) and solid phase microextraction (governed by equilibrium-based extraction)-into a single sample preparation platform. In addition, FPSE allows researchers to utilize all the extraction phases available for both solid phase extraction and solid phase microextraction. Edited by the inventor of Fabric Phase Sorptive Extraction (FPSE), this book educates on the role of sample preparation in modern separation science and approaches that can be used to simplify and greenify this important step.
Sample preparation remains a matter of great concern and interest among academics, researchers and scientists as it is undoubtedly a major source of error and the most time-consuming step in the analytical/bioanalytical workflow, and the lack of harmonization among different sample preparation technologies inherently creates disparity in the data quality.