4.7 Article

A new 3D printed radial flow-cell for chemiluminescence detection: Application in ion chromatographic determination of hydrogen peroxide in urine and coffee extracts

Journal

ANALYTICA CHIMICA ACTA
Volume 1005, Issue -, Pages 81-92

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.aca.2017.12.039

Keywords

Radial flow-cell; 3D printed flow-cell; Hydrogen peroxide; Flow injection analysis; Chemiluminescence detection; Ion chromatography

Funding

  1. Australian Research Council Centre of Excellence Scheme [CE 140100012]
  2. Grant National Security Science and Technology Unit (NSSTU) on Counter Terrorism of the Department of Prime Minister and Cabinet of Australia

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A new polymer flow-cell for chemiluminescence detection (CLD) has been designed and developed by diverging multiple linear channels from a common centre port in a radial arrangement. The fabrication of radial flow-cell by 3D PolyJet printing and fused deposition modeling (FDM) has been evaluated, and compared with a similarly prepared spiral flow-cell design commonly used in chemiluminescence detectors. The radial flow-cell required only 10 h of post-PolyJet print processing time as compared to ca. 360 h long post-PolyJet print processing time required for the spiral flow-cell. Using flow injection analysis, the PolyJet 3D printed radial flow-cell provided an increase in both the signal magnitude and duration, with an average increase in the peak height of 63% and 58%, peak area of 89% and 90%, and peak base width of 41% and 42%, as compared to a coiled-tubing spiral flow-cell and the PolyJet 3D printed spiral flow-cell, respectively. Computational fluid dynamic (CFD) simulations were applied to understand the origin of the higher CLD signal obtained with the radial flow-cell design, indicating higher spatial coverage near the inlet and lower linear velocities in the radial flow-cell. The developed PolyJet 3D printed radial flow-cell was applied in a new ion chromatography chemiluminescence based assay for the detection of H2O2 in urine and coffee extracts. (C) 2018 Elsevier B.V. All rights reserved.

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