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The design of a low-cost 3D printed flow cell for synchrotron computed microtomography.


ABSTRACT: This work presents the design and development of a 3D printed flow cell tailored for X-ray computed microtomography of liquid-solid systems. The flow cell is manufactured using stereolithographic printing and utilizes a novel pillarless pull-through geometry. The use of the flow cell developed for K-11 DIAD (Dual Imaging and Diffraction beamline, Diamond Light Source, UK) is demonstrated with the in situ flow and selective recovery of an Sn precipitate from solution using an organic ligand. The 3D designs and components are made freely available with this publication.

SUBMITTER: Perera L 

PROVIDER: S-EPMC12948017 | biostudies-literature | 2026 Mar

REPOSITORIES: biostudies-literature

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The design of a low-cost 3D printed flow cell for synchrotron computed microtomography.

Perera Liam L   Garland Peter P   Kirk Caroline C   Leonardi Alberto A   Love Jason B JB   Manchester Tristan T   Morrison Carole A CA   Rae Rebecca R   Vance Susanna S M SSM   Ahmed Sharif I SI  

Journal of synchrotron radiation 20260209 Pt 2


This work presents the design and development of a 3D printed flow cell tailored for X-ray computed microtomography of liquid-solid systems. The flow cell is manufactured using stereolithographic printing and utilizes a novel pillarless pull-through geometry. The use of the flow cell developed for K-11 DIAD (Dual Imaging and Diffraction beamline, Diamond Light Source, UK) is demonstrated with the in situ flow and selective recovery of an Sn precipitate from solution using an organic ligand. The  ...[more]

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