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Updated: May 25, 2026

Hydrogen Production and Utilization in a Membrane Reactor
Published on: March 10, 2023
Development of polymeric palladium-nanoparticle membrane-installed microflow devices and their application in
Yoichi M A Yamada1, Toshihiro Watanabe, Aya Ohno
1RIKEN Advanced Science Institute, Wako, Saitama, Japan.
Abstract:
We have developed a variety of polymeric palladium-nanoparticle membrane-installed microflow devices. Three types of polymers were convoluted with palladium salts under laminar flow conditions in a microflow reactor to form polymeric palladium membranes at the laminar flow interface. These membranes were reduced with aqueous sodium formate or heat to create microflow devices that contain polymeric palladium-nanoparticle membranes. These microflow devices achieved instantaneous hydrodehalogenation of aryl chlorides, bromides, iodides, and triflates by 10-1000 ppm within a residence time of 2-8 s at 50-90 °C by using safe, nonexplosive, aqueous sodium formate to quantitatively afford the corresponding hydrodehalogenated products. Polychlorinated biphenyl (10-1000 ppm) and polybrominated biphenyl (1000 ppm) were completely decomposed under similar conditions, yielding biphenyl as a fungicidal compound.
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