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A diamond micro reactor system based on a novel integration concept is presented and the role of diamond in this generic system is described.
In this work, we report results on the development of a novel intensified suspension-flow membrane micro reactor system for direct synthesis of hydrogen peroxide as well as on a related flexible micro reactor system for transfer hydrogenation which served as a starting point.
In this application the diamond micro reactor system combined with a specifically designed chemistry for the DNA-synthesis enables the parallel production of DNA-chain-clusters with individual sequence arranged in an array (DNA-Chip).
The setup is specially designed with overall safety considerations and broad operation space, including a smart micro reactor system which allows for flexible process control, easy assembling and direct product collection.
H2-TPR was carried out in a quartz-tube fixed-bed micro reactor system.
The TPD-H2O were carried out using a micro reactor system coupled to a QMS200 Balzers mass quadrupole spectrometer.
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The synthetic approach presented herein offers new opportunities to design and create sophisticated functional materials that can be used in micro reactor systems, adsorbents, drug delivery systems, catalytic processes, and sensor technologies.
Consequently, numerous micro total analysis systems (μ-TAS) and micro reactor systems have been developed, and many more are currently under investigation [ 2].
A multiphase micro-reactor system has been built specifically for HDS, consisting of a set of six 2 mm diameter packed beds with particles of approximately 100 μm.
The activities of these catalysts for diesel oil hydrodesulfurization (HDS) and hydrodenitrogenation (HDN) were evaluated in a high pressure micro-reactor system.
The evaluation of the catalyst prepared for methane reforming with CO2 was carried out with thermal gravimetric analysis (TGA), infrared spectroscopy (IR), X-ray diffraction (XRD), microscopy analyses (SEM and TEM), temperature-programmed reduction (TPR) and in a micro-reactor system.
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