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Shigeharu Morooka

Researcher at Kyushu University

Publications -  235
Citations -  8146

Shigeharu Morooka is an academic researcher from Kyushu University. The author has contributed to research in topics: Membrane & Fluidized bed. The author has an hindex of 46, co-authored 235 publications receiving 7868 citations. Previous affiliations of Shigeharu Morooka include Kagoshima University.

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Evaluation of interaction between aromatic penetrants and acidic OH groups of solvent-swollen coals by inverse liquid chromatography

TL;DR: In this article, the role of OH-π interaction in selective recognition of aromatic rings by Morwell brown coal was clarified by using an inverse liquid chromatography technique, which showed that coal and aromatic molecules hardly penetrated into the micropores and therefore could not access selfassociated OH groups.
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Effect of chelating agent 1,5-diaminopentane on the microstructures of sol-gel derived zirconia membranes

TL;DR: In this paper, a ligand-exchange reaction with 1,5-diaminopentane (DAP) was used to reduce the hydrolysis rate of zirconium propoxide.
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Anodic oxidation of coal slurries in flow-through packed bed electrodes

TL;DR: In this paper, the anode was a packed bed of platinum-plated titanium pellets, through which the coal slurries were recirculated and increased collisions between coal particles and anode surfaces so that the anodic oxidation of coal was enhanced.
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Segregation of solid particles of two sizes in bubble columns

TL;DR: In this paper, the axial distributions of segregation and solid holdup over the whole range of the column were investigated with three combinations of sieved glass beads (118 and 243 μm, 118 and 465 μm; and 243 and 465μm diameter) in vertical columns of 7 cm diameter × 4.85 m height and 15 cm diameter x 2.7 m height under batch operation with respect to the solid phase.
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Fabrication of Parallel Microchannel Reactors for Use in Catalyst Testing

TL;DR: In this article, a micro-reactor having six channels was fabricated using silicon and glass plates by means of photolithography and wet etching using anodic bonding, the plates were configured so as to be gas tight and the dimensions of the channels were 1 mm in width, 03 mm in depth and 6 mm in length.