2021
DOI: 10.1021/acs.iecr.1c00609
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Review on the Effect of Gas Distributor on Flow Behavior and Reaction Performance of the Bubble/Slurry Reactors

Abstract: Gas distributors greatly affect the performance of bubble column or slurry bubble column reactors (BCR/SBCRs). Investigation of design parameters characterizing the operation and transport phenomena of gas distributors in BCR/SBCRs can lead to a better understanding of hydrodynamic properties and mass transfer mechanisms. The performance of gas distributors is often described using various mathematical models and computational fluid dynamics simulations supported by experimental research. Nonetheless, little e… Show more

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Cited by 5 publications
(2 citation statements)
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“…Gas distributor is one of the most important structures in towers and reactors to improve the initial distribution of the incoming gas, and its design and optimization have attracted extensive research [7–10]. Industrially, the gas distributors have tubular type, perforated plate type, tangential circulation type, fractal type and double‐row vane type, etc [11]. Due to the simple structure, the small pressure drops, and the convenient installation, the perforated plate distributor is widely used in large adsorption towers.…”
Section: Introductionmentioning
confidence: 99%
“…Gas distributor is one of the most important structures in towers and reactors to improve the initial distribution of the incoming gas, and its design and optimization have attracted extensive research [7–10]. Industrially, the gas distributors have tubular type, perforated plate type, tangential circulation type, fractal type and double‐row vane type, etc [11]. Due to the simple structure, the small pressure drops, and the convenient installation, the perforated plate distributor is widely used in large adsorption towers.…”
Section: Introductionmentioning
confidence: 99%
“…We often encounter gas–solid–liquid three phase flow systems in chemical and energy engineering, for examples, slurry reactors, deep-sea mining, mineral floatation, and severe accidents in a nuclear reactor. , In these systems, the solid particle behavior is usually influenced by the motion of bubbles in the liquid phase. For the better understanding of the gas–solid–liquid flow systems, several numerical models have been proposed due to the significant development of computer hardware.…”
Section: Introductionmentioning
confidence: 99%