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Jesse Zhu

Researcher at University of Western Ontario

Publications -  373
Citations -  10615

Jesse Zhu is an academic researcher from University of Western Ontario. The author has contributed to research in topics: Fluidized bed & Fluidization. The author has an hindex of 47, co-authored 351 publications receiving 8902 citations. Previous affiliations of Jesse Zhu include Sichuan University & China University of Mining and Technology.

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An experimental study on biomass air-steam gasification in a fluidized bed.

TL;DR: The results showed that higher temperature contributed to more hydrogen production, but too high a temperature lowered gas heating value, and a smaller particle was more favorable for higher gas LHV and yield.
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Magnetic nanoparticles for environmental and biomedical applications: A review

TL;DR: An overview of iron oxide MNPs used in environmental, biomedical, and clinical fields is provided and the application of superparamagnetic iron oxide nanoparticles (SPIONs), which have gained research focus recently owing to their many desirable features, are elaborated.
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Hydrodynamics of gas-solid fluidization

TL;DR: A review of gas-solid fluidization literature can be found in this article, with emphasis on findings that appear to represent significant steps forward in advancing the understanding of fluidization phenomena, or which have potential practical implications.
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Characterization of powder flow: Static and dynamic testing

TL;DR: In this paper, the authors used a variety of techniques that tested powders under different stress states, ranging from static to dynamic, and found that characterization techniques that were more dynamic such as fluidized bed expansion were best suited for predicting the fluidization performance while characterization techniques such as cohesion were better for predicting agglomeration.
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Cocurrent downflow circulating fluidized bed (downer) reactors — A state of the art review

TL;DR: In this article, a lit fluidise circulant a cocourant descendant ont ete proposes pour faire concurrence aux reacteurs a litfluidis circulants ascendant.