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汕头大学海洋科学接受调剂
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[资源] 固体颗粒结块固化的理论研究-关于尿素小颗粒固体桥形成的动力学发现

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Direct Observation of the Dynamics of Bridge Formation between Urea Prills

Roman M. Kirsch,*,†,‡ Richard A. Williams,† Ulrich Br?ockel,‡ Robert B. Hammond,† and Xiaodong Jia†
†Institute of Particle Science and Engineering, School of Process, Environmental and Materials Engineering, University of Leeds,
LS2 9JT Leeds, United Kingdom
‡Institute for Micro-Process-Engineering and Particle Technology, Umwelt-Campus Birkenfeld, P.O. Box 1380, 55761 Birkenfeld,
Germany

ABSTRACT: A novel experimental method has been developed that enables the direct observation of bridge formation between
urea particles under very carefully controlled climatic conditions ((<0.2 C, (1% humidity) providing new insight into the
fundamental system behavior. Results demonstrate that liquid bridges are formed rapidly between urea prills, often within 30 min,
when exposed to conditions close to the critical relative humidity and following adsorption of water at the surface of the prills.
Observations over a longer time period show that a time-dependent mass transfer into the liquid bridge takes place, transforming it
into a solid bridge. This complies with earlier experimental results reported elsewhere [Wahl, M.; Kirsch, R.; Br?ockel, U.; Trapp, S.;
Bottlinger, M. Chem. Eng. Technol. 2006, 29, 674]. Elucidation of the mechanism shows that the phenomenon cannot be considered
a simple crystallization of dissolved urea by evaporation of water in a distinct drying step, as widely assumed in the past. We report
here evidence of the time dependence of solid-bridge formation on mass transfer. These observations present a new challenge for
future studies seeking to develop appropriate models to describe the bridge formation in urea.

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