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https://pubs.rsc.org/en/content/articlelanding/2025/ce/d5ce00171d

Control of crystal size distribution in continuous cooling crystallization using non-isothermal Taylor vortex

The establishment of a non-isothermal Taylor vortex flow within a Couette–Taylor (CT) crystallizer, achieved by applying varying temperatures to the inner and outer cylinders, facilitates precise regulation of the crystal size distribution (CSD) during continuous cooling crystallization. This methodology tra



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Control of crystal size distribution in continuous cooling crystallization using non-isothermal Taylor vortex

https://pubs.rsc.org/en/content/articlelanding/2025/ce/d5ce00171d

The establishment of a non-isothermal Taylor vortex flow within a Couette–Taylor (CT) crystallizer, achieved by applying varying temperatures to the inner and outer cylinders, facilitates precise regulation of the crystal size distribution (CSD) during continuous cooling crystallization. This methodology tra



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https://pubs.rsc.org/en/content/articlelanding/2025/ce/d5ce00171d

Control of crystal size distribution in continuous cooling crystallization using non-isothermal Taylor vortex

The establishment of a non-isothermal Taylor vortex flow within a Couette–Taylor (CT) crystallizer, achieved by applying varying temperatures to the inner and outer cylinders, facilitates precise regulation of the crystal size distribution (CSD) during continuous cooling crystallization. This methodology tra

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      Control of crystal size distribution in continuous cooling crystallization using non-isothermal Taylor vortex
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      The establishment of a non-isothermal Taylor vortex flow within a Couette–Taylor (CT) crystallizer, achieved by applying varying temperatures to the inner and outer cylinders, facilitates precise regulation of the crystal size distribution (CSD) during continuous cooling crystallization. This methodology tra
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