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首页> 外文期刊>AIChE Journal >Process intensification of distillation using a microwick technology to demonstrate separation of propane and propylene
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Process intensification of distillation using a microwick technology to demonstrate separation of propane and propylene

机译:使用微罗克技术进行蒸馏的加强,证明丙烷和丙烯的分离

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> Process intensification (PI) of distillation using a microchannel distillation (MCD) device successfully reduced the height of a theoretical plate (HETP) in separating propane and propylene to 1.2 cm, representing 10 theoretical stages. Mass transfer is enhanced using thin wicking structures that are 0.17 mm thick in counterflow with vapor. Liquid is segregated in the wicks by applying a siphon relative to the vapor phase, which also enables the device to operate horizontally. A scalable device containing 11 wicks was operated cryogenically in total reflux. The HETP varied between 1.2 and 4.5 cm, representing a dramatic reduction over commercial structured packings and comparable to other PI approaches. Significant improvements are expected with further development. Potential application for intensified distillation processes include distributed manufacturing and difficult separations involving close boiling compounds and meeting high purity specifications. The ultimate application is isotopic enrichment, where the number of stages required is typically multiple thousands. ? 2018 American Institute of Chemical Engineers AIChE J , 64: 3690–3699, 2018
机译: > 使用微通道蒸馏(MCD)器件的蒸馏(MCD)装置的过程强化(PI)成功地降低了分离丙烷和丙烯的理论板(HETP)的高度至1.2cm,代表了10个理论阶段。使用薄的芯吸结构增强了传质,其在逆流中为0.17毫米。液体通过相对于气相施加虹吸层在芯中进行液体,这也使得该装置水平地操作。含有11个芯片的可伸缩装置在总回流中低温操作。 HETP在1.2和4.5厘米之间变化,代表商业结构填料的剧烈减少,并与其他PI方法相当。预计进一步发展有重大改进。增强蒸馏工艺的潜在申请包括分布式制造和涉及紧密沸腾化合物和满足高纯度规格的难度分离。最终应用是同位素富集,其中所需的阶段数量通常是数千个。还2018年美国化学工程研究所 aiche j ,64:3690-3699,2018

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