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首页> 外文期刊>Organic process research & development >Translating High-Temperature Microwave Chemistry to Scalable Continuous Flow Processes
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Translating High-Temperature Microwave Chemistry to Scalable Continuous Flow Processes

机译:将高温微波化学转化为可扩展的连续流过程

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摘要

A comparison between batch microwave and conventionally heated continuous flow scale-up protocols for three selected model reactions is presented. Using high-temperature/-pressure conditions as process intensification principles, reaction times for all three transformations were reduced to a few seconds or minutes at temperatures ranging from 180-270 °C utilizing sealed vessel microwave conditions on small scale (2 mL). Successful scale-up of two out of three reactions in a multimodc batch microwave reactor on a ~1 L scale produced product quantities of ~0.5 kg within less than one hour of overall processing time. Moving to a continuous flow format in a high-temperature/high-pressure stainless steel microcapillary microreactor (4-16 mL reactor volume) all three transformations were scalable with significantly increased space-time yields compared to the microwave batch protocols. A critical evaluation of both scale-up principles is made.
机译:提出了三种选择的模型反应的批处理微波与常规加热的连续流量放大方案之间的比较。使用高温/高压条件作为工艺强化原理,利用小规模(2 mL)的密封容器微波条件,在180-270°C的温度下,所有三个转化的反应时间减少到几秒钟或几分钟。在多模分批微波反应器中,成功地在约1 L的规模中放大了三分之二的反应,在不到一小时的总处理时间内即可产生约0.5 kg的产品量。与微波批处理方案相比,在高温/高压不锈钢微毛细管微反应器(4-16 mL反应器体积)中转变为连续流形式,所有这三种转化均具有可扩展性,且时空产率显着提高。对这两个放大原理进行了严格的评估。

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