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Microchip, solvent displacement method using the microchip, concentrating method, and mass spectrometry system

机译:微芯片,使用微芯片的溶剂置换方法,浓缩方法和质谱系统

摘要

A particular component in a sample is recovered in a high concentration and solvent-replaced. A separator 100 is placed on a microchip and includes a channel 112 for flowing the particular component. The channel 112 includes a sample feeding channel 300 as well as a filtrate discharge channel 302 and a sample recovering part 308 which are branched from the sample feeding channel 300. There is formed a filter 304 for preventing passage of the particular component, at the inlet of the filtrate discharge channel 302 from the sample feeding channel 300. Furthermore, there is formed a damming area (hydrophobic area) 306 for preventing entering of a liquid sample while allowing for passage of the liquid sample by applying an external force equal to or larger than a given level, at the inlet of the sample recovering part 308 from the sample feeding channel 300.
机译:样品中的特定成分可以高浓度回收并用溶剂代替。分隔器 100 放置在微芯片上,并包括用于流通特定成分的通道 112 。通道 112 包括样品进料通道 300 ,滤液排放通道 302 和样品回收部件 308 从进样通道 300 分支。在滤液排出通道 302 从进样通道 300 的入口处形成用于防止特定成分通过的过滤器 304 。 。此外,形成有堰塞区域(疏水区域) 306 ,该堰塞区域用于防止液体样品进入,同时通过施加等于或大于给定水平的外力允许液体样品通过。从样品进料通道 300到样品回收部件 308 的入口。

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