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Automation of fizzy extraction enabled by inexpensive open-source modules

机译:廉价的开源模块支持自动提取泡沫

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摘要

The implementation of most instrumental analysis methods requires a considerable amount of human effort at every step, including sample preparation, detection, and data processing. Automated analytical workflows decrease the amount of required work. However, commercial automated platforms are mainly available for well-established sample processing methods. In contrast, newly developed prototypes of analytical instruments are often operated manually, what limits their performance and decreases the chance of their adoption by the broader community. Open-source electronic modules facilitate the prototyping of complex analytical instruments and enable the incorporation of automated functions at the early stage of technique development. Here, we exemplify this advantage of open-source electronics while prototyping an automated analytical device. Fizzy extraction takes advantage of the effervescence phenomenon to extract semi-volatile solutes from the liquid to the gas phase. The entire fizzy extraction process has been automated by using three Arduino-related microcontrollers. The functions of the developed autonomous fizzy extraction device include triggering the analysis by a smartphone app, control of carrier gas pressure in the headspace of the sample chamber, displaying experimental conditions on an LCD screen, acquiring mass spectrometry data in real time, filtering electronic noise, integrating peaks, calculating the analyte concentration in the extracted sample, printing the analysis report, storing the acquired data in non-volatile memory, monitoring the condition of the motor by counting the number of extraction cycles, and cleaning the elements exposed to the sample (to minimize carryover). The performance of this automated system has been evaluated using standards and real samples.
机译:大多数仪器分析方法的实施在每个步骤都需要大量的人力,包括样品制备,检测和数据处理。自动化的分析工作流程减少了所需的工作量。但是,商业自动化平台主要可用于完善的样品处理方法。相反,新开发的分析仪器原型通常是手动操作的,这限制了它们的性能并降低了更广泛的社区采用它们的机会。开源电子模块有助于复杂分析仪器的原型设计,并在技术开发的早期阶段就可以并入自动化功能。在此,我们在为自动化分析设备制作原型的同时,举例说明了开源电子产品的这一优势。泡沫萃取利用泡腾现象的优势,从液相到气相萃取半挥发性溶质。通过使用三个与Arduino相关的微控制器,自动化了整个模糊的提取过程。所开发的自动碳酸汽化萃取设备的功能包括通过智能手机应用程序触发分析,控制样品室顶部空间中的载气压力,在LCD屏幕上显示实验条件,实时获取质谱数据,过滤电子噪声,积分峰,计算提取的样品中的分析物浓度,打印分析报告,将获取的数据存储在非易失性存储器中,通过计算提取循环次数来监视电动机的状态以及清洁暴露于样品中的元素(以最小化残留)。该自动化系统的性能已使用标准品和实际样品进行了评估。

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