Yulin Chen, Junwei Qiu, Kai Xu, Huijun Zhu, Shuo Zhang, Xinxin Lu and Xiaoxu Li
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This module can reduce the temperature to around 0 °C within ten minutes for sample enrichment, and the heating system can increase the temperature to 260 °C within 20 seconds to ensure rapid desorption and injection of samples. Due to the miniaturization design, the total weight of the portable GC-MS is 21.7 kg, and the volume is 48 cm × 38 cm × 17 cm. Within merely 10 minutes, it completely separated and detected 65 VOCs in the TO-15 standard substance, with a detection limit down to 0.12 μg L<small><sup>−1</sup></small> for toluene. The detection performance for low-boiling substances could be enhanced by up to 17 times compared to ambient temperature adsorption thermal desorption, such as 1,3-butadiene. Moreover, the results demonstrated long-term stability (RSD < 10% for 98% of the substances, with recovery rates from 91.66% to 109.12%). This study provides a feasible strategy for the rapid and reliable detection of VOCs in the air, holding great potential in the field of environmental monitoring.</p>","PeriodicalId":63,"journal":{"name":"Analyst","volume":" 3","pages":" 470-480"},"PeriodicalIF":3.6000,"publicationDate":"2025-01-03","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Development of a portable gas chromatograph–mass spectrometer embedded with a low-temperature adsorption thermal desorption module for enhanced detection of volatile organic compounds\",\"authors\":\"Yulin Chen, Junwei Qiu, Kai Xu, Huijun Zhu, Shuo Zhang, Xinxin Lu and Xiaoxu Li\",\"doi\":\"10.1039/D4AN01484G\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p >A portable gas chromatograph–mass spectrometer (GC-MS) is an effective instrument for rapid on-site detection of volatile organic compounds (VOCs). 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Within merely 10 minutes, it completely separated and detected 65 VOCs in the TO-15 standard substance, with a detection limit down to 0.12 μg L<small><sup>−1</sup></small> for toluene. The detection performance for low-boiling substances could be enhanced by up to 17 times compared to ambient temperature adsorption thermal desorption, such as 1,3-butadiene. Moreover, the results demonstrated long-term stability (RSD < 10% for 98% of the substances, with recovery rates from 91.66% to 109.12%). 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引用次数: 0
摘要
便携式气相色谱-质谱联用仪(GC-MS)是现场快速检测挥发性有机物(VOCs)的有效仪器。目前的仪器通常在环境温度下吸附样品,对低沸点挥发性有机化合物的检测提出了挑战。本研究提出了一种低温吸附热解吸的便携式GC-MS样品富集方法。制冷模块采用热电冷却器(TEC),加热丝直接加热吸附管,降低热容量。该模块的小型化和低功耗设计使其可集成到便携式GC-MS设备中。该模块可在十分钟内将温度降低到0℃左右,用于样品富集,加热系统可在20秒内将温度升高到260℃,以确保样品的快速解吸和进样。由于采用小型化设计,便携式气相色谱-质谱仪的总重量为21.7 kg,体积为48 cm × 38 cm × 17 cm。在短短10分钟内,它完全分离并检测出了to -15标准物质中的65种VOCs,其中甲苯的检测限低至0.12 μg L−1。对低沸点物质(如1,3-丁二烯)的检测性能比常温吸附热脱附提高了17倍。此外,结果显示长期稳定性(RSD <;10%的回收率为98%,回收率为91.66% ~ 109.12%)。该研究为快速、可靠地检测空气中挥发性有机化合物提供了可行的策略,在环境监测领域具有很大的潜力。
Development of a portable gas chromatograph–mass spectrometer embedded with a low-temperature adsorption thermal desorption module for enhanced detection of volatile organic compounds
A portable gas chromatograph–mass spectrometer (GC-MS) is an effective instrument for rapid on-site detection of volatile organic compounds (VOCs). Current instruments typically adsorb samples at ambient temperature, challenging the detection of low-boiling VOCs. In this study, a low-temperature adsorption thermal desorption method is proposed for sample enrichment in a portable GC-MS. The refrigeration module adopts a thermoelectric cooler (TEC), and a heating wire directly heats the adsorption tube to reduce the heat capacity. The miniaturization and low-power design make this module integrable into portable GC-MS devices. This module can reduce the temperature to around 0 °C within ten minutes for sample enrichment, and the heating system can increase the temperature to 260 °C within 20 seconds to ensure rapid desorption and injection of samples. Due to the miniaturization design, the total weight of the portable GC-MS is 21.7 kg, and the volume is 48 cm × 38 cm × 17 cm. Within merely 10 minutes, it completely separated and detected 65 VOCs in the TO-15 standard substance, with a detection limit down to 0.12 μg L−1 for toluene. The detection performance for low-boiling substances could be enhanced by up to 17 times compared to ambient temperature adsorption thermal desorption, such as 1,3-butadiene. Moreover, the results demonstrated long-term stability (RSD < 10% for 98% of the substances, with recovery rates from 91.66% to 109.12%). This study provides a feasible strategy for the rapid and reliable detection of VOCs in the air, holding great potential in the field of environmental monitoring.