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首页> 外文期刊>International Journal of Environmental Research and Public Health >A Microfluidic Device for Continuous Sensing of Systemic Acute Toxicants in Drinking Water
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A Microfluidic Device for Continuous Sensing of Systemic Acute Toxicants in Drinking Water

机译:用于持续检测饮用水中系统急性毒性的微流控装置

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A bioluminescent-cell-based microfluidic device for sensing toxicants in drinking water was designed and fabricated. The system employed Vibrio fischeri cells as broad-spectrum sensors to monitor potential systemic cell toxicants in water, such as heavy metal ions and phenol. Specifically, the chip was designed for continuous detection. The chip design included two counter-flow micromixers, a T-junction droplet generator and six spiral microchannels. The cell suspension and water sample were introduced into the micromixers and dispersed into droplets in the air flow. This guaranteed sufficient oxygen supply for the cell sensors. Copper (Cu2+), zinc (Zn2+), potassium dichromate and 3,5-dichlorophenol were selected as typical toxicants to validate the sensing system. Preliminary tests verified that the system was an effective screening tool for acute toxicants although it could not recognize or quantify specific toxicants. A distinct non-linear relationship was observed between the zinc ion concentration and the Relative Luminescence Units (RLU) obtained during testing. Thus, the concentration of simple toxic chemicals in water can be roughly estimated by this system. The proposed device shows great promise for an early warning system for water safety.
机译:设计并制造了一种基于生物发光细胞的微流控装置,用于感应饮用水中的有毒物质。该系统采用费氏弧菌细胞作为广谱传感器,以监测水中潜在的全身性细胞毒物,例如重金属离子和苯酚。具体来说,该芯片被设计用于连续检测。芯片设计包括两个逆流微混合器,一个T型结液滴发生器和六个螺旋微通道。将细胞悬浮液和水样品引入微混合器,并在气流中分散成液滴。这样可以保证为电池传感器提供足够的氧气。选择铜(Cu2 +),锌(Zn2 +),重铬酸钾和3,5-二氯苯酚作为典型的有毒物质以验证传感系统。初步测试证实,该系统虽然不能识别或量化特定的毒物,但却是对急性毒物的有效筛选工具。在测试期间获得的锌离子浓度和相对发光单位(RLU)之间观察到明显的非线性关系。因此,可以通过该系统粗略估算水中简单有毒化学物质的浓度。拟议中的设备显示出对水安全预警系统的巨大希望。

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