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Design of SH-surface acoustic wave sensors for detection of ppb concentrations of BTEX in water

机译:SH表面声波传感器检测水中PPB浓度的SH-表面声波传感器

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To address the need to protect public health from contamination of drinking water and water for recreational use, a compact sensor system for in-situ detection of fuel and oil components in water is being investigated. The system makes use of shear-horizontal surface acoustic wave (SH-SAW) sensors coated with thin chemically sensitive polymer films. For this work, the BTEX compounds (benzene, toluene, ethylbenzene, and xylenes) were selected as target analytes because they are good indicators of fuel and oil releases, but also because they include known carcinogens (benzene, ethylbenzene). Chemical selectivity is achieved by combining sensors with various polymer coatings into a sensor array, and by evaluating both steady-state and transient response information. This work focuses on the influence of interdigital transducer (IDT) design on signal distortion and rms (root-mean-square) noise level. It is demonstrated that for suitable IDT design and experimental approach, it is possible to detect all BTEX compounds at concentration levels of 100 ppb or below, and to quantify benzene concentration in binary analyte mixtures at concentrations well below 1 ppm.
机译:为了应对保护公共卫生免受饮用水和水的污染,用于娱乐使用的污染,正在研究一种紧凑的传感器系统,用于原位检测水中的燃料和油组分。该系统利用涂覆有薄的化学敏感聚合物膜的剪切水平表面声波(SH锯)传感器。对于这项工作,选择BTEX化合物(苯,甲苯,乙苯和二甲苯)作为靶分析物,因为它们是燃料和油释放的良好指标,而且因为它们包括已知的致癌(苯,乙苯)。通过将具有各种聚合物涂层的传感器组合成传感器阵列来实现化学选择性,并通过评估稳态和瞬态响应信息。这项工作侧重于代表换能器(IDT)设计对信号失真和RMS(根均方)噪声水平的影响。证明,对于合适的IDT设计和实验方法,可以在浓度为100ppb或以下检测所有BTEX化合物,并在低于1ppm的浓度下量化二元分析物混合物中的苯浓度。

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