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首页> 外文期刊>Analytica chimica acta >Contactless conductivity sensor employing moist paper as absorbent for in-situ detection of generated carbon dioxide gas
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Contactless conductivity sensor employing moist paper as absorbent for in-situ detection of generated carbon dioxide gas

机译:非接触式电导传感器采用湿纸作为原位检测产生的二氧化碳气体的吸收剂

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摘要

This work presents an unconventional use of capacitively coupled contactless conductivity detector (C4D) for detection of gas absorption by moist paper with potential application for chemical analysis. To be suitable for measuring conductivity of moist paper absorbent, the C4D sensor was therefore designed in planar configuration. A layer of dry filter paper, only 20 mm x 25 mm in size, was placed on the C4D sensor and the device installed inside a specifically designed vaporization chamber. A vial (16 mm i.d., 8 mm high) containing a 150-mu L solution of sodium bicarbonate was placed alongside. The filter paper was loaded with 110 mu L of deionized water through an injection hole in the cover lid. A 100-mu L aliquot of 2 M hydrochloric acid solution was directly dispensed into the vial through a second hole in the lid to generate CO2 gas from the bicarbonate solution. It was observed that the C4D sensor gave real-time response that corresponded to the absorption of the gas and subsequent production of H+ and HCO3- in the moist paper. The monitored signal reached a constant value at 160 s after the addition of the acid. Chemistry of the absorption process and equivalent circuit for the C4D are proposed. Direct measurement of cement powder was chosen to demonstrate the potential use of this device for quantifying the CaCO3 content of the cement. The calibration curve for 0.5-3 mg CaCO3 was linear for signals recorded at 160 s: V-dc = (0.172 +/- 0.005) center dot (mg CaCO3) + (0.016 +/- 0.009), with coefficient of determination of 0.9965. Linear calibrations were also observed when the signals were monitored at various time less than 160 s. The limit of quantitation (3 SD of intercept/slope) was 0.17 mg CaCO3. The method provided acceptable precision with %RSD of 4.6 (2 mg CaCO3, n = 10). (C) 2020 Elsevier B.V. All rights reserved.
机译:该工作介绍了具有电容耦合的接触式电导检测器(C4D)的非常规使用,用于检测湿纸的气体吸收,具有化学分析的潜在应用。为了适用于测量湿纸吸收剂的电导率,因此设计在平面配置中的C4D传感器。一层干滤纸,尺寸仅为20毫米×25mm,放置在C4D传感器上,并安装在特定设计的汽化室内的装置。含有150μmL碳酸氢钠溶液的小瓶(16mm I.D.,8mm高)旁边旁边。通过盖盖的注射孔用110μl去离子水装载过滤纸。通过盖子中的第二孔直接将100μl等分为2μm盐酸溶液分配到小瓶中以产生来自碳酸氢盐溶液的CO 2气体。观察到C4D传感器对应于气体吸收和随后的H +和HCO3-在潮湿纸中产生的实时响应。在加入酸后,监测信号在160s达到恒定值。提出了吸收过程的化学和C4D的等效电路。选择水泥粉末的直接测量以证明该装置的潜在用途量化水泥的CaCO 3含量。 0.5-3mg CaCO3的校准曲线对于以160 s记录的信号是线性的:V-DC =(0.172 +/- 0.005)中心点(Mg CaCo3)+(0.016 +/- 0.009),测定系数为0.9965 。当在小于160秒的各个时间监测信号时,还观察到线性校准。定量限(截止/斜率3 SD)为0.17mg Caco3。该方法提供了可接受的精度,%RSD为4.6(2mg Caco3,N = 10)。 (c)2020 Elsevier B.V.保留所有权利。

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