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Potentiometric hydrocarbon gas sensing characteristics of sodium ion conducting zeolite ZSM-5

机译:钠离子导电沸石ZSM-5的电位烃气感测特性

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The sodium ion conducting zeolite Na-ZSM-5 is used as a novel sensitive material in a potentiometric gas sensor with a Na_(0.85)CoO_2 reference electrode. At 723 K, a fast voltage response to alkane (C1-C4) partial pressure changes (1-100 kPa) in O_2/CO_2/N_2 base gas is observed. The sensing effect is quantitatively described by a model assuming a change of the Na~+ ion activity in the zeolite due to sorption of alkanes in the micropores. The sensor signal is logarithmically dependent on alkane partial pressure at high concentrations and shows a levelling-off behaviour at low partial pressures. The slopes in the logarithmic range are between 99 and 144 mV/decade. The lower detection limits are dependent on the alkane chain length and vary from 12ppm for n-butane to 1.1% for methane, for an observed standard deviation of 3.3 mV. Cross-sensitivities to O_2, H_2, and CO_2 have different response behaviour and are ascribed to a superimposed effect involving changes of the Na activity at the zeolite/gold interface. Response times (t_(90)) are in the order of 5 min.
机译:钠离子导电沸石Na-ZSM-5用作带有Na_(0.85)CoO_2参比电极的电位气体传感器中的新型敏感材料。在723 K下,观察到O_2 / CO_2 / N_2基础气体中烷烃(C1-C4)分压变化(1-100 kPa)的快速电压响应。通过模型定量地描述了传感效果,该模型假设由于微孔中烷烃的吸附,沸石中的Na +离子活性发生了变化。传感器信号在对数上取决于高浓度下的烷烃分压,并显示出在低分压下的稳定现象。对数范围内的斜率在99至144 mV /十倍之间。较低的检测限取决于烷烃链的长度,从正丁烷的12ppm到甲烷的1.1%变化,观察到的标准偏差为3.3 mV。对O_2,H_2和CO_2的交叉敏感性具有不同的响应行为,并且归因于涉及沸石/金界面Na活性变化的叠加效应。响应时间(t_(90))约为5分钟。

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