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首页> 外文期刊>Analytica chimica acta >Membrane-based microchannel device for continuous quantitative extraction of dissolved free sulfide from water and from oil
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Membrane-based microchannel device for continuous quantitative extraction of dissolved free sulfide from water and from oil

机译:基于膜的微通道装置,用于从水和油中连续定量提取溶解的游离硫化物

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摘要

Underground fluids are important natural sources of drinking water, geothermal energy, and oil-based fuels. To facilitate the surveying of such underground fluids, a novel microchannel extraction device was investigated for in-line continuous analysis and flow injection analysis of sulfide levels in water and in oil. Of the four designs investigated, the honeycomb-patterned microchannel extraction (HMCE) device was found to offer the most effective liquid-liquid extraction. In the HMCE device, a thin silicone membrane was sandwiched between two polydimethylsiloxane plates in which honeycomb-patterned microchan-nels had been fabricated. The identical patterns on the two plates were accurately aligned. The extracted sulfide was detected by quenching monitoring of fluorescein mercuric acetate (FMA). The sulfide extraction efficiencies from water and oil samples of the HMCE device and of three other designs (two annular and one rectangular channel) were examined theoretically and experimentally. The best performance was obtained with the HMCE device because of its thin sample layer (small diffusion distance) and large interface area. Quantitative extraction from both water and oil could be obtained using the HMCE device. The estimated limit of detection for continuous monitoring was 0.05 μM, and sulfide concentrations in the range of 0.15-10 μM could be determined when the acceptor was 5 μM FMA alkaline solution. The method was applied to natural water analysis using flow injection mode, and the data agreed with those obtained using headspace gas chromatography-flame photometric detection. The analysis of hydrogen sulfide levels in prepared oil samples was also performed. The proposed device is expected to be used for real time survey of oil wells and groundwater wells.
机译:地下流体是饮用水,地热能和石油基燃料的重要自然来源。为了便于调查这类地下流体,人们研究了一种新颖的微通道提取装置,用于对水中和水中的硫化物含量进行在线连续分析和流动注射分析。在所研究的四种设计中,发现蜂窝状微通道萃取(HMCE)设备可提供最有效的液-液萃取。在HMCE设备中,薄的硅树脂膜夹在两个聚二甲基硅氧烷板之间,其中已制造出蜂窝状微通道。将两个板上的相同图案精确对齐。通过淬灭监测荧光素乙酸汞(FMA)来检测提取的硫化物。从HMCE设备和其他三种设计(两个环形和一个矩形通道)的水和油样品中提取硫化物的效率在理论上和实验上都得到了检验。 HMCE器件具有薄的样品层(较小的扩散距离)和较大的界面面积,因此可获得最佳性能。可以使用HMCE设备从水和油中定量提取。连续监测的估计检测限为0.05μM,当受体为5μMFMA碱性溶液时,硫化物浓度可以确定在0.15-10μM范围内。该方法应用于流动注射模式的天然水分析,数据与使用顶空气相色谱-火焰光度检测获得的数据一致。还对制备的油样中的硫化氢含量进行了分析。该设备有望用于油井和地下水井的实时勘测。

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