首页> 外文期刊>International journal of environmental analytical chemistry >REFLECTION-ABSORPTION INFRARED SENSING DEVICE FOR DETECTION OF SEMIVOLATILE AROMATIC COMPOUNDS IN SOILS
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REFLECTION-ABSORPTION INFRARED SENSING DEVICE FOR DETECTION OF SEMIVOLATILE AROMATIC COMPOUNDS IN SOILS

机译:反射吸收红外传感装置用于土壤中半挥发性芳香族化合物的检测

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In this article, a new IR-sensing device is described for the examination of chlorinated aromatic compounds in soils. To prepare this sensing device, a 20-mL glass vial was modified for use in the analysis of soil samples by conventional Fourier-transform infrared (FT-IR) spectroscopy. In this sampling device, an aluminium plate coated with a hydrophobic film was placed on top of the cap of the sample vial to absorb the analytes that evaporated from the soil matrix. After this absorption process was complete, the cap was placed in an FT-IR spectrometer, and the absorbed analytes were detected in the reflection-absorption (RA) mode. To accelerate the rate of evaporation of the analytes, the soil samples were heated to various temperatures. Meanwhile, other factors, such as the moisture content, sampling time, thickness of the hydrophobic film, and the volatilities and concentrations of the analytes, were also examined to optimize the analytical conditions. The results indicated that the time required to reach equilibrium conditions was short, and evaporation/absorption could be achieved within 10min. With a water content of 10% (v/w) or less, the intensities of the analytical signals were increased greatly when compared with those of dry samples; when the water content was above 10% (v/w), these intensities decreased, partially as a result of the heating efficiency. After examining the compounds that had different vapour pressures, the analytical results indicated that this method was applicable to the examination of compounds that had vapour pressures below 1.0Torr. Using the optimal conditions determined in this study, the detection limits for semivolatile aromatic compounds were lower than 100ng/g, and the regression coefficients of the standard curves for compounds that had a vapour pressure lower than 1.0Torr were larger than 0.99 in the concentration range of 1-100 μg/g.
机译:在本文中,描述了一种新的红外传感设备,用于检查土壤中的氯代芳香族化合物。为了准备此传感设备,对20毫升玻璃小瓶进行了修改,以用于通过常规傅立叶变换红外(FT-IR)光谱分析土壤样品。在该采样装置中,将涂有疏水膜的铝板放在样品瓶盖的顶部,以吸收从土壤基质蒸发的分析物。吸收过程完成后,将盖子放置在FT-IR光谱仪中,并以反射吸收(RA)模式检测吸收的分析物。为了加快分析物的蒸发速度,将土壤样品加热到各种温度。同时,还检查了其他因素,例如水分含量,采样时间,疏水膜的厚度以及分析物的挥发性和浓度,以优化分析条件。结果表明,达到平衡条件所需的时间很短,并且可以在10分钟内实现蒸发/吸收。含水量为10%(v / w)或更少时,与干燥样品相比,分析信号的强度大大提高;当水含量高于10%(v / w)时,这些强度降低,部分原因是加热效率的提高。在检查了具有不同蒸气压的化合物后,分析结果表明该方法适用于检查蒸气压低于1.0Torr的化合物。使用本研究确定的最佳条件,在浓度范围内,半挥发性芳族化合物的检出限低于100ng / g,蒸气压低于1.0Torr的化合物的标准曲线的回归系数大于0.99。 1-100μg/ g。

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