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Determination of lead in biomass and products of the pyrolysis process by direct solid or liquid sample analysis using HR-CS GF AAS

机译:通过使用HR-CS GF AAS进行直接固体或液体样品分析来测定热解过程中生物质和产物中的铅

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A method has been developed for the determination of lead in biomass, bio-oil, pyrolysis aqueous phase, and biomass ashes by high-resolution continuum source graphite furnace atomic absorption spectrometry (HR-CS GE AAS) and direct solid or liquid sample analysis. All measurements were performed without chemical modifier and calibration could be carried out using aqueous standard solutions. A pyrolysis temperature of 800 degrees C and an atomization temperature of 2200 degrees C were applied. The limits of detection and quantification were, respectively, 0.514 mu g kg(-1) and 2 mu g kg(-1) using the analytical line at 217.001 nm and 6 mu g kg(-1) and 19 mu g kg(-1) at 283.306 nm. The precision, expressed as relative standard deviation, was between 3% and 10%, which is suitable for direct analysis. The lead concentrations found for the solid samples varied between 0.28 and 1.4 mg kg(-1) for biomass and between 0.25 and 2.3 mg kg(-1) for ashes, these values were much higher than those found for bio-oil (2.2-16.8 mu g kg(-1)) and pyrolysis aqueous phase (3.2-18.5 mu g kg(-1)). After the determination of lead in the samples, it was possible to estimate the relative distribution of this element in the fractions of the pyrolysis products, and it was observed that most of the lead present in the biomass was eliminated to the environment during the pyrolysis process, with a significant portion retained in the ashes. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过高分辨率连续谱源石墨炉原子吸收光谱法(HR-CS GE AAS)和直接的固体或液体样品分析,已经开发了一种测定生物质,生物油,热解水相和生物质灰分中铅的方法。所有测量均在不使用化学改性剂的情况下进行,并且可以使用标准水溶液进行校准。施加800℃的热解温度和2200℃的雾化温度。使用分析线在217.001 nm处的检测和定量限分别为0.514μg kg(-1)和2μg kg(-1),6μg kg(-1)和19μgkg(- 1)在283.306 nm处。以相对标准偏差表示的精度在3%到10%之间,适合直接分析。对于固体样品,发现的铅浓度对于生物质介于0.28至1.4 mg kg(-1)之间,对于灰烬介于0.25与2.3 mg kg(-1)之间,这些值远高于针对生物油的浓度(2.2- 16.8μg kg(-1))和热解水相(3.2-18.5μg kg(-1))。在测定样品中的铅之后,可以估算该元素在热解产物馏分中的相对分布,并且观察到生物质中存在的大多数铅在热解过程中都被排放到环境中,其中大部分保留在骨灰中。 (C)2015 Elsevier B.V.保留所有权利。

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