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Rapid X-ray based determination of moisture-, ash content and heating value of three biofuel assortments

机译:基于X射线的快速测定三种生物燃料类别的水分,灰分和热值

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摘要

Here we demonstrate a new hyphenated X-ray method, qDXA-XRF, for the simultaneous determination of moisture-, ash content and heating value (as received) of biofuels. The method is based on the combination of X-ray transmission imaging and X-ray fluorescence spectroscopy. The method performance is demonstrated using three biofuel assortments; logging residues, round-wood chips and sawdust, on approximately 3 L samples (~500-1500 g) with a total analysis time of one minute per sample. Mean absolute errors for the logging residues, roundwood chips and sawdust determinations respectively were; for moisture content MAE = 0.034, 0.026, 0.011 (wet basis mass fraction), for ash content MAE = 0.0015, 0.0015, 0.0049 (dry basis mass fraction), and for heating value (as received) MAE = 0.55, 0.44, 0.17 MJ kg~(-1). Furthermore, for the assortment logging residues, the qDXA-XRF determination of heating value decreases the measurement uncertainty from MAE = 1.53 to 0.55 MJ kg~(-1) (~60% decrease) compared with traditional oven moisture/equation method.
机译:在这里,我们演示了一种新的联用X射线方法qDXA-XRF,用于同时测定生物燃料的水分,灰分和热值(收到时)。该方法是基于X射线透射成像和X射线荧光光谱的结合。使用三种生物燃料种类证明了该方法的性能。在大约3 L的样品(约500-1500 g)上记录残留物,圆木屑和锯末,每个样品的总分析时间为一分钟。测井残留量,圆木屑和锯末测定的平均绝对误差分别为:水分含量MAE = 0.034,0.026,0.011(湿基质量分数),灰分含量MAE = 0.0015,0.0015,0.0049(干基质量分数),热值(收到时)MAE = 0.55,0.44,0.17 MJ千克〜(-1)。此外,对于分类测井残留物,qDXA-XRF测定的发热量比传统的烤箱水分/当量法将测量不确定度从MAE = 1.53降低到0.55 MJ kg〜(-1)(降低约60%)。

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