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Standardization of chemical analytical techniques for pyrolysis bio-oil: history, challenges, and current status of methods

机译:热解生物油化学分析技术的标准化:历史,挑战和方法的现状

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In this perspective, we discuss the standardization of analytical techniques for pyrolysis bio-oils, including the current status of methods, and our opinions on future directions. First, the history of past standardization efforts is summarized, and both successful and unsuccessful validation of analytical techniques highlighted. The majority of analytical standardization studies to-date has tested only physical characterization techniques. Here, we present results from an international round robin on the validation of chemical characterization techniques for bio-oils. Techniques tested included acid number, carbonyl titrations using two different methods (one at room temperature and one at 80 degrees C), P-31 NMR for determination of hydroxyl groups, and a quantitative gas chromatography-mass spectrometry (GC-MS) method. Both carbonyl titration and acid number methods have yielded acceptable inter-laboratory variabilities. P-31 NMR produced acceptable results for aliphatic and phenolic hydroxyl groups, but not for carboxylic hydroxyl groups. As shown in previous round robins, GC-MS results were more variable. Reliable chemical characterization of bio-oils will enable upgrading research and allow for detailed comparisons of bio-oils produced at different facilities. Reliable analytics are also needed to enable an emerging bioenergy industry, as processing facilities often have different analytical needs and capabilities than research facilities. We feel that correlations in reliable characterizations of bio-oils will help strike a balance between research and industry, and will ultimately help to -determine metrics for bio-oil quality. Finally, the standardization of additional analytical methods is needed, particularly for upgraded bio-oils. (c) 2016 Society of Chemical Industry and John Wiley & Sons, Ltd
机译:在这种观点中,我们讨论了对热解生物油的分析技术的标准化,包括当前方法的现状,以及我们对未来方向的看法。首先,总结了过去的标准化努​​力的历史,并且突出显示的分析技术的成功和不成功验证。大多数分析标准化研究迄今为止仅测试了物理特征技术。在这里,我们呈现出国际循环罗宾对生物油化学特征技术的验证的结果。测试的技术包括使用两种不同方法的酸数,羰基滴定(一个在室温下,一个在80℃),P-31nMR用于测定羟基,以及定量气相色谱 - 质谱(GC-MS)方法。羰基滴定和酸编号方法都产生了可接受的实验室变性。 P-31 NMR为脂族和酚羟基产生可接受的结果,但不适用于羧酸羟基。如前一轮循环所示,GC-MS结果更具变量。生物油的可靠化学表征将实现升级研究,并允许在不同设施中产生的生物油进行详细比较。还需要可靠的分析来实现新兴的生物能源行业,因为加工设施通常具有不同的分析需求和能力而不是研究设施。我们认为,生物油的可靠性表征的相关性将有助于取得研究和行业之间的平衡,并最终有助于 - 生物油质量的确定度量。最后,需要额外的分析方法的标准化,特别是对于升级的生物油。 (c)2016化学工业协会和约翰瓦里和儿子有限公司

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