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燃烧条件对炭中可溶剂提取的无水糖和木质素酚产量的影响:对生物质燃烧残留物特性的影响。

Influence of combustion conditions on yields of solvent-extractable anhydrosugars and lignin phenols in chars: implications for characterizations of biomass combustion residues.

机构信息

Pacific Northwest National Laboratory, Marine Science Laboratory, Sequim, WA 98382, USA.

出版信息

Chemosphere. 2011 Oct;85(5):797-805. doi: 10.1016/j.chemosphere.2011.06.074. Epub 2011 Jul 16.

Abstract

Anhydrosugars, such as levoglucosan and its isomers (mannosan, galactosan), as well as the solvent-extractable lignin phenols (methoxylated phenols) are thermal degradation products of cellulose/hemicellulose and lignin, respectively. These two groups of biomarkers are often used as unique tracers of combusted biomass inputs in diverse environmental media. However, detailed characterization of the relative proportion and signatures of these compounds in highly heterogeneous plant-derived chars are still scarce. Here we conducted a systematic study to investigate the yields of solvent-extractable anhydrosugars and lignin phenols in 25 lab-made chars produced from different plant materials under different combustion conditions. Solvent-extractable anhydrosugars and lignin phenols were only observed in chars formed below 350°C and yields were variable across different combustion temperatures. The yields of mannosan (M) and galactosan (G) decreased more rapidly than those of levoglucosan (L) under increasing combustion severity (temperature and duration), resulting in variable L/M and L/(M+G) ratios, two diagnostic ratios often used for identification of combustion sources (e.g. hardwoods vs. softwoods vs. grasses). Our observations thus may provide an explanation for the wide ranges of values reported in the literature for these two ratios. On the other hand, the results of this study suggest that the ratios of the major solvent-extractable lignin phenols (vanillyls (V), syringyls (S), cinnamyls (C)) provide additional source reconstruction potential despite observed variations with combustion temperature. We thus propose using a property-property plot (L/M vs. S/V) as an improved means for source characterization of biomass combustion residues. The L/M-S/V plot has shown to be effective in environmental samples (soil organic matter, atmospheric aerosols) receiving substantial inputs of biomass combustion residues.

摘要

脱水糖,如左旋葡聚糖及其异构体(甘露糖、半乳糖),以及可溶剂提取的木质素酚(甲氧基化酚),分别是纤维素/半纤维素和木质素热降解产物。这两组生物标志物通常被用作不同环境介质中燃烧生物质输入的独特示踪剂。然而,在高度异质的植物衍生炭中,这些化合物的相对比例和特征的详细描述仍然很少。在这里,我们进行了一项系统研究,调查了在不同燃烧条件下由 25 种不同植物材料制成的实验室制炭中可溶剂提取的脱水糖和木质素酚的产率。只有在低于 350°C 形成的炭中才观察到可溶剂提取的脱水糖和木质素酚,并且产率在不同的燃烧温度下变化。甘露糖(M)和半乳糖(G)的产率比左旋葡聚糖(L)在增加燃烧强度(温度和持续时间)时下降得更快,导致 L/M 和 L/(M+G)的比值变化,这两个比值常用于识别燃烧源(例如,硬木与软木与草)。因此,我们的观察结果可能为文献中报道的这两个比值的广泛变化提供了一个解释。另一方面,这项研究的结果表明,尽管存在与燃烧温度的变化,但主要的可溶剂提取木质素酚(香草基(V)、丁香基(S)、肉桂基(C))的比值提供了额外的源重建潜力。因此,我们建议使用性质-性质图(L/M 与 S/V)作为生物质燃烧残留物源特征描述的改进方法。该 L/M-S/V 图已被证明在接收大量生物质燃烧残留物输入的环境样品(土壤有机质、大气气溶胶)中是有效的。

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