首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Prediction of Klason lignin and lignin thermal degradation products by Py-GC/MS in a collection of Lolium and Festuca grasses
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Prediction of Klason lignin and lignin thermal degradation products by Py-GC/MS in a collection of Lolium and Festuca grasses

机译:利用Py-GC / MS预测黑麦草和羊茅草中Klason木质素和木质素的热降解产物

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摘要

A rapid method for the analysis of biomass feedstocks was established to identify the quality of the pyrolysis products likely to impact on bio-oil production. A total of 15 Lolium and Festuca grasses known to exhibit a range of Klason lignin contents were analysed by pyroprobe-GC/MS (Py-GC/MS) to determine the composition of the thermal degradation products of lignin. The identification of key marker compounds which are the derivatives of the three major lignin subunits (G, H, and S) allowed pyroprobe-GC/MS to be statistically correlated to the Klason lignin content of the biomass using the partial least-square method to produce a calibration model. Data from this multivariate modelling procedure was then applied to identify likely "key marker" ions representative of the lignin subunits from the mass spectral data. The combined total abundance of the identified key markers for the lignin subunits exhibited a linear relationship with the Klason lignin content. In addition the effect of alkali metal concentration on optimum pyrolysis characteristics was also examined. Washing of the grass samples removed approximately 70% of the metals and changed the characteristics of the thermal degradation process and products. Overall the data indicate that both the organic and inorganic specification of the biofuel impacts on the pyrolysis process and that pyroprobe-GC/MS is a suitable analytical technique to asses lignin composition.
机译:建立了一种用于分析生物质原料的快速方法,以确定可能影响生物油生产的热解产物的质量。通过焦探针-GC / MS(Py-GC / MS)分析了总共15种已知具有一定范围的Klason木质素含量的黑麦草和Festuca草,以确定木质素热降解产物的组成。通过鉴定主要标记化合物(它们是三个主要的木质素亚基(G,H和S)的衍生物),可以使用偏最小二乘法将焦探针GC / MS与生物质的Klason木质素含量进行统计相关,从而产生校准模型。然后将来自该多元建模程序的数据应用于从质谱数据中识别代表木质素亚基的可能的“关键标记”离子。所确定的木质素亚基关键标记物的总总丰度与Klason木质素含量呈线性关系。另外,还检查了碱金属浓度对最佳热解特性的影响。草样品的洗涤除去了大约70%的金属,并改变了热降解过程和产品的特性。总体数据表明,生物燃料的有机规格和无机规格都会影响热解过程,并且焦磷酸探针GC / MS是评估木质素组成的合适分析技术。

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