首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Molecular heterogeneity in pyrogenic dissolved organic matter from a thermal series of oak and grass chars
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Molecular heterogeneity in pyrogenic dissolved organic matter from a thermal series of oak and grass chars

机译:从热量系列橡木和草字形中发热溶解有机物质中的分子异质性

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Pyrogenic organic matter (Py-OM), generated via the incomplete combustion of biomass, is well studied due to the presence of slow-cycling, condensed aromatic compounds (ConAC) known to sequester in soils and sediments. Recently, dissolved Py-OM (Py-DOM) has received interest, due to its higher mobility and potential to be transferred through watersheds to aquatic systems. Py-DOM quantities, molecular identities and importance to global carbon budgets and cycles are only beginning to be understood. Fourier transform ion cyclotron resonance mass spectrometry (FTICR-MS) analyses were performed on PyDOM isolated from oak and grass biochars produced over a range of temperatures (250-650 degrees C), and the data are compared to complementary H-1 NMR spectroscopic and benzenepolycarboxylic acid biomarker (BPCAs) analyses. Py-DOM is revealed to be a heterogeneous mixture of compounds ranging in relative aromaticity and oxygenation. FTICR-MS analyses demonstrate a decrease in Py-DOM relative oxygen content and a concurrent increase in aliphatic character and heteroatomic (N, Cl) content. H-1 NMR and BPCAs analyses detail low O/C dissolved ConAC not observed by FTICR-MS, demonstrating the necessity for a multiple proxy approach to Py-DOM characterization. Heterogeneous Py-DOM is explained as resulting from pyrolysis-initiated and radical-mediated functional group cleavage, aromatic condensation and aromatic ring-opening reactions. Oak biomass progresses faster along a char maturity continuum for a given pyrolysis temperature, perhaps due to its greater lignin content or radical quenching by grass cuticular material. Biomass species and pyrolysis temperature likely result in different PyDOM compositions and fates and must be considered when evaluating the impacts of wildfires and biochar applications. (C) 2020 Elsevier Ltd. All rights reserved.
机译:通过不完全燃烧生物质产生的热源有机物质(Py-OM)由于存在慢循环,浓缩的芳族化合物(CONAC),已知在土壤和沉积物中螯合而受到很好地研究。最近,溶解的Py-OM(Py-Dom)由于其较高的移动性和潜力通过流域转移到水生系统而受到兴趣。 Py-Dom数量,分子标识和对全球碳预算和循环的重要性只会开始被理解。在从一系列温度(250-650℃)上产生的橡木和草生物脉冲中分离的Pydom进行傅里叶变换离子回旋谐振质谱(FTICR-MS)分析,并将数据与互补的H-1 NMR光谱和互补苯并聚羧酸生物标志物(BPCAS)分析。 Py-DOM被揭示为具有相对芳香性和氧合的化合物的异质混合物。 FTICR-MS分析表明Py-Dom相对氧含量的降低和脂肪族特征和杂原子(N,CL)含量的同时增加。 H-1 NMR和BPCA分析细节未经FTICR-MS观察到的低O / C溶解ConAC,证明了多个代理方法的必要性。由热解引发和自由基介导的官能团切割,芳族缩合和芳族开环反应得到的非均相Py-DOM。橡木生物量沿着炭成熟度连续进行,对于给定的热解温度,可能是由于其大木质素含量或由草皮材料的激进猝灭。生物质物种和热解温度可能导致不同的Pydom组合物和命名,并且在评估野火和生物炭应用的影响时必须考虑。 (c)2020 elestvier有限公司保留所有权利。

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