中新世大型裸子植物测井剖面的化学变化和碳同位素变化

Anne L. Bates, Elliott C. Spiker
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引用次数: 4

摘要

先前用固态13c核磁共振波谱法分析了3米(直径)中新世褐煤裸子测井的碳水化合物和木质素甲氧基含量,现在用稳定的碳同位素比率来检测其截面半径,以确定其同位素组成是否与化学变化或径向位置有关。研究发现了δ 13c值与径向位置之间可能存在的关系;然而,这些变化不能与碳水化合物含量联系起来,而可能归因于树木一生中生长条件的变化。准高碘酸钠处理后木质素碳水化合物含量变化与δ 13c值变化呈明显的线性关系,表明木质素和碳水化合物沿截面半径呈恒定的同位素分异。这一结果表明成岩作用并没有使木质素-碳水化合物的碳同位素分馏发生显著变化,或者说,成岩作用抹去了曾经存在的分馏模式。用同样的方法分析了另一种裸子植物的新鲜木材样品,发现木质素-碳水化合物的碳同位素分馏与中新世测井剖面样品有显著差异,表明这种差异可能是物种相关的,也可能是新鲜木材中碳水化合物的复杂混合物与降解木材的碳水化合物的同位素不同,整个中新世测井都是均匀变化的。
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Chemical changes and carbon isotope variations in a cross-section of a large Miocene gymnospermous log

The cross-sectional radius of a 3-m (diam.) brown coal gymnospermous log of Miocene age, previously analyzed for carbohydrate and lignin methoxyl content by solid-state13C nuclear magnetic resonance spectroscopy, was examined using stable carbon isotopic ratios in order to determine if the isotopic composition could be related to chemical changes or to radial position. This study found a possible relationship between δ13C-values and radial position; however, these changes cannot be linked to carbohydrate content and are probably attributable to changing growth conditions during the lifetime of the tree. An apparent linear relationship between the changes in carbohydrate content after sodium para-periodate treatment and corresponding changes in the δ13C-values indicates constant isotopic fractionation between lignin and carbohydrates along the cross-sectional radius. This result indicates that diagenesis has not produced any significant change in the lignin-carbohydrate carbon isotopic fractionation or, alternatively, that diagenesis has erased any fractionation pattern that once existed. A sample of fresh wood from another gymnospermous species was analyzed by the same methods and found to have lignin-carbohydrate carbon isotopic fractionation significantly different from that of the Miocene log section samples, suggesting that differences may be species-related or that the complex mixture of carbohydrates in the fresh wood was isotopically different from that of the degraded wood, and the whole Miocene log was uniformly altered.

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Introduction Chemical changes and carbon isotope variations in a cross-section of a large Miocene gymnospermous log The stable isotopic composition of photosynthetic pigments and related biochemicals Stable isotope fractionation of biomonomers during protokerogen formation Kinetic fractionation of stable carbon and nitrogen isotopes during peptide bond hydrolysis: Experimental evidence and geochemical implications
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