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An efficient method for isolating individual long-chain alkenones for compound-specific hydrogen isotope analysis

机译:一种分离单个长链烯酮以进行化合物特异性氢同位素分析的有效方法

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摘要

Hydrogen isotope ratios (H-2/H or D/H) of long-chain unsaturated ketones (alkenones) preserved in lake and marine sediments hold great promise for paleoclimate studies. However, compound-specific hydrogen isotope analysis of individual alkenones has not been possible due to chromatographic coelution of alkenones with the same carbon chain length but different numbers of double bonds. Published studies have only reported the delta D values of the mixture of coeluting alkenones. We developed an efficient procedure to isolate individual alkenones based on double-bond numbers using silica gel impregnated with silver nitrate. The chromatographic procedure is simple, inexpensive, and highly reproducible, offers 87-100% sample recovery, and allows for the first time hydrogen isotopic measurement on individual alkenones. delta D values of specific di-, tri- and tetraunsaturated C-37 alkenones produced by an Emiliania huxleyi culture, as well as those isolated from Greenland lake sediments, differ consecutively by 43-65 %. These findings suggest that alkenones with different numbers of carbon-carbon double bonds express significantly different delta D values and that coelution of different alkenones may lead to erroneous source water delta D reconstructions. Our alkenone isolation approach opens a new avenue for paleoclimate reconstructions using hydrogen isotope ratios of individual alkenones.
机译:保存在湖泊和海洋沉积物中的长链不饱和酮(烯酮)的氢同位素比(H-2 / H或D / H)为古气候研究提供了广阔的前景。但是,由于具有相同碳链长度但双键数量不同的烯酮的色谱共洗脱,因此无法对单个烯酮进行化合物特异性氢同位素分析。公开的研究仅报道了共洗脱的烯酮混合物的δD值。我们开发了一种有效的程序,可使用浸有硝酸银的硅胶根据双键数分离单个烯酮。色谱过程简单,廉价,可重复性好,样品回收率达87-100%,并首次对单个烯酮进行氢同位素测量。由Emiliania huxleyi培养产生的特定二,三和四不饱和C-37烯酮的δD值,以及从格陵兰湖沉积物中分离出的δ-D值,相继相差43-65%。这些发现表明,具有不同数目的碳-碳双键的烯酮表现出明显不同的δD值,不同烯酮的共洗脱可能导致错误的水源δD重建。我们的烯酮分离方法为使用单个烯酮的氢同位素比率的古气候重建开辟了一条新途径。

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