首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >The effect of acidification on the determination of organic carbon, total nitrogen and their stable isotopic composition in algae and marine sediment
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The effect of acidification on the determination of organic carbon, total nitrogen and their stable isotopic composition in algae and marine sediment

机译:酸化对藻类和海洋沉积物中有机碳,总氮及其稳定同位素组成测定的影响

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摘要

We investigated the effects of sample acidification on the stable carbon and nitrogen isotopic composition (delta(13) C and delta(15) N), as well as the organic carbon (OC) and total nitrogen (TN) composition, of an algal culture and a marine sediment. Replicate measurements of untreated and acid-treated samples were made using 1 M, 2 M and 6 M HCl, 6% H2SO3 and 1 M H3PO4. For all treatments the precision of the analysis for the acid-treated sample was equal to or less than that in the non-acidified sample. For the algae, analysis of variance (ANOVA) indicated no significant differences in the mean OC and TN concentration, or delta(13) C and delta(15) N composition, between any acid treatment and non-acidified samples. For the sediment sample a comparison could only be made between the different acid treatments because the untreated contained significant amounts (-30%) of carbonate carbon. ANOVA indicated that the mean OC determined in sediment samples after the 1 M HCl treatment and the mean delta(13) C values after the 6% H2SO3 and I M H3PO4 treatments were significantly different (p < 0.013 and < 0.05, respectively) from all other treatments. Mass balance calculations indicate that in some instances delta(13)C values were biased due to a contribution from unreacted carbonate carbon. There were no significant differences in the mean TN between any acid-treated and non-acidified samples. The mean delta(15)N values after 6 M HCI, 6% H2SO3 and 1 M H3PO4 treatments were significantly different from the untreated sediment sample (p < 0.044). Based on the significant bias observed for the delta(15)N and delta(13)C values, a weak (1 - 2 M) HCl solution is confirmed as the most appropriate acid for the removal of inorganic carbon from natural materials requiring elemental and isotopic analysis. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:我们调查了样品酸化对藻类培养物中稳定的碳和氮同位素组成(δ(13)C和δ(15)N)以及有机碳(OC)和总氮(TN)组成的影响和海洋沉积物。使用1 M,2 M和6 M HCl,6%H2SO3和1 M H3PO4对未处理和酸处理的样品进行重复测量。对于所有处理,酸处理样品的分析精度等于或小于非酸化样品的分析精度。对于藻类,方差分析(ANOVA)表明,在任何酸处理和未酸化的样品之间,平均OC和TN浓度或δ(13)C和δ(15)N组成均无显着差异。对于沉淀物样品,只能在不同的酸处理之间进行比较,因为未处理的酸碳含量很高(-30%)。方差分析表明,在1 M HCl处理后确定的沉积物样品中的平均OC和在6%H2SO3和IM H3PO4处理后确定的平均delta(13)C值与所有其他方法均存在显着差异(分别为p <0.013和<0.05)治疗。质量平衡计算表明,在某些情况下,由于未反应的碳酸盐碳所致,δ(13)C值存在偏差。在任何酸处理和未酸化的样品之间,平均TN均无显着差异。 6 M HCl,6%H2SO3和1 M H3PO4处理后的平均delta(15)N值与未处理的沉积物样品显着不同(p <0.044)。基于观察到的δ(15)N和delta(13)C值的显着偏差,证实了一种弱的(1-2 M)HCl溶液是最合适的酸,用于从需要元素和水的天然材料中去除无机碳。同位素分析。版权所有(c)2005 John Wiley&Sons,Ltd.

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