首页> 外文期刊>Analytical chemistry >Fractionation Correction Methodology for Precise and Accurate Isotopic Analysis of Boron by Negative Thermal Ionization Mass Spectrometry Based on BO_(2)~(-) Ions and Using the ~(18)O/~(16)O Ratio from ReO_(4)~(-) for Internal Normalization
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Fractionation Correction Methodology for Precise and Accurate Isotopic Analysis of Boron by Negative Thermal Ionization Mass Spectrometry Based on BO_(2)~(-) Ions and Using the ~(18)O/~(16)O Ratio from ReO_(4)~(-) for Internal Normalization

机译:基于BO_(2)〜(-)离子并使用ReO_(4)〜(〜)的〜(18)O /〜(16)O比值的负热电离质谱法精确,精确地分析硼的分馏校正方法-)用于内部规范化

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摘要

A novel approach to obtain a fractionation free ~(11)B/~(10)B isotope ratio based on oxygen isotopes determined in situ from the same filament loading by N-TIMS is described. The method uses only a few nanograms of B to produce BO_(2)~(-) ions. First, the oxygen isotopes are determined at a lower filament temperature using ReO_(4)~(-) ions and employing ~(187)Re/~(185)Re for internal normalization. Subsequently, the filament temperature is increased to get sufficient BO_(2)~(-) ions and predeter-mined ~(18)O/~(16)O isotopes from the same filament loading is used to correct for boron mass fractionation. The validity of the method has been demonstrated by analyzing a NIST-SRM-951 boron isotopic certified standard, two synthetic B mixtures, and two coral reference materials. An average analytical precision of 0.6(per thousand) (n velence 6) has been demonstrated. This is an important and crucial step forward in making the application of BO_(2)~(-) ions by N-TIMS routine in coral, foraminifera, and other samples where only limited amounts of boron are available. This new method does not require any additional effort in loading or in carrying out the mass spectrometric analysis but eliminates the need of assuming a fixed ~(18)O/~(16)O ratio and thus provides higher accuracy for applications in paleo-oceanography, geochemistry, and cosmo-chemistry.
机译:描述了一种新颖的方法,该方法基于通过N-TIMS从相同灯丝负载量现场确定的氧同位素获得无馏分〜(11)B /〜(10)B同位素比率。该方法仅使用几纳克的B来生成BO_(2)〜(-)离子。首先,使用ReO_(4)〜(-)离子并在〜(187)Re /〜(185)Re进行内部归一化,在较低的灯丝温度下确定氧同位素。随后,提高灯丝温度以获得足够的BO_(2)〜(-)离子,并使用相同灯丝负载量预先确定的〜(18)O /〜(16)O同位素校正硼质量分数。通过分析NIST-SRM-951硼同位素认证标准,两种合成的B混合物和两种珊瑚参考物质,证明了该方法的有效性。已证明平均分析精度为0.6(千分之一)(nvelence 6)。这是通过N-TIMS常规方法将BO_(2)〜(-)离子应用于珊瑚,有孔虫和其他硼含量有限的样品中的重要而关键的一步。这种新方法不需要在装载或进行质谱分析时进行任何额外的工作,但是消除了假设固定(〜18)O /〜(16)O比的需要,从而为古海洋学中的应用提供了更高的精度,地球化学和宇宙化学。

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