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Rapid determination of boron isotopic composition (δ11B) in pore water by multi-collector inductively coupled plasma mass spectrometry

机译:多收集器电感耦合等离子体质谱法快速测定孔隙水中的硼同位素组成(δ11B)

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A new method has been developed for the accurate, precise and more rapid determination of boron isotopes (?′11B) by MC-ICP-MS applicable to seawater and pore water samples. Obvious matrix effects have been observed when applying pure standard solutions to bracket the untreated pore water samples and matrix-containing standards. The matrix effects were eliminated by applying matrix-matched standards to measure the matrix-matched ones. The concentration effect of boron has also been investigated and it shows that boron does not exhibit an obvious concentration effect in the concentration range of 50 ??g La?’1 to 300 ??g La?’1. Therefore, IAPSO (seawater) was used as the standard to directly measure the untreated pore water and the results are satisfactory. The salient advantage of this method is that there is no need for boron purification procedures and water samples can be directly used for boron isotopic analysis without obvious sacrifice of precision, thus making this protocol more rapid than other ones.
机译:已经开发出一种新方法,可通过适用于海水和孔隙水样品的MC-ICP-MS准确,精确和快速地测定硼同位素(?′11B)。当使用纯标准溶液将未处理的孔隙水样品和含基质的标准样品加括号时,已观察到明显的基质效应。通过应用矩阵匹配的标准来测量矩阵匹配的标准,可以消除矩阵效应。还研究了硼的浓度效应,结果表明,硼在50 ?? g La?1至300 ?? g La?1的浓度范围内没有表现出明显的浓度效应。因此,以IAPSO(海水)为标准直接测量未处理的孔隙水,结果令人满意。该方法的显着优点是无需进行硼纯化程序,并且水样品可直接用于硼同位素分析,而不会明显牺牲精度,因此使该方法比其他方法更快速。

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