Citation: YANG Jian, MA Yun-Qi, LI Xing-Yi, LIU Yu-Xiu, HAN Feng-Qing, ZHANG Yan-Ling, Syed Asim Hussain, LI Hai-Jun. Application of Ethylenediaminetetraacetic Acid Disodium Salt to High Precision Measurement of Isotope of Boron in Acid-soluble Fraction of Sediments[J]. Chinese Journal of Analytical Chemistry, ;2019, 47(9): 1433-1439. doi: 10.19756/j.issn.0253-3820.191113
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When nature sediments (e.g. clay/carbonate sediments) are dissolved by hydrochloric acid, a large number of metallic ions such as Ca, Mg, Fe, Al and rare earth elements are released. These metal ions make large amount of water-insoluble hydroxide precipitate under alkaline condition which can easily absorb and affect the extraction of boron (B) along with boron isotope composition (δ11B) determination. In this work, it was proved that when the solution was adjusted to alkalescent, adding an appropriate EDTA-2Na could effectively avoid insoluble hydroxide precipitation. The interference of EDTA-2Na to boron isotope determination was effectively reduced by rinsing the resin with ammonia after the alkalescent solution passing through the boron specific resin and extending the ionization time of simples in the measurement process. After the entire process, the recovery rate of boron was more than 95%, and the boron isotopic ratio of NIST SRM 951 ranged from 4.05146 to 4.05628. The boron isotopic composition (δ11B) of sediment of Sanya, Dachaidan lacustrine and Dachaidan intercrystalline were +17.64‰, -5.74‰ and +1.8‰, respectively. This method could meet the need of the high-precision determination of boron isotope of sediments such as clay sediments, carbonate sediments, loess and paleosol. In addition, this study provided a simple and low interference pretreatment method for high-precision determination of boron isotope.
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