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Calcium isotope fractionation between aqueous compounds relevant to low-temperature geochemistry, biology and medicine

机译:与低温地球化学,生物学和医学相关的含水化合物之间的同位素分级

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1000?ppm for the 44Ca/40Ca ratio. These isotopic variations have important implications to understand Ca transport and fluxes in living organisms; however, the mechanisms of isotopic fractionation are unclear. Here we present ab initio calculations for the isotopic fractionation between various aqueous species of Ca and show that this fractionation can be up to 3000?ppm. We show that the Ca isotopic fractionation between soil solutions and plant roots can be explained by the difference of isotopic fractionation between the different first shell hydration degree of Ca2+ and that the isotopic fractionation between roots and leaves is controlled by the precipitation of Ca-oxalates. The isotopic fractionation between blood and urine is due to the complexation of heavy Ca with citrate and oxalates in urine. Calculations are presented for additional Ca species that may be useful to interpret future Ca isotopic measurements.
机译:1000?ppm为44ca / 40ca比率。这些同位素变异具有重要意义,以了解生物体中的CA运输和助熔剂;然而,同位素分级的机制尚不清楚。在这里,我们提出了AB Initio计算,用于各种含量水分之间的同位素分馏,并表明该分馏可以高达3000℃.PPM。我们表明,土壤溶液和植物根部之间的Ca同位素分馏可以通过同位素分馏在Ca 2+的不同壳体水合度之间的同位素分馏差来解释,并且根和叶之间的同位素分馏由Ca-草酸盐进行控制。血液和尿液之间的同位素分级是由于重度CA与柠檬酸盐和草酸盐的络合。提出了用于解释未来Ca同位素测量的额外CA物种的计算。

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