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Isotopic fractionation of mercury induced by reduction and ethylation

机译:还原和乙基化诱导的汞同位素分馏

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Isotope ratio measurements characterizing Hg-202/Hg-200 in NIST SRM 3133 Mercury Standard Solution were undertaken by multicollector inductively coupled plasma mass spectrometry employing NIST SRM 997 Tl for mass bias correction by use of the slope and the intercept obtained from a natural logarithmic plot of each session of measurements of Hg-202/Hg-200 against Tl-205/Tl-203. The calculated value of 1.285333 +/- 0.000192 (mean and one standard deviation, n=40) for the mass bias corrected Hg-202/Hg-200 was then used for mass bias correction of other Hg isotope pairs. Ratios of 0.015337 +/- 0.000011, 1.68770 +/- 0.00054, 2.3056 +/- 0.0015, 1.3129 +/- 0.0013, 2.9634 +/- 0.0038, and 0.67937 +/- 0.0013 (expanded uncertainty, k=2) were obtained for Hg-196/Hg-198, Hg-199/Hg-198, Hg-200/Hg-198, Hg-201/Hg-198, Hg-202/Hg-198, and Hg-204/Hg-198, respectively. Reduction of Hg(II) to Hg-0 in solutions of SRM 3133 was then undertaken using SnCl2, NaBH4, UV photolysis in the presence of formic acid, and ethylation of Hg( II) using NaBEt4. These reactions induced significant isotope fractionation with maximum values of 1.17 +/- 0.07, 1.08 +/- 0.09, 1.34 +/- 0.07, and 3.59 +/- 0.09% (one standard deviation, 1SD, n=5) for delta Hg-202/198 relative to the initial isotopic composition in the solution following 85-90% reduction of the Hg by SnCl2, NaBH4, UV photolysis, and ethylation with NaBEt4, respectively. Mass-dependent fractionation was found to be dominant for all reduction processes.
机译:NIST SRM 3133汞标准溶液中表征Hg-202 / Hg-200的同位素比测量是通过使用NIST SRM 997 T1的多收集器电感耦合等离子体质谱法进行的,通过使用斜率和从自然对数图获得的截距校正质量偏差Hg-202 / Hg-200相对于Tl-205 / Tl-203的每个会话的测量值。然后将质量偏差校正后的Hg-202 / Hg-200的计算值1.285333 +/- 0.000192(平均值和一个标准偏差,n = 40)用于其他Hg同位素对的质量偏差校正。汞的比率为0.015337 +/- 0.000011、1.678770 +/- 0.00054、2.3056 +/- 0.0015、1.3129 +/- 0.0013、2.9634 +/- 0.0038和0.67937 +/- 0.0013(扩展不确定度,k = 2) -196 / Hg-198,Hg-199 / Hg-198,Hg-200 / Hg-198,Hg-201 / Hg-198,Hg-202 / Hg-198和Hg-204 / Hg-198。然后使用SnCl2,NaBH4,在甲酸存在下的UV光解和使用NaBEt4对Hg(II)进行乙基化,在SRM 3133溶液中将Hg(II)还原为Hg-0。这些反应引起显着的同位素分馏,δHg-的最大值为1.17 +/- 0.07、1.08 +/- 0.09、1.34 +/- 0.07和3.59 +/- 0.09%(一个标准偏差,1SD,n = 5)。分别通过SnCl2,NaBH4,UV光解和NaBEt4乙基化将汞减少85-90%之后,相对于溶液中的初始同位素组成为202/198。发现在所有还原过程中,取决于质量的分馏是主要的。

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