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Status report: Implementation of gas measurements at the MAMS ~(14)C AMS facility in Mannheim, Germany

机译:状态报告:德国曼海姆MAMS〜(14)C AMS设施中气体测量的实施

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By implementing a Gas Interface System (CIS), CO_2 gas measurements for radiocarbon dating of small environmental samples (<100µgC) have been established at the MICADAS (Mini Carbon Dating System) AMS instrument in Mannheim, Germany. The system performance has been optimized and tested with respect to stability and ion yield by repeated blank and standard measurements for sample sizes down to 3 µgC. The highest ~(12)C~- low-energy (LE) ion currents, typically reaching 8-15 µA, could be achieved for a mixing ratio of 4% CO_2 in Helium, resulting in relative counting errors of 1-2% for samples larger than 10 µgC and 3-7% for sample sizes below 10 µgC. The average count rate was ca. 500 counts per microgram C for OxII standard material. The blank is on the order of 35,000-40,000 radiocarbon years, which is comparable to similar systems. The complete setup thus enables reliable dating for most environmental samples (>3 µgC).
机译:通过实施气体接口系统(CIS),已在德国曼海姆的MICADAS(微型碳定年系统)AMS仪器上建立了对小环境样品(<100µgC)的放射性碳定年的CO_2气体测量。通过对低至3 µgC的样品进行重复的空白和标准测量,对系统性能进行了稳定性和离子产率方面的优化和测试。在氦气中混合比例为4%的CO_2时,可以达到最高的(12)C〜-低能量(LE)离子电流,通常达到8-15 µA,导致相对计数误差为1-2%。大于10 µgC的样品,小于10 µgC的样品为3-7%。平均计数率为。对于OxII标准物质,每微克C计数500。空白大约为35,000-40,000放射性碳年,可以与类似系统相比。因此,完整的设置可为大多数环境样品(> 3 µgC)提供可靠的日期。

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