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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >The effects of secular disequilibrium on (U-Th)/He systematics and dating of Quaternary volcanic zircon and apatite
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The effects of secular disequilibrium on (U-Th)/He systematics and dating of Quaternary volcanic zircon and apatite

机译:长期不平衡对(U-Th)/ He系统的影响以及第四纪锆石和磷灰石的定年

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摘要

The (U-Th)/He dating method applied to U-rich phases such as zircon and apatite has sufficient sensitivity and precision to be of potential use for dating relatively recent geoloic events such as volcanic eruptions. However, in phases with crystallization ages less than ~1 Ma, chemical fractionation within the ~(238)U decay series may modify the He ingrowth rate, causing He ages computed from the secular equilibrium age equation to be incorrect. The resulting systematic error depends on the [~(230)Th/~(238)U] activity ratio of the dated phase when it is erupted, and on the eruption age. Zircons, which exclude Th relative to U, will likely have secular equilibrium He 'ages' that underestimate the eruption age by up to a few tens of %, decreasing with increasing eruption age. Apatites tend to accommodate U and Th with little fractionation, so apatite secular equilibrium He ages will be nearly concordant with eruption age. If minerals are erupted immediately after crystallization, the disequilibrium effect can be reasonably accounted for based on Th/U systematics. However, crystals are likely to residue for unknown but potentially long periods in a magma chamber, such that the degree of secular disequilibrium will be reduced prior to the onset of He accumulation. (U-Th)/He analyses of co-genetic phases that fractionate the U/Th ratio differently, like apatite and zircon, can be used to better constrain eruption age, as well as to provide insights into magma chamber residence time. We illustrate this approach with (U-Th)/He analyses of zircons and apatites of the Pleistocene-age Rangitawa Tephra, New Zealand.
机译:应用于富铀相(如锆石和磷灰石)的(U-Th)/ He测年方法具有足够的灵敏度和精度,可用于对较近期的地质事件(如火山喷发)进行测年。但是,在结晶年龄小于〜1 Ma的相中,〜(238)U衰变序列内的化学分馏可能会改变He的生长速率,导致根据长期平衡年龄方程计算出的He年龄不正确。所产生的系统误差取决于发芽相年代的[〜(230)Th /〜(238)U]活度比率以及喷发年龄。锆石(不包括Th相对于U的锆石)可能具有世俗平衡的He“年龄”,这使喷发年龄低估了数十%,并随着喷发年龄的增加而降低。磷灰石趋向于容纳U和Th且几乎没有分馏,因此磷灰石的长期平衡He年龄将与喷发年龄基本一致。如果矿物在结晶后立即喷出,则可以根据Th / U系统分析合理地解释不平衡效应。但是,晶体可能会在岩浆室内残留未知的时间,但可能会长时间保留下来,因此在He积累开始之前,长期不平衡的程度会降低。 (U-Th)/ He分析磷灰石和锆石等不同比例的U / Th比的共生相可用于更好地限制喷发年龄,并提供岩浆室滞留时间的见解。我们用(U-Th)/ He分析了更新世时期Rangitawa Tephra,新西兰的锆石和磷灰石来说明这种方法。

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