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Stability of monazite and disturbance of the Th-U-Pb system under experimental conditions of 250–350 °C and 200–400 MPa

机译:在250-350 ^ { cir} C和200-400 mpa的实验条件下,独居石的稳定性和Th-U-pb系统的扰动

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摘要

This experimental study provides important data filling the gap in our knowledge on monazite stability under conditions of fluid-mediated low-temperature metamorphic alteration and post-magmatic hydrothermal alterations. The stability of monazite and maintenance of original Th-U-total Pb ages were tested experimentally under P-T conditions of 250–350 °C and 200–400 MPa over 20–40 days. The starting materials included the Burnet monazite + K-feldspar ± albite ± labradorite + muscovite + biotite + SiO_2 + CaF_2 and 2M Ca(OH)_2 or Na_2Si_2O_5 + H_2O fluid. In the runs with 2M Ca(OH)_2, monazite was unaltered. REE-enriched apatite formed at 350 °C and 400 MPa. The presence of the Na_2Si_2O_5 + H_2O fluid promoted the strong alteration of monazite, the formation of secondary REE-enriched apatite to fluorcalciobritholite, and the formation of REE-rich steacyite. Monazite alteration included the newly developed porosity, patchy zoning, and partial replacement by REE-rich steacyite. The unaltered domains of monazite maintained the composition of the Burnet monazite and its age of (or close to) ca. 1072 Ma, while the altered domains showed random dates in the intervals of 375–771 Ma (250 °C, 200 MPa run), 82–253 Ma (350 °C, 200 MPa), and 95–635 Ma (350 °C, 400 MPa). The compositional alteration and disturbance of the Th-U-Pb system resulted from fluid-mediated coupled dissolution-reprecipitation. In nature, such age disturbance in monazite can be attributed to post-magmatic alteration in granitic rocks or to metasomatic alteration during metamorphism. Recognition of potentially altered domains (dark patches in high-contrast BSE-imaging, developed porosity or inclusions of secondary minerals) is crucial to the application of Th-U-Pb geochronology.
机译:该实验研究提供了重要的数据,了解我们在流体介导的低温变质变形和后岩石后水热改变的条件下对Monazite稳定性的知识。在20-40天的P-T条件下通过实验测试Monazite和原始Th-U-Total Pb年龄的维护的稳定性,在20-40天内进行测试。原料包括烧伤型Monazite + K-Feldspar±albite±Labradorite + Muscovite + Biotite + SiO_2 + CAF_2和2M CA(OH)_2或NA_2SI_2O_5 + H_2O流体。在具有2M Ca(OH)_2的延伸中,单济岩未被干预。在350°C和400 MPa的浓度富集磷灰石。 Na_2Si_2O_5 + H_2O流体的存在促进了单桥的强烈改变,将仲胶石的磷灰石形成为氟氯矾铬锂,以及富含浓度的斯特瓦酸盐的形成。 Monazite改变包括新开发的孔隙度,斑驳的分区,并通过REE富含富氏斯蒂其矿石部分更换。 Monazite的未改变结构域将烧伤单崎岩系的组成及其年龄(或接近)CA。 1072 mA,而改变的结构域以375-771 mA(250°C,200 MPa),82-253 mA(350°C,200 MPa)和95-635 mA(350°C)的间隔显示随机日期。(350°C ,400 MPa)。由流体介导的偶联溶解 - 再沉淀产生的TH-U-PB系统的组成改变和干扰。本质上,Monazite中的这种年龄紊乱可归因于岩白岩石后的岩白岩石变化或变质期间的态变形。识别潜在改变的结构域(高对比度BSE成像中的暗斑,开发的孔隙率或次级矿物质的夹杂物)对于应用TH-U-PB地质学论是至关重要的。

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