首页> 外文期刊>Brazilian Journal of Geology >Calibration of high-temperature furnace assemblies for experiments between 200 and 600 MPa with end-loaded piston-cylinder apparatuses
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Calibration of high-temperature furnace assemblies for experiments between 200 and 600 MPa with end-loaded piston-cylinder apparatuses

机译:使用端装式活塞缸设备对200至600 MPa之间的实验进行高温炉组件校准

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We present pressure calibration results for piston-cylinder –” and 1” high temperature furnace assemblies in the 200-600 MPa range aiming to expand its applicability to simulate upper crustal conditions. The furnace assemblies were made up by crushable MgO, graphite heater, pyrex glass spacer, and NaCl sleeve. Twenty-one experiments were carried out over a range of pressures (200-600 MPa) and temperatures (870-945°C) to determine the liquidus curve of NaCl. The obtained curve slope fits that given by Siewert et al. (1998), but offsets by ~ -55 MPa, implying the need of a constant P upward correction in the 300-600 MPa and ca. 300-400 MPa pressure ranges for the 3/4” and 1” assemblies, respectively. However, if the NaCl melting points (918-920°C) obtained by Bohlen (1984) at 500 MPa are used as reference, no pressure correction is needed. Larger offsets (to -120 MPa) were obtained under pressure conditions around and lower than 300 MPa with the 1” assembly. Our results confirm the applicability of Bristol-type end-loaded piston-cylinders coupled with appropriate furnace assemblies in assessing relatively low-pressure conditions (down to ~ 200 MPa, ~ 7 km depth) found in the Earth’s upper crust, where important magmatic, hydrothermal and metamorphic processes occur.
机译:我们展示了200-600 MPa范围内的活塞缸–”和1”高温炉组件的压力校准结果,旨在扩大其在模拟上地壳条件方面的适用性。炉组件由可破碎的MgO,石墨加热器,派热克斯玻璃垫片和NaCl套筒组成。在一定压力范围(200-600 MPa)和温度范围(870-945°C)上进行了21个实验,以确定NaCl的液相线曲线。所获得的曲线斜率与Siewert等人给出的曲线斜率拟合。 (1998年),但偏移〜-55 MPa,这意味着需要在300-600 MPa和ca中进行恒定的P向上校正。 3/4“和1”组件的压力范围分别为300-400 MPa。但是,如果使用Bohlen(1984)在500 MPa下获得的NaCl熔点(918-920°C)作为参考,则无需进行压力校正。使用1英寸组件时,在大约300 MPa以下且低于300 MPa的压力条件下,可获得较大的偏移量(至-120 MPa)。我们的研究结果证实,布里斯托尔式端载活塞式气缸与适当的炉组件相结合,可用于评估在地壳上部重要岩浆中发现的相对低压条件(低至200 MPa,深度约7 km)。发生热液和变质过程。

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