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Mapping lithology and hydrothermal alteration in geothermal systems using portable X-ray fluorescence (pXRF): A case study from the Tauhara geothermal system, Taupo Volcanic Zone

机译:利用便携式X射线荧光(pXRF)绘制地热系统中的岩性和水热变化图:以陶波火山区Tauhara地热系统为例

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Portable x-ray fluorescence (pXRF) analyzers are widely used in the environmental and mineral exploration fields. pXRF analyzers can rapidly and inexpensively provide chemical concentrations on a variety of elements, often with detection limits of similar to 1-5 ppm. We compared portable XRF results from untreated geothermal drill cuttings with laboratory XRF results from pressed pellet and lithium borate fused beads prepared from powders crushed from the same samples. It is demonstrated that the portable XRF results are accurate for many elements, particularly for those with atomic numbers greater than 17. 304 cutting samples from three drillholes in the Tauhara geothermal field were subsequently analyzed by pXRF. Downhole elemental concentrations plotted against lithological units defined on geological well logs indicate that significant variations in elemental concentrations occur, some of which correlate with logged lithology boundaries. Other chemical variations appear to define previously unrecognized subunits, as well as areas of hydrothermal alteration. We suggest that pXRF should become a routine part of the characterization of geothermal cuttings during geothermal exploration and well drilling, as the chemical results are accurate, rapid and inexpensive, and the results can be used to define lithological boundaries and potentially correlate between drillholes, therefore improving geologic, stratigraphic and hydrothermal alteration models of the geothermal field. (C) 2016 Elsevier Ltd. All rights reserved.
机译:便携式X射线荧光(pXRF)分析仪广泛用于环境和矿物勘探领域。 pXRF分析仪可以快速廉价地提供各种元素上的化学浓度,检测限通常约为1-5 ppm。我们将未经处理的地热钻屑的便携式XRF结果与由压制颗粒和硼酸锂熔凝珠得到的实验室XRF结果进行了比较,压制颗粒和硼酸锂熔凝珠是由相同样品压碎的粉末制成的。结果表明,便携式XRF结果对于许多元素都是准确的,尤其是对于那些原子序数大于17的元素。随后通过pXRF分析了Tauhara地热田中三个钻孔的304个切割样品。根据地质测井中定义的岩性单位绘制的井下元素浓度表明,元素浓度发生了显着变化,其中一些与测井的岩性边界相关。其他化学变化似乎定义了以前无法识别的亚基,以及热液蚀变的区域。我们建议,pXRF应该成为地热勘探和钻井过程中地热岩屑表征的常规部分,因为化学结果准确,快速且廉价,并且该结果可用于定义岩性边界并可能在钻孔之间建立关联,因此完善地热田的地质,地层和热液蚀变模型。 (C)2016 Elsevier Ltd.保留所有权利。

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