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Application of soil He surveys to the mapping of underlying geological structures in the Dalby Area, Queensland

机译:土壤He勘测在昆士兰州Dalby地区基本地质构造图绘制中的应用

摘要

Elevated He is commonly associated with hydrocarbon pools and U-bearing deposits. Being chemically inert, He tends not to be absorbed by mineral material and is highly mobile. Helium movement through sedimentary rocks and regolith is largely controlled by permeability but may be affected by the amount of pore water or soil moisture and other climatic factors such as air pressure. Faults and fractures commonly act as preferential pathways for the migration of He.Soil He concentrations have been mapped across a 7.2 km2 test site near Dalby, SE Queensland, to further establish the use of this technique to map the location of hydrocarbon deposits and major structures. The region contains a series of hydrocarbon deposits (mainly coal bed methane) that are hosted in slightly deformed sedimentary rock units. The test site is contained within an agricultural area and is overlain by alluvium with depths up to 50 m.In-situ measurement of He in near-surface air and subsoil (70–80 cm depth) gas were conducted using a (portable) Varian PHD-4 detector on a 200 x 200 m grid with a higher density (50 m spacing) traverse. Laboratory testing of the PHD-4 device indicated a near-linear correlation between actual and measured He values between 5 and 500 ppm, and minimal effect from other gases (CO2, ethanol vapour, methane, SO2) except for H2S at concentrations >375 ppm.Helium values across the site range from ~5 ppm (average global background) to >500 ppm. The upper limit to regional He background is 15 ppm and 60 ppm as local background. The peak values are amongst the highest recorded for soils of the many hydrocarbon exploration surveys conducted using the PHD-4. The spatial patterns suggest He is leaking (vertically) through the alluvium along conjugate fault structures. There is high correlation between near-surface air and subsoil gas He values, though the latter is typically higher by a factor of ~2. Irrigation of the fields suppressed the He soil concentrations, but did not affect the general trends in the He patterns.
机译:升高的氦气通常与油气藏和含铀矿床有关。由于具有化学惰性,他倾向于不被矿物材料吸收,并且具有很高的活动性。氦气在沉积岩和go石中的运动在很大程度上受渗透率控制,但可能受到孔隙水或土壤水分的量以及其他气候因素(例如气压)的影响。断层和裂缝通常是He迁移的优先途径。在昆士兰州东南部Dalby附近一个7.2 km2的测试地点绘制了土壤He浓度图,以进一步确立使用该技术来绘制碳氢化合物沉积和主要结构的位置的图。该地区包含一系列烃类沉积物(主要是煤层气),这些沉积物都存在于变形程度较小的沉积岩单元中。测试地点位于一个农业区域内,并被冲积层所覆盖,深度最大为50 m。使用(便携式)Varian进行了近地表空气和地下土壤(深度为70–80 cm)气体中He的现场测量PHD-4检测器位于200 x 200 m的网格上,具有更高的密度(50 m间距)移动。 PHD-4装置的实验室测试表明,实际和测得的He值在5至500 ppm之间几乎呈线性关系,并且除浓度> 375 ppm的H2S外,其他气体(CO2,乙醇蒸气,甲烷,SO2)的影响极小整个站点的氦值范围从〜5 ppm(全球平均背景)到> 500 ppm。区域He背景的上限为15 ppm,局部背景为60 ppm。峰值是使用PHD-4进行的许多碳氢化合物勘探调查的土壤中记录的最高值之​​一。空间格局表明,他沿着共轭断层结构从冲积层(垂直)泄漏。近地表空气与地下土壤He值之间具有高度相关性,尽管后者通常会高出〜2倍。田间灌溉抑制了He土壤的浓度,但没有影响He模式的总体趋势。

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