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首页> 外文期刊>Pure and Applied Geophysics >A New Automatic Subsurface Gas Monitoring System for Seismogeochemical Studies, Installed in Haruno Borehole, Shizuoka Prefecture, Central Japan
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A New Automatic Subsurface Gas Monitoring System for Seismogeochemical Studies, Installed in Haruno Borehole, Shizuoka Prefecture, Central Japan

机译:在日本中部静冈县春野钻孔安装的新型地震地球化学地下气体自动监测系统

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摘要

The results of subsurface gas monitoring by application of gas chromatography (GC) to the gas composition of bubbles associated with groundwater for seismogeochemical studies are reported. An automated gas monitoring system was used to determine gas compositions in a 500-m borehole at the Haruno Crustal Movement Observation Site (HOS), central Japan during period 1, from December 1999 to December 2000. The average ± two standard deviation (2SD) compositions of gases in this period were He = 82 ± 29 ppmV, H_2 = 170 ± 62 ppmV, Ar = 0.05 ± 0.07%, N_2 = 50 ± 8%, and CH_4 = 45 ± 6%. A new automated gas monitoring system equipped with a micro-GC was installed in the borehole at the HOS, and gas bubbles from the borehole were monitored during period 2, from December 2006 to March 2007. The average ± two standard deviation (2SD) compositions of gases in this period were He = 8 ± 7 ppmV, H_2 = 13 ± 15 ppmV, Ar = 0.6 ± 0.3%, N_2 = 66 ± 7%, and CH_4 = 14 ± 14%. The gas concentration ratios (He/Ar, H2/Ar, N2/Ar, and CH4/Ar) fluctuated significantly over time and repeatedly showed abrupt spike-like increases during period 2. The gas compositions obtained in period 1 and 2 were markedly different. Over the period from 2006 to 2007, the gas bubbles were depleted in He, H_2, and CH_4 of deep origin, but enriched in Ar and N_2 of atmospheric origin. This difference can be interpreted as being due to an irreversible change of the aquifer/gas system. The present deep component in the HOS gas is estimated to have composition He = 63 ppmV, H_2 = 37 ppmV, Ar = 0.17%, N_2 = 63%, and CH_4 = 37%. The new monitoring system is able to analyze the gas composition using a smaller volume of sample gas and with greater precision than the previous system. During the 3-month monitoring period 2, the separation capacity of the capillary column of the micro-GC was sufficiently maintained to determine gas-chromatographic peak areas for the five gaseous species examined. This study confirms that the new monitoring system with micro-GC is promising for continuous subsurface gas monitoring for earthquake prediction studies.
机译:据报道,通过气相色谱法(GC)对与地下水相关的气泡的气体成分进行地下地球化学监测的结果用于地震地球化学研究。从1999年12月至2000年12月的第1阶段,使用自动气体监测系统确定了日本中部Haruno地壳运动观测站(HOS)的500米钻孔中的气体成分。平均值±2标准偏差(2SD)在此期间的气体组成为He = 82±29 ppmV,H_2 = 170±62 ppmV,Ar = 0.05±0.07%,N_2 = 50±8%,CH_4 = 45±6%。 2006年12月至2007年3月的第2阶段,在HOS的井眼中安装了配备了微型气相色谱仪的新型自动气体监测系统,并对井眼中的气泡进行了监测。平均±2标准偏差(2SD)组成此期间的气体总量为He = 8±7 ppmV,H_2 = 13±15 ppmV,Ar = 0.6±0.3%,N_2 = 66±7%和CH_4 = 14±14%。气体浓度比(He / Ar,H2 / Ar,N2 / Ar和CH4 / Ar)随时间显着波动,并在第2阶段反复显示出突然的尖峰状增加。在第1阶段和第2阶段获得的气体组成明显不同。在2006年至2007年期间,气泡在深成因的He,H_2和CH_4中被耗尽,而在大气成因的Ar和N_2中富集。这种差异可以解释为是由于含水层/天然气系统不可逆转的变化所致。据估计,HOS气体中当前的深层成分的组成为He = 63 ppmV,H_2 = 37 ppmV,Ar = 0.17%,N_2 = 63%,CH_4 = 37%。与以前的系统相比,新的监视系统能够使用更少量的样气并以更高的精度分析气体成分。在3个月的监测期2内,微气相色谱仪的毛细管柱的分离能力得到了充分维持,可以确定所检查的5种气态物质的气相色谱峰面积。这项研究证实,具有微型气相色谱仪的新型监测系统有望用于地震预测研究的连续地下气体监测。

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