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Geochemical model of a magmatic–hydrothermal system at the Lastarria volcano, northern Chile

机译:智利北部Lastarria火山岩浆-热液系统的地球化学模型

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Lastarria volcano (25°10′ S, 68°31′ W; 5,697 m above sea level), located in the Central Andes Volcanic Zone (northern Chile), is characterized by four distinct fumarolic fields with outlet temperatures ranging between 80°C and 408°C as measured between May 2006–March 2008 and April–June 2009. Fumarolic gasses contain significant concentrations of high temperature gas compounds (i.e., SO2, HCl, HF, H2, and CO), and isotopic ratios (3He/4He, δ13C–CO2, δ18O–H2O, and δD–H2O) diagnostic of magmatic gas sources. Gas equilibria systematics, in both the H2O-H2-CO2-CO-CH4 and alkane–alkene C3 system, suggest that Lastarria fumarolic gasses emanate from a superheated vapor that is later cooled and condensed at relatively shallow depths. This two-stage process inhibits the formation of a continuous aquifer (e.g., horizontal liquid layer) at relatively shallow depth. Recent developments in the magmatic gas system may have enhanced the transfer and release of heat causing shallow aquifer vaporization. The consequent pressure increase and aquifer vaporization likely triggered the inflation events beginning in 2003 at the Lastarria volcano.
机译:位于安第斯山脉中部火山区(智利北部)的拉斯特里亚火山(南纬25°10′,西经68°31′;海拔5697 m),具有四个独特的富马地气田,出口温度在80°C至80°C之间。在2006年5月至2008年3月至2009年4月至2009年6月之间测得的温度为408°C。富马酸类气体中含有大量的高温气体化合物(即SO 2 ,HCl,HF,H 2 < / sub>,CO)和同位素比( 3 He / 4 He,δ 13 C–CO 2 ,δ 18 O–H 2 O和δD–H 2 O)诊断岩浆气源。 H 2 OH 2 -CO 2 -CO-CH 4 和烷烃中的气体平衡是系统的烯烃C 3 系统表明,Lastarria富马酸盐气是从过热蒸气中散发出来的,该蒸气随后被冷却并凝结在相对浅的深度。该两阶段过程抑制了在相对浅的深度处形成连续的含水层(例如,水平液体层)。岩浆气体系统的最新发展可能已经增强了热量的传递和释放,从而导致浅层含水层蒸发。随之而来的压力增加和含水层蒸发很可能引发了拉斯塔里亚火山从2003年开始的膨胀事件。

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