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首页> 外文期刊>European journal of mineralogy >Phase relations of lawsonite-blueschists and their role as a water-budget monitor: a case study from the Hakoishi sub-unit of the Kurosegawa belt, SW Japan
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Phase relations of lawsonite-blueschists and their role as a water-budget monitor: a case study from the Hakoishi sub-unit of the Kurosegawa belt, SW Japan

机译:堇青石蓝晶石的相关系及其作为水预算监测器的作用:来自日本西南部黑川川地带函石子单元的案例研究

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摘要

This study investigated progressive changes in the mineral assemblage of a Palaeozoic lawsonite-blueschist (LBS) unit of the Kurosegawa belt, Kyushu, Japan. The LBS unit is mainly composed of intercalated metachert and metabasaltic rocks surrounded by serpentinite. Based on the spatial distribution of mineral assemblages in the metabasaltic rocks, three mineral zones can be identified in a similar to 10 km-long east west oriented unit: (1) a pumpellyite (Pmp) + Na amphibole (Namp) assemblage dominated area (Zone 1); (2) an intermixed area of lawsonite (Lws) + Na/Ca-Na pyroxenes (Napx) + Pmp and Lws + Namp + Pmp assemblages (transition zone); and (3) an area dominated by Lws + Namp + Napx assemblages (Zone 2); all contain excess chlorite (Chl), albite (Ab), quartz (Qz), titanite (Ttn), and goethite. Napx varies in composition from jadeite(Jd)(20)-diopside(Di)(25) of Zone 1 to Jd(35)Di(15) in Zone 2, with a similar range of aegirine (Aeg) content from 40 to 55 mol%. The Al/(Al + Fe3+) ratio of Na amphibole (= Y-Amp) associated with Lws and Pmp increases from Y-Amp = 0.2 in Zone 1 to Y-Amp = 0.8 in Zone 2. The Jd contents and the lack of epidote and zeolite-group minerals suggest that the pressure (P) conditions of the BS increase from Zone 1 (0.50 GPa) to Zone 2 (0.75 GPa) between 200 and 300 degrees C, suggesting a low geothermal gradient (similar to 5 to 10 degrees C/km). Schreinemakers' analyses in a NaCaMgFe3+ AlSiH (NCMF3ASH) system, using mean mineral compositions of representative samples and excess Chl, Ab, Qz and H2O, suggest that, (1) observed variation in mineral assemblages can be explained by the hydration reaction Pmp + Napx + Chl + H2O = Lws + Namp, which was driven by a P increase from Zone 1 to Zone 2, and represents the transition from the Pmp-BS to the Lws-BS sub-facies; (2) the total H2O content stored in hydrous minerals increases from 3.6 wt% in the Pmp-Namp assemblage of Zone 1 to 5.0-6.4 wt% in the Lws + Namp + Napx assemblages in Zone 2; and (3) the Napx + Chl assemblage can retain a significant amount of H2O, along with the Lws-Namp and Pmp-Namp assemblages, and its stability field can expand to higher P conditions by decrease of the Di and increase of the Jd and Aeg contents in Napx.
机译:这项研究调查了日本九州黑濑川地带的古生代钙钠铁矿-蓝schist(LBS)单元的矿物组成的逐步变化。 LBS单元主要由蛇纹岩包围的插层微cher石和准玄武质岩石组成。根据后生玄武质岩石中矿物组合的空间分布,可以在类似于10 km长的东西向单元中识别出三个矿物带:(1)1石(Pmp)+ Na闪石(Namp)组合为主的区域( 1区); (2)堇青石(Lws)+ Na / Ca-Na辉石(Napx)+ Pmp和Lws + Namp + Pmp组合的混合区域(过渡区); (3)以Lws + Namp + Napx组合为主的区域(第2区);它们都含有过量的亚氯酸盐(Chl),钠长石(Ab),石英(Qz),钛矿(Ttn)和针铁矿。 Napx的成分从1区的翡翠(Jd)(20)-透辉石(Di)(25)到2区的Jd(35)Di(15)有所不同,其Aegirine(Aeg)含量范围从40到55摩尔%。与Lws和Pmp相关的Na闪石的Al /(Al + Fe3 +)比(= Y-Amp)从区域1的Y-Amp = 0.2增加到区域2的Y-Amp = 0.8。Jd含量和缺乏附子和沸石族矿物表明,BS的压力(P)条件在200至300摄氏度之间从1区(0.50 GPa)上升到2区(0.75 GPa),表明地热梯度低(类似于5至10摄氏度/公里)。 Schreinemakers在NaCaMgFe3 + AlSiH(NCMF3ASH)系统中的分析,使用代表性样品的平均矿物成分和过量的Chl,Ab,Qz和H2O,表明(1)观察到的矿物组分变化可以通过水合反应Pmp + Napx来解释。 + Chl + H2O = Lws + Namp,这是由P从区域1到区域2的增加驱动的,代表了从Pmp-BS到Lws-BS子相的转变; (2)存储在含水矿物中的总H2O含量从1区的Pmp-Namp组合中的3.6 wt%增加到2区的Lws + Namp + Napx组合中的5.0-6.4 wt%; (3)Napx + Chl组合以及Lws-Namp和Pmp-Namp组合可以保留大量的H2O,并且其稳定性场可以通过Di的减少和Jd和J的增加而扩展到更高的P条件。 Aeg内容以Napx为单位。

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