...
首页> 外文期刊>Journal of Metamorphic Geology >Progress of actinolite-forming reactions in mafic schists during retrograde metamorphism: an example from the Sanbagawa metamorphic belt in central Shikoku, Japan
【24h】

Progress of actinolite-forming reactions in mafic schists during retrograde metamorphism: an example from the Sanbagawa metamorphic belt in central Shikoku, Japan

机译:镁铁质片岩逆行变质过程中阳起石形成反应的研究进展-以日本四国中部桑河川变质带为例

获取原文
获取原文并翻译 | 示例
           

摘要

Hydration reactions are direct evidence of fluid-rock interaction during regional metamorphism. In this study, hydration reactions to produce retrograde actinolite in mafic schists are investigated to evaluate the controlling factors on the reaction progress. Mafic schists in the Sanbagawa belt contain amphibole coexisting with epidote, chlorite, plagioclase and quartz. Amphibole typically shows two types of compositional zoning from core to rim: barroisite -> hornblende -> actinolite in the high-grade zone, and winchite -> actinolite in the low-grade zone. Both types indicate that amphibole grew during the exhumation stage of the metamorphic belt. Microstructures of amphibole zoning and mass-balance relations suggest that: (1) the actinolite-forming reactions proceeded at the expense of the preexisting amphibole; and (2) the breakdown reaction of hornblende consumed more H2O fluid than that of winchite, when one mole of preexisting amphibole was reacted. Reaction progress is indicated by the volume fraction of actinolite to total amphibole, Y-act, with the following details: (1) reaction proceeded homogeneously in each mafic layer; (2) the extent of the hornblende breakdown reaction is commonly low (Y-act< 0.5), but it increases drastically in the high-grade part of the garnet zone (Y-act> 0.7); and (3) the extent of the winchite breakdown reaction is commonly high (Y-act> 0.7). Many microcracks are observed within hornblende, and the extent of hornblende breakdown reaction is correlated with the size reduction of the hornblende core. Brittle fracturing of hornblende may have enhanced retrograde reaction progress by increasing of influx of H2O and the surface area of hornblende. In contrast to high-grade rocks, the winchite breakdown reaction is well advanced in the low-grade rocks, where reaction progress is not associated with brittle fracturing of winchite. The high extent of the reaction in the low-grade rocks may be due to small size of winchite before the reaction.
机译:水合反应是区域变质过程中流体与岩石相互作用的直接证据。在这项研究中,研究了铁镁片岩中水合反应产生逆行阳起石的过程,以评估控制反应进程的因素。 Sanbagawa带中的铁质片岩含有闪石,与闪石,绿泥石,斜长石和石英共存。角闪石通常在岩心到边缘显示出两种类型的成分分区:钡铁矿->角闪石->高品位区域的阳起石,和绞盘->低品位区域的阳起石。两种类型都表明闪石在变质带的发掘阶段生长。角闪石分区的微观结构和质量平衡关系表明:(1)阳起石形成反应的进行是以牺牲先前存在的角闪石为代价的; (2)当一摩尔预先存在的闪石发生反应时,角闪石的分解反应消耗的水比白蜡石的分解液要多。反应进程以阳起石相对于总闪石的体积分数Y-act表示,详细说明如下:(1)反应在每个铁镁铁矿层中均质进行; (2)角闪石分解反应的程度通常较低(Y-act <0.5),但在石榴石带的高级部分急剧增加(Y-act> 0.7); (3)绞盘分解反应的程度通常很高(Y-act> 0.7)。在角闪石内观察到许多微裂纹,并且角闪石击穿反应的程度与角闪石芯的尺寸减小相关。角闪石的脆性破裂可能通过增加H2O的流入量和角闪石的表面积而增强逆行反应的进程。与高等级岩石相反,在低等级岩石中,白云石分解反应非常快,在这种情况下,反应进度与白云石的脆性破裂无关。低品位岩石中较高的反应程度可能是由于反应前的白钨矿尺寸较小。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号