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Dehydration melting of UHP eclogite and paragneiss in the Dabie orogen: Evidence from laboratory experiment to natural observation
2013年
Dehydration melting of subducted continental crust is significant during exhumation,and its study from both experimental and petrological observations is of great importance to our understanding of continental geodynamics.Dehydration melting experiments were carried out on ultrahigh-pressure(UHP)eclogite from Bixiling in the Dabie orogen using a piston cylinder at 1.5–3.0GPa and 800–950°C to investigate partial melting of eclogite induced by phengite breakdown.The phengite-bearing eclogite started to melt at T 800–850°C and P=1.5–2.0 GPa and produced about 3%granitic melt.The products of dehydration melting vary with temperature and pressure.Such results provide valuable constraints on the micro-texture related to partial melting of UHP rocks in the Dabie-Sulu orogenic belt.Three types of polyphase inclusions were identified in garnet from the Shuanghe UHP eclogite.K-feldspar and quartz inclusions are interpreted to represent the products of segregation and crystallization of minor amounts of melt that formed during dehydration melting of phengite by the inferred reaction Phengite+Omphacite±Quartz→Amphibole±Garnet+Melt(K-feldspar+Quartz±Plagioclase).Polyphase inclusions of phengite and K-feldspar+Quartz inclusions were also found in zoisite/clinozoisite and garnet from the Shuanghe garnet-bearing paragneiss.These polyphase inclusions provide evidence for a continuous process from sub-solidus dehydration to partial melting within the UHP gneissic rocks.The compositional variation of garnets demonstrates that breakdown of epidote-group minerals may have played a crucial role during dehydration melting reaction of phengite.The Ti-in-zircon thermometry and Si content of phengite in zircon suggest that partial melting would occur at 783–839°C and 2.0–2.5 GPa.Therefore,both experimental results and petrological observations indicate that dehydration melting and fluid activity within the Dabie UHP rocks at micro-scale are controlled by the breakdown of phengite.
LIU QiangWU Yao
关键词:超高压榴辉岩副片麻岩多硅白云母
1.5~3.0 GPa压力条件下多硅白云母榴辉岩的脱水熔融实验研究被引量:7
2009年
以大别山东部碧溪岭超高压变质榴辉岩为实验样品,使用活塞圆筒式高温高压装置,在1.5~3.0GPa,800~950℃下进行封闭体系的脱水熔融实验.结果表明:(1)1.5~2.0GPa下,含5%多硅白云母榴辉岩的初始熔融温度(Tm)≤800~850℃,熔融形成比例为3%的花岗质熔体;(2)随着温度和压力变化,榴辉岩中多硅白云母脱水熔融形成不同反应产物.1.5~2.0GPa和800~850℃下,多硅白云母和黝帘石在亚固相下析出流体使岩石部分熔融,蓝晶石形成斜长石反应边;(3)随着温度升高,多硅白云母与绿辉石、石英发生熔融反应,形成更长石、蓝晶石和熔体,更长石是多硅白云母在榴辉岩中主要的脱水熔融反应产物;(4)1.5~3.0GPa,≥900℃的脱水熔融反应形成镁铝榴石分子较高(37.67%~45.94%)的新生石榴石;在2.4~3.0GPa,≥900℃下,反应产物中形成钾长石和硬玉,代表反应体系处于更高压力下的流体不饱和状态.实验初步约束了1.5~3.0GPa下多硅白云母榴辉岩的脱水熔融固相线.将实验结果与大别-苏鲁地区超高压榴辉岩的部分熔融特征相结合,推断大别-苏鲁多硅白云母榴辉岩在折返过程中发生脱水熔融的压力和温度区间应为1.5~2.0GPa,800~850℃,并指示超高压榴辉岩在不同变质相转变过程中可能经历了流体活动性明显不同的部分熔融过程.
刘强金振民章军锋
关键词:超高压变质榴辉岩脱水熔融多硅白云母大别-苏鲁造山带
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