首页|粤西高州泥质麻粒岩变质P-T-t演化及其对华南早古生代构造背景的指示

粤西高州泥质麻粒岩变质P-T-t演化及其对华南早古生代构造背景的指示

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华南陆块早古生代构造热事件的形成与演化一直是学界关注的热点议题。本文对地处华夏地块西南部的高州泥质麻粒岩开展了详细的岩相学、矿物化学、相平衡模拟和锆石年代学研究,综合华夏地块已有的早古生代变质作用资料,探讨了华南早古生代时期的构造背景。高州泥质麻粒岩包含三阶段矿物组合:包裹体组合由石榴子石核部及所包裹的钾长石、黑云母、矽线石、石英、金红石和钛铁矿组成,相平衡模拟获得温压条件为~0。95 GPa/800℃(压力峰期阶段);基质矿物组合为石榴子石变斑晶和基质中的堇青石、钾长石、黑云母、石英、矽线石和钛铁矿,结合矿物组合在相图中的位置、基质黑云母的Ti含量和基质钾长石的Ab值,限定温压条件为0。57~0。69GPa/815~865℃(温度峰期阶段);退变质组合以石榴子石周围或后成合晶中的堇青石、钾长石、黑云母、石英和钛铁矿以及晚期斜长石和矽线石为代表,指示降温降压的退变质过程。高州泥质麻粒岩的锆石U-Pb定年获得441±1。4Ma的变质年龄。变质锆石的Ti温度计计算结果为693~759℃,与岩石的退变质冷却温度一致。华南早古生代变质作用整体上为中压相系条件,变质P-T轨迹均为顺时针样式,暂无高压相系蓝片岩或榴辉岩的发现。上述变质作用特征在大陆碰撞造山带和陆内造山带都可形成,但碰撞造山带的另一个特点是常伴生高压-超高压蓝片岩和榴辉岩。从目前掌握的变质作用数据和其他地质资料分析,华南陆块内部发育早古生代变质-岩浆-变形作用的构造域很可能并不是发生俯冲-碰撞的"第一现场",引起该期构造热事件的应力来源于彼时华南的陆缘。
Metamorphic P-T-t evolution of pelitic granulite from Gaozhou,western Guangdong Province and its implications for the Early Paleozoic tectonic setting in South China
The formation and evolution of the early Paleozoic tectono-thermal event in South China remains a hotly debated topic within the academic community.Studies of metamorphism can provide pivotal insight into this issue.In this contribution,detailed studies of petrography,mineral chemistry,phase equilibria modelling and zircon U-Pb geochronology have been carried out on pelitic granulite from Gaozhou,southwestern part of the Cathaysia Block,South China.This paper will compare the early Paleozoic metamorphic data in the Cathaysia block to the new data provided here in order to discuss tectonic setting in South China.The pelitic granulite contains three generations of mineral assemblage,namely the inclusion,matrix and retrograde mineral assemblages.The inclusion mineral assemblage consists of garnet core and the wrapped K-feldspar,biotite,sillimanite,quartz,rutile and ilmenite within garnet.P-T conditions of the inclusion mineral assemblage are~0.95 GPa and 800℃(Pmax stage),obtained by phase equilibria modelling using software THERMOCALC.The matrix mineral assemblage consists of garnet porphyroblast and the matrix-type cordierite,K-feldspar,biotite,quartz,sillimanite and ilmenite.Combined with the domain of matrix mineral assemblage in the pseudosection,the Ti content of matrix-type biotite and the Ab value of matrix-type K-feldspar,P-T conditions of the matrix mineral assemblage are defined to be 0.57-0.69 GPa and 815-865℃(Tmax stage).The retrograde mineral assemblage is composed by late cordierite,K-feldspar,biotite,plagioclase,sillimanite,quartz and ilmenite.Mineral compositions and stabilities indicate that the retrograde metamorphism is characterized by cooling and decompression.Zircon U-Pb dating of the pelitic granulite yields a metamorphic age of 441±1.4 Ma.Ti-in-zircon thermometer applied for the metamorphic zircons gives crystallization temperatures of 693-759℃,which are consistent with the temperatures of the retrograde(cooling)metamorphic stage of the rock.Therefore,this metamorphic age is interpreted to represent the timing of retrograde metamorphism.After analysing the early Paleozoic metamorphic data collected from the Cathaysia block,it is concluded that the early Paleozoic metamorphism in South China matches with medium-pressure facies series and show clockwise P-Tpaths,without high-pressure facies series blueschist or eclogite being found yet.Medium-pressure facies series metamorphism can be formed both in continental collision orogens and intracontinental orogenic belts.However,those collision orogens are also featured by the presence of high-to ultrahigh-pressure blueschist and eclogite.The tectonic domains that underwent the early Paleozoic metamorphism,magmatism,and deformation are most likely not the locations of subduction-collision,based on current metamorphic data and other geological features(such as the lack of compelling ophiolites and arc-related magmatic rocks)in South China.The tectonic stress causing the early Paleozoic tectono-thermal event should come from the continental margin of South China at that time.

pelitic granulitemetamorphic P-T-t evolutionearly Paleozoictectonic significanceSouth China

钱加慧、梁勇智、尹常青、高彭、张健、热孜亚·麦麦提

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中山大学地球科学与工程学院,广东省地质过程与矿产资源探查重点实验室,珠海 519080

香港大学地球科学系,香港 999077

泥质麻粒岩 变质P-T-t演化 早古生代 构造意义 华南

国家自然科学基金国家自然科学基金国家自然科学基金国家自然科学基金广东省基础与应用基础研究基金广东省基础与应用基础研究基金

423252054237222741972197420252042024A15150107712019A1515012189

2024

科学通报
中国科学院国家自然科学基金委员会

科学通报

CSTPCD北大核心
影响因子:1.269
ISSN:0023-074X
年,卷(期):2024.69(18)