[张贴报告]Potassium isotopic fractionation during multistage alteration of oceanic crust in the southern Mariana Trench

Potassium isotopic fractionation during multistage alteration of oceanic crust in the southern Mariana Trench
编号:1465 稿件编号:1311 访问权限:仅限参会人 更新:2024-04-17 10:06:15 浏览:40次 张贴报告

报告开始:2024年05月18日 08:47 (Asia/Shanghai)

报告时间:1min

所在会议:[SP] 张贴报告专场 » [sp2] 主题2、地球化学

暂无文件

摘要
The oceanic crust alteration is a key geochemical process that affects the K isotopic compositions of oceans and the oceanic crust, thus playing a vital role on global K cycle. However, little is known about the migration trajectory of K isotopes during a progressive alteration of oceanic crust. In this study, we report detailed mineral, elemental, and K isotopic data of oceanic crust samples from the southern Mariana Trench. These samples are divided into four groups with various colors and alteration intensities, in which secondary mineral assemblages indicate a progressive alteration of oceanic crust at low temperatures (<100 °C). Group I samples are fresh basalts with chemical compositions identical to the mid-ocean ridge basalts (MORBs). Their higher δ41K values (0.08‰ to 0.11‰) than MORBs (−0.44 ± 0.17‰) might point to a 41K-enriched magmatic source. Group II samples are slightly altered basalts at the initial stage of low-temperature alteration and have lower δ41K values (−0.31‰ to 0.05‰) than Group I, which are interpreted as a result of chemical exchange with seawater via equilibrium and kinetic isotopic fractionations. Group III samples are celadonite phase-dominated rocks at the second stage, and have higher K2O contents (3.53–8.39 wt%) and lower δ41K values (−0.71‰ to −0.45‰) than Group II, reflecting the preferential incorporation of isotopically light K. In contrast, the clay mineral phase at the late stage dominates Group IV samples with lower K2O contents (1.79–4.20 wt%) and higher δ41K values (−0.22‰ to −0.07‰) than Group III, indicating a loss of isotopically light K during the transformation of the high-K celadonite phase to the low-K clay mineral phase. Overall, systemic variations in secondary minerals, K2O contents, and δ41K values from Group I to Group IV samples suggest a multistage K isotopic fractionation and shed new light on a key role of the high-K celadonite phase in K isotopic behavior during oceanic crust alteration.
关键字
Potassium isotopes,Mariana trench,Oceanic basalts,Multistage alteration
报告人
秦国红
讲师 河北师范大学

稿件作者
郭自晓 河北师范大学
秦国红 河北师范大学
发表评论
验证码 看不清楚,更换一张
全部评论
● 会务总协调  

● 学术安排

 

辜克兢

13950003604

gukejing@xmu.edu.cn

辜克兢

13950003604

gukejing@xmu.edu.cn

柳    欣

13806024185

liuxin1983@xmu.edu.cn

窦    恒

18627754021

douheng@chytey.com

孙佳妮

15201086188

scarlett@chytey.com

刘    琳

13313708075

lliu@iue.ac.cn

 

● 会场技术服务

 

李    虎

柳    欣

18965842343

13806024185

hli@iue.ac.cn

liuxin1983@xmu.edu.cn
李招英

13860473552

lizhaoying@xmu.edu.cn

     
           
● 会场安排   ● 会议注册  

辜克兢

13950003604

gukejing@xmu.edu.cn

胡勤梅 13554192326

mary@chytey.com

窦    恒

18627754021

douheng@chytey.com

孙晓笛 18813296455 xiaodi.sun@xmu.edu.cn
           
● 商业赞助   ● 会议财务  
朱    佳 13950159036

zhujia@xmu.edu.cn

许心雅 18005960255 xuxinya@xmu.edu.cn
           

海报张贴

 

● 酒店预定及咨询

 
张    君 13860426122 junzhang@xmu.edu.cn

李    璟

18627754146

lijing@chytey.com

卢    巍 18971567453 luwei@chytey.com      

 

登录 注册缴费 酒店预订