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Cosmogenic Si-32 as a tracer of biogenic silica burial and diagenesis: Major deltaic sinks in the silica cycle

机译:宇宙成因的Si-32作为生物成因的二氧化硅埋藏和成岩的示踪剂:二氧化硅循环中主要的三角洲汇

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摘要

Measurements of natural cosmogenic Si-32 (t(1/2)similar to 140years) in tropical deltaic sediments demonstrate for the first time that most Si-32 is present in rapidly formed authigenic clays and not biogenic opaline silica (bSi). The burial of bSi in deltaic and continental margin sediments has likely been greatly underestimated because of diagenetic alteration of bSi to clay, little of which dissolves in the classically used operational bSi leach. Rapid reverse weathering reactions during early diagenesis must be considered as a significant pathway of reactive Si storage in deltaic deposits. Based on Si-32, actual storage may be 2-3 times the best recent estimates extrapolated from diagenetic models or attempts to modify operational bSi methods to include authigenic clay (similar to 900 mu mol/g versus similar to 250 mu mol/g). Measurements of natural Si-32 inventories in sediments and initial specific activities in biogenic silica provide a means to independently constrain the marine Si cycle.
机译:在热带三角洲沉积物中对天然宇宙成因的Si-32(t(1/2)近似于140年)的测量首次证明,大多数Si-32存在于快速形成的自生粘土中,而不是生物成因的透明硅石(bSi)。由于成岩作用中bSi的成岩作用改变,三角洲和大陆边缘沉积物中的bSi埋葬可能被大大低估了,而在传统使用的bSi浸出过程中几乎没有溶解。在早期成岩过程中快速逆向风化反应必须被认为是三角洲沉积物中反应性硅储存的重要途径。基于Si-32,实际储藏量可能是成岩模型推断出的最新估计值的2-3倍,或者试图修改操作性bSi方法以包括自生粘土(大约900μmol/ g与大约250μmol/ g相似) 。沉积物中天然Si-32含量的测量和生物硅中的初始比活度提供了独立约束海洋Si循环的手段。

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