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Recycling of iodine in fore-arc areas: evidence from the iodine brines in Chiba, Japan

机译:前电弧区的碘回收:日本千叶县碘盐水的证据

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摘要

The distribution of iodine in the Earth's crust is dominated by its accumulation in marine sediments. If fluxes between terrestrial and marine compartments are considered, however, a significant imbalance exists between known sources and sinks of iodine. We present here evidence from the fore-arc area near Chiba, Japan, the world's largest brine-iodine producing area, that iodine is mobilized from marine sediments during the early stages of subduction. Based on detailed chemical analyses of 22 brines and ~(129)I dating of 13 of these samples collected from the Kazusa Formation, we show that iodine in these fluids is derived from organic-rich marine sediments with a minimum age of 50 Myr. Geochemical characteristics of the brines and the age of the iodine indicate that the iodine enrichment is caused by mobilization from subducting marine sediments and not by derivation from the host formation (age 1-2 Myr). The direct return of iodine from marine sediments into the oceans during the subduction of oceanic plates could provide the missing link in the iodine cycle and be an important pathway also in the marine cycle of carbon.
机译:碘在地壳中的分布以其在海洋沉积物中的积累为主导。但是,如果考虑到陆地和海洋隔室之间的通量,则已知的碘源和汇之间将存在严重的不平衡。我们在这里提供的证据来自日本千叶附近的前弧地区,这是世界上最大的盐水碘生产区,该碘是在俯冲初期从海洋沉积物中调集碘的。根据对22种盐水的详细化学分析和从Kazusa组收集的13种样品的〜(129)I测年,我们显示出这些流体中的碘来自富含有机物的海洋沉积物,最低年龄为50 Myr。盐水的地球化学特征和碘的年龄表明,碘的富集是由俯冲海洋沉积物的动员引起的,而不是由寄主岩层(1-2 Myr)衍生而来。在洋板俯冲过程中,碘从海洋沉积物中直接返回海洋,这可能是碘循环中缺失的环节,也是碳在海洋循环中的重要途径。

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