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Nitrogen recycling at the Costa Rican subduction zone: The role of incoming plate structure

机译:哥斯达黎加俯冲带的氮循环利用:新板结构的作用

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摘要

Efficient recycling of subducted sedimentary nitrogen (N) back to the atmosphere through arc volcanism has been advocated for the Central America margin while at other locations mass balance considerations and N contents of high pressure metamorphic rocks imply massive addition of subducted N to the mantle and past the zones of arc magma generation. Here, we report new results of N isotope compositions with gas chemistry and noble gas compositions of forearc and arc front springs in Costa Rica to show that the structure of the incoming plate has a profound effect on the extent of N subduction into the mantle. N isotope compositions of emitted arc gases (9–11 N°) imply less subducted pelagic sediment contribution compared to farther north. The N isotope compositions (δ15N = −4.4 to 1.6‰) of forearc springs at 9–11 N° are consistent with previously reported values in volcanic centers (δ15N = −3.0 to 1.9‰). We advocate that subduction erosion enhanced by abundant seamount subduction at 9–11 N° introduces overlying forearc crustal materials into the Costa Rican subduction zone, releasing fluids with lighter N isotope signatures. This process supports the recycling of heavier N into the deep mantle in this section of the Central America margin.
机译:有人主张在中美洲边缘通过弧形火山作用将俯冲的沉积氮(N)有效地循环回大气,而在其他地区,考虑到质量平衡和高压变质岩中的N含量,意味着俯冲的N已大量添加到地幔和过去。弧岩浆产生的区域。在这里,我们报道了哥斯达黎加的具有气体化学性质的N同位素组成以及前臂和弧前弹簧的稀有气体组成的新结果,从而表明,传入板的结构对地幔中N的俯冲程度具有深远的影响。与更北部的气体相比,排放的电弧气体的N同位素组成(9-11N°)意味着俯冲的上层沉积物的贡献较少。 9-11N°的前臂泉的N同位素组成(δ 15 N = -4.4至1.6‰)与先前报道的火山中心的值(δ 15 N = -3.0至1.9‰)。我们主张,在9–11°N°通过大量海山俯冲作用增强的俯冲侵蚀作用将上覆的前地壳物质引入哥斯达黎加俯冲带,释放出具有较轻N同位素特征的流体。此过程支持将较重的N再循环到中美洲边缘这一段的深层地幔中。

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