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首页> 外文期刊>Palaeogeography, Palaeoclimatology, Palaeoecology: An International Journal for the Geo-Sciences >Implications for the history of Cenozoic opal deposition from a quantitative model
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Implications for the history of Cenozoic opal deposition from a quantitative model

机译:定量模型对新生代蛋白石沉积历史的启示

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In addition to being a time of enhanced crustal activity and a warmer climate, the Eocene also saw prolonged periods of silica accumulation on the ocean floor. The peak of this accumulation occurred at approximately 50 Ma, creating Horizon A(C), a layer of silica-rich sediments spanning approximately 4 My. Horizon A(C) is comparatively isolated in time from known silicic acid addition processes, leading McGowran (1989) [McGowran, B., 1989. Silica burp in the Eocene ocean. Geology, 17 pp. 857-860.] to suggest a novel mechanism (the "silica burp" hypothesis) that centres on the temporal decoupling of silicic acid supply and burial by climatic variation. Here we examine this hypothesis using a quantitative biogeochemical model of the silicon cycle. Our results unequivocally show that McGowran's hypothesis is unable to account for Horizon A(C). The model's residence time and ocean capacity for silicic acid are insufficient to permit the degree of temporal decoupling proposed by McGowran. Inverting the model's results suggests that, instead, the sediment record may be a useful proxy for silicic acid additions to the ocean. (c) 2004 Elsevier B.V. All rights reserved.
机译:除了是增强地壳活动和气候变暖的时期外,始新世还经历了硅在海床上的长时间沉积。该堆积的峰值发生在大约50 Ma,形成了地平线A(C),这是一层富含二氧化硅的沉积物,横跨大约4 My。 Horizo​​n A(C)在时间上与已知的硅酸添加过程相对隔离,这导致了McGowran(1989)[McGowran,B.,1989。始新世的二氧化硅Sil。地质,第17页,第857-860页],提出了一种新的机制(“硅胶打p”假设),该机制以气候变化引起的硅酸供应和埋葬的时间解耦为中心。在这里,我们使用硅循环的定量生物地球化学模型来检验这个假设。我们的结果明确表明,McGowran的假设无法解释Horizo​​n A(C)。该模型的硅酸停留时间和海洋容量不足以允许McGowran提出的时间解耦度。反演该模型的结果表明,相反,沉积物记录可能是向海洋添加硅酸的有用替代。 (c)2004 Elsevier B.V.保留所有权利。

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