溶解有机碳
环境化学
有机质
环境科学
荧光
化学
很深的时间
暗物质
海洋学
地质学
生物
天体物理学
光学
古生物学
物理
有机化学
作者
Teresa S. Catalá,Isabel Reche,Antonio Fuentes‐Lema,Cristina Romera‐Castillo,Mar Nieto‐Cid,Eva Ortega‐Retuerta,Eva Calvo,Marta Álvarez,Cèlia Marrasé,Colin A. Stedmon,Xosé Antón Álvarez‐Salgado
摘要
Marine dissolved organic matter (DOM) is one of the largest reservoirs of reduced carbon on Earth. In the dark ocean (>200 m), most of this carbon is refractory DOM. This refractory DOM, largely produced during microbial mineralization of organic matter, includes humic-like substances generated in situ and detectable by fluorescence spectroscopy. Here we show two ubiquitous humic-like fluorophores with turnover times of 435±41 and 610±55 years, which persist significantly longer than the ~350 years that the dark global ocean takes to renew. In parallel, decay of a tyrosine-like fluorophore with a turnover time of 379±103 years is also detected. We propose the use of DOM fluorescence to study the cycling of resistant DOM that is preserved at centennial timescales and could represent a mechanism of carbon sequestration (humic-like fraction) and the decaying DOM injected into the dark global ocean, where it decreases at centennial timescales (tyrosine-like fraction). The microbial carbon pump may play an important role in carbon sequestration in the deep ocean, but quantifying organic matter in this dark realm is difficult. Here, the authors use fluorescence spectroscopy to investigate the turnover time of fluorescent dissolved organic matter.
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