University of California, Santa Barbara, CA, USA.
Ann Rev Mar Sci. 2013;5:447-76. doi: 10.1146/annurev-marine-120710-100751. Epub 2012 Sep 17.
Chromophoric dissolved organic matter (CDOM) is a ubiquitous component of the open ocean dissolved matter pool, and is important owing to its influence on the optical properties of the water column, its role in photochemistry and photobiology, and its utility as a tracer of deep ocean biogeochemical processes and circulation. In this review, we discuss the global distribution and dynamics of CDOM in the ocean, concentrating on developments in the past 10 years and restricting our discussion to open ocean and deep ocean (below the main thermocline) environments. CDOM has been demonstrated to exert primary control on ocean color by its absorption of light energy, which matches or exceeds that of phytoplankton pigments in most cases. This has important implications for assessing the ocean biosphere via ocean color-based remote sensing and the evaluation of ocean photochemical and photobiological processes. The general distribution of CDOM in the global ocean is controlled by a balance between production (primarily microbial remineralization of organic matter) and photolysis, with vertical ventilation circulation playing an important role in transporting CDOM to and from intermediate water masses. Significant decadal-scale fluctuations in the abundance of global surface ocean CDOM have been observed using remote sensing, indicating a potentially important role for CDOM in ocean-climate connections through its impact on photochemistry and photobiology.
发色溶解有机物(CDOM)是开阔海洋溶解物库中普遍存在的成分,由于其对水柱光学性质的影响、在光化学和光生物学中的作用,以及作为深海生物地球化学过程和循环示踪剂的用途,因此具有重要意义。在本综述中,我们讨论了海洋中 CDOM 的全球分布和动态,重点讨论了过去 10 年的发展,并将讨论限制在开阔海洋和深海(主温跃层以下)环境中。CDOM 通过吸收光能对海洋颜色施加主要控制,在大多数情况下,其吸收光能与浮游植物色素的吸收光能相匹配或超过。这对通过基于海洋颜色的遥感评估海洋生物圈以及评估海洋光化学和光生物学过程具有重要意义。全球海洋中 CDOM 的一般分布受生产(主要是有机物的微生物再矿化)和光解之间的平衡控制,垂直通风循环在将 CDOM 输送到中间水团和从中输送出来方面发挥着重要作用。利用遥感观察到全球海洋表面 CDOM 丰度的显著十年尺度波动,表明 CDOM 通过对光化学和光生物学的影响,在海洋-气候联系中可能发挥重要作用。