Lyon Paul E, Hoge Frank E, Wright C Wayne, Swift Robert N, Yungel James K
Wallops Flight Facility, Wallops Island, Virginia 23337, USA.
Appl Opt. 2004 Nov 1;43(31):5886-92. doi: 10.1364/ao.43.005886.
In the upper layer of the global ocean, 2082 in situ chlorophyll biomass values (Chl) are retrieved by concurrent satellite-derived inherent optical properties (IOP). It is found that (1) the phytoplankton absorption coefficient IOP alone does not provide satisfactory (Chl) retrieval; (2) the chromophoric dissolved organic matter (CDOM) absorption coefficient IOP must also be used to obtain satisfactory retrieval through (Chl) alpha a ph + pa CDOM where p is a constant and a ph and aCDOM are, respectively, the phytoplankton and CDOM absorption coefficients; (3) the IOP-based (Chl) retrieval performance is comparable to standard satellite reflectance ratio retrievals (that have CDOM absorption intrinsically embedded within them); (4) inclusion of the total backscattering coefficient IOP does not contribute significantly to (Chl) retrieval; and (5) the new IOP-based algorithm may provide the possibility for future research to establish the actual role of extracellular CDOM from all sources in the intracellular production of chlorophyll biomass.
在全球海洋上层,通过同步卫星衍生的固有光学特性(IOP)获取了2082个现场叶绿素生物量值(Chl)。研究发现:(1)仅浮游植物吸收系数IOP无法提供令人满意的Chl反演结果;(2)必须同时使用发色溶解有机物(CDOM)吸收系数IOP,通过Chl = αaph + pαCDOM(其中p为常数,aph和αCDOM分别为浮游植物和CDOM吸收系数)来获得令人满意的反演结果;(3)基于IOP的Chl反演性能与标准卫星反射率比值反演相当(标准卫星反射率比值反演本身已包含CDOM吸收);(4)总后向散射系数IOP的纳入对Chl反演贡献不大;(5)新的基于IOP的算法可能为未来研究提供可能性,以确定所有来源的细胞外CDOM在叶绿素生物量细胞内产生中的实际作用。