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从溶解有机物质光学性质推断生态系统功能:批判性回顾。

Inferring Ecosystem Function from Dissolved Organic Matter Optical Properties: A Critical Review.

机构信息

Louisiana Universities Marine Consortium, 8124 Highway 56, Chauvin, Louisiana 70344, United States.

University of San Francisco, 2130 Fulton Street, San Francisco, California 94117, United States.

出版信息

Environ Sci Technol. 2022 Aug 16;56(16):11146-11161. doi: 10.1021/acs.est.2c04240. Epub 2022 Aug 2.

Abstract

Over the last 30 years, the optical property community has shifted from conducting dissolved organic matter (DOM) measurements on new complex mixtures in natural and engineered systems to furthering ecosystem understanding in the context of past, present, and future carbon (C) cycling regimes. However, the appropriate use of optical properties to understand DOM behavior in complex biogeochemical systems is of recent debate. This critical review provides an extensive survey of DOM optical property literature across atmospheric, marine, and terrestrial biospheres using a categorical approach that probes each biosphere and its subdivisions. Using this approach, a rubric of ecosystem variables, such as productive nature, C cycling rate, C inputs, and water quality, sets the foundation for interpreting commonly used optical property DOM metrics such as fluorescence index (FI), humification index (HIX), and specific ultraviolet absorbance at 254 nm (SUVA). Case studies and a meta-analysis of each biosphere and subdivision found substantial overlap and characteristic distributions corresponding to ecosystem context for FI, HIX, and SUVA, signifying chromophores and fluorophores from different ecosystems may be more similar than originally thought. This review challenges researchers to consider ecosystem connectivity when applying optical property results rather than making traditional "if this, then that" results-style conclusions.

摘要

在过去的 30 年中,光学特性领域已经从对自然和工程系统中新的复杂混合物中进行的溶解有机物(DOM)测量,转变为在过去、现在和未来的碳(C)循环模式背景下,进一步了解生态系统。然而,在复杂的生物地球化学系统中,正确使用光学特性来理解 DOM 行为仍存在争议。本综述批判性地回顾了大气、海洋和陆地生物圈中 DOM 光学特性文献,采用分类方法对每个生物圈及其细分进行了探讨。通过这种方法,一套生态系统变量(如生产力性质、C 循环速率、C 输入和水质)的标准为解释常用的光学特性 DOM 指标(如荧光指数(FI)、腐殖化指数(HIX)和 254nm 处的特定紫外吸光度(SUVA))奠定了基础。对每个生物圈及其细分的案例研究和荟萃分析发现,FI、HIX 和 SUVA 与生态系统背景之间存在大量重叠和特征分布,这表明来自不同生态系统的发色团和荧光团可能比最初想象的更为相似。本综述挑战研究人员在应用光学特性结果时,不仅要考虑生态系统的连通性,而不是做出传统的“如果这样,那么那样”的结论式结论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4543/9387109/c992ab601ab9/es2c04240_0001.jpg

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