Doane Timothy A
Department of Land, Air and Water Resources, University of California, Davis, Davis, CA 95616-5270 USA.
Geochem Trans. 2017 Feb 10;18:1. doi: 10.1186/s12932-017-0039-y. eCollection 2017.
The participation of sunlight in the natural chemistry of the earth is presented as a unique field of study, from historical observations to prospects for future inquiry. A compilation of known reactions shows the extent of light-driven interactions between naturally occurring components of land, air, and water, and provides the backdrop for an outline of the mechanisms of these phenomena. Catalyzed reactions, uncatalyzed reactions, direct processes, and indirect processes all operate in natural photochemical transformations, many of which are analogous to well-known biological reactions. By overlaying photochemistry and surface geochemistry, complementary approaches can be adopted to identify natural photochemical reactions and discern their significance in the environment.
从历史观测到未来研究前景,阳光参与地球自然化学过程被视为一个独特的研究领域。对已知反应的汇编展示了陆地、空气和水的天然成分之间光驱动相互作用的程度,并为这些现象的机制概述提供了背景。催化反应、非催化反应、直接过程和间接过程都在自然光化学转化中起作用,其中许多类似于著名的生物反应。通过将光化学与表面地球化学相结合,可以采用互补方法来识别自然光化学反应并辨别它们在环境中的重要性。