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Biogeochemical Transformations in the History of the Ocean
Annual Review of Marine Science ( IF 17.3 ) Pub Date : 2017-01-03 00:00:00 , DOI: 10.1146/annurev-marine-010816-060521
Timothy M. Lenton 1 , Stuart J. Daines 1
Affiliation  

The ocean has undergone several profound biogeochemical transformations in its 4-billion-year history, and these were an integral part of the coevolution of life and the planet. This review focuses on changes in ocean redox state as controlled by changes in biological activity, nutrient concentrations, and atmospheric O2. Motivated by disparate interpretations of available geochemical data, we aim to show how quantitative modeling—spanning microbial mats, shelf seas, and the open ocean—can help constrain past ocean biogeochemical redox states and show what caused transformations between them. We outline key controls on ocean redox structure and review pertinent proxies and their interpretation. We then apply this quantitative framework to three key questions: How did the origin of oxygenic photosynthesis transform ocean biogeochemistry? How did the Great Oxidation transform ocean biogeochemistry? And how was ocean biogeochemistry transformed in the Neoproterozoic-Paleozoic?

中文翻译:


海洋历史中的生物地球化学转化

海洋在其40亿年的历史中经历了几次深刻的生物地球化学变化,而这些变化是生命与地球共同进化的组成部分。这篇综述着重于由生物活性,养分浓度和大气O 2的变化控制的海洋氧化还原状态的变化。。出于对可用地球化学数据的不同解释的激励,我们的目的是展示定量建模(跨越微生物垫,架子海和公海)如何帮助限制过去的海洋生物地球化学氧化还原状态,并说明造成它们之间转换的原因。我们概述了有关海洋氧化还原结构的关键控制措施,并审查了相关代理及其解释。然后,我们将这个定量框架应用于三个关键问题:氧合作用的光合作用如何改变海洋生物地球化学?大氧化如何改变了海洋生物地球化学?在新元古代-古生代中海洋生物地球化学又是如何转变的呢?

更新日期:2017-01-03
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