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Paleosols as Indicators of Paleoenvironment and Paleoclimate

机译:古土壤是古环境和古气候的指标

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Paleosols are ancient soils that have been incorporated into the geological record. Soils form in response to interactions among the lithosphere, hydrosphere, biosphere, and atmosphere, so paleosols potentially record physical, biological, and chemical information about past conditions near Earth's surface. As a result, paleosols are an important resource for terrestrial environmental and climatic reconstructions. Long-standing paleosol research topics include morphology, classification, and clay mineralogy, all of which provide information about pedogenic processes and local paleoenvironments. Paleosols are also used to infer processes involved in the development of stratigraphic architecture and basin evolution. Recent paleosol research has introduced semiquantitative and quantitative measures for environmental and chronometric reconstructions that provide insight into major regional to global changes in temperature, precipitation, and atmospheric pCO2. These new proxies focus on morphological and chemical transfer functions and stable isotope geochemistry to provide estimates of precipitation, temperature, pCO2, and productivity, as well as chronometric estimates of mineral crystallization in deep-time pedogenic systems. Looking forward, consensus must be reached on terminology that most effectively communicates paleosol characteristics and implies important processes. Proxy development will continue to improve as data sets become available across greater ranges of environments and timescales.
机译:古土壤是已被纳入地质记录的古老土壤。土壤是对岩石圈,水圈,生物圈和大气层之间相互作用的响应而形成的,因此古土壤有可能记录有关地球表面附近过去状况的物理,生物和化学信息。结果,古土壤是陆地环境和气候重建的重要资源。长期的古土壤研究主题包括形态学,分类和粘土矿物学,所有这些都提供了有关成岩作用过程和局部古环境的信息。古土壤也被用来推断与地层建筑发展和盆地演化有关的过程。最近的古土壤研究已经引入了用于环境和计时重建的半定量和定量测量方法,从而提供了对温度,降水量和大气pCO2的主要区域到全球变化的洞察力。这些新的代理关注形态和化学传递函数以及稳定的同位素地球化学,以提供降水,温度,pCO2和生产率的估算值,以及深层成岩系统中矿物结晶的年代估算值。展望未来,必须就最有效地传达古土壤特征并暗示重要过程的术语达成共识。随着数据集在更大范围的环境和时间范围内可用,代理开发将继续改善。

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