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首页> 外文期刊>Journal of paleolimnology >Paleolimnological investigations of anthropogenic environmental change in Lake Tanganyika: VI. Geochemical indicators
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Paleolimnological investigations of anthropogenic environmental change in Lake Tanganyika: VI. Geochemical indicators

机译:唐噶尼喀湖人为环境变化的古代治理研究:VI。 地球化学指标

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Geochemical signals of bulk sedimentary organic matter from three cores from Lake Tanganyika provided information about both internal processes and terrestrial inputs to the lake. Indications of land use change were detected in the geochemical records of the watersheds, and the timing of these changes was consistent with historical records of population demographics. While C:N ratios suggested that the distance from shore might be important in influencing the relative amount of allochthonous vs. autochthonous material, all cores were dominated by autochthonous organic matter. In general, nitrogen isotopes were more positive at disturbed sites, indicating inputs of enriched soil nitrate that was subsequently taken up by phytoplankton. In contrast, carbon isotopes did not reflect land use patterns, and a post-1950s decline in carbon isotope ratios found in all cores may indicate a lake-wide decrease in productivity. These interpretations were consistent with pollen and climate records.
机译:来自Tanganyika湖的三个核心的批量沉积有机物的地球化学信号提供了有关内部流程和地面投入到湖泊的信息。 在流域的地球化学记录中检测到土地利用变化的迹象,这些变化的时间与人口统计学的历史记录一致。 虽然C:n比率表明,在影响外部加压材料的相对量,距离岸边的距离可能是重要的,但所有核心都是通过自身加热的有机物主导的。 通常,氮同位素在受扰动的位点处更阳性,表明随后被Phytoplancton占用的富集的土壤硝酸盐的输入。 相比之下,碳同位素没有反射土地使用模式,并且在所有核心中发现的碳同位素比率后的20世纪50年代下降可能表明生产率的宽大降低。 这些解释与花粉和气候记录一致。

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