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首页> 外文期刊>Quaternary International >Lacustrine carbon cycling since the last interglaciation in northeast China: Evidence from n-alkanes in the sediments of Lake Xingkai
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Lacustrine carbon cycling since the last interglaciation in northeast China: Evidence from n-alkanes in the sediments of Lake Xingkai

机译:中国东北最后一次冰期以来的湖泊湖泊碳循环:来自兴凯湖沉积物中正构烷烃的证据

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摘要

Organic carbon mineralization and storage in the inland water bodies is an important component of global carbon cycling. However, the mechanisms influencing carbon cycling in the inland water bodies remain uncertain. In this study, n-alkane data from a sediment core spanning the last glacial-interglacial cycle from Lake Xingkai in northeast China, were analyzed to determine response of regional carbon cycling to climate change. Prior to MIS 1 the sedimentary n-alkanes were mainly derived from terrigenous higher plants and helophytes in the wetland. By contrast, non-photosynthetic bacteria are probable major alternating source of sedimentary n-alkanes during MIS 1. The n-alkanes in the sediments are mainly influenced by the variations of lake level and deposition of mineral dust. The total organic carbon content (TOC) and TOC-normalized middle- and long-chain n-alkane concentrations increased during glacial times and decreased during interglacial periods, reflecting higher rates of organic matter decomposition under warmer climatic conditions. The temperature dependence of lacustrine organic matter mineralization suggests that the carbon burial potential of lakes in northeast China will decrease in the future as global warming intensifies.
机译:内陆水体中的有机碳矿化和存储是全球碳循环的重要组成部分。但是,影响内陆水体碳循环的机制仍然不确定。在这项研究中,分析了来自中国东北兴凯湖最后一个冰期-冰间循环的沉积物核中的正构烷烃数据,以确定区域碳循环对气候变化的响应。在MIS 1之前,沉积的正构烷烃主要来自湿地的陆生高等植物和植物。相比之下,MIS 1期间非光合细菌可能是沉积正构烷烃的主要交替来源。沉积物中的正构烷烃主要受湖泊水位变化和矿物粉尘沉积的影响。在冰川期,总有机碳含量(TOC)和TOC标准化的中链和长链正构烷烃浓度在冰期增加,而在冰间期则降低,这反映了气候变暖条件下有机物分解的速率更高。湖泊有机质矿化的温度依赖性表明,随着全球变暖加剧,未来东北地区湖泊的碳埋藏潜力将降低。

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