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有机生物地球化学与晚新生代古全球变化研究 被引量:10
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作者 贾国东 彭平安 《地学前缘》 EI CAS CSCD 北大核心 2005年第2期179-187,共9页
有机生物地球化学在古全球变化研究中的应用越来越受到重视。在古海洋学领域,表层海水温度、海洋初级生产力的大小及其种群结构的变化对全球碳循环的影响、海底甲烷释放等关键性科学问题都需要有机生物地球化学积极参与。有机生物地球... 有机生物地球化学在古全球变化研究中的应用越来越受到重视。在古海洋学领域,表层海水温度、海洋初级生产力的大小及其种群结构的变化对全球碳循环的影响、海底甲烷释放等关键性科学问题都需要有机生物地球化学积极参与。有机生物地球化学也能在陆地古生态系统中植被的演变、C3与C4植物的消长变化、湖泊水体环境的变化等方面作出独特的贡献。文中简要评述了上述内容的研究现状。 展开更多
关键词 有机生物地球化学 古海洋 古生态 碳循环
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Effects of slope position and land use on the stability of aggregateassociated organic carbon in calcareous soils 被引量:2
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作者 Man Liu Guilin Han +4 位作者 Zichuan Li Taoze Liu Xiaomin Yang Yuntao Wu Zhaoliang Song 《Acta Geochimica》 EI CAS CSCD 2017年第3期456-461,共6页
Topography and land use affect soil organic carbon(SOC) storage, stabilization, and turnover, through several biogeochemical processes. This study investigated the aggregate composition and SOC content of bulk soils a... Topography and land use affect soil organic carbon(SOC) storage, stabilization, and turnover, through several biogeochemical processes. This study investigated the aggregate composition and SOC content of bulk soils and aggregates at different slope positions under different land uses in a typical karst catchment of southwestern China. Our results show that the proportion of macro-aggregates and the SOC content of bulk soils and aggregates at different slope positions decreased from the upper to the lower slope. The SOC content generally increased with an increase in the mean weight diameter and proportion of macro-aggregates under different land uses. Our results indicate that macro-aggregates in forest and grassland soils make a greater contribution to both aggregate composition and SOC content than that in arable land soils. Therefore,converting farmland to forest or grassland can facilitate the accumulation of macro-aggregates as well as the storage of SOC. 展开更多
关键词 Soil organic carbon Aggregate fraction Land use Slope position KARST Southwest China
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Variation in δ^(15)N of a lacustrine sedimentary sequence in the Nanling Mountains and its potential implication for climatic conditions over the past ~16000 years
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作者 钟巍 曹家元 +1 位作者 薛积彬 欧阳军 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2013年第5期1098-1106,共9页
Although extensive studies have been performed on nitrogen isotopes in lake sediments, understanding the complexity of the δ15N variation related to past environmental and climatic conditions still remains unclear. S... Although extensive studies have been performed on nitrogen isotopes in lake sediments, understanding the complexity of the δ15N variation related to past environmental and climatic conditions still remains unclear. Supported by multi-proxy records including litho-units, organic carbon isotopes, ration of total organic carbon and total nitrogen, organic matter content, bulk dry density, the accumulation rate of organic matter, median grain size, magnetic susceptibility, and Rb/Sr and Ca/Mg ratios obtained from a sedimentary sequence in a small lake (i.e., Dahu Swamp) in the eastern Nanling Mountains in South China, we deduce that variation in the δ15N values results primarily from the sources of organic matter, which are significantly influenced by climatic conditions over the past -16 000 years. A low (or high) lake level resulting from dry (or wet) conditions would lead to more (or fewer) vascular plant remains in the sediments and stronger (or weaker) denitrification associated with hypolimnetic anoxia, resulting in lower (or higher) 615N values. In addition, dry (or wet) conditions would favor weakened (or strengthened) biogeochemical activity in the catchment, which could result in less (or more) external input of δ15N-enriched OM, thus leading to decreased (or increased) δ15N values. Our results indicate that the lake sediment δ15N record in the Nanling Mountains has the potential to provide valuable insight into past East Asian monsoon climate- driven environmental changes. 展开更多
关键词 nitrogen isotopes lacustrine sediments climate changes Nanling Mountains
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Biomarker evidence for biotic and environmental change across the Cambrian Series 2–Series 3 boundary at the Wuliu- Zengjiayan section, Guizhou, China 被引量:3
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作者 WANG ChunJiang ZHAO YuanLong +4 位作者 PENG Jin YANG XinLian BAI Jie LIU Yue CHEN Tao 《Science China Earth Sciences》 SCIE EI CAS 2014年第11期2781-2790,共10页
The Wuliu-Zengjiayan section in Jianhe County, Guizhou Province, China has been suggested as a potential Global Stratotype Section and Point(GSSP) for the defined base of Cambrian Series 3. A molecular organic geochem... The Wuliu-Zengjiayan section in Jianhe County, Guizhou Province, China has been suggested as a potential Global Stratotype Section and Point(GSSP) for the defined base of Cambrian Series 3. A molecular organic geochemical study on the Cambrian Series 2Series 3 boundary interval was carried out to reveal the biotic and environmental change during this transition. The hydrocarbons extracted from the Kaili Formation were proved to be indigenous. The various geochemical proxies such as biomarker parameter, δ13Corg, atomic H/C value of kerogen, and TOC content, co-vary along with the sedimentary column, and show a quick and significant change just across the Cambrian Series 2Series 3 boundary. The less abundance of isoprenoid hydrocarbons, the relative enrichment of midchain monomethyl branched alkanes(mmb-alkanes), the relatively negative value of δ13Corg, and the higher TOC contents may suggest that the upper Cambrian Series 2 was deposited in a relatively reducing environment with a higher organic input from cyanobacteria-predominated benthic microbial mats. On the other hand, the relative enrichment of isoprenoid hydrocarbons, the less abundance of mmb-alkanes, the relatively positive value of δ13Corg, the lower TOC contents, and the lower atomic H/C values of kerogen are combined to indicate an enhanced phytoplankton production and an increased oxygen content and nutrients in the ocean during the early Cambrian Series 3, which could have benefited the explosion of the Kaili Biota. The Wuliu-Zengjiayan section may provide a typical case to understand the co-variation of marine microbe, animal, and environment. 展开更多
关键词 Wuliu-Zengjiayan Cambrian Series 2-Series 3 boundary BIOMARKER organic carbon isotope biotic and environmentalchange
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