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国家自然科学基金(40302022)

作品数:3 被引量:58H指数:3
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Dating recent lake sediments using spheroidal carbona-ceous particle (SCP)被引量:5
2005年
Dating lake sediment using sedimentary event is the supplement and calibration to traditional dating by radionuclide such as 210Pb and 137Cs. Based on the change of spheroidal carbonaceous particle (SCP) concentration, the age sequence of lake sediments can be deduced. It is one of the dating methods using sedimentary event. SCP is formed from combustion of fossil fuel at high temperature up to 1750℃ and at a rate of heating of approaching 104 ℃/s. It can be dispersed to several hundred kilometers away from its source and deposited with precipitation or dryly deposited, and kept in sediments. Compared with Cs or Pb, there is no evidence for SCP that it decays in lake sediments and is un-removable once stored except by physical disturbance because it is mainly composed of element carbon. Handy method to extract, identify and calculate has been developed. Although fossil fuel has been used early in China, combus- tion at high temperature started later since emergence of electricity generation. The productivity of SCP is positively related with the generated thermal power, which is reflected as the SCP concentration in lake sediments increases with the increase of generated thermal power. Therefore, reliable sediment markers from the start of the SCP record and the remarkable variation can be used for dating purpose. In China, electricity industry started from the 1950s, and rapid increase of generated power took place since 1978. Based on these time markers, SCP time sequences of lake sediment cores LH and LL-4 from Longgan Lake, the middle reach of the Yangtze River, have been established, which is compara- ble with the results from 137Cs and 210Pb, and has eliminated the errors of dating using 137Cs and 210Pb.
WUYanhong WANGSumin XIAWeilan LIUJian
关键词:地质研究
龙感湖沉积物中人类活动导致的营养盐累积通量估算被引量:38
2006年
通过LL-4孔沉积环境指标研究表明,近100年来龙感湖地区人类活动加强,导致营养元素磷、碳、氮以及铁在沉积物中的浓度均呈增长趋势,特别是1950年以来,随着大量人口的迁入,围湖造田、破坏湖滨湿地等造成水土流失加剧,沉积物质量累积速率加快,同时营养元素累积量急剧增加。根据营养元素与参比元素Al,Fe和Ti之间的关系,以及不同营养元素之间的相互关系,人类活动引起的累积量得以从自然背景上区分出来,结合沉积物质量累积速率计算,人类活动引起的磷、有机碳和氮的累积通量分别在151.0~889.4mg/m^2a,4.3—149.0g/m^2a和0.5~18.6g/m^2a间变化。碎屑物质的累积稀释了沉积物中营养盐的富集浓度,龙感湖草型湖泊的特点,使湖泊沉积环境易于呈氧化环境,生物和地球化学作用,也削弱了人类活动累积营养盐的变化幅度,使沉积中营养盐呈平稳上升的趋势。
吴艳宏王苏民
关键词:营养元素通量
近代湖泊沉积物球状碳颗粒(SCP)定年被引量:15
2005年
通过事件性沉积的发现和判断确定沉积物年代,是对传统的放射性核素定年的补充和检验.根据湖泊沉积物中球状碳颗粒(SCP)的分布,确定近代湖泊沉积物年代序列是事件性沉积定年的方法之一.SCP是高温燃烧化石燃料的产物,能扩散到距源区数百公里的范围内,并随降水或干沉降被保存于沉积物中.由于是高温形成,且其主要成分为单质碳,球状碳颗粒在沉积物中非常稳定,不易迁移.通过简单处理,SCP很容易被提取、鉴定和统计.尽管中国对化石燃料利用较早,但真正的高温燃烧是伴随着发电工业的出现而开始的.目前中国75%左右的煤炭消耗是用于发电,SCP产出量与发电量成正比,反映到湖泊沉积物中为SCP的浓度变化随区域发电量的增长而增长,因此湖泊沉积物中SCP的浓度变化就具备了时标意义.龙感湖所在的安徽省有火电发电记录始于1952年,其后的发展过程与龙感湖沉积物中SCP的浓度变化的过程相对照,提供了该地区SCP时标,以此为据,本文确定了龙感湖LH孔和LL-4孔湖泊沉积物的SCP年代序列.这一年代序列对^(137)Cs和^(210)Pb测年结果进行了检验.
吴艳宏王苏民夏威岚刘健
关键词:湖泊沉积物定年球状^210PBSCP单质碳
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