|本期目录/Table of Contents|

[1]李晨晨,吴 立*,毛龙江,等.安徽巢湖沉积物常量元素特征及其揭示的流域风化强度演变[J].地球科学与环境学报,2024,46(06):758-774.[doi:10.19814/j.jese.2024.02005]
 LI Chen-chen,WU Li*,MAO Long-jiang,et al.Characteristics of Macroelements and Revealed Evolution of Weathering Intensity inSediments of Chaohu Lake, Anhui, China[J].Journal of Earth Sciences and Environment,2024,46(06):758-774.[doi:10.19814/j.jese.2024.02005]
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安徽巢湖沉积物常量元素特征及其揭示的流域风化强度演变(PDF)
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《地球科学与环境学报》[ISSN:1672-6561/CN:61-1423/P]

卷:
第46卷
期数:
2024年第06期
页码:
758-774
栏目:
沉积地质与油气勘探
出版日期:
2024-12-15

文章信息/Info

Title:
Characteristics of Macroelements and Revealed Evolution of Weathering Intensity inSediments of Chaohu Lake, Anhui, China
文章编号:
1672-6561(2024)06-0758-17
作者:
李晨晨123吴 立23*毛龙江4马春梅5管后春6
(1. 南京信息工程大学 科技史与气象文明研究院,江苏 南京 210044; 2. 安徽师范大学 地理与旅游学院,安徽 芜湖 241002; 3. 安徽师范大学 江淮流域地表过程与区域响应安徽省重点实验室,安徽 芜湖 241002; 4. 南京信息工程大学 海洋科学学院,江苏 南京 210044; 5. 南京大学 地理与海洋科学学院,江苏 南京 210023; 6. 安徽省地质调查院,安徽 合肥 230001)
Author(s):
LI Chen-chen123 WU Li23* MAO Long-jiang4 MA Chun-mei5 GUAN Hou-chun6
(1. Institute of Science and Technology Historyand Meteorological Civilization,Nanjing University of Information Science & Technology,Nanjing 210044,Jiangsu, China; 2. School of Geography and Tourism, Anhui Normal University, Wuhu 241002,Anhui, China; 3. Provincial Key Laboratory of EarthSurface Processesand Regional Response in theYangtze-Huaihe River Basin, Anhui NormalUniversity, Wuhu 241002, Anhui, China; 4. School of MarineSciences,Nanjing University ofInformation Science &Technology,Nanjing 210044, Jiangsu,China; 5. School ofGeography and Ocean Science,Nanjing University,Nanjing210023,Jiangsu, China; 6. GeologicalSurvey ofAnhui Province, Hefei 230001, Anhui, China)
关键词:
全新世 风化强度 环境演变 气候事件 影响因素 常量元素 AMS 14C测年 巢湖
Keywords:
Holocene weathering intensity environmental evolution climate event influencing factor major element AMS 14C dating Chaohu Lake
分类号:
P512.1+2; P595
DOI:
10.19814/j.jese.2024.02005
文献标志码:
A
摘要:
全新世是人类文明形成发展的重要时期,把握全新世以来气候变化规律将有助于理解全球气候变化,科学应对突发气候事件。通过对安徽巢湖SZK1507孔岩芯沉积物的常量元素含量及其比值特征进行分析,结合AMS 14C测年重建了巢湖流域10.8 cal. ka B.P.以来的风化强度演变过程,揭示了流域气候环境变化和可能存在的气候突变事件,并初步探讨了化学风化强度可能的影响因素。结果表明:①环境代用指标化学蚀变指数(CIA)、残积系数(Ki)的谷值与风化淋溶系数(Ba)、退碱系数(w)的峰值均出现在砂层和粉砂层,表明砂层和粉砂层的化学风化程度较弱于其他层位。②阶段Ⅰ(10.8~9.9 cal. ka B.P.)和阶段Ⅲ(9.3~5.7 cal. ka B.P.)化学风化作用强烈,阶段Ⅱ(9.9~9.3 cal. ka B.P.)化学风化作用弱,阶段Ⅳ(5.7~2.3 cal. ka B.P.)化学风化作用逐渐减弱,阶段Ⅴ(2.3 cal. ka B.P.以来)化学风化作用变化频繁,整体呈减弱特征; 此外,化学风化强度与气候变化具有较好的一致性,揭示了全新世以来巢湖流域经历了偏湿→偏干→湿润→湿润转干→变干为主的气候环境演变过程。③风化强度变化记录很好地表征出9.3、8.2、4.2和2.8 ka B.P.气候突变事件。通过对巢湖湖相沉积物11 000 cal. a B.P.以来的化学蚀变指数、30°N夏季太阳辐射量、神农架三宝洞δ18O记录、神农架大九湖δ13C记录等进行综合对比发现,构造抬升运动提供了稳定的陆源碎屑物质,流域气候环境条件是化学风化强度的控制因素,气候变化背景下的植被演替也影响着风化作用强弱,而粒度主要影响着沉积物化学元素组成。
Abstract:
Holocene is an important period for the formation and development of human civilization.Study onthe laws of climate change since Holocene will help to understand global climate change and scientifically respond to abrupt events. The major elementcontents and ratio characteristics in core SZK1507 of Chaohu Lake were conducted; combined with AMS 14C dating, the evolution process of weathering intensity in Chaohu Basin since 10.8 cal. ka B.P. was rebuilt, and the process of climate and environmental change in the basin and possible climate abrupt events were revealed, while the possible influencing factors of chemical weathering intensity were preliminarily explored. The results show that ① the valley values ofenvironmental substitution index, such aschemical index of alteration(CIA)and Ki, as well as the peak values of Ba and w, both appear in the sand layers and silt layers, indicating that the chemical weathering degree is weaker than that of other layers. ② During the period I(10.8-9.9 cal. ka B.P.)and the period Ⅲ(9.3-5.7 cal. ka B.P.), the chemical weathering intensity is strong; and weaker chemical weathering intensity occurs in the period Ⅱ(9.9-9.3 cal. ka B.P.); during the period Ⅳ(5.7-2.3 cal. ka B.P.), the chemical weathering intensity gradually weakens; during the period Ⅴ(from 2.3 cal. ka B.P. to the present), the chemical weathering intensity changes frequently, showing an overall weakening feature; in addition, there is a good consistency between the intensity of chemical weathering and climate change, revealing that Chaohu Basin has undergone a climate and environmental evolution process since Holocene, which is relatively wet → relatively dry→ wet → wet to dry → dry. ③ The variation of weathering intensity also effectively records 9.3, 8.2, 4.2, and 2.8 ka B.P. abrupt events. By combining with the CIA, summer solar insolation since Holocene at 30°N, δ18O records of Sanbao Cave in Shennongjia Mountains, δ13C of Dajiu Lake peat section in Shennongjia Mountains and other comprehensive comparisons since 11 000 cal. a B.P., it is found that the tectonic uplift movement provides stable terrestrial debris material, and the climatic and environmental conditions of the watershed are the controlling factors for the intensity of chemical weathering. The vegetation succession under the background of climate change also affects the strength of weathering, while the particle size mainly affects the chemical element composition of sediment.

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备注/Memo

备注/Memo:
收稿日期:2024-02-03; 修回日期:2024-03-24
基金项目:国家自然科学基金项目(41771221,42271173); 安徽省“十四五”规划重点项目(2022BFAFZ01365)
*通信作者:吴 立(1985-),男,安徽合肥人,教授,博士研究生导师,理学博士,E-mail:jedi-wuli@163.com。
更新日期/Last Update: 2024-12-15