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首页> 外文期刊>Chemical geology >Foraminiferal εNd in the deep north-western subtropical Pacific Ocean: Tracing changes in weathering input over the last 30,000years
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Foraminiferal εNd in the deep north-western subtropical Pacific Ocean: Tracing changes in weathering input over the last 30,000years

机译:深度西北部亚热带太平洋的比氨酸字εnd:在最后30,000年的风化投入的追踪变化

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摘要

AbstractThis study focuses on the neodymium isotopic composition (εNd) of mixed planktonic foraminifera species in sediment cores collected on the north-western margin of the South China Sea (SCS) and in the western equatorial Pacific. The aim was to identify temporal changes in the εNd of the Upper Circumpolar Deep Water (UCDW) during its northward penetration in the western subtropical Pacific and to re-evaluate the significance of deep-water εNd changes at the northern margin of the SCS over the past 25kyr. The past seawater εNd record derived from sediments of the subtropical western Pacific displays a narrow range from ?2.9±0.3 to ?1.6±0.4. This suggests that the εNd of the UCDW is greatly modified during its northward penetration through the process of boundary exchange along the western volcanic margin of the South Pacific and that the unradiogenic εNd signature of the UCDW observed in the South Pacific (about ?6) has not been propagated beyond the equatorial Pacific, at least not over the last 25kyr. Seawater εNd values obtained from the northern SCS display large variations with values that are lower (?6.8±0.3 to ?5.6±0.2) for the last glacial period than for the late Holocene (?5.7±0.3 to ?4.1±0.2). Such glacial εNd cannot be attributed to a higher proportion of southern-sourced water (SSW) as εNd values of the UCDW in the equatorial western Pacific are more radiogenic than those observed in the SCS. The evolution of the seawater εNd values of the northern SCS during the last glacial period and the last climatic transition is coeval with variations in the contribution of sediments from the Pearl River. The low sea level stand of the last glacial period resulted in a more proximal position of the Pearl River mouth relative to core MD05-2904, which a higher input of freshwater and, in particular, detrital sedimentary particles originating from the Pearl River that partially dissolved during sinking led to a decrease in the seawater εNd along the north-western margin of the SCS. Enhanced rainfalls associated with intensified monsoon and more frequent typhoon activities during the early Holocene Climatic Optimum (from 9 to 7calkyrBP) are linked to a decrease in sea surface salinity (lower δ18O values of planktonic foraminifera) and a decrease in εNd values (?6.2±0.3) induced by lithogenic Nd input from pronounced freshwater and sediment discharge from distal rivers.Highlights?Seawater-derived εNd from the northwestern Pacific over last 30kyr was presented.?Past seawater εNd in the western Pacific was influenced by local volcanic materials.?εNd record in the SCS during the last glacial are related to the sea level retreat.?εNd during the early Holocene are associated with enhanced rainfall in South China.]]>
机译:<![cdata [ 抽象 本研究重点介绍北方收集沉积物核心混合氏氏菌族类动物种类的钕同位素组合物(εnd) - 南海(SCS)和西部赤道太平洋的余地。目的是在西部亚热带太平洋的北渗透期间识别上部循环深水(UCDW)的εnd的时间变化,并重新评估深水εnd变化在SCS北边缘的变化的意义过去25kyr。源自亚热带西太平洋沉积物的过去的海水εnd记录显示出窄的范围从?2.9±0.3至1.6±0.4。这表明,在南太平洋西火山裕度的边界交换过程中,UCDW的εnd大大修改,并在南太平洋(关于?6)中观察到的UCDW的未致病εnd签名不超过赤道太平洋超越,至少在过去的25kyr之外。从北部SCS获得的海水εnd值显示最后的值(Δ6.8±0.3至约5.6±0.2)的大于全新世(?5.7±0.3至4.1±0.2)。这种冰川εnd不能归因于南方源水(SSW)的比例较高,因为赤道西太平洋中的UCDW的εnd值比在SCS中观察到的那些更加辐射。北部SCS海水εnd值的演变在最后的冰川期间和最后的气候过渡期间是梨河沉积物贡献的含量。最后的冰川时期的低海平面展台导致珠江口相对于核心MD05-2904更近侧的位置,该淡水较高,特别是源自部分溶解的珠江河的淡水和脱脂沉积粒子在下沉期间导致海水εnd沿着SCS的西北边缘减少。与强化季风和更频繁的季风活动相关的降雨(从9至7callybp)的增强降雨与海表面盐度的减少有关(下δ 18 o值的浮游花素的值)和由岩性Nd输入诱导的εnd值(α6.2±0.3)的降低来自发音的淡水和沉积物从远端河流排出。 亮点 从北30kyr播出的西北太平洋的海水衍生的εnd。 过去海水εnd的西太平洋受到当地火山材料的影响。 εnd记录最后冰川期间的SCS与海平面撤退有关。 全新女期间的>εnd与中国华南增强的降雨相关联。 ]]>

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