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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Spatiotemporal variation of rare earth elements from river to reef continuum aids monitoring of terrigenous sources in the Great Barrier Reef
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Spatiotemporal variation of rare earth elements from river to reef continuum aids monitoring of terrigenous sources in the Great Barrier Reef

机译:从河流到礁连续体内的稀土元素的时尚变异艾滋病在大堡礁中的贫困人口监测

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摘要

Degradation of inshore water quality associated with catchment modification is threatening global coral reef ecosystems. Coral trace element proxies are widely applied to document the magnitude and timing of historical changes in river runoff and other disturbances. However, conflicting interpretations of commonly used coral proxies (Ba/Ca, Y/Ca and Mn/Ca) complicate their application for examining historical changes in coastal water quality. The exploration of other coral trace element proxies (such as rare earth elements, REE) is limited in space and time, and to few coral genera. This study examined the dynamics of dissolved REE and yttrium (REEY) in the Fitzroy and Burdekin river tributaries and estuaries, Queensland, Australia. In addition, monthly-resolution long-term temporal records of Ba/Ca, Mn/Ca, Y/Ca and REEY proxies were investigated in two Porites and one Cyphastrea coral colonies from the central and southern Great Barrier Reef in order to test the reliability of these proxies to record the variability of river runoff and local anthropogenic disturbances. The results showed large scale removal of REEY (55-86%) in the low salinity mixing zones of both estuaries with significant fractionation of Nd-Yb and Y-Ho, confirming the ability of coral REEY to act as a terrestrial runoff proxy. Coralline Ba/Ca, Y/Ca and Mn/Ca records generally lack coherence with proximal discharge. However, temporal fluctuations of REEY proxies, irrespective of geographic location and coral genus, showed consistent behaviour relative to regional discharge with progressive increase of total REE/Ca and shale normalized Nd/Yb and decrease of Y/Ho during high-flow summer periods. The shifting baselines of REEY proxies in Cyphastrea grown in the turbid water setting of Rat Island effectively captured the timing of Gladstone Port dredging activities. Our findings suggest that shale normalized coral REEY distributions outperformed other commonly used trace element proxies and are robust indicators of changing inshore water quality. Longer-term records of coral REEY, even covering the period before European settlement from the 1850s, may provide a means to identify shifting baselines and evaluate and quantify the impacts of catchment alteration on coastal water quality and specific coral reef communities. (C) 2021 Elsevier Ltd. All rights reserved.
机译:与集水区改造相关的近海水质退化正在威胁全球珊瑚礁生态系统。珊瑚微量元素替代物被广泛应用于记录河流径流和其他扰动的历史变化的大小和时间。然而,对常用的珊瑚替代物(Ba/Ca、Y/Ca和Mn/Ca)的相互矛盾的解释使其在研究沿海水质历史变化方面的应用复杂化。对其他珊瑚微量元素替代物(如稀土元素、稀土元素)的探索在空间和时间上都是有限的,而且仅限于少数珊瑚属。本研究考察了澳大利亚昆士兰菲茨罗伊河和伯德金河支流及河口溶解稀土和钇(REEY)的动态。此外,在大堡礁中部和南部的两个Porite和一个Cyphastrea珊瑚群落中,研究了Ba/Ca、Mn/Ca、Y/Ca和REEY代理的月分辨率长期时间记录,以测试这些代理记录河流径流变化和局部人为干扰的可靠性。结果表明,在两个河口的低盐度混合区,REEY(55-86%)被大规模去除,Nd-Yb和Y-Ho被显著分离,证实珊瑚REEY可以作为陆地径流的替代物。珊瑚Ba/Ca、Y/Ca和Mn/Ca记录通常与近端放电缺乏一致性。然而,无论地理位置和珊瑚属如何,REEY替代物的时间波动与区域流量相关,表现出一致的行为,总REE/Ca和页岩标准化Nd/Yb逐渐增加,Y/Ho在夏季高流量期间减少。在鼠岛浑浊的水域环境中生长的Cyphastrea中,芦苇替代物基线的变化有效地捕捉到了格莱斯顿港口疏浚活动的时间。我们的研究结果表明,页岩标准化珊瑚礁分布优于其他常用的微量元素替代物,是近海水质变化的可靠指标。珊瑚礁的长期记录,甚至包括19世纪50年代欧洲定居之前的时期,可能会提供一种方法来确定不断变化的基线,并评估和量化集水区变化对沿海水质和特定珊瑚礁群落的影响。(c)2021爱思唯尔有限公司保留所有权利。

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