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首页> 外文期刊>Oceanographic Literature Review >Elemental concentrations of waters and bivalves in the fresh to hypersaline Coorong Lagoons, South Australia: Implications for palaeoenvironmental studies
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Elemental concentrations of waters and bivalves in the fresh to hypersaline Coorong Lagoons, South Australia: Implications for palaeoenvironmental studies

机译:新鲜对南澳大利亚新鲜对纯净的水杨泻药和纤维植物的元素浓度:对古环境研究的影响

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摘要

Element-to-calcium ratios of bivalve shells are potentially useful proxies for environmental change, provided the relationship between the environmental variable and element ratio are calibrated using modern specimens. In this study we investigate the utility of trace elemental ratios in the estuarine micromollusc Arthritica helmsi as (palaeo)environmental proxies. Sr/Ca, Mg/Ca and Ba/Ca ratios were measured in waters (n = 137) and live bivalves (n = 125) were collected along a salinity gradient from fresh to hypersaline in the Coorong Lagoon and Lake Alexandrina, at the terminus of the Murray River, South Australia. Water Mg, Sr and Ca exhibited linear relationships with salinity, while Ba showed no relationship. Mg/Ca and Sr/Ca in water both showed positive logarithmic responses to increasing salinity, while the response of Ba/Ca was best explained by a negative power function. The Sr concentration and Sr/Ca of water collected between 2016 and 2018 were elevated compared to a previous study conducted between 2007 and 2008, possibly due to a higher river flow regime in the more recent period. The range of Sr/Ca. Mg/Ca and Ba/Ca measured in A. helmsi were in agreement with previous studies, as were the range of partition coefficients. However, the incorporation of Sr/Ca, Mg/Ca and Ba/Ca did not correlate with water elemental ratios, temperature, salinity or pH and are therefore likely to be more heavily influenced by biological processes. As a consequence, while the elemental composition of other carbonate fossils within the Coorong system may hold potential to reconstruct past climate and environmental change, the trace element geochemistry of A. helmsi aragonite shells, and possibly other similar micro-bivalve molluscs, should be treated with caution as a palaeoenvironmental tracer.
机译:分枝壳的元素到钙比是环境变化的有用代理,只要使用现代标本校准环境变量和元素比之间的关系。在这项研究中,我们研究了散系Micromollusc arthritica Helmsi的痕量元素比的效用为(帕拉诺)环境代理。在末端,在水中测量SR / Ca,Mg / Ca和Ba / Ca比率,并将活性偏差(n = 125)从新鲜到Coorong Lagoon和Alexandrina湖中的盐度梯度收集墨累河,南澳大利亚。水Mg,Sr和Ca表现出与盐度的线性关系,而BA没有任何关系。 Mg / Ca和水中的Sr / Ca都显示出对盐度的阳性对数反应,而Ba / Ca的响应最好通过负功率功能解释。与2007年至2008年期间的先前研究相比,2016年至2018年间的水的SR浓度和SR / Ca升高,可能是由于近期河流流动制度更高的河流制度。 SR / CA的范围。在A. Helmsi中测量的Mg / Ca和Ba / Ca与先前的研究同时,分区系数的范围也是如此。然而,掺入Sr / ca,mg / ca和Ba / ca与水元素比率,温度,盐度或pH不相关,因此可能更严重影响生物过程。因此,虽然CoORONG系统内的其他碳酸化石的元素组成可能持有重建过去的气候和环境变化的潜力,但是应处理A.舵杆状物壳的微量元素地球化学,以及可能其他类似的微生物轻型软体动物。谨慎作为古环境示踪剂。

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  • 来源
    《Oceanographic Literature Review》 |2021年第6期|1271-1272|共2页
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    Department of Earth Sciences and Sprigg Geobiology Centre The University of Adelaide North Terrace Adelaide South Australia 5005 Australia;

    Department of Earth Sciences and Sprigg Geobiology Centre The University of Adelaide North Terrace Adelaide South Australia 5005 Australia;

    Department of Earth Sciences and Sprigg Geobiology Centre The University of Adelaide North Terrace Adelaide South Australia 5005 Australia;

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