巴伦支海表层海底沉积物主要元素组成的地球化学特征

V. Gordeev, L. Demina, T. Alekseeva
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摘要

本文介绍了巴伦支海34个表层底泥样品主要元素组成的测定结果。考虑了入海沉积物的主要来源——河流排放、风沙和其他。结果表明,现有的个人资料和文献资料都不能对进入海洋的沉积物质平衡作出充分的估计。通过对比海底沉积物(砂、无灰砂岩、泥质体)和海盆岩石的成分,发现陆源物质的输入占主导地位。详细讨论了海底沉积物中各主要元素与其粒度组成之间的相互关系。结果表明,除Mn外,其余元素均随泥质分数的增加而增加。SiO2和CaO在粗馏分中含量最高。Mn的行为是不寻常的。西南海区沉积物中的Mn浓度几乎不依赖于泥质组分的份额,这是非常出乎意料的。与此同时,东北海区的沉积物中Mn的富集程度为1.0 ~ 1.5%。讨论了这种金属在沉积物中分布的可能原因。在此基础上,构建了底部沉积物中铝、铁、锰氧化物的碎片分布图。新资料支持了巴伦支海陆源沉积形成的经典类型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Some geochemical features of the major element composition of the surface bottom sediments of the Barents sea
The results of determination of the major element composition of 34 surface bottom sediment samples of the Barents sea are presented in this chapter. The main sources of sedimentary material supply to the sea – river discharge, aeolian input and other – were considered. It was shown that the available own and literature data did not allow to obtain an adequate estimation of entering sedimentary material balance in the sea. The comparison of the compositions of bottom sediments (sands, aleurites, pelites) and of predominated in the sea basin rocks has demonstrated the prevailed terrigenous material input. The interdependences between all major elements in bottom sediments and their grain-size composition were considered in details. It was established that the well-known interrelationships with the politic sediment fraction took place for all elements except Mn – increasing their contents along with growth of pelitic fraction. The exception is SiO2 and CaO, they demonstrated the highest content in the coarse fractions. The Mn behavior is unusual one. Mn concentrations in the sediments of the south-western part of the sea is almost independent on the share of the pelitic fraction that is very unexpected. At the same time the sediments from the north-eastern part of the sea are very enriched by Mn – up to 1.0−1.5%. The probable reasons of such type of this metal distribution in the sediments are discussed. On a base of the results available the fragmental maps of Al, Fe and Mn oxides distribution in the bottom sediments were constructed. The conclusion was made that our new data supported the classical type of the prevailed terrigenous sediment formation in the Barents Sea.
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