首页> 外文期刊>Acta Geologica Sinica >Noble Gas Isotopic Compositions of Cobalt-rich Ferromanganese Crusts from the Western Pacific Ocean and Their Geological Implications
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Noble Gas Isotopic Compositions of Cobalt-rich Ferromanganese Crusts from the Western Pacific Ocean and Their Geological Implications

机译:西太平洋富钴铁锰结壳的稀有气体同位素组成及其地质意义

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Noble gas isotopic compositions of various layers in three-layered (outer, porous and compact layers) cobalt-rich ferromanganese crusts and their basaltic and phosphorite substrates from the western Pacific Ocean were analyzed by using a high vacuum gas mass spectrum. The analytical results show that the noble gases in the Co-rich crusts have derived mainly from the ambient seawater, extraterrestrial grains such as interplanetary dust particles (IDPs) and wind-borne continental dust grains, and locally formation water in the submarine sediments, but different noble gases have different sources. He in the crusts derives predominantly from the extraterrestrial grains, with a negligible amount of radiogenic He from the eolian dust grains. Ar is sourced mainly from the dissolved air in the seawater and insignificantly from radiogenic Ar in the eolian continental dust grains or the formation water. Xe and Ne derive mainly from the seawater, with minor amounts of extraterrestrial Xe and Ne in the IDPs. Compared with the porous and outer layers, the compact layer has a relatively high ~4He content and lower ~3He/~4He ratios, suggesting that marine phosphatization might have greatly modified the noble gas isotopic compositions of the crusts. Besides, the ~3He/~4He values of the basaltic substrates of the cobalt-rich crusts are very low and their R/R_a ratios are mostly < 0.1 R_a, which are similar to that of phosphorite substrates (0.087 R_a), but much lower than that of fresh submarine MORB (8.75 ± 2.14 R_a) or seamount basalts (3-43 R_a), implying that the basaltic substrates have suffered strong water/rock interaction and reacted with radiogenic ~4He and P-rich upwelling marine currents during phosphatization. The trace elements released in the basalt/seawater interaction might favor the growth of cobalt-rich crusts. The relatively low ~3He/~4He values in the seamount basalts may be used as an important exploration criterion for the cobalt-rich ferromanganese crusts.
机译:使用高真空气体质谱仪分析了来自西太平洋的三层(外层,多孔层和致密层)富钴铁锰结壳及其玄武岩和磷矿基质中各层的惰性气体同位素组成。分析结果表明,富钴结壳中的稀有气体主要来自周围的海水,地外颗粒(如行星际尘埃颗粒(IDPs)和风生的大陆尘埃颗粒)以及海底沉积物中的局部地层水,但是不同的稀有气体有不同的来源。地壳中的He主要来自地外颗粒,风成尘颗粒中的放射成因He量可忽略不计。 Ar主要来自海水中溶解的空气,而微不足道地来自风积大陆粉尘颗粒或地层水中的放射性Ar。 Xe和Ne主要来自海水,在流离失所者中有少量的外星Xe和Ne。与多孔层和外层相比,致密层具有较高的〜4He含量和较低的〜3He /〜4He比,表明海洋磷化作用可能极大地改变了地壳的稀有气体同位素组成。此外,富钴结壳的玄武质基底的〜3He /〜4He值非常低,其R / R_a比大多<0.1 R_a,与磷矿基底(0.087 R_a)相似,但要低得多比新鲜海底MORB(8.75±2.14 R_a)或海山玄武岩(3-43 R_a)高,这说明玄武岩基质在磷化过程中经历了强烈的水/岩石相互作用,并与放射源〜4He和P富集的上升海流发生了反应。玄武岩/海水相互作用中释放的微量元素可能有利于富钴结壳的生长。海山玄武岩中相对较低的〜3He /〜4He值可以用作富钴铁锰结壳的重要勘探标准。

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