首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Rare earth element (REE)-silicic acid complexes in seawater to explain the incorporation of REEs in opal and the 'leftover' REEs in surface water: New interpretation of dissolved REE distribution profiles
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Rare earth element (REE)-silicic acid complexes in seawater to explain the incorporation of REEs in opal and the 'leftover' REEs in surface water: New interpretation of dissolved REE distribution profiles

机译:海水中的稀土元素(REE)-硅酸络合物可解释蛋白石中稀土元素的掺入和地表水中“剩余”稀土元素的溶解:溶解稀土元素分布特征的新解释

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In light of a new finding that diatom opal carries rare earth elements (REEs) at an amount exceeding that which would explain the REEs/Si ratio in open ocean columns, the complex formation of REEs with silicic acid and subsequent incorporation of the complex into diatom opal has been explored. Reported complex formation constants of EuH_3SiO42_+ and an empirical linear relationship of the constants with hydrolysis constants were employed in the species calculation. The calculation reveals that REE-silicic acid complex is the dominant species of dissolved REEs especially in deep layers of the Pacific and the Atlantic Oceans. The degree of complex formation varies depending on dissolved silica concentration, pH, and pCO_2. Assuming that only REEs in the form of REEH_3SiO42_+, which is diffused/advected from deep water to surface water together with dissolved silica, are incorporated into diatom opal, a REE incorporation theory has been developed. The theory links the intake of REEs and silica by diatoms in surface water and their concentrations in deep water and presents two distribution coefficients (Ds) of REEs in diatom opal, conventional D against surface water and columnar D against deep water as functions of pH and dissolved silica concentration. The theory successfully explains the significant REE concentration level ("leftover REEs") in the surface water of the oceans and reproduces a concentration of REEs in diatom opal that is consistent with that observed in diatom opal in the North Pacific Ocean. The REE composition of oceanic deep water is largely explained by two fractionation processes: REE incorporation into opal and carbonate/oxide scavenging of REEs.
机译:鉴于一项新发现,硅藻蛋白石中所含稀土元素(REE)的量超过了可以解释开阔海洋柱中REEs / Si比的量,稀土元素与硅酸的络合物形成以及随后将该络合物掺入硅藻中蛋白石已被探索。在物种计算中,采用了报道的EuH_3SiO42_ +的络合物形成常数,以及该常数与水解常数之间的经验线性关系。计算表明,稀土元素-硅酸复合物是溶解性稀土元素的主要种类,尤其是在太平洋和大西洋的深层。络合物形成的程度取决于溶解的二氧化硅浓度,pH和pCO_2。假设只有REEH_3SiO42_ +形式的REE与溶解的二氧化硅一起从深水扩散/吸附到地表水中,才被掺入硅藻蛋白石中,开发了一种REE掺入理论。该理论将硅藻在地表水中的REE和二氧化硅的摄入量及其在深水中的浓度联系起来,并给出了硅藻石中REE的两个分布系数(Ds),即传统的D对地表水和柱状D对深水的pH和pH的函数。溶解的二氧化硅浓度。该理论成功地解释了海洋表层水中显着的REE浓度水平(“剩余REE”),并再现了硅藻蛋白石中REE的浓度,与北太平洋硅藻蛋白石中观察到的浓度一致。海洋深水的稀土元素组成主要由两个分馏过程解释:稀土元素掺入蛋白石和碳酸盐/氧化物清除。

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