首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Hydrogen generation and iron partitioning during experimental serpentinization of an olivine-pyroxene mixture
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Hydrogen generation and iron partitioning during experimental serpentinization of an olivine-pyroxene mixture

机译:氧化甘油氨庚烯混合物实验性蛇形化期间的氢气产生和铁分配

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摘要

A series of laboratory experiments was conducted to investigate serpentinization of olivine-pyroxene mixtures at 230 ?C, with the objective of evaluating the effect of mixed compositions on Fe partitioning among product minerals, H 2 generation, and reaction rates. An initial experiment reacted a mixture of 86 wt.% olivine and 14 wt.% orthopyroxene (Opx) with the same initial grain size for 387 days. The experiment resulted in extensive reaction (-53% conversion), and solids recovered at ter- mination of the experiment were dominated by Fe -bearing chrysotile and relict olivine along with minor brucite and mag- netite. Only limited amounts of H 2 were generated during the first -100 days of the experiment, but the rate of H 2 generation then increased sharply coincident with an increase in pH from mildly alkaline to strongly alkaline conditions. Two shorter term experiments with the same reactants (26 and 113 days) produced a mixture of lizardite and talc that formed a thin coating on relict olivine and Opx grains, with virtually no generation of H 2 . Comparison of the results with reaction path models indicates that the Opx reacted about two times faster than olivine, which contrasts with some previous studies that suggested olivine should react more rapidly than Opx at the experimental conditions. The models also indicate that the long-term experiment transitioned from producing serpentine ? talc early in the early stages to precipitation of serpentine plus magnetite, with brucite beginning to precipitate only late in the experiment as Opx was depleted. The results indicate that overall reaction of olivine and Opx was initially relatively slow, but reaction rates accelerated substantially when the pH transitioned to strongly alkaline conditions. Serpentine and brucite precipitated from the olivine-Opx mixture had higher Fe contents than observed in olivine -only experiments at mildly alkaline pH, but had comparable Fe contents to reaction of olivine at strongly alkaline pH implying that higher pH may favor greater partitioning of Fe into serpentine and brucite and less into magnetite. Despite the presence of brucite, dissolved silica activities during the long-term olivine-Opx experiment maintained levels well above serpentine-brucite equilibrium. Instead, silica activities converged on levels close to metastable equilibrium between brucite and olivine. It is proposed that silica levels during the experiment may have been regulated by exchange of SiO 2 between the fluid and a silica -depleted, brucite-like surface layer on dissolving olivine. (C) 2020 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY -NC -ND license (http:// creativecommons.org/licenses/by-nc-nd/4.0/).
机译:进行了一系列实验室实验,以研究230℃的橄榄石 - 辉石混合物的蛇形化,目的是评价混合组合物对产品矿物质,H 2生成和反应速率的影响。初步实验使86重量%的混合物反应。%橄榄石和14重量%的冠状物(OPX),初始粒度相同387天。实验导致广泛的反应(-53%转化),在实验中恢复的固体通过Fe-bearing Chrysotile和核心粘合橄榄石以及少量的Brucite和Mag-Netite。在实验的第一次-100天内产生有限的H 2,但是H 2的速率随后急剧增加,随着温和碱性的pH值增加到强烈碱性条件。具有相同反应物(26和113天)的两种较短的术语实验产生了蜥蜴和滑石的混合物,该滑石在依赖于贫橄榄石和OPX晶粒上形成薄涂层,几乎没有产生H 2。与反应路径模型的结果的比较表明,OPX的反应比OLIVINE快两倍,这与一些先前的研究形成鲜明对比实验条件下的OPX比OPX更快地反应。该模型还表明,长期实验从生产蛇形转变? Talc在早期阶段的沉淀到蛇形加磁铁矿,用Brucite开始沉淀,只有OPX耗尽。结果表明,橄榄石和OPX的总反应最初相对较慢,但是当pH转化为强碱条件时,反应速率大致加速。从橄榄石-OPX混合物中沉淀出的蛇纹石和布苏酸盐的Fe含量高于在温和的碱性pH的橄榄石 - 努利实验中观察到的Fe含量,但是在强碱性pH下具有相当于橄榄石的反应的Fe含量,这意味着更高的pH值可能有利于更大的Fe分配进入蛇纹石和布鲁氏菌素和更少的磁铁矿。尽管存在不锈石,但在长期橄榄石-OPX实验期间溶解的二氧化硅活性保持良好高于蛇纹石 - Brucite平衡。相反,二氧化硅活性融合在布鲁氏菌素和橄榄石之间的亚稳定性平衡的水平上。提出了实验期间的二氧化硅水平可以通过在溶解橄榄石上的溶解橄榄石上的流体和二氧化硅之间的SiO 2交换SiO 2来调节。 (c)2020作者。由elsevier有限公司出版。这是CC下的开放式访问文章-NC -ND许可证(http:// creativecommons.org/licenses/by-nc-nd/4.0/)。

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