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Effect of Secondary Phase Formation on the Carbonation of Olrvine

机译:次生相形成对奥尔良碳酸化的影响

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Large-scale divine carbonation has been proposed as a potential method for sequestering CO_2 emissions. For in situ carbonation techniques, understanding the relationship between the formation of carbonate and other phases is important to predict the impact of possible passivating layers on the reaction. Therefore, we have conducted reactions of olivine with carbonated saline solutions in unstirred batch reactors. Altering the reaction conditions changed the Mg-carbonate morphology. We propose that this corresponded to changes in the ability of the system to precipitate hydromagnesite or magnesite. During high-temperature reactions (200 ℃), an amorphous silica-enriched phase was precipitated that was transformed to lizardite as the reaction progressed. Hematite was also precipitated in the initial stages of these reactions but dissolved as the reaction proceeded. Comparison of the experimental observations with reaction models indicates that the reactions are governed by the interfacial fluid composition. The presence of a new Mg-silicate phase and the formation of secondary products at the olivine surface are likely to limit the extent of olivine to carbonate conversion.
机译:已经提出大规模的神圣碳酸化作为隔离CO 2排放的潜在方法。对于原位碳酸化技术,了解碳酸盐形成与其他相之间的关系对于预测可能的钝化层对反应的影响很重要。因此,我们在未搅拌的间歇反应器中进行了橄榄石与碳酸盐溶液的反应。改变反应条件改变了碳酸镁的形态。我们提出,这对应于系统沉淀水菱镁矿或菱镁矿的能力的变化。在高温反应(200℃)期间,沉淀出无定形二氧化硅富集相,随着反应的进行,该相转变为蜥蜴石。在这些反应的初始阶段,赤铁矿也沉淀,但是随着反应的进行而溶解。实验观察结果与反应模型的比较表明,反应受界面流体组成的支配。新的镁硅酸盐相的存在以及在橄榄石表面形成副产物很可能会限制橄榄石向碳酸盐的转化程度。

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  • 来源
    《Environmental Science & Technology》 |2010年第16期|p.6503-6509|共7页
  • 作者单位

    Institut fuer Mineralogie, University of Munster, Corrensstrasse 24, 48149 Muenster, Germany;

    rnPhysics of Geological Processes (PGP) and Department of Physics, University of Oslo, P.O.Box 1048 Blindern, 0316 Oslo, Norway;

    rnInstitut fuer Mineralogie, University of Munster, Corrensstrasse 24, 48149 Muenster, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 14:04:00

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