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  <Article>
    <Journal>
      <PublisherName>American Geophysical Union (AGU)</PublisherName>
      <JournalTitle>Acta Medica Okayama</JournalTitle>
      <Issn>0094-8276</Issn>
      <Volume>53</Volume>
      <Issue>13</Issue>
      <PubDate PubStatus="ppublish">
        <Year>2026</Year>
        <Month/>
      </PubDate>
    </Journal>
    <ArticleTitle>Limits of Water Storage in Stishovite at Deep Mantle Conditions</ArticleTitle>
    <FirstPage LZero="delete">e2025GL120078</FirstPage>
    <LastPage/>
    <Language>EN</Language>
    <AuthorList>
      <Author>
        <FirstName EmptyYN="N">Fei</FirstName>
        <LastName>Wang</LastName>
        <Affiliation>Bayerisches Geoinstitut, University of Bayreuth</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Artem</FirstName>
        <LastName>Chanyshev</LastName>
        <Affiliation>Bayerisches Geoinstitut, University of Bayreuth</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Lianjie</FirstName>
        <LastName>Man</LastName>
        <Affiliation>Bayerisches Geoinstitut, University of Bayreuth</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Yunke</FirstName>
        <LastName>Song</LastName>
        <Affiliation>Bayerisches Geoinstitut, University of Bayreuth</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Lin</FirstName>
        <LastName>Wang</LastName>
        <Affiliation>Bayerisches Geoinstitut, University of Bayreuth</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Takayuki</FirstName>
        <LastName>Ishii</LastName>
        <Affiliation>Institute for Planetary Materials, Okayama University</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Noriyoshi</FirstName>
        <LastName>Tsujino</LastName>
        <Affiliation>Japan Synchrotron Radiation Research Institute</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Shrikant</FirstName>
        <LastName>Bhat</LastName>
        <Affiliation>Deutsches Elektronen]Synchrotron DESY</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Robert</FirstName>
        <LastName>Farla</LastName>
        <Affiliation>Deutsches Elektronen]Synchrotron DESY</Affiliation>
      </Author>
      <Author>
        <FirstName EmptyYN="N">Tomoo</FirstName>
        <LastName>Katsura</LastName>
        <Affiliation>Bayerisches Geoinstitut, University of Bayreuth</Affiliation>
      </Author>
    </AuthorList>
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      <ArticleId IdType="doi"/>
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    <Abstract>The deep Earth water cycle is a key process in Earth's evolution. Stishovite has been proposed as a major carrier of water from the surface into the lower mantle. However, its role remains unclear because its water solubility is controversial. We investigated the water solubility of Al-free stishovite at pressures of 33&#8211;38 GPa and temperatures of 700&#8211;1200 K using in situ X-ray diffraction in an advanced multianvil apparatus. Water solubility is high, around 3 wt%, at 700 K but decreases rapidly with increasing temperature and becomes negligible (&lt;1,000 ppm), at temperatures above 1000 K. These results suggest that pure stishovite is unlikely to transport significant amounts of water into Earth's lower mantle under comparable pressure-temperature conditions. Previously reported high water contents in pure stishovite under deep Earth conditions likely reflect the solubility of post-stishovite or experimental artifacts.</Abstract>
    <CoiStatement>No potential conflict of interest relevant to this article was reported.</CoiStatement>
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        <Param Name="value">stishovite</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">high pressure</Param>
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      <Object Type="keyword">
        <Param Name="value">deep mantle</Param>
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      <Object Type="keyword">
        <Param Name="value">multianvil press</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">water cycle</Param>
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    <ReferenceList/>
  </Article>
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