2021
DOI: 10.1038/s41598-021-94376-1
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Surface microstructures developed on polished quartz crystals embedded in wet quartz sand compacted under hydrothermal conditions

Abstract: Intergranular pressure solution plays a key role as a deformation mechanism during diagenesis and in fault sealing and healing. Here, we present microstructural observations following experiments conducted on quartz aggregates under conditions known to favor pressure solution. We conducted two long term experiments in which a quartz crystal with polished faces of known crystallographic orientation was embedded in a matrix of randomly oriented quartz sand grains. For about two months an effective axial stress o… Show more

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Cited by 3 publications
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“…Supporting evidence for the first mechanism includes observations of grain aggregation in gouge microstructures (Chen et al., 2015). Microstructures relevant to the second mechanism involve dissolution pits in grains accompanying mineral growth in adjacent areas (e.g., Olsen et al., 1998; Zhang et al., 2010), grain indentations (e.g., Niemeijer et al., 2002, 2008), grain truncation (e.g., Bos et al., 2000; Schutjens et al., 2021), and healed grain boundaries (e.g., van Noort et al., 2008).…”
Section: Discussionmentioning
confidence: 99%
“…Supporting evidence for the first mechanism includes observations of grain aggregation in gouge microstructures (Chen et al., 2015). Microstructures relevant to the second mechanism involve dissolution pits in grains accompanying mineral growth in adjacent areas (e.g., Olsen et al., 1998; Zhang et al., 2010), grain indentations (e.g., Niemeijer et al., 2002, 2008), grain truncation (e.g., Bos et al., 2000; Schutjens et al., 2021), and healed grain boundaries (e.g., van Noort et al., 2008).…”
Section: Discussionmentioning
confidence: 99%