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Open image in new window Fig. 7 SEM images of implanted samples after corrosion test with argon dose a unimplanted, b 1 × 1017 ions/cm2, and c 5 × 1017 ions/cm2, d 7 × 1017 ions/cm2.
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The oxidation of GC was proved by energy dispersion spectrum elemental analysis and comparative test with protective argon gas.
Cold plasma up to 1 m in length and up to atmospheric pressure has been tested successfully with Argon at a gas flow of 0.4 m3/h and an average power of 2.8 kW.
In April 2015, we started a three-year run with argon we extracted from underground sources.
Mobilization tests were performed with argon, air and moist air using a classical transpiration apparatus designed for vapor pressure determinations.
Test tubes were blanketed with argon and heated to 110°C for 17 h.
The materials were tested in DRM both with argon dilution (different amount of diluting gas) and without diluting gas.
Before testing, the system was bubbled with argon for 30 min to remove the electrolyte dissolved gas.
Two zirconia ceramics (Katana, Kuraray Noritake Dental and Lava, 3 M ESPE) were used to test the plasma treatment (SAP, surface) with argon gas for one minute (1 L/min).
To test for O2 binding, a protein sample was flushed with argon for 20 min and subsequently transferred to an argon-saturated cuvette.
To test whether therapy-resistant corneal infections can be successfully treated with argon cold plasma to reduce or eliminate pathogen microorganisms without affecting corneal cell viability.
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