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Nucleation in superheated liquid argon–krypton solutions
We report nucleation-rate measurements in metastable liquid argon–krypton solutions at pressures of 1.0 and 1.6 MPa over a wide temperature and concentration range. These measurements were performed with the use of a superheated liquid lifetime measurement method. The experimental results are compar...
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Published in: | The Journal of chemical physics 1997-04, Vol.106 (13), p.5648-5657 |
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creator | Baidakov, V. G. Kaverin, A. M. Boltachev, G. Sh |
description | We report nucleation-rate measurements in metastable liquid argon–krypton solutions at pressures of 1.0 and 1.6 MPa over a wide temperature and concentration range. These measurements were performed with the use of a superheated liquid lifetime measurement method. The experimental results are compared with the homogeneous nucleation theory data both using a macroscopic (capillary) approach and taking into account the dependence of critical bubble surface tension on interface curvature. The size effect in nucleation is considered in the framework of the Van-der-Waals, Cahn–Hilliard method. The experimental data indicate that the homogeneous nucleation theory quantitatively describes the kinetics of a first order phase transition in binary solutions of simple liquids if the size effect is taken into account and nucleation rates are J≳106 m−3 sec−1. At J≲106 m−3 sec−1 there is initiated nucleation. A diffusion spinodal of a solution is approximated. The attainable superheating temperature data are presented. |
doi_str_mv | 10.1063/1.473585 |
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The experimental data indicate that the homogeneous nucleation theory quantitatively describes the kinetics of a first order phase transition in binary solutions of simple liquids if the size effect is taken into account and nucleation rates are J≳106 m−3 sec−1. At J≲106 m−3 sec−1 there is initiated nucleation. A diffusion spinodal of a solution is approximated. 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Sh</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Nucleation in superheated liquid argon–krypton solutions</atitle><jtitle>The Journal of chemical physics</jtitle><date>1997-04-01</date><risdate>1997</risdate><volume>106</volume><issue>13</issue><spage>5648</spage><epage>5657</epage><pages>5648-5657</pages><issn>0021-9606</issn><eissn>1089-7690</eissn><abstract>We report nucleation-rate measurements in metastable liquid argon–krypton solutions at pressures of 1.0 and 1.6 MPa over a wide temperature and concentration range. These measurements were performed with the use of a superheated liquid lifetime measurement method. The experimental results are compared with the homogeneous nucleation theory data both using a macroscopic (capillary) approach and taking into account the dependence of critical bubble surface tension on interface curvature. The size effect in nucleation is considered in the framework of the Van-der-Waals, Cahn–Hilliard method. The experimental data indicate that the homogeneous nucleation theory quantitatively describes the kinetics of a first order phase transition in binary solutions of simple liquids if the size effect is taken into account and nucleation rates are J≳106 m−3 sec−1. At J≲106 m−3 sec−1 there is initiated nucleation. A diffusion spinodal of a solution is approximated. The attainable superheating temperature data are presented.</abstract><doi>10.1063/1.473585</doi><tpages>10</tpages></addata></record> |
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title | Nucleation in superheated liquid argon–krypton solutions |
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