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CALSCALE:GREGORIAN
BEGIN:VEVENT
DTSTART:20161208T090000
DTEND:20161208T100000
SUMMARY:CERE seminar by Georgios Kontogeorgis
DESCRIPTION:<h2>Electrolyte Thermodynamics: Current Status and Future Challenges</h2>\n<br>\nElectrolyte solutions are extremely important in numerous applications in both the petroleum and chemical/biochemical industries. Unfortunately, despite more than 100 years of active research, electrolyte thermodynamics has not been developed as actively and extensively as the thermodynamics of non-electrolyte solutions. This may be partially due to the much more enhanced complexity of electrolyte solutions (very long-range forces) and partially also to numerous misunderstandings in the whole framework. Unfortunately, there are many unsolved issues, especially if we are interested&nbsp;about equation of state electrolyte models which can cover a wide range of temperature, pressure and concentration conditions.\n<p><span style="color: black;">This presentation will review some of the highlights of electrolyte thermodynamics with emphasis on applications. First, the well-established activity coefficient models will be presented very briefly&nbsp;but most of the presentation will be about equations of state for electrolytes. Capabilities &amp; limitations, current status and future challenges, what is easy and what is not, where we are and where we should go will all consititute important parts of this presentation.<br>\n<br>\n</span><span style="color: black;">The presentation was given, upon invitation,&nbsp;to BP international seminar series during October 2016</span></p>
X-ALT-DESC;FMTTYPE=text/html:<h2>Electrolyte Thermodynamics: Current Status and Future Challenges</h2>\n<br>\nElectrolyte solutions are extremely important in numerous applications in both the petroleum and chemical/biochemical industries. Unfortunately, despite more than 100 years of active research, electrolyte thermodynamics has not been developed as actively and extensively as the thermodynamics of non-electrolyte solutions. This may be partially due to the much more enhanced complexity of electrolyte solutions (very long-range forces) and partially also to numerous misunderstandings in the whole framework. Unfortunately, there are many unsolved issues, especially if we are interested&nbsp;about equation of state electrolyte models which can cover a wide range of temperature, pressure and concentration conditions.\n<p><span style="color: black;">This presentation will review some of the highlights of electrolyte thermodynamics with emphasis on applications. First, the well-established activity coefficient models will be presented very briefly&nbsp;but most of the presentation will be about equations of state for electrolytes. Capabilities &amp; limitations, current status and future challenges, what is easy and what is not, where we are and where we should go will all consititute important parts of this presentation.<br>\n<br>\n</span><span style="color: black;">The presentation was given, upon invitation,&nbsp;to BP international seminar series during October 2016</span></p>

URL:https://www.cere.dtu.dk/calendar/2016/12/cere-seminar-by-georgios-kontogeorgis
DTSTAMP:20260514T221900Z
UID:{91B8A83A-CF89-4668-B745-6C805F1A6F30}-20161208T090000-20161208T090000
LOCATION: Building 229 Room 003
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