Matches in SemOpenAlex for { <https://semopenalex.org/work/W1983344645> ?p ?o ?g. }
Showing items 1 to 73 of
73
with 100 items per page.
- W1983344645 endingPage "7700" @default.
- W1983344645 startingPage "7691" @default.
- W1983344645 abstract "Abstract To develop novel multi-component molten salt systems more effectively, we developed a simulative technique using the CALPHAD (Calculation of Phase Diagram and Thermodynamics) method to estimate the ionic conductivity and the melting point. The validity of this new simulative technique was confirmed by comparing the simulated ionic conductivities and melting points of typical high-temperature molten salts, such as LiF–LiCl–LiBr, LiF–LiBr–KBr, LiCl–LiBr–KBr, and LiCl–LiBr–LiI, with those reported data in the literature or experimentally obtained. This simulative technique was used to develop new quaternary molten salt systems for use as electrolytes in high-temperature molten salt batteries (called thermal batteries). The targets of the ionic conductivity and the melting point were set at 2.0 S cm −1 and higher at 500 °C, and in the range of 350–430 °C, respectively, to replace the LiCl–KCl system (1.85 S cm −1 at 500 °C) within the conventional design of the heat generation system for thermal batteries. Using the simulative method, six kinds of novel quaternary systems, LiF–LiCl–LiBr–MX (M = Na and K; X = F, Cl, and Br), which contain neither environmentally instable anions such as iodides nor expensive cations such as Rb + and Cs + , were proposed. Experimental results showed that the LiF–LiCl–LiBr–0.10NaX (X = Cl and Br) and LiF–LiCl–LiBr–0.10KX (X = F, Cl, and Br) systems meet our targets of both the ionic conductivity and the melting point." @default.
- W1983344645 created "2016-06-24" @default.
- W1983344645 creator A5008486667 @default.
- W1983344645 creator A5036878790 @default.
- W1983344645 creator A5081474992 @default.
- W1983344645 date "2010-11-15" @default.
- W1983344645 modified "2023-09-25" @default.
- W1983344645 title "New molten salt systems for high-temperature molten salt batteries: LiF–LiCl–LiBr-based quaternary systems" @default.
- W1983344645 cites W1598773367 @default.
- W1983344645 cites W1645398393 @default.
- W1983344645 cites W1975831630 @default.
- W1983344645 cites W1976226212 @default.
- W1983344645 cites W2018407389 @default.
- W1983344645 cites W2044386094 @default.
- W1983344645 cites W2607201421 @default.
- W1983344645 doi "https://doi.org/10.1016/j.jpowsour.2010.05.032" @default.
- W1983344645 hasPublicationYear "2010" @default.
- W1983344645 type Work @default.
- W1983344645 sameAs 1983344645 @default.
- W1983344645 citedByCount "25" @default.
- W1983344645 countsByYear W19833446452014 @default.
- W1983344645 countsByYear W19833446452015 @default.
- W1983344645 countsByYear W19833446452016 @default.
- W1983344645 countsByYear W19833446452017 @default.
- W1983344645 countsByYear W19833446452018 @default.
- W1983344645 countsByYear W19833446452019 @default.
- W1983344645 countsByYear W19833446452020 @default.
- W1983344645 countsByYear W19833446452021 @default.
- W1983344645 countsByYear W19833446452022 @default.
- W1983344645 countsByYear W19833446452023 @default.
- W1983344645 crossrefType "journal-article" @default.
- W1983344645 hasAuthorship W1983344645A5008486667 @default.
- W1983344645 hasAuthorship W1983344645A5036878790 @default.
- W1983344645 hasAuthorship W1983344645A5081474992 @default.
- W1983344645 hasConcept C134018914 @default.
- W1983344645 hasConcept C178790620 @default.
- W1983344645 hasConcept C179104552 @default.
- W1983344645 hasConcept C185592680 @default.
- W1983344645 hasConcept C192562407 @default.
- W1983344645 hasConcept C2776371256 @default.
- W1983344645 hasConcept C2778353533 @default.
- W1983344645 hasConcept C2778541603 @default.
- W1983344645 hasConcept C71924100 @default.
- W1983344645 hasConceptScore W1983344645C134018914 @default.
- W1983344645 hasConceptScore W1983344645C178790620 @default.
- W1983344645 hasConceptScore W1983344645C179104552 @default.
- W1983344645 hasConceptScore W1983344645C185592680 @default.
- W1983344645 hasConceptScore W1983344645C192562407 @default.
- W1983344645 hasConceptScore W1983344645C2776371256 @default.
- W1983344645 hasConceptScore W1983344645C2778353533 @default.
- W1983344645 hasConceptScore W1983344645C2778541603 @default.
- W1983344645 hasConceptScore W1983344645C71924100 @default.
- W1983344645 hasIssue "22" @default.
- W1983344645 hasLocation W19833446451 @default.
- W1983344645 hasOpenAccess W1983344645 @default.
- W1983344645 hasPrimaryLocation W19833446451 @default.
- W1983344645 hasRelatedWork W120451045 @default.
- W1983344645 hasRelatedWork W2010046519 @default.
- W1983344645 hasRelatedWork W2014215445 @default.
- W1983344645 hasRelatedWork W2017317669 @default.
- W1983344645 hasRelatedWork W2037980028 @default.
- W1983344645 hasRelatedWork W2061760597 @default.
- W1983344645 hasRelatedWork W2353385464 @default.
- W1983344645 hasRelatedWork W2991471009 @default.
- W1983344645 hasRelatedWork W3193542756 @default.
- W1983344645 hasRelatedWork W3114311917 @default.
- W1983344645 hasVolume "195" @default.
- W1983344645 isParatext "false" @default.
- W1983344645 isRetracted "false" @default.
- W1983344645 magId "1983344645" @default.
- W1983344645 workType "article" @default.