Matches in SemOpenAlex for { <https://semopenalex.org/work/W2742489327> ?p ?o ?g. }
- W2742489327 endingPage "185" @default.
- W2742489327 startingPage "177" @default.
- W2742489327 abstract "A current-voltage characteristic of a Neosepta AMX membrane in a monosodium phosphate solution was investigated experimentally and theoretically. It is shown that the experimental curve has two sections of the overlimiting plateau and, accordingly, two limiting current densities. This feature is not observed in the presence of electrolytes, such as sodium chloride. For a better understanding of the phenomenon, a one-dimensional three-layer steady-state transfer model taking into account the possibility of ampholyte species transformation depending on the local pH is developed. Comparison of the calculations with the experimental data and the interpretation of the current-voltage characteristic are made. The first limiting current is due to the vanishing of single-charged phosphate anions in the solution at the membrane surface. The following growth of current density is caused by the protons generated during the transformation of the single-charged phosphate anions (H2PO4−) into the double-charged ones (HPO42−) when entering the membrane. This transformation is due to the increase in pH of the AMX internal solution with increasing current density. The second limiting current is observed when the membrane is almost completely converted into the form of double-charged phosphate anions. In this state the proton flux generated in the H2PO4−–HPO42− transformation at the depleted solution/membrane interface approaches its maximum." @default.
- W2742489327 created "2017-08-17" @default.
- W2742489327 creator A5002263146 @default.
- W2742489327 creator A5022642039 @default.
- W2742489327 creator A5033833576 @default.
- W2742489327 creator A5042029578 @default.
- W2742489327 creator A5063928844 @default.
- W2742489327 date "2017-11-01" @default.
- W2742489327 modified "2023-10-17" @default.
- W2742489327 title "Current-voltage characteristic of anion-exchange membrane in monosodium phosphate solution. Modelling and experiment" @default.
- W2742489327 cites W15684699 @default.
- W2742489327 cites W1966987189 @default.
- W2742489327 cites W1973094590 @default.
- W2742489327 cites W1977554778 @default.
- W2742489327 cites W1977647247 @default.
- W2742489327 cites W1979750721 @default.
- W2742489327 cites W1980409705 @default.
- W2742489327 cites W1980785909 @default.
- W2742489327 cites W1980986867 @default.
- W2742489327 cites W1983737545 @default.
- W2742489327 cites W1998094649 @default.
- W2742489327 cites W2002899573 @default.
- W2742489327 cites W2012116646 @default.
- W2742489327 cites W2019285251 @default.
- W2742489327 cites W2019406993 @default.
- W2742489327 cites W2019701851 @default.
- W2742489327 cites W2019792195 @default.
- W2742489327 cites W2025939028 @default.
- W2742489327 cites W2030673164 @default.
- W2742489327 cites W2031659923 @default.
- W2742489327 cites W2033489033 @default.
- W2742489327 cites W2039499285 @default.
- W2742489327 cites W2042678213 @default.
- W2742489327 cites W2045352168 @default.
- W2742489327 cites W2047439888 @default.
- W2742489327 cites W2054905372 @default.
- W2742489327 cites W2056249289 @default.
- W2742489327 cites W2057425215 @default.
- W2742489327 cites W2058376666 @default.
- W2742489327 cites W2060197309 @default.
- W2742489327 cites W2060891182 @default.
- W2742489327 cites W2061393679 @default.
- W2742489327 cites W2062147882 @default.
- W2742489327 cites W2065939271 @default.
- W2742489327 cites W2070197983 @default.
- W2742489327 cites W2072539384 @default.
- W2742489327 cites W2078651117 @default.
- W2742489327 cites W2085345811 @default.
- W2742489327 cites W2089820056 @default.
- W2742489327 cites W2093418216 @default.
- W2742489327 cites W2096011421 @default.
- W2742489327 cites W2100659332 @default.
- W2742489327 cites W2125768804 @default.
- W2742489327 cites W2137354421 @default.
- W2742489327 cites W2144325587 @default.
- W2742489327 cites W2148661802 @default.
- W2742489327 cites W2253862298 @default.
- W2742489327 cites W2283393250 @default.
- W2742489327 cites W2317449890 @default.
- W2742489327 cites W2323596012 @default.
- W2742489327 cites W2326323908 @default.
- W2742489327 cites W2330913347 @default.
- W2742489327 cites W245752808 @default.
- W2742489327 cites W2521697521 @default.
- W2742489327 cites W2565523644 @default.
- W2742489327 cites W4205687850 @default.
- W2742489327 cites W4236822953 @default.
- W2742489327 doi "https://doi.org/10.1016/j.memsci.2017.08.002" @default.
- W2742489327 hasPublicationYear "2017" @default.
- W2742489327 type Work @default.
- W2742489327 sameAs 2742489327 @default.
- W2742489327 citedByCount "40" @default.
- W2742489327 countsByYear W27424893272017 @default.
- W2742489327 countsByYear W27424893272018 @default.
- W2742489327 countsByYear W27424893272019 @default.
- W2742489327 countsByYear W27424893272020 @default.
- W2742489327 countsByYear W27424893272021 @default.
- W2742489327 countsByYear W27424893272022 @default.
- W2742489327 countsByYear W27424893272023 @default.
- W2742489327 crossrefType "journal-article" @default.
- W2742489327 hasAuthorship W2742489327A5002263146 @default.
- W2742489327 hasAuthorship W2742489327A5022642039 @default.
- W2742489327 hasAuthorship W2742489327A5033833576 @default.
- W2742489327 hasAuthorship W2742489327A5042029578 @default.
- W2742489327 hasAuthorship W2742489327A5063928844 @default.
- W2742489327 hasConcept C104317684 @default.
- W2742489327 hasConcept C113196181 @default.
- W2742489327 hasConcept C121332964 @default.
- W2742489327 hasConcept C127413603 @default.
- W2742489327 hasConcept C145148216 @default.
- W2742489327 hasConcept C147789679 @default.
- W2742489327 hasConcept C148043351 @default.
- W2742489327 hasConcept C159467904 @default.
- W2742489327 hasConcept C17525397 @default.
- W2742489327 hasConcept C178790620 @default.
- W2742489327 hasConcept C179104552 @default.
- W2742489327 hasConcept C185592680 @default.
- W2742489327 hasConcept C188198153 @default.