Matches in SemOpenAlex for { <https://semopenalex.org/work/W2883263504> ?p ?o ?g. }
- W2883263504 endingPage "644" @default.
- W2883263504 startingPage "634" @default.
- W2883263504 abstract "Nano mixed-valence silver oxide (Ag2O-Ag2O3) modified the zeolitic imidazolate framework-8 (ZIF-8) composite (Ag2O-Ag2O3@ZIF-8) was firstly prepared via a simple and efficient method, characterized and applied for iodide ion (I−) uptake from simulated radioactive wastewater. The results showed that Ag2O-Ag2O3 nanoparticles doped and uniformly dispersed on the surface of ZIF-8 matrix. The adsorption capacity of the as-synthesized adsorbents increased with the increasing Ag doped amount, and the maximum adsorption capacity for 20%-Ag2O-Ag2O3@ZIF-8 was 232.12 mg/g. The calculated thermodynamic parameters indicating that the adsorption was a spontaneous and exothermic. It was worth mentioning that each Ag-based adsorbent exhibited high uptake rate of I−, and all the adsorption tests were equilibrated for a few minutes. This could be ascribed to its large specific surface area and the absolutely dominant position of chemical adsorption for as-prepared samples. Furthermore, the adsorption was barely affected by pH and competitive anions (e.g. Cl−, SO42−, CO32−), even in simulated salt lake water. Additionally, a mechanism explaining the excellent properties for adsorbents could be epitomized into three aspects, namely, the uptake performance of Ag2O for I−, the strong oxidization of Ag2O3 for I−, and the adsorption of AgI for I2." @default.
- W2883263504 created "2018-08-03" @default.
- W2883263504 creator A5022098811 @default.
- W2883263504 creator A5033437180 @default.
- W2883263504 creator A5044075519 @default.
- W2883263504 creator A5060002817 @default.
- W2883263504 creator A5060239553 @default.
- W2883263504 creator A5074379933 @default.
- W2883263504 creator A5082882278 @default.
- W2883263504 date "2019-01-01" @default.
- W2883263504 modified "2023-10-12" @default.
- W2883263504 title "Nanometer mixed-valence silver oxide enhancing adsorption of ZIF-8 for removal of iodide in solution" @default.
- W2883263504 cites W1043687607 @default.
- W2883263504 cites W1582527949 @default.
- W2883263504 cites W1970784418 @default.
- W2883263504 cites W1973046208 @default.
- W2883263504 cites W1973088023 @default.
- W2883263504 cites W1975320197 @default.
- W2883263504 cites W1975459909 @default.
- W2883263504 cites W1976269136 @default.
- W2883263504 cites W1991274153 @default.
- W2883263504 cites W1998703480 @default.
- W2883263504 cites W1999918445 @default.
- W2883263504 cites W2015018079 @default.
- W2883263504 cites W2022157095 @default.
- W2883263504 cites W2026490391 @default.
- W2883263504 cites W2031591594 @default.
- W2883263504 cites W2050162202 @default.
- W2883263504 cites W2050806538 @default.
- W2883263504 cites W2061863375 @default.
- W2883263504 cites W2112017750 @default.
- W2883263504 cites W2136660623 @default.
- W2883263504 cites W2138650511 @default.
- W2883263504 cites W2145170240 @default.
- W2883263504 cites W2163535530 @default.
- W2883263504 cites W2177611926 @default.
- W2883263504 cites W2182925840 @default.
- W2883263504 cites W2215797333 @default.
- W2883263504 cites W2225564001 @default.
- W2883263504 cites W2285572184 @default.
- W2883263504 cites W2316124489 @default.
- W2883263504 cites W2316505045 @default.
- W2883263504 cites W2417351055 @default.
- W2883263504 cites W2495363222 @default.
- W2883263504 cites W2507122272 @default.
- W2883263504 cites W2523227362 @default.
- W2883263504 cites W2525879055 @default.
- W2883263504 cites W2561647017 @default.
- W2883263504 cites W2569743207 @default.
- W2883263504 cites W2588451290 @default.
- W2883263504 cites W2599921018 @default.
- W2883263504 cites W2602854742 @default.
- W2883263504 cites W2605982547 @default.
- W2883263504 cites W2747318948 @default.
- W2883263504 cites W2752776901 @default.
- W2883263504 cites W2757842259 @default.
- W2883263504 cites W2763291332 @default.
- W2883263504 cites W2764189057 @default.
- W2883263504 cites W2794290437 @default.
- W2883263504 cites W2794620051 @default.
- W2883263504 cites W2808495169 @default.
- W2883263504 doi "https://doi.org/10.1016/j.scitotenv.2018.07.298" @default.
- W2883263504 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/30059924" @default.
- W2883263504 hasPublicationYear "2019" @default.
- W2883263504 type Work @default.
- W2883263504 sameAs 2883263504 @default.
- W2883263504 citedByCount "55" @default.
- W2883263504 countsByYear W28832635042019 @default.
- W2883263504 countsByYear W28832635042020 @default.
- W2883263504 countsByYear W28832635042021 @default.
- W2883263504 countsByYear W28832635042022 @default.
- W2883263504 countsByYear W28832635042023 @default.
- W2883263504 crossrefType "journal-article" @default.
- W2883263504 hasAuthorship W2883263504A5022098811 @default.
- W2883263504 hasAuthorship W2883263504A5033437180 @default.
- W2883263504 hasAuthorship W2883263504A5044075519 @default.
- W2883263504 hasAuthorship W2883263504A5060002817 @default.
- W2883263504 hasAuthorship W2883263504A5060239553 @default.
- W2883263504 hasAuthorship W2883263504A5074379933 @default.
- W2883263504 hasAuthorship W2883263504A5082882278 @default.
- W2883263504 hasConcept C127413603 @default.
- W2883263504 hasConcept C13965031 @default.
- W2883263504 hasConcept C150394285 @default.
- W2883263504 hasConcept C168900304 @default.
- W2883263504 hasConcept C178790620 @default.
- W2883263504 hasConcept C179104552 @default.
- W2883263504 hasConcept C179366358 @default.
- W2883263504 hasConcept C185592680 @default.
- W2883263504 hasConcept C2777570270 @default.
- W2883263504 hasConcept C2778870691 @default.
- W2883263504 hasConcept C2779851234 @default.
- W2883263504 hasConcept C2780596747 @default.
- W2883263504 hasConcept C27983359 @default.
- W2883263504 hasConcept C42360764 @default.
- W2883263504 hasConcept C45119746 @default.
- W2883263504 hasConceptScore W2883263504C127413603 @default.
- W2883263504 hasConceptScore W2883263504C13965031 @default.
- W2883263504 hasConceptScore W2883263504C150394285 @default.