Matches in SemOpenAlex for { <https://semopenalex.org/work/W3038256291> ?p ?o ?g. }
- W3038256291 endingPage "777" @default.
- W3038256291 startingPage "766" @default.
- W3038256291 abstract "In this work, we applied a novel dithiocarbamate-grafted star-like polymer for efficient reclamation of cationic dyes. This material is highly selective towards cationic dyes and almost completely rejective to anionic dyes. The adsorption kinetics, isotherms, and thermodynamics were systematically investigated to analyze the adsorption behavior of cationic dyes onto the material. As compared with other reported adsorbents, this cheap and facilely-prepared material has exceptional adsorption capacities for industrial cationic dyes, e.g., methylene blue (MB, 2624 mg/g), crystal violet (CV, 2553 mg/g), basic fuchsin (BF, 1729 mg/g), and methylene violet 3RAX (MV, 1239 mg/g), being 5-11 times of that reported in literatures. Based on the effects of pH and ionic strength on adsorption, competitive adsorption of the cationic dyes, and FTIR characterization, mechanisms for the adsorption and desorption of cationic dyes were proposed. The adsorbed dyes can be recovered over 95% just by immersing into diluted HCl solution (0.01 M) for 10 min, thus avoiding organic solvent extraction. Over 98% of the adsorption capacity was maintained during consecutive reclamation operation. Due to the high selectivity, high adsorption capacity and the ease of efficient regeneration, this material is potentially applicable for targeted reclamation of cationic dyes from dyeing wastewater." @default.
- W3038256291 created "2020-07-10" @default.
- W3038256291 creator A5015434957 @default.
- W3038256291 creator A5035701638 @default.
- W3038256291 creator A5067139701 @default.
- W3038256291 creator A5089611409 @default.
- W3038256291 date "2020-11-01" @default.
- W3038256291 modified "2023-10-17" @default.
- W3038256291 title "Targeted reclaiming cationic dyes from dyeing wastewater with a dithiocarbamate-functionalized material through selective adsorption and efficient desorption" @default.
- W3038256291 cites W1814931342 @default.
- W3038256291 cites W1850234425 @default.
- W3038256291 cites W1922326932 @default.
- W3038256291 cites W1964616543 @default.
- W3038256291 cites W1974851750 @default.
- W3038256291 cites W1988507187 @default.
- W3038256291 cites W1991252833 @default.
- W3038256291 cites W1992135227 @default.
- W3038256291 cites W2001378490 @default.
- W3038256291 cites W2002267933 @default.
- W3038256291 cites W2018076156 @default.
- W3038256291 cites W2028287026 @default.
- W3038256291 cites W2029024482 @default.
- W3038256291 cites W2031970651 @default.
- W3038256291 cites W2047461549 @default.
- W3038256291 cites W2048886775 @default.
- W3038256291 cites W2059472686 @default.
- W3038256291 cites W2067956954 @default.
- W3038256291 cites W2070094317 @default.
- W3038256291 cites W2074851476 @default.
- W3038256291 cites W2082120175 @default.
- W3038256291 cites W2086000841 @default.
- W3038256291 cites W2086453471 @default.
- W3038256291 cites W2090147776 @default.
- W3038256291 cites W2165169576 @default.
- W3038256291 cites W2212389818 @default.
- W3038256291 cites W2287271151 @default.
- W3038256291 cites W2292913696 @default.
- W3038256291 cites W2321283828 @default.
- W3038256291 cites W2332130569 @default.
- W3038256291 cites W2335898108 @default.
- W3038256291 cites W2347032618 @default.
- W3038256291 cites W2488815739 @default.
- W3038256291 cites W2522914467 @default.
- W3038256291 cites W2560924056 @default.
- W3038256291 cites W2585016395 @default.
- W3038256291 cites W2593770547 @default.
- W3038256291 cites W2597255663 @default.
- W3038256291 cites W2607899733 @default.
- W3038256291 cites W2740025821 @default.
- W3038256291 cites W2770845837 @default.
- W3038256291 cites W2782216341 @default.
- W3038256291 cites W2792333303 @default.
- W3038256291 cites W2806656537 @default.
- W3038256291 cites W2807903823 @default.
- W3038256291 cites W2808485246 @default.
- W3038256291 cites W2888257964 @default.
- W3038256291 cites W2891862942 @default.
- W3038256291 cites W2898139489 @default.
- W3038256291 cites W2898518477 @default.
- W3038256291 cites W2901081946 @default.
- W3038256291 cites W2901236394 @default.
- W3038256291 cites W2901857484 @default.
- W3038256291 cites W2903045734 @default.
- W3038256291 cites W2905771661 @default.
- W3038256291 cites W2907805082 @default.
- W3038256291 cites W2954237436 @default.
- W3038256291 cites W2954645178 @default.
- W3038256291 cites W2961745351 @default.
- W3038256291 cites W2964268005 @default.
- W3038256291 doi "https://doi.org/10.1016/j.jcis.2020.06.083" @default.
- W3038256291 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/32673853" @default.
- W3038256291 hasPublicationYear "2020" @default.
- W3038256291 type Work @default.
- W3038256291 sameAs 3038256291 @default.
- W3038256291 citedByCount "55" @default.
- W3038256291 countsByYear W30382562912020 @default.
- W3038256291 countsByYear W30382562912021 @default.
- W3038256291 countsByYear W30382562912022 @default.
- W3038256291 countsByYear W30382562912023 @default.
- W3038256291 crossrefType "journal-article" @default.
- W3038256291 hasAuthorship W3038256291A5015434957 @default.
- W3038256291 hasAuthorship W3038256291A5035701638 @default.
- W3038256291 hasAuthorship W3038256291A5067139701 @default.
- W3038256291 hasAuthorship W3038256291A5089611409 @default.
- W3038256291 hasConcept C13965031 @default.
- W3038256291 hasConcept C142724271 @default.
- W3038256291 hasConcept C150394285 @default.
- W3038256291 hasConcept C161790260 @default.
- W3038256291 hasConcept C162711632 @default.
- W3038256291 hasConcept C178790620 @default.
- W3038256291 hasConcept C183882617 @default.
- W3038256291 hasConcept C185592680 @default.
- W3038256291 hasConcept C2776020440 @default.
- W3038256291 hasConcept C2776600588 @default.
- W3038256291 hasConcept C2777545050 @default.
- W3038256291 hasConcept C2777895876 @default.
- W3038256291 hasConcept C2778485729 @default.
- W3038256291 hasConcept C2779191827 @default.