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- W4220931054 endingPage "102741" @default.
- W4220931054 startingPage "102741" @default.
- W4220931054 abstract "Reduced graphene oxide aerogels doped with ternary Prussian blue analogs (RGOA/TPBAs) were developed by controlled self-assembly tactics and applied to remove radioactive cesium (Cs) from effluent. The unique three-dimensional layered structure gives RGOA/TPBAs excellent mechanical strength and high-level specific surface area, which facilitates the exposure of adsorption points and thus promotes the adsorption of Cs + . A maximum adsorption capacity of 226.98 mg g −1 (dosage = 0.25 g L −1 , pH = 7, T = 298.15 K) was obtained for the composite material, which exhibited excellent adsorption performance for cesium. In addition, RGOA/TPBAs maintained an excellent Cs + selectivity in a solution containing other ions (m V −1 = 0.25 g L −1 , M n+ = Ca 2+ , Mg 2+ , Na + , K + , [Cs + ] initial = 10 mg L −1 ) and the removal rate is more than 90%. The proposed secondary kinetic model (R 2 = 0.9982) and fitted the adsorption process well, as does the Langmuir isotherm model (R 2 = 0.9929), making it clear that the adsorption is homogeneous monolayer chemisorption. The coexisting ion adsorption experiments illustrate that the good selectivity of the composite. • RGOA/TPBAs are developed through a controllable self-assembly strategy. • The composite exhibits excellent adsorption performance for Cs + (226.98 mg g −1 ). • RGOA/TPBAs have an overall morphology and are easily separated from the solution" @default.
- W4220931054 created "2022-04-03" @default.
- W4220931054 creator A5013361860 @default.
- W4220931054 creator A5013712046 @default.
- W4220931054 creator A5014090175 @default.
- W4220931054 creator A5017935950 @default.
- W4220931054 creator A5032365784 @default.
- W4220931054 creator A5044936528 @default.
- W4220931054 creator A5049554657 @default.
- W4220931054 creator A5078526337 @default.
- W4220931054 creator A5080209274 @default.
- W4220931054 date "2022-06-01" @default.
- W4220931054 modified "2023-10-01" @default.
- W4220931054 title "Reduced graphene oxide based aerogels: Doped with ternary Prussian blue analogs and selective removal of Cs+ from effluent" @default.
- W4220931054 cites W1420770964 @default.
- W4220931054 cites W1423213258 @default.
- W4220931054 cites W1852309333 @default.
- W4220931054 cites W1935657036 @default.
- W4220931054 cites W1966790371 @default.
- W4220931054 cites W1971942549 @default.
- W4220931054 cites W1979291347 @default.
- W4220931054 cites W1983412787 @default.
- W4220931054 cites W1986874766 @default.
- W4220931054 cites W1990019715 @default.
- W4220931054 cites W2019677252 @default.
- W4220931054 cites W2044114614 @default.
- W4220931054 cites W2062013938 @default.
- W4220931054 cites W2072053289 @default.
- W4220931054 cites W2082152241 @default.
- W4220931054 cites W2091994130 @default.
- W4220931054 cites W2111503429 @default.
- W4220931054 cites W2114042821 @default.
- W4220931054 cites W2114738887 @default.
- W4220931054 cites W2116358111 @default.
- W4220931054 cites W2155869488 @default.
- W4220931054 cites W2164985550 @default.
- W4220931054 cites W2201715015 @default.
- W4220931054 cites W2312907715 @default.
- W4220931054 cites W2321974644 @default.
- W4220931054 cites W2555035565 @default.
- W4220931054 cites W2606136058 @default.
- W4220931054 cites W2731563134 @default.
- W4220931054 cites W2735744911 @default.
- W4220931054 cites W2765723240 @default.
- W4220931054 cites W2767194717 @default.
- W4220931054 cites W2771845719 @default.
- W4220931054 cites W2778195071 @default.
- W4220931054 cites W2783537483 @default.
- W4220931054 cites W2789272690 @default.
- W4220931054 cites W2790285911 @default.
- W4220931054 cites W2792976223 @default.
- W4220931054 cites W2799448872 @default.
- W4220931054 cites W2799913317 @default.
- W4220931054 cites W2801459145 @default.
- W4220931054 cites W2803095774 @default.
- W4220931054 cites W2804114327 @default.
- W4220931054 cites W2809297852 @default.
- W4220931054 cites W2889652992 @default.
- W4220931054 cites W2893771673 @default.
- W4220931054 cites W2897839050 @default.
- W4220931054 cites W2899448171 @default.
- W4220931054 cites W2904392845 @default.
- W4220931054 cites W2920745476 @default.
- W4220931054 cites W2921084734 @default.
- W4220931054 cites W2924511043 @default.
- W4220931054 cites W2941324425 @default.
- W4220931054 cites W2942373930 @default.
- W4220931054 cites W2946312563 @default.
- W4220931054 cites W2947132733 @default.
- W4220931054 cites W2971298052 @default.
- W4220931054 cites W2975242741 @default.
- W4220931054 cites W2977159623 @default.
- W4220931054 cites W2977732410 @default.
- W4220931054 cites W3001678415 @default.
- W4220931054 cites W3002968041 @default.
- W4220931054 cites W3005716749 @default.
- W4220931054 cites W3024291673 @default.
- W4220931054 cites W3033346624 @default.
- W4220931054 cites W3034933627 @default.
- W4220931054 cites W3035393000 @default.
- W4220931054 cites W3039837610 @default.
- W4220931054 cites W3047744451 @default.
- W4220931054 cites W3080389956 @default.
- W4220931054 cites W3081511500 @default.
- W4220931054 cites W3083463345 @default.
- W4220931054 cites W3093732235 @default.
- W4220931054 cites W3097932618 @default.
- W4220931054 cites W3119225239 @default.
- W4220931054 cites W3136315308 @default.
- W4220931054 cites W3158371833 @default.
- W4220931054 cites W3159058452 @default.
- W4220931054 cites W3186163141 @default.
- W4220931054 cites W3194722842 @default.
- W4220931054 cites W3196960841 @default.
- W4220931054 cites W3204726384 @default.
- W4220931054 cites W4200246891 @default.
- W4220931054 cites W4205363276 @default.
- W4220931054 doi "https://doi.org/10.1016/j.jwpe.2022.102741" @default.