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- W2761195385 abstract "Plasma- and chemical-grafted amidoxime/carbon nanofiber hybrids (p-AO/CNFs and c-AO/CNFs) were utilized to remove 238U(VI) and 241Am(III) from aqueous solutions, seawater, and groundwater. Characteristic results indicated more nitrogen-containing groups in p-AO/CNFs compared to c-AO/CNFs. The maximum adsorption capacities of p-AO/CNFs at pH 3.5 and T = 293 K (588.24 mg of 238U(VI)/g and 40.79 mg of 241Am(III)/g from aqueous solutions, respectively) were significantly higher than those of c-AO/CNFs (263.18 and 22.77 mg/g for 238U(VI) and 241Am(III), respectively), which indicated that plasma-grafting was a highly effective, low-cost, and environmentally friendly method. Adsorption of 238U(VI) on AO/CNFs from aqueous solutions was significantly higher than that of 238U(VI) from seawater and groundwater; moreover, AO/CNFs displayed the highest effective selectivity for 238U(VI) compared to the other radionuclides. Adsorption of 238U(VI) onto AO/CNFs created inner-sphere complexes (e.g., U-C shells) as shown by X-ray absorption fine structure analysis, which was supported by surface complexation modeling. Three inner-sphere complexes gave excellent fits to pH-edge and isothermal adsorption of 238U(VI) on the AO/CNFs. These observations are crucial for the utilization of plasma-grafted, AO-based composites in the preconcentration and immobilization of lanthanides and actinides in environmental remediation." @default.
- W2761195385 created "2017-10-20" @default.
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- W2761195385 date "2017-11-07" @default.
- W2761195385 modified "2023-10-16" @default.
- W2761195385 title "Plasma-Facilitated Synthesis of Amidoxime/Carbon Nanofiber Hybrids for Effective Enrichment of 238U(VI) and 241Am(III)." @default.
- W2761195385 cites W1139504979 @default.
- W2761195385 cites W1969543324 @default.
- W2761195385 cites W1975913661 @default.
- W2761195385 cites W1985821733 @default.
- W2761195385 cites W1986725015 @default.
- W2761195385 cites W1989445547 @default.
- W2761195385 cites W1991664355 @default.
- W2761195385 cites W1995646448 @default.
- W2761195385 cites W1997717242 @default.
- W2761195385 cites W1997890799 @default.
- W2761195385 cites W1999870773 @default.
- W2761195385 cites W2012083390 @default.
- W2761195385 cites W2012666359 @default.
- W2761195385 cites W2013000219 @default.
- W2761195385 cites W2015313116 @default.
- W2761195385 cites W2017793502 @default.
- W2761195385 cites W2018318031 @default.
- W2761195385 cites W2020567044 @default.
- W2761195385 cites W2030607542 @default.
- W2761195385 cites W2030657375 @default.
- W2761195385 cites W2039868662 @default.
- W2761195385 cites W2046947280 @default.
- W2761195385 cites W2047531427 @default.
- W2761195385 cites W2051335878 @default.
- W2761195385 cites W2056909919 @default.
- W2761195385 cites W2059362080 @default.
- W2761195385 cites W2066759260 @default.
- W2761195385 cites W2070227796 @default.
- W2761195385 cites W2074165017 @default.
- W2761195385 cites W2081625924 @default.
- W2761195385 cites W2083435539 @default.
- W2761195385 cites W2085060702 @default.
- W2761195385 cites W2088737625 @default.
- W2761195385 cites W2092731656 @default.
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- W2761195385 cites W2127542536 @default.
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- W2761195385 cites W2288616264 @default.
- W2761195385 cites W2289584356 @default.
- W2761195385 cites W2300306005 @default.
- W2761195385 cites W2322759037 @default.
- W2761195385 cites W2330246753 @default.
- W2761195385 cites W2334160541 @default.
- W2761195385 cites W2338221056 @default.
- W2761195385 cites W2339751904 @default.
- W2761195385 cites W2340504513 @default.
- W2761195385 cites W2343313601 @default.
- W2761195385 cites W2412030245 @default.
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- W2761195385 cites W2555861650 @default.
- W2761195385 cites W4231922294 @default.
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- W2761195385 doi "https://doi.org/10.1021/acs.est.7b02745" @default.
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