2015
DOI: 10.1016/j.hydromet.2015.01.004
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Adsorptive separation of La, Ce and Pr using microcapsules containing 2-ethylhexylphosphonic acid mono-2-ethylhexyl ester

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Cited by 19 publications
(12 citation statements)
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“…Other groups reported higher adsorption capacities for lanthanide extraction by different sorbent materials: Liao et al 70 mg La /g NP for citrate coated magnetic nanoparticles [25]; Kondo et al 230 mg La /g MC using microcapsules containing 2-ethylhexylphosphonic acid mono-2-ethylhexyl ester [26]; Wu et al 55.9 mg La /g NP using 2-ethylhexyl phosphonic acid mono-2-ethylhexyl ester-grafted magnetic silica nanocomposites [27]; Awwad et al found 175.4 mg La /g and 250 mg Er /g of activated carbon [28]; Dupont et al have found in the literature several values for gadolinium uptake, such as 14 mg Gd /g NP of Fe 3 O 4 , 20 mg Gd /g NP of SiO 2 , 41 mg Gd /g NP of TiO 2 , and 113 mg Gd /g NP of Fe 3 O 4 (TMS-EDTA), among others [29]. …”
Section: Resultsmentioning
confidence: 99%
“…Other groups reported higher adsorption capacities for lanthanide extraction by different sorbent materials: Liao et al 70 mg La /g NP for citrate coated magnetic nanoparticles [25]; Kondo et al 230 mg La /g MC using microcapsules containing 2-ethylhexylphosphonic acid mono-2-ethylhexyl ester [26]; Wu et al 55.9 mg La /g NP using 2-ethylhexyl phosphonic acid mono-2-ethylhexyl ester-grafted magnetic silica nanocomposites [27]; Awwad et al found 175.4 mg La /g and 250 mg Er /g of activated carbon [28]; Dupont et al have found in the literature several values for gadolinium uptake, such as 14 mg Gd /g NP of Fe 3 O 4 , 20 mg Gd /g NP of SiO 2 , 41 mg Gd /g NP of TiO 2 , and 113 mg Gd /g NP of Fe 3 O 4 (TMS-EDTA), among others [29]. …”
Section: Resultsmentioning
confidence: 99%
“…Rejections of the major elements decreased from 99% to 70-80% for the metal species (Al, Ca, Cu and Zn) and 12 slightly diminished for sulphur from 40 to 30%. These differences could be attributed to the fact that membrane 13 aged in 1 M sulphuric acid suffered both physical and chemical modifications in such strong acidic conditions.…”
mentioning
confidence: 91%
“…Traditional solutions to treat AMD for metal recovery are: a) neutralisation to precipitate metals as hydroxides 5 and sulphate as gypsum [7,8]; and b) biological processing using sulphate-reducing bacteria under anaerobic 6 conditions, leading to the precipitation of metal sulphides [9,10]. Technologies such as adsorption [11,12] and 7…”
Section: Introductionmentioning
confidence: 99%
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