Matches in SemOpenAlex for { <https://semopenalex.org/work/W2012320129> ?p ?o ?g. }
- W2012320129 endingPage "103" @default.
- W2012320129 startingPage "96" @default.
- W2012320129 abstract "Dodecyl sulfate anion (DS−) intercalated magnesium iron layered double hydroxide (DS–Mg–Fe LDH) was firstly prepared by the co-precipitation method, and was characterized by the means of X-ray diffraction (XRD), Fourier infrared (FT-IR), Total Organic Carbon analysis (TOC), themogravimetric and differential thermal analysis (TG-DTA) and surface characteristics analysis (BET-N2). The sorption characteristics and mechanisms of hydrophobic organic contaminants (naphthalene, nitrobenzene, acetophenone) and hydrophilic contaminant (aniline) on DS–Mg–Fe LDH were investigated, and were subsequently compared with that on the inorganic magnesium iron layered double hydroxides (CO3–Mg–Fe LDH and NO3–Mg–Fe LDH). The greater sorption amount of organic contaminants on DS–Mg–Fe LDH than on CO3–Mg–Fe LDH and NO3–Mg–Fe LDH indicated that organic modified LDHs were potential sorbents for the abatement of organic contaminants. Sorption mechanism on DS–Mg–Fe LDH varied with the types of organic contaminants. The uptake curves of naphthalene, nitrobenzene and acetophenone on DS–Mg–Fe LDH were linear, and sorption capacities for three hydrophobic compounds were in the sequence of their hydrophobicity (refers to water solubility or Kow). These results suggested that the sorption mechanism was the partition between water and the organic interlayer phase composed of the alkyl chain of DS−. After eliminating the influence of the hydrophobicity, the polar compounds (nitrobenzene and acetophenone) exhibited higher affinity to DS–Mg–Fe LDH than nonpolar compound (naphthalene), which demonstrated that both the hydrophobicity and polarity benefited the sorption of hydrophobic compounds on organic LDHs. For hydrophilic compound, aniline, its uptake curve was nonlinear. The sorption process of aniline was the cooperation of the adsorption on hydroxide surface through forming the hydrogen bonding and the weak partition to the interlayer organic phase." @default.
- W2012320129 created "2016-06-24" @default.
- W2012320129 creator A5000420874 @default.
- W2012320129 creator A5001058965 @default.
- W2012320129 creator A5020700981 @default.
- W2012320129 creator A5040035999 @default.
- W2012320129 date "2013-02-01" @default.
- W2012320129 modified "2023-10-16" @default.
- W2012320129 title "Sorption of aqueous organic contaminants onto dodecyl sulfate intercalated magnesium iron layered double hydroxide" @default.
- W2012320129 cites W1965336506 @default.
- W2012320129 cites W1973058283 @default.
- W2012320129 cites W1979832736 @default.
- W2012320129 cites W1981540820 @default.
- W2012320129 cites W1981902048 @default.
- W2012320129 cites W1986171154 @default.
- W2012320129 cites W1996180388 @default.
- W2012320129 cites W2015491822 @default.
- W2012320129 cites W2015635714 @default.
- W2012320129 cites W2027606360 @default.
- W2012320129 cites W2028357855 @default.
- W2012320129 cites W2032019286 @default.
- W2012320129 cites W2034341621 @default.
- W2012320129 cites W2035211852 @default.
- W2012320129 cites W2037209149 @default.
- W2012320129 cites W2039747029 @default.
- W2012320129 cites W2045038585 @default.
- W2012320129 cites W2060046824 @default.
- W2012320129 cites W2063766525 @default.
- W2012320129 cites W2065321105 @default.
- W2012320129 cites W2065622856 @default.
- W2012320129 cites W2069385576 @default.
- W2012320129 cites W2070211133 @default.
- W2012320129 cites W2081478932 @default.
- W2012320129 cites W2082122515 @default.
- W2012320129 cites W2082293187 @default.
- W2012320129 cites W2083595698 @default.
- W2012320129 cites W2085225201 @default.
- W2012320129 cites W2085500066 @default.
- W2012320129 cites W2087548647 @default.
- W2012320129 cites W2116068207 @default.
- W2012320129 cites W2119804777 @default.
- W2012320129 cites W2128957216 @default.
- W2012320129 cites W2140529950 @default.
- W2012320129 cites W2157948297 @default.
- W2012320129 cites W2170979850 @default.
- W2012320129 cites W2315432815 @default.
- W2012320129 cites W2316157354 @default.
- W2012320129 cites W2029523469 @default.
- W2012320129 doi "https://doi.org/10.1016/j.clay.2013.01.001" @default.
- W2012320129 hasPublicationYear "2013" @default.
- W2012320129 type Work @default.
- W2012320129 sameAs 2012320129 @default.
- W2012320129 citedByCount "43" @default.
- W2012320129 countsByYear W20123201292014 @default.
- W2012320129 countsByYear W20123201292015 @default.
- W2012320129 countsByYear W20123201292016 @default.
- W2012320129 countsByYear W20123201292017 @default.
- W2012320129 countsByYear W20123201292018 @default.
- W2012320129 countsByYear W20123201292019 @default.
- W2012320129 countsByYear W20123201292020 @default.
- W2012320129 countsByYear W20123201292021 @default.
- W2012320129 countsByYear W20123201292022 @default.
- W2012320129 countsByYear W20123201292023 @default.
- W2012320129 crossrefType "journal-article" @default.
- W2012320129 hasAuthorship W2012320129A5000420874 @default.
- W2012320129 hasAuthorship W2012320129A5001058965 @default.
- W2012320129 hasAuthorship W2012320129A5020700981 @default.
- W2012320129 hasAuthorship W2012320129A5040035999 @default.
- W2012320129 hasConcept C13965031 @default.
- W2012320129 hasConcept C150394285 @default.
- W2012320129 hasConcept C161790260 @default.
- W2012320129 hasConcept C178790620 @default.
- W2012320129 hasConcept C179104552 @default.
- W2012320129 hasConcept C185592680 @default.
- W2012320129 hasConcept C2775896084 @default.
- W2012320129 hasConcept C2778002958 @default.
- W2012320129 hasConcept C2779255514 @default.
- W2012320129 hasConcept C2780809723 @default.
- W2012320129 hasConcept C58445606 @default.
- W2012320129 hasConceptScore W2012320129C13965031 @default.
- W2012320129 hasConceptScore W2012320129C150394285 @default.
- W2012320129 hasConceptScore W2012320129C161790260 @default.
- W2012320129 hasConceptScore W2012320129C178790620 @default.
- W2012320129 hasConceptScore W2012320129C179104552 @default.
- W2012320129 hasConceptScore W2012320129C185592680 @default.
- W2012320129 hasConceptScore W2012320129C2775896084 @default.
- W2012320129 hasConceptScore W2012320129C2778002958 @default.
- W2012320129 hasConceptScore W2012320129C2779255514 @default.
- W2012320129 hasConceptScore W2012320129C2780809723 @default.
- W2012320129 hasConceptScore W2012320129C58445606 @default.
- W2012320129 hasLocation W20123201291 @default.
- W2012320129 hasOpenAccess W2012320129 @default.
- W2012320129 hasPrimaryLocation W20123201291 @default.
- W2012320129 hasRelatedWork W2029169508 @default.
- W2012320129 hasRelatedWork W2029192864 @default.
- W2012320129 hasRelatedWork W2061384383 @default.
- W2012320129 hasRelatedWork W2088824255 @default.
- W2012320129 hasRelatedWork W2144246901 @default.