| Literature DB >> 27833754 |
Somayeh Piri1, Zahra Alikhani Zanjani2, Farideh Piri1, Abbasali Zamani2, Mohamadreza Yaftian1, Mehdi Davari3.
Abstract
BACKGROUND: Nowadays significant attention is to nanocomposite compounds in water cleaning. In this article the synthesis and characterization of conductive polyaniline/clay (PANI/clay) as a hybrid nanocomposite with extended chain conformation and its application for water purification are presented.Entities:
Keywords: Clay; Heavy metals; Nanocomposite; Nanolayers; Natural adsorbent; Polyaniline; Water treatment
Year: 2016 PMID: 27833754 PMCID: PMC5103387 DOI: 10.1186/s40201-016-0261-z
Source DB: PubMed Journal: J Environ Health Sci Eng
Fig. 1Mechanism of removal of Pb(II) by PANI/clay nanocomposites
Fig. 2Scanning electron microscope images of clay (a) and PANI/claynanocomposites (b)
Fig. 3X-ray diffraction patterns of the clay a and PANI/clay b nanocomposites
Representative XRD analysis of clay
| Ref. code | Score | Compound name | Scale factor | Chemical formula |
|---|---|---|---|---|
| 01-086-1628 | 18 | Quartz low | 0.607 | SiO2 |
| 00-013-0259 | 7 | Montmorillonite-14A | 0.194 | Na0.3 (Al, Mg)2 Si4O10 (OH)2 !x H2O |
| 00-003-0015 | 4 | Montmorillonite (bentonite) | 0.097 | (Na, Ca)0.3 (Al, Mg)2 Si4O10 (OH)2!x H2O |
| 00-029-0989 | 4 | Merlinoite | 0.087 | K5Ca2(Al9Si23O64) !24 H2O |
| 01-076-0885 | 2 | Biotite 2 M1 | 54.925 | KMg2Al2Si3O11(OH) |
| 01-079-1343 | 0 | Dolomite | 0.092 | CaMg(CO3)2 |
| 01-086-2339 | 1 | Calcite | 0.415 | Ca(CO3) |
| 00-006-0046 | 2 | Gypsum | 0.046 | CaSO4 !2 H2O |
Fig. 4FTIR spectra in KBr pellets of PANI/clay (a) and clay (b)
Fig. 5Pb(II) and Cd(II) ions removal with PANI/clay nanocomposite versus pH of solution
Fig. 6Dependency of contact time for adsorption studied ions onto PANI/clay nanocomposite
Fig. 7Effect of adsorbent amount on Pb(II) and Cd(II) ions onto PANI/clay nanocomposite
Fig. 8Pseudo-second order kinetic plot of Pb(II) and Cd(II) adsorption onto PANI/clay nanocomposite
The obtained parameters in study of procedure isotherms
| Ions | Isotherms parameters | ||||||||
|---|---|---|---|---|---|---|---|---|---|
| langmuir | Freundlich | Temkin | |||||||
| b(L mg−1) | qmax(mg g−1) | R2 | n | Kf(mg g−1) | R2 | AT (L g−1) | bT (kJ mol−1) | R2 | |
| Pb(II) | 0.04 | 70.42 | 0.74 | 1.01 | 4.16 | 0.87 | 0.87 | 0.15 | 0.98 |
| Cd(II) | 0.05 | 0.12 | 0.96 | 0.04 | 0.00 | 0.78 | 0.05 | 0.02 | 0.53 |
Adsorption of Pb(II) and Cd(II) from the real water samples
| Ions | Removal (%) | ||
|---|---|---|---|
| Drinking water | River water | Sea water | |
| Pb(II) | 90.7 | 91.2 | 91.7 |
| Cd(II) | 16.2 | 15.9 | 16.4 |
PANI/clay nanocomposite for lead removal against various reported adsorbents
| Adsorbent | Maximum Adsorption Capacity (mg g−1)a | Adsorption isotherm | Adsorption Kinetic model | References |
|---|---|---|---|---|
| Polyaniline/clay | 70.4 | Temkin | pseudo-second order | Present study |
| Unmodified kaolinite clay | 4.7 | Langmuir | pseudo-second order | [ |
| Modified kaolinite clay | 32.2 | Langmuir | pseudo-second order | [ |
| polyaniline on multiwalled carbon nano-tubes | 22.2 | Langmuir | - | [ |
| Peganum harmala seeds | 90.0 | Freundlich | pseudo-second order | [ |
aCalculated from Langmuir isotherm