| Literature DB >> 25252106 |
Bin Qiu1, Jiang Guo, Xi Zhang, Dezhi Sun, Hongbo Gu, Qiang Wang, Huanwen Wang, Xuefeng Wang, Xin Zhang, Brandon L Weeks, Zhanhu Guo, Suying Wei.
Abstract
Ethyl cellulose (EC) composites modified with 20.0 wt % polyethylenimine (PEI) (PEI/ECs) demonstrated effective hexavalent chromium, [Cr(VI)], removal from solutions with a wide pH range. For example, 4.0 mg/L Cr(VI) solution with a pH below 3.0 was completely purified by 3.0 g/L PEI/ECs within 5 min, much faster than the as-received EC (2 h) and activated carbon (several hours). These PEI/ECs adsorbents has overcome the low pH limitation of Cr(VI) removal; for example, 4.0 mg/L Cr(VI) solution with a pH of 11.0 was completely purified within 15 min. These adsorbents followed chemical adsorption as revealed from the pseudo-second-order kinetic study. These PEI/ECs following the isotherm Langmuir model have a maximum adsorption capacity of 36.8 mg/g, much higher than pure EC (12 mg/g), tetrabutylammonium-modified celluloses (16.67 mg/g), and magnetic carbon (16 mg/g). The reduction of Cr(VI) to Cr(III) by the oxidation of amine groups and hydroxyl groups of PEI/ECs was verified as the main mechanism for the Cr(VI) removal.Entities:
Keywords: Cr(VI) removal; adsorption; ethyl cellulose (EC); kinetics; polyethylenimine (PEI); redox reaction
Year: 2014 PMID: 25252106 DOI: 10.1021/am505170j
Source DB: PubMed Journal: ACS Appl Mater Interfaces ISSN: 1944-8244 Impact factor: 9.229