Preparation of a sustainable bioadsorbent by modifying filter paper with sodium alginate, with enhanced mechanical properties and good adsorption of methylene blue from wastewaters

被引:0
作者
Li-Wei Qian
Miao-Xiu Yang
Su-Feng Zhang
Chen Hou
Wen-qi Song
Jin-Fan Yang
Rui-Hua Tang
机构
[1] Shaanxi University of Science and Technology,National Demonstration Center for Experimental Light Chemistry Engineering Education
[2] Xijing University,School of Science
来源
Cellulose | 2018年 / 25卷
关键词
Alginate; Filter paper; Mechanical property; Adsorption; Methylene blue;
D O I
暂无
中图分类号
学科分类号
摘要
Treatment of dyes in wastewaters is necessary to ensure environmental protection. In this work, sodium alginate (SA) was utilized for modifying filter paper (FP) through Williamson reaction with epichlorohydrin, and its purpose was to meet global needs of sustainable development, while ensuring good mechanical properties of the adsorbent in the aqueous phase and good interaction with the dye molecules. The obtained composites were evaluated for both tensile strength and adsorbability. The results of tensile tests demonstrated that the composites prepared with 4 wt% SA exhibited outstanding wet mechanical performance with the tensile strength and elastic modulus values of 1.84 and 126 MPa, respectively, about 25 times and 10 times higher compared to original FP. Adsorption experiments showed that the maximum adsorption capacity of the composites for methylene blue (MB) was 503.8 mg g−1, compared to only 88.0 mg g−1 for FP. Freundlich and Scatchard model for isothermal study of the composites demonstrated that the MB adsorption occurred on a heterogeneous surface by multilayer sorption, and its kinetic study revealed that the adsorption of MB followed the pseudo-second-order kinetic model. Furthermore, the filtration performances for the composites and original FP showed that the percentage removal of MB on FP was only 36.3%, while that of the composite was 93.9%. The above results suggested that the prepared composites not only had good mechanical properties but could also adsorb the MB molecules efficiently from the aqueous phase. Therefore, the preparation of this bioadsorbent would be useful for environmental protection and sustainable development of resources.
引用
收藏
页码:2021 / 2036
页数:15
相关论文
共 170 条
  • [41] Karkeh-abadi F(2017)Selective dye adsorption by chemically-modified and thermally-treated polymers of intrinsic microporosity Int J Biol Macromol 101 334-46
  • [42] Saber-Samandari S(2016)Functionalized paper—A readily accessible adsorbent for removal of dissolved heavy metal salts and nanoparticles from water Carbohyd Polym 153 34-194
  • [43] Saber-Samandari S(2017)Removal of methyl green dye molecule from aqueous system using reduced graphene oxide as an efficient adsorbent: kinetics, isotherm and thermodynamic parameters Carbohyd Polym 164 186-3690
  • [44] Kyzas GZ(2015)Evaluating activated carbon adsorption of dissolved organic matter and micropollutants using fluorescence spectroscopy Desalination Water Treat 53 3681-60
  • [45] Siafaka PI(2000)Reduction of an azo dye Acid Black 24 solution using synthesized nanoscale zerovalent iron particles J Membr Sci 175 53-13988
  • [46] Pavlidou EG(2014)On the comparison of pseudo-first order and pseudo-second order rate laws in the modeling of adsorption kinetics Ind Eng Chem Res 53 13980-17963
  • [47] Lavoine N(2015)Hyperbranched polymeric ionic liquid with imidazolium backbones for highly efficient removal of anionic dyes Nanoscale 7 17957-3787
  • [48] Guillard V(2017)Preparation and characterization of reinforced papers using nano bacterial cellulose Cellulose 24 3777-340
  • [49] Desloges I(2014)Development of a sodium alginate-based organic/inorganic superabsorbent composite hydrogel for adsorption of methylene blue Chem Eng J 242 333-17490
  • [50] Li Y(2016)Removal of dye by carboxymethyl cellulose, acrylamide and graphene oxide via a free radical polymerization process J Mater Chem A 4 17483-1566