私密直播全婐app免费大渔直播,国产av成人无码免费视频,男女同房做爰全过程高潮,国产精品自产拍在线观看

Links
Contact Info.
  • Address:陜西省西安市西北工業大學長安校區理學院446辦公室
  • Zip:710129
  • Tel:+86-029-88431675
  • Fax:029-88431675
  • Email:blzhang@nwpu.edu.cn
Current Location :> Home > Publications > Text
Fe3O4@SiO2@CCS porous magnetic microspheres as adsorbent for removal of organic dyes in aqueous phase
writer:Baoliang Zhang, Yu Huyan, Jiqi Wang, Xin Chen, Hepeng Zhang, Qiuyu Zhang*.
keywords:Microfluidic,Hydrothermal method,Magnetic microspheres,Carbonized chitosan,Adsorbent,Organic dyes
source:期刊
specific source:https://doi.org/10.1016/j.jallcom.2017.11.349
Issue time:2017年
A novel Fe3O4@SiO2@carbonized chitosan (Fe3O4@SiO2@CCS) porous magnetic microspheres are prepared through the combination technique of microfluidic, ionic crosslinking and hydrothermal carbonization. Modern characterization analysis shows that Fe3O4@SiO2@CCS microspheres are superparamagnetic and exhibit excellent pore performance. The carbonization time is investigated to study its influence on morphology, pore property, component and magnetic performance. Carbonization reaction is carried out from outside to inside and contained hydration condensation process. The as-obtained microspheres are used as adsorbents for removal of organic dyes from water. It is found that the microspheres prepared at 12 h (MSCCS-12) show greater advantage as the adsorbents. The adsorption isotherms can be fitted with Langmuir equation. The maximum adsorption capacity for RhB on MSCCS-12 estimated from the Langmuir model is 191.57 mg g?1 at 25 °C. A distinct advantage of Fe3O4@SiO2@CCS microspheres is that they can readily be isolated from solutions by application of an external magnetic field. The microspheres exhibit excellent reusability. The removal efficiency retained nearly 90% after fifteen successive cycles of reuse. Thus, the novel adsorbent shows potential application value in removal of organic dyes.