Author/Authors :
Liu, Hui College of Science - Hunan Agricultural University - Changsha 410128, China , Yu, Peng College of Science - Hunan Agricultural University - Changsha 410128, China , Hu, Tao College of Science - Hunan Agricultural University - Changsha 410128, China , Wu, Fangfang College of Science - Hunan Agricultural University - Changsha 410128, China , Chen, Hong Hui Changde Xinrui New Material C - Changde 415004, China
Abstract :
AcompositeofpyrolyticTriarrhenabiocharloadingwithTiO2nanoparticleshasbeensynthesizedbythesol-gelmethod.Thecompositeshowsawell-developedhollowmesoporousandmacroporestructureascharacterizedbyXRD,BET,andSEM.WhenusedasanabsorbenttoremoveCongoredfromaqueoussolution,itwasfoundthatas-preparedcompositeperformedbetterabsorptioncapacitythansinglebiocharorTiO2.TheresultssuggestthatbiocharloadingwithTiO2couldbepromisinglyimplementedasanenvironmentallyfriendlyandinexpensiveadsorbentforCongoredremovalfromwastewater.
Keywords :
Effective Removal , Congo Red , Triarrhena Biochar Loading , TiO2 Nanoparticles , PDI