生物炭
吸附
磺胺美拉嗪
化学
环境化学
土霉素
吸附
有机化学
抗生素
热解
生物化学
磺胺嘧啶
作者
Jiwei Luo,Xue Li,Chengjun Ge,Karin Müller,Huamei Yu,Peng Huang,Jiatong Li,Daniel C.W. Tsang,Nanthi Bolan,Jörg Rinklebe,Hailong Wang
标识
DOI:10.1016/j.biortech.2018.05.022
摘要
Pollution of water by single antibiotics has been investigated in depth. However, in reality, a wide range of different contaminants is often mixed in the aquatic environment (contaminant cocktail). Here, single and competitive sorption dynamics of ionizable norfloxacin (NOR), sulfamerazine (SMR) and oxytetracycline (OTC) by both pristine and modified biochars were investigated. Sorption kinetics of the three antibiotics was faster in ternary-solute than single-solute system. Sorption efficiency was enhanced in the competitive system for NOR by the pristine biochar, and for OTC by both the pristine biochar and the modified biochar, while SMR sorption by the pristine biochar and the KOH-modified biochar was inhibited. Sorption was governed by electrostatic interactions, π-π EDA and H-bonds for antibiotics sorption by biochar. SMR and OTC sorption by biochar was influenced by cation bridging and surface complexation, respectively. This research finding will guide the development of treatment procedures for water polluted by multiple antibiotics.
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