本研究探讨用香蕉皮和玉米芯两类生物质制备的生物炭、多壁纳米碳管(CNTs)和活性炭(AC)对氧氟沙星(OFL)的吸附动力学过程.结果表明,吸附动力学过程符合双室一级动力学模型.OFL在两类生物炭上的吸附能力随炭化温度的升高而减弱,归因于生物质炭化程度的增大,芳香性增加,生物炭有机分配相减少.生物炭的O含量极大地影响了其与水分子之间形成水膜的能力,OFL穿透水膜在生物炭表面上的吸附过程成为控制OFL吸附快慢的关键环节.OFL在CNTs和AC的快室吸附比在生物炭上的先趋于平衡,这可能与CNTs和AC较为单一的表面性质有关.CNTs的慢室吸附比AC的慢室吸附需要更长时间达到平衡,主要原因是随着OFL分子在CNTs表面持续吸附,原先由于疏水性作用聚合在一起的CNTs逐渐分散开,暴露出更多的表面积,导致OFL持续的吸附,在动力学上表现为慢室吸附.此外,单位比表面积上CNTs对OFL的吸附量最高,表明如果能够使CNTs充分分散,大量暴露的表面可能使CNTs成为去除有机污染的高效吸附剂.
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