Cabal B, Tsyntsarski B, Budinova T, Petrov N, Parra J B, Ania C O
Instituto Nacional del Carbon, CSIC, Apartado 73, 33080 Oviedo, Spain.
J Hazard Mater. 2009 Jul 30;166(2-3):1289-95. doi: 10.1016/j.jhazmat.2008.12.041. Epub 2008 Dec 11.
The purpose of this work is to explore steam reactivation at moderate temperatures of activated carbon exhausted with phenol, a highly toxic compound frequently present in industrial wastewater. The spent carbon was treated with steam at various temperatures (450, 600 and 850 degrees C) and times (from 5 to 60 min). Promising results were obtained by applying moderate temperatures and times. Whereas at low temperatures the complete regeneration of the carbon is not accomplished, an almost quantitative desorption of the pollutant was achieved at 600 degrees C after exposure times below 30 min, with minimal damages in the porous network of the carbon. Further reutilization of the regenerated carbon resulted in a superior performance towards phenol uptake. The regeneration efficiency at 850 degrees C strongly depends on the time of reactivation, with an enhanced phenol uptake when short treatment times are applied. Prolonged duration of the regeneration treatment reduced phenol adsorption capacities, due to overreactivation of the carbon in the steam atmosphere, and to the blockage of the porous carbon network.
这项工作的目的是探索在中等温度下对吸附了苯酚的活性炭进行蒸汽再活化,苯酚是工业废水中常见的高毒化合物。将废碳在不同温度(450、600和850摄氏度)和时间(5至60分钟)下用蒸汽处理。通过采用适度的温度和时间获得了有前景的结果。在低温下,碳无法完全再生,而在600摄氏度下,暴露时间低于30分钟后,污染物几乎能定量解吸,且碳的多孔网络受损最小。再生碳的进一步再利用导致对苯酚的吸附性能更优。850摄氏度下的再生效率强烈依赖于再活化时间,短处理时间时苯酚吸附量增加。再生处理时间延长会降低苯酚吸附能力,这是由于碳在蒸汽气氛中过度活化以及多孔碳网络被堵塞所致。