Caner Necmettin, Kiran Ismail, Ilhan Semra, Iscen Cansu Filik
Department of Chemistry, Faculty of Arts and Science, Eskişehir Osmangazi University, Eskişehir, Turkey.
J Hazard Mater. 2009 Jun 15;165(1-3):279-84. doi: 10.1016/j.jhazmat.2008.09.108. Epub 2008 Oct 7.
Biosorption potential of dried anaerobic sludge (DAS) for Burazol Blue ED (BB) was studied with respect to pH, equilibrium time, initial dye concentrations and temperature to determine equilibrium and kinetic models. The most suitable pH, equilibrium time and initial dye concentration were determined as 0.5+/-0.03, 75 min and 150 mg/L, respectively, at a biomass dosage of 0.4 g/L and 25 degrees C+/-1.0. The equilibrium data was best described by the Langmuir isotherm model. Maximum uptake capacity (q(m)) of DAS for the dyestuff (BB) were 118.3, 125.8 and 127.5mg/g biomass at temperatures of 25, 40 and 50 degrees C, respectively, indicating that the biosorption process is spontaneous and favored at higher temperatures. The overall biosorption process was best described by pseudo-second-order kinetic model. Gibbs free energy changes were calculated as -356.8, -519.7 and -520.6J/mol at 25, 40 and 50 degrees C, respectively.
研究了干燥厌氧污泥(DAS)对Burazol Blue ED(BB)的生物吸附潜力,涉及pH值、平衡时间、初始染料浓度和温度,以确定平衡和动力学模型。在生物量剂量为0.4 g/L和25℃±1.0的条件下,最适宜的pH值、平衡时间和初始染料浓度分别确定为0.5±0.03、75分钟和150 mg/L。平衡数据用Langmuir等温线模型描述最佳。在25、40和50℃温度下,DAS对染料(BB)的最大吸附容量(q(m))分别为118.3、125.8和127.5mg/g生物量,表明生物吸附过程是自发的,且在较高温度下更有利。整体生物吸附过程用拟二级动力学模型描述最佳。在25、40和50℃时,吉布斯自由能变化分别计算为-356.8、-519.7和-520.6J/mol。