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Biosorption of 2,4-dichlorophenol from aqueous solution by Phanerochaete chrysosporium biomass: Isotherms, kinetics and thermodynamics

机译:Phanerochaete chrysosporium生物质对水溶液中2,4-二氯苯酚的生物吸附:等温线,动力学和热力学

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摘要

The biosorption of 2,4-dichlorophenol (2,4-DCP) from aqueous solution on non-living mycelial pellets of Phanerochaete chrysosporium was studied with respect to pH, initial concentration of 2,4-DCP, temperature and pellet size. The fungal biomass exhibited the highest sorption capacity of 4.09 mg/g at an initial pH of 5.0, initial 2,4-DCP concentration of 50.48 mg/l, 25 ℃ and a pellet size of 1.0-1.5 mm in the investigated pH 2.0-11.0, initial concentrations of 5-50 mg/l, temperature 25-50℃, and pellet size of 1.0-2.5 mm. The Freundlich model exhibited a slightly better fit to the biosorption data of 2,4-DCP than the Langmuir model. The biosorption of 2,4-DCP to biomass followed pseudo second-order adsorption kinetics. The second-order kinetic constants decreased with increasing temperature, and the apparent activation energy of biosorption was estimated to be -16.95 kJ/mol. The thermodynamic analysis indicates that the biosorption process was exothermic and that the adsorption of 2,4-DCP on P. chrysosporium might be physical in nature. Both intraparticle diffusion and kinetic resistances might affect the adsorption rate and that their relative effects varied with operation temperature in the biosorption of 2,4-DCP by mycelial pellets.
机译:研究了2,4-二氯苯酚(2,4-DCP)在Phanerochaete chrysosporium非生命菌丝体颗粒上从水溶液中的生物吸附,涉及pH,2,4-DCP的初始浓度,温度和颗粒大小。在所研究的pH 2.0-下,该真菌生物质在初始pH为5.0、2,4-DCP初始浓度为50.48 mg / l,25℃时的最大吸附容量为4.09 mg / g,颗粒大小为1.0-1.5 mm。初始浓度为11.0,初始浓度为5-50 mg / l,温度为25-50℃,颗粒大小为1.0-2.5 mm。与Langmuir模型相比,Freundlich模型对2,4-DCP的生物吸附数据显示出更好的拟合度。 2,4-DCP对生物质的生物吸附遵循伪二级吸附动力学。随着温度的升高,二阶动力学常数减小,生物吸附的表观活化能估计为-16.95 kJ / mol。热力学分析表明生物吸附过程是放热的,并且2,4-DCP在金孢假单胞菌上的吸附可能是自然的。颗粒内扩散和动力学阻力都可能影响吸附速率,并且它们的相对作用会随着操作温度而被菌丝团颗粒对2,4-DCP的生物吸附所改变。

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