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Biosorption of aquatic copper (II) by mushroom biomass Pleurotus eryngii: kinetic and isotherm studies

机译:蘑菇生物体杏鲍菇对水体铜(II)的生物吸附:动力学和等温线研究

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Biosorption is an effective method for removing heavy metals from effluent. This work mainly aimed to evaluate the adsorption performance of the widely cultivated novel mushroom, Pleurotus eryngii, for the removal of Cu(II) from single aqueous solutions. Kinetics and equilibria were obtained using a batch technique. The sorption kinetics follows the pseudo-second-order model, whereas the adsorption equilibria are best described by the Langmuir model. The adsorption process is exothermic because both the Langmuir-estimated biosorption capacity and the heat of adsorption estimated from the Temkin model decreased with increasing tested temperature. Based on the adsorption intensity estimated by the Freundlich model and the mean adsorption free energy estimated by the Dubinin-Radushkevich model, the type of adsorption is defined as physical adsorption. The biomass of the macro-fungus P. eryngii has the potential to remove Cu(II) from a large-scale wastewater contaminated by heavy metals, because of its favorable adsorption, short biosorption equilibrium time of 20 min and remarkable biosorption capacity (15.19 mg g(-1) as calculated by the Langmuir model). The adsorbed metal-enriched mushroom is a high-quality bio-ore by the virtue of its high metal content of industrial mining grade and easy metal extractability.
机译:生物吸附是从废水中去除重金属的有效方法。这项工作的主要目的是评估广泛种植的新型蘑菇杏鲍菇对从单一水溶液中去除Cu(II)的吸附性能。使用间歇技术获得动力学和平衡。吸附动力学遵循拟二级模型,而吸附平衡最好由Langmuir模型描述。吸附过程是放热的,因为随着测试温度的升高,朗格缪尔(Langmuir)估计的生物吸附能力和Temkin模型估计的吸附热均降低。根据Freundlich模型估算的吸附强度和Dubinin-Radushkevich模型估算的平均吸附自由能,将吸附类型定义为物理吸附。大型真菌P. eryngii的生物质具有从重金属污染的大规模废水中去除Cu(II)的潜力,因为它具有良好的吸附能力,较短的生物吸附平衡时间(20分钟)和出色的生物吸附能力(15.19 mg由Langmuir模型计算得出的g(-1)。富含金属的蘑菇由于其工业采矿级的金属含量高且易于金属提取,因此是一种高质量的生物矿石。

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