College of Environmental Science and Engineering, Hunan University, Changsha 410082, China.
J Hazard Mater. 2011 Feb 28;186(2-3):2138-43. doi: 10.1016/j.jhazmat.2010.12.123. Epub 2011 Jan 5.
To improve the removal efficiency of heavy metals from wastewater, the surface of a fungal biomass was modified to obtain a high-capacity biosorbent for Cr(VI) in wastewater. The effects of pH, initial concentration, and sorption time on Cr(VI) removal by polyethylenimine (PEI)-modified Phanerochaete chrysosporium were investigated. The biomass adsorption capacity was significantly dependent on the pH of the solution, and the optimum pH was approximately 3.0. The maximum removal for Cr(VI) was 344.8 mg/g as determined with the Langmuir adsorption isotherm. Pseudo-first-order Lagergren model is better than pseudo-second-order Lagergren model when simulating the kinetic experiment results. Furthermore, an amount of Cr(VI) was reduced to Cr(III), indicating that some reactions occurred on the surface of the biomass leading to the reduction of Cr(VI). The point of zero potential for the modified biomass increased from an initial pH of 3.0 to a much higher value of 10.8, indicating that the PEI-modified biomass is better than the pristine biomass for adsorption of anionic adsorbates. Results showed that the PEI-modified biosorbent presented high efficiency in treating Cr(VI)-contaminated wastewater.
为提高从废水中去除重金属的效率,对真菌生物质的表面进行了修饰,以获得一种用于处理废水中 Cr(VI)的高容量生物吸附剂。研究了 pH 值、初始浓度和吸附时间对聚乙烯亚胺(PEI)修饰的黄孢原毛平革菌去除 Cr(VI)的影响。生物质吸附能力与溶液的 pH 值显著相关,最佳 pH 值约为 3.0。根据 Langmuir 吸附等温线,最大 Cr(VI)去除率为 344.8 mg/g。在模拟动力学实验结果时,伪一级 Lagergren 模型优于伪二级 Lagergren 模型。此外,部分 Cr(VI)被还原为 Cr(III),表明生物质表面发生了一些反应,导致 Cr(VI)被还原。修饰后的生物质的零电荷点从初始 pH 值 3.0 增加到 10.8,表明 PEI 修饰的生物质比原始生物质更适合吸附阴离子吸附物。结果表明,PEI 修饰的生物吸附剂在处理含 Cr(VI)废水方面具有高效性。