Jiangsu Provincial Key Laboratory of Environmental Engineering, Jiangsu Provincial Academy of Environmental Science, Nanjing, 210036, China.
Jiangsu Provincial Key Laboratory of Environmental Engineering, Jiangsu Provincial Academy of Environmental Science, Nanjing, 210036, China; College of Environment, Hohai University, Nanjing, 210093, China.
J Environ Manage. 2024 Apr;357:120725. doi: 10.1016/j.jenvman.2024.120725. Epub 2024 Mar 29.
Since the electroplating industry is springing up, effective control of phosphate has attracted global concerns. In this study, a novel biosorbent (MIL-88@CS-HDG) was synthesized by loading a kind of Fe-based metal organic framework called MIL-88 into chitosan hydrogel beads and applied in deep treatment of phosphate removal in electroplating wastewater. The adsorption capacities of HPO on MIL-88@CS-HDG could reach 1.1 mmol/g (corresponding to 34.1 mg P/g and 106.7 mg HPO/g), which was 2.65% higher than that on single MOF powders and chitosan hydrogel beads. The HPO adsorption was well described by the Freundlich isotherm model. Over 90% HPO could be adsorbed at contact time of 3 h. It could keep high adsorption capacity in the pH range from 2 to 7, which had a wider pH range of application compared with pure MIL-88. Only NO and SO limited the adsorption with the reduction rate of 11.42% and 23.23%, proving it tolerated most common co-existing ions. More than 92% of phosphorus could be recovered using NaOH and NaNO. Electrostatic attraction between Fe core and phosphorus in MIL-88@CS-HDG and ion exchange played the dominant role. The recovered MIL-88@CS-HDG remained stable and applicable in the treatment process of real electroplating wastewater even after six adsorption-regeneration cycles. Based on the removal properties and superb regenerability, MIL-88@CS-HDG is potentially applicable to practical production.
自从电镀行业兴起以来,磷酸盐的有效控制引起了全球的关注。在这项研究中,通过将一种称为 MIL-88 的铁基金属有机骨架负载到壳聚糖水凝胶珠中,合成了一种新型吸附剂(MIL-88@CS-HDG),并将其应用于电镀废水中磷酸盐的深度去除。MIL-88@CS-HDG 对 HPO 的吸附容量可达 1.1 mmol/g(相当于 34.1 mg P/g 和 106.7 mg HPO/g),比单一 MOF 粉末和壳聚糖水凝胶珠分别高 2.65%。HPO 的吸附很好地符合 Freundlich 等温模型。在 3 h 的接触时间内,超过 90%的 HPO 可以被吸附。它在 pH 值为 2 到 7 的范围内保持高吸附容量,与纯 MIL-88 相比,应用 pH 值范围更广。只有 NO 和 SO 会限制吸附,其还原率分别为 11.42%和 23.23%,这证明它能耐受大多数常见的共存离子。使用 NaOH 和 NaNO 可以回收超过 92%的磷。MIL-88@CS-HDG 中铁核与磷之间的静电吸引和离子交换起主要作用。回收的 MIL-88@CS-HDG 在处理实际电镀废水的过程中保持稳定且适用,即使经过六次吸附-再生循环也是如此。基于去除性能和优异的再生能力,MIL-88@CS-HDG 具有潜在的实际应用价值。