College of Chemistry and Chemical Engineering, Southwest Petroleum University, Chengdu 610500, P. R. China.
College of Material Science and Engineering, Southwest Petroleum University, Chengdu 610500, P. R. China.
Langmuir. 2022 Aug 9;38(31):9567-9574. doi: 10.1021/acs.langmuir.2c00957. Epub 2022 Jul 26.
Phase-selective organogelators (PSOGs) have recently attracted more attention because of their advantages in handling oil spills and leaked organic solvents. However, it is difficult to separate and recover the organic phase and PSOGs from organic gels due to the strong interaction between them. Aiming to enhance the separation and recovery performance of the organic phase and PSOGs, we synthesized a series of pH-responsive PSOGs by using itaconic anhydride and fatty amines with carbon chain lengths of C-C. Here, PSOGs have an excellent gelation ability in that amounts of organic solvents and fuel oil can be solidified at a low concentration (<3 wt %). It is worth noting that these gels are stronger, which is more convenient for removal by a salvage operation. More importantly, compared with traditional organogelators, pH-responsive PSOGs can easily recover the organic phase and fuel oil with an adjustment of the pH without extraction or distillation. Because of the transformation between the hydrophilicity and hydrophobicity of PSOGs by pH stimulation, 83.15% PSOGs are recovered in three-cycle experiments. In addition, the recycled PSOGs can be used to realize the removal of the organic phase again. Herein, we find that pH-responsive PSOGs could be used as promising and sustainable materials for separating and recovering organic solvents/oils and PSOGs.
相选择型有机凝胶剂(PSOGs)因其在处理溢油和泄漏有机溶剂方面的优势,最近受到了更多的关注。然而,由于它们之间的强相互作用,从有机凝胶中分离和回收有机相和 PSOGs 是困难的。为了提高有机相和 PSOGs 的分离和回收性能,我们合成了一系列 pH 响应型 PSOGs,使用了碳链长度为 C-C 的马来酸酐和脂肪胺。在这里,PSOGs 具有优异的凝胶化能力,可在低浓度(<3wt%)下固化大量有机溶剂和燃料油。值得注意的是,这些凝胶更强,更便于通过抢救作业去除。更重要的是,与传统的有机凝胶剂相比,pH 响应型 PSOGs 可以在不进行提取或蒸馏的情况下,通过调节 pH 值轻松回收有机相和燃料油。由于 pH 刺激下 PSOGs 的亲水性和疏水性之间的转变,在三循环实验中回收了 83.15%的 PSOGs。此外,回收的 PSOGs 可再次用于实现有机相的去除。在这里,我们发现 pH 响应型 PSOGs 可用作分离和回收有机溶剂/油和 PSOGs 的有前途和可持续的材料。